2020 PROMOTING
ISSUE 82 ON-SITE POWER & CO-GENERATION
Delivering electric power, service and solutions –
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EDITOR’S NOTES
NOVEMBER 2020
US INITIATES A NUMBER OF KEY ENERGY INFRASTRUCTURE CHANGES IN VIETNAM WITH KEY LNG-TO-POWER DEALS
ISSUE 82 Publishing & Events Director Richard Teasdale Richard@wipmagazines.com Publisher/Sales DIrector Neb Saric Neb@wipmagazines.com Managing Editor Aidan Turnbull Aidan@wipmagazines.com Marketing & Creative Manager Oscar Pancic Oscar@wipmagazines.com Accounts Executive Alison Williams Accounts@wipmagazines.com Far East Sales Bob Liu Shanghai, China bob.liu@ronco.com.cn US Sales & Subscriptions Jelena Milojevic power@gmp.uk.com Austrian & German Agent Mario Dobresko power@gmp.uk.com Global Media Publishing Ltd, The Courtyard, 30 Worthing Road, Horsham, West Sussex, RH12 1SL, UK Tel: +44 (0) 1403 220750 www.gmp.uk.com © Independent Power Asia (ISSN 1468 7100) www.gmp.uk.com
Shortly before the US elections which confirmed President Biden’s ascendance to power, several US companies signed agreements with Vietnamese partners to develop LNG-to-power projects in the Southeast Asian country, as part of Washington’s strategy to bolster regional ties and pave the way for more US LNG exports, US equipment supply, and financial backing for energy infrastructure. ExxonMobil’s subsidiary ExxonMobil Hai Phong Energy and THE PLANT IN BAC LIEU Japanese power producer JERA signed a memorandum of underWILL HAVE A CAPACITY standing with the coastal city of Hai Phong for an integrated LNG-toOF 3,200 MW AND WILL power project. NEED 3M MT/YEAR OF ExxonMobil has submitted an application with a project concept IMPORTED LNG.” for consideration to local authorities, and Hai Phong City has submitted an important letter of recommendation to the central government to include it in the official master plan. These are pending government approvals. Providing a more environmentally-friendly alternative to the currently proposed coal projects in Vietnam’s energy strategy is really at the core of the LNG-fuelled power projects. ExxonMobil has already expressed an interest in the construction of an LNG terminal and LNG-fired power plants of up to 4,000 MW in Hai Phong,and work is pextected to begin in 2025-30. General Electric and VinaCapital are already negotiating for the development of the Long An LNG-to-power project in the southern province of Long An. Under the MOU, GE will supply gas turbines and other equipment. VinaCapital is in partnership with the Long An provincial government to develop the project that will have a power generation capacity of 3,000 MW, intended to replace a proposed coal-fired power project cancelled due to environmental concerns. The U.S. Agency for International Development is already backing the launch of the Vietnam Low Emission Energy Program II — a five-year US$36 million program intended to accelerate Vietnam’s clean energy transition.
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AIDAN TURNBULL Managing Editor
INDEPENDENT POWER ASIA
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CONTENTS
NOVEMBER 2020
18 KAWASAKI ENGINE RECEIVES THE WORLD’S HIGHEST CLASS EFFICIENCY
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05-8 LEADER AND NEWS FROM ASIA Comments and Regional News
10 MAJOR ORDERS FOR TRANSMISSION EQUIPMENT FOR ABB ABB’s Power Grids business is supplying major orders for advanced HVDC converter transformers and high-voltage equipment for three 800 kilovolt ultrahigh-voltage direct current transmission links.
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POWER & COOLING ENERGY IS NOW SUPPLIED BY AN MWM TCG 2020 V16 GAS ENGINE
Kawasaki Heavy Industries’ (KHI) new type KG-18-T gas engine, equipped with German air management specialist, PBST’s two-stageturbocharging ‘ECOCHARGE’ system, has recorded the world’s highest class power generation efficiency with Japanese standard city gas. Designed for power applications, the KG-18-T’s ECOCHARGE solution consists of a PBST TCX23 and a PBST TCA66 turbocharger which has improved its power-generation efficiency by 1.5% compared to the previous generation of the engine, delivering a world-best class 51.0% in its output class.
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OVERCOMING THE ISSUE OF REVERSE POWER IN STAND-ALONE POWER APPLICATIONS Many ports in Asia are opting to meet fluctuating demand by employing stand-alone power generators as a temporary measure. While this solution allows the port to increase crane capacity quickly, it comes with the downside of producing ‘regenerative power’, explains Paul Brickman from Crestchic Loadbanks.
La Unión Corp’s trigeneration plant was upgraded with a stronger MWM TCG 2020 V16 gas engine in order to optimise cooling processes.
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A CONTAINERISED & MODULAR DESIGN: THE GOW 1400V TWINGEN FROM PRAMAC The GQW1400V Twingen is PRAMAC’s brand new power product, conceived for the Mobile/Rental market and designed to provide flexibility and efficiency. The machine features two gensets fitting into a 20ft high container, additionally available in a tropical version with no de-rating for temperatures up to 50° and provides an autonomy of up to 7 hours, working at an attested noise level of 75dB(A)@7m. Twingen represents the ideal solution for all temporary applications.
16
DOOSAN WINS CONTRACTS FOR GIMPO CHP PLANT Doosan has signed dual contracts with Korea Western Power Co. for the power block installation and plant construction work required at the Gimpo CHP plant. Doosan won these contracts following the gas turbine supplier agreement that it signed with Korea Western Power Co. in December of last year. The power block contract is valued at about 230 billion won and involves Doosan supplying and installing the steam turbine, generator and heat recovery steam generator (HRSG). The contract for the plant construction work, which includes installing the transmission lines and industrial water treatment systems. 4
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NEWS
NOVEMBER 2020
IN BRIEF HARBIN ELECTRIC & GE CONTRACTED TO BOOST CHINA’S GREATER BAY AREA TRANSITION GE has received an order from Chinese state-owned power utility Guangdong Energy Group for three 9HA.02 gas turbines. They will go to the Dongguan Ningzhou combined cycle power plant in Guangdong province, in the Greater Bay Area of China. GBA is an agglomeration of cities put forward by China to strengthen international co-operation and promote lowercarbon, inclusive, co-ordinated and sustainable development. The project is the first H-class gas turbine planned by local government after policy reform in the Greater Bay Area, focused on the coal-to-gas energy transition.
KEPPEL AND MITSUBISHI HEAVY INDUSTRIES TO JOINTLY EXPLORE HYDROGEN POWERED TRI-GENERATION PLANT Mitsubishi Heavy Industries Asia Pacific Pte. Ltd. and Keppel Data Centres Holding Pte Ltd (Keppel Data Centres) have agreed a memorandum of understanding (MOU) to jointly explore the implementation of the hydrogen powered tri-generation plant concept for data centres in Singapore. Both companies will jointly research how a hydrogen powered tri-generation plantsupported data centre can meet the expanding needs of the digital economy in a safe, reliable and environmentally friendly manner. Mitsubishi believes the use of hydrogen as an energy source can potentially be more environmentally-friendly as the combustion of hydrogen does not produce greenhouse gas emissions. As a tri-generation plant produces heat, power and cooling, a tri-generation plant-supported data centre can be directly powered from the plant itself, reducing its reliance on the national grid, as well as using the chilled water also produced by the plant to cool the data centre’s systems and facilities. Keppel Data Centres and MHI-AP have announced they will be examining the production of hydrogen fuel for the tri-generation plant through the steam methane reforming (SMR) process. By incorporating carbon capture and storage capabilities, both parties are keen to ensure that the process is carbon neutral. Mr Wong Wai Meng, Chief Executive Officer of Keppel Data Centres, commented: “As a leading designer, developer and operator of data centres across Asia Pacific and Europe, Keppel Data Centres is committed to drive
NEDSTACK & CHINA-RICHEM INVOLVED IN PEM FUEL CELL POWER PLANT TECH
NEW ENERGY STORAGE HUB LAUNCHED BY SAFT IN CHINA Saft has opened a new manufacturing hub for energy storage solutions in Zhuhai, China. The new plant will enable Saft to provide an integrated approach to energy storage worldwide. This includes every step from initial concept and sizing to system engineering, delivery and grid connection. As a result, says Saft, operators will be able to keep their total cost of ownership (TCO) to a minimum, while maximising performance. Saf t reports that this investment marks its transition from being a supplier of batteries to providing complete energy solutions. The investment reinforces Saft’s existing
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footprint in Zhuhai as one of three strategic manufacturing hubs – the other two being in Bordeaux, France and Jacksonville, US. The manufacturing capacity of the new 6,600 square metre plant will be around 200 containers per year, equivalent to 480 MWh. The plant is already producing Intensium Max 20 High Energy containers. These units were launched in 2019 and offer 1.2 MW of power and 2.5 MWh of energy storage. Saft’s megawatt scale Li-ion containerised energy storage systems for grids and renewable energy sources smooth any intermittent generation and ramp rates inherent in renewable power sources.
Nedstack and CHINA-Richem have signed a Memorandum of Understanding (MoU). Both companies have agreed to collaborate in the full industrialisation of the Nedstack PemGen® stationary fuel cell power system portfolio. Their idea is to mass produce and deploy PEM fuel cell power plant technology at ‘economic cost levels’ as part of their new partnership. Initially, the partnership will focus on the Chinese domestic market, however, both companies say they are open towards further expansion in order to maximise their combined impact. Nedstack’s PemGen® portfolio of PEM Power Plants relies on industrial components to deliver fuel cell systems which can last as long as any conventional
power plant and to offer the best possible price per kilowatt-hour. Deng Zhaojing, CEO of CHINA-Richem, commented: “As an innovation and technology driver of CNCEC, a world-leading EPC company, CHINA-Richem is committed to achieving a Net Zero Society. “We are proud to have Nedstack, a world-class PEM fuel cell technology provider, as a partner, and are confident that both companies- and society as a whole - will benefit from this hand-in-hand cooperation.” Arnoud van de Bree, CEO of Nedstack, told the media: “The partnership between Nedstack and CHINA-Richem brings together world-class PEM fuel cell technology with world class EPC-expertise. We are very pleased to have CHINA-Richem now as a partner in pursuing this goal.”
INDEPENDENT POWER ASIA
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NEWS
NOVEMBER 2020
IN BRIEF NEW LISTER PETTER GENSET RANGE AVAILABLE Lister Petter has announced the release of a complete range of air- cooled and water-cooled generator sets. A major factory upgrade means the company can now offer normal open or acoustic sets, plus variants specifically designed for a number of applications and environments. All sets are assembled with MeccAlte alternators and DSE controls. Lister Petter’s Village Gensets are designed to offer a low-cost solution to provide power to submersible pumps in boreholes with 13.5l fuel tank integral to the engine, with an air-cooled engine and hand start option for minimum maintenance. Long-running gensets allow service intervals of up to 2000 hours, a perfect solution for remote telecom masts.
KOHLER LAUNCHES 150-, 180- AND 200-KW GAS-POWERED GENERATORS - NEW KG GENERATORS FEATURE KOHLER V-8 ENGINE IN A SMALLER, LIGHTER PACKAGE Kohler Co. has launched three new 60Hz and 50Hz gaseous-fuel generator sets providing emergency standby power for industrial, light commercial, and residential applications. The new 150-, 180- and 200-kW generators provide maximum performance in a compact package, a differentiating feature that is frequently requested by specifiers. The KG150, KG180 and KG200 units are EPA-certified and powered by a newly designed 10.3 liter, V-8 KOHLER engine with the ability to run on natural gas, propane, and dual fuel. Designed to be a much smaller and lighter engine package, upgrades to the engine include a KOHLER-designed intake manifold, exhaust system and oil thermostat assembly; front end accessory drive with a decoupled fan allowing for different speeds of the fan and water pump; and a one-piece flywheel. “This project supports the strategic objective to have the same KOHLER-branded engines in all KOHLER generators to support a single platform making it easier for the customer and KOHLER in terms of common parts and efficiency,” said Amy Haese, associate product manager for KOHLER industrial generators. “We also designed a much smaller engine than previous models, as well as shortened the enclosure and skid to reduce overall size and weight for installation flexibility.” These generators provide users with the flexibility to select the appropriate gas fuel source for a specific application including natural gas (primary) and LP (secondary), and feature a dual fuel option with a patent-pending fuel reset box. This dual fuel system enables the generator to switch automatically from natural gas to LP, and when sensing that LP is low it reverts back to natural gas.
ROLLS-ROYCE TO SUPPLY 15 BERGEN GAS ENGINES TO CONTRACT POWER GROUP FOR AUSTRALIAN MAGNETITE MINE Rolls-Royce and its agent Penske Australia have signed a contract with Contract Power for the delivery of 15 medium speed gas gensets from Rolls-Royce’s Bergen Engines brand to power the Iron Bridge Magnetite Project in Western Australia, an unincorporated joint venture between Fortescue Metals Group subsidiary FMG Iron Bridge and Formosa Steel IB. The gensets are based on the new Rolls-Royce Bergen 20-cylinder B36:45 gas engine, which was introduced to the global market at the end of 2018. The engine platform sets a new standard in power and efficiency with exceptionally low fuel consumption and emissions. Through the Pilbara Generation Project, the Rolls-Royce Bergen gas gensets will be integrated with a 150 MW solar PV farm and battery storage. The hybrid energy system will be connected to the new transmission network Fortescue is building in the Pilbara, ensuring that the right amount of electricity is supplied in a reliable, efficient and environmentally friendly manner. Jon Erik Røv, Managing Director of Bergen Engines said: “The new Rolls-Royce Bergen gas engines are designed for different operating modes and can be used to generate base-load, peak power or operate in combined cycles. The engines are well suited for remote locations and have excellent capability to meet quick and frequent load changes.”
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INDEPENDENT POWER ASIA
1400 MW GTCC PP TO BE BUILT IN THAILAND BY MITSUBISHI Mitsubishi Power, Ltd., a subsidiary of the Mitsubishi Heavy Industries has signed a full turnkey contract for the engineering, procurement and construction of a 1400 MW power plant with Hin Kong Power Company Ltd, an independent power producer (IPP) in Thailand. Mitsubishi Power will provide two M701JAC gas turbines for the natural gasfired turbine combined cycle (GTCC) facility. The contract includes a 25-year Long Term Service Agreement (LTSA) for the project. Under this agreement, Mitsubishi Power will provide maintenance on the power plant’s gas turbines to help ensure reliable operations. Commercial operations will begin in March 2024 and January 2025. The GTCC facility will be built approximately 100 km west of Bangkok. The owner, Hin Kong Power Company, is a special purpose company (SPC) jointly established by RATCH Group Public Company Lted and Gulf Energy Development Public
Company Ltd, two major IPPs in Thailand. Power generated from the plant will be sold to the Electricity Generating Authority of Thailand. GTCC power plant is generally regarded as the cleanest and highest efficiency power generation alternative among systems that use fossil fuels. Compared to conventional coal-fired thermal power plants, carbon dioxide emissions can be reduced by 70%, providing an annual reduction of 7 million tonnes from 1400 MW of generating capacity. In january 2020 M701JAC gas turbines were supplied to two Thai gas-fired 2650MW combined cycle IPP stations under development on the outskirts of Bangkok.
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NEWS
NOVEMBER 2020
IN BRIEF A NEW 150MW SIMPLE CYCLE POWER PLANT FOR RANGPUR, BANGLADESH Siemens Energy has won the contract to supply components for a new 150MW simple cycle power plant to be built in Rangpur, in northern Bangladesh. The components package includes one SGT5-2000E gas turbine, one SGen5-100A-2P generator and a long-term service agreement. This new plant is intended to shape a significant part of the country’s utility expansion in power generation, and towards a more visible higher efficiency and improved fuel usage.
JAPAN WILL BUILD 22 COAL POWER PLANTS DESPITE OPPOSITION Japan now plans to build as many as 22 new coal-burning power plants - one of the dirtiest sources of electricity - at 17 different sites in the next five years, just at a time when the world needs to slash carbon-dioxide emissions to fight global warming. Together the 22 power plants would emit almost as much carbon-dioxide annually as all the passenger cars sold each year in the US. Japan relies on coal for more than a third of its power generation needs. While older coal plants will start retiring, eventually reducing overall coal dependency, the country still expects to meet more than a quarter of its electricity needs from coal in 2030. ““The era of coal is ending, but for Japan, it’s proving very difficult to give up an energy source that it has relied on for so long,” comments Yukari Takamura, an expert in climate policy.
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INDEPENDENT POWER ASIA
NEW 16MW GAS PLANT NEARS COMPLETION IN MYANMAR Cummins Inc. has installed Cummins QSV91G lean-burn gas generators at a new 16MW power plant to provide continuous, reliable power to the city and region of Dawei in Myanmar. After the growing trade hub and tourism destination in the south of the country was increasingly challenged by inadequate grid infrastructure, the Myanmar government awarded energy provider, Petro & Trans Co, the project to install a 16MW gas-powered power plant. To make the project a reality, Petro & Trans Co selected Cummins DKSH Myanmar (CDM), a Cummins local distributor partner, to support it with the development and execution of the project. Despite the tight project schedules, CDM supplied eight Cummins 2000kW QSV91G lean burn gas generators, as well as providing ongoing support throughout the duration of the project - from the equipment deployment right up to the installation phase in Myamar. To complete the generators’ installation, standard controls were embedded within each generator model to support with monitoring the generators’ performance. Additionally, CDM provided support for the design, installation and commissioning of all Balance of Plant (BoP) items, such as radiators, gas trains and exhaust silencers, to ensure the gas generators maintain a reliable performance no matter the site’s weather conditions. Sanjay Wele, Cummins Business Manager-Gas, said: “Our Cummins QSV91G gas generators will ensure that Dawei City and the wider region has access to continuous and reliable power - despite the challenge of high ambient altitude. “We’re proud to have worked so closely with P&T on this landmark project and we look forward to seeing the power plant deliver reliable electricity to this thriving region.” The 16MW power plant was built in two phases with the plant build and installation phase starting in January 2020 and the first 8MW being installed within five months. The additional 8MW are scheduled for commissioning in 2020.
1100 KVA DIESEL GENERATOR SET MANUFACTURED IN INDIA FOR STATIONARY STANDBY APPLICATIONS Caterpillar Inc. has announced the introduction of the Cat® DE1100 GC diesel generator set. Designed exclusively for use in stationary standby applications and engineered to Caterpillar’s high standards for quality and productivity, the DE1100 GC offers excellent customer value by delivering performance and reliability with best-inclass support from the Cat dealer network. Configured with options for stationary standby 50 Hz applications, the DE1100 GC conforms to ISO 8528-5 G3 transient response and load acceptance requirements, while the Cat control panel ensures reliable generator set operation, providing extensive information regarding power output and engine operation. The DE1100 GC is designed for the Asia Pacific market - among others - and it will be manufactured at theCaterpillar facility in
Hosur, India. Producing the product closer to customer markets can significantly reduce the lead time to job site by up to 39%. The Cat DE1100 GC generator set includes Caterpillar’s customary two-year warranty for standby power solutions, with options available for flexible extended service contracts.
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TCG
2032 High reliability. Low operating costs.
MWM gas generator sets of the TCG 2032 series are perfectly tailored to the challenges of a dynamic market environment. In the power range of 3,000 – 4,500 kWel reliability, flexibility, efficiency and environmental compatibility are ensured along with low life-cycle costs. In this way, they meet the high requirements of a wide range of applications and are highly profitable. www.mwm.net
POWER TRANSMISSION
NOVEMBER 2020
CHINA’S STATE GRID TO INTEGRATE LARGE-SCALE RENEWABLES
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BB Power Grid’s HVDC transformer and high-voltage technology an essential part of integrating large-scale renewables in China. ABB’s Power Grids business is supplying several major orders for advanced HVDC converter transformers and high-voltage equipment for three 800 kilovolt (kV), ultrahigh-voltage direct current (UHVDC) transmission links, owned by the State Grid Corporation of China (SGCC), in China. The links will help in integrating hydro, wind and solar power generation, whilst reducing CO2 emissions. “We are glad to see a recovery in demand for reliable and clean energy, as the Chinese economy gradually returns to normality following the COVID-19 outbreak. Ultrahigh-voltage electricity transmission, enabled by pioneering technologies from ABB, is a critical element of China’s vision of stronger and greener grids. We have full confidence in the resilience of China’s economy.” said Claudio Facchin, President of ABB’s Power Grids business. World’s most powerful transmission links The transmission links will be among the world’s most powerful. Each link will transport up to 8,000 megawatts (MW) of electricity – individually enough power to meet the needs of around eight million people in China(1). The 1,700-kilometrE Yazhong-Nanchang link is part of China’s West-East Electricity Transmission initiative. It helps the hydro-resource-rich Sichuan Province, Southwest China, to transmit green energy to the load centrE of Jiangxi Province in East China. Once complete, the project is expected to reduce approximately 16 million tons of coal consumption and 40 million tons of CO2 every year. The 1,100-kilometre Shaanbei-Wuhan link marks an important step for SGCC in developing global UHVDC systems standards. And the 1,500-kilometre Qinghai-Henan project is a UHV channel specially designed for the transmission of clean energy, including solar and wind power. As part of the solution, ABB Power Grids will provide key technologies to ensure and safeguard the reliable, efficient, and smooth transmission and distribution of electricity over these long-distance links – resulting in minimal losses and optimal power quality. Key technologies include HVDC converter transformers, components such as wall bushings, capacitor banks, dead tank breakers and
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INDEPENDENT POWER ASIA
HVDC switches. ABB’s Power Grids business was a key technology provider to SGCC’s first UHVDC transmission link. The 6,400 MW, 2,000 kilometre-long Xiangjiaba-Shanghai link, provides hydroelectric power from South West China to the bustling city of Shanghai. Since then, ABB Power Grids has been constantly pushing the boundaries of long-distance transmission technology, partnering with SGCC in several key projects, thus contributing to energy security, as well as economic support and social development in China. UHVDC technology is key to interconnect the electrical grids of regions, countries and continents to efficiently transport clean power in large volumes over long distances. UHVDC utilises direct current (DC) electricity at
extremely high voltages that can have as much as 40 percent lower losses than an equivalent conventional AC (alternating current) system. This means far less energy is wasted, more power reaches end users and carbon-dioxide (CO2) emissions are reduced overall. Once operational, the Qinghai-Henan project is estimated to reduce CO2 emissions by approximately 30 million tons per year – equivalent to over six million passenger cars being taken off the road. SGCC is the largest utility company in the world with 1.1 billion customers and over 1 million kilometres of transmission lines. More information - visit: www.abb.com
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TRIGENERATION
NOVEMBER 2020
TCG 2020 V16 GAS ENGINE PRODUCES POWER AND COOLING ENERGY FOR ONE OF THE WORLD’S LARGEST FRUIT AND VEGETABLE PRODUCERS
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he Spanish food enterprise La Unión Corp. sells fruits and vegetables and is considered to be the world’s leading supplier of cucumbers. The company has 26 operating centres and about 1,500 employees. Every year, La Unión Corp. supplies the markets with more than 400,000 t of fruit and vegetable products, about 70 percent of which are distributed to the European markets. This year, the company’s trigeneration (power, heat, cold) plant was upgraded with a stronger MWM TCG 2020 V16 gas engine in order optimise the cooling processes for higher capacities and to cut energy costs. Previous MWM TCG 2020 Gas Engine in Use Since 2012 Back in 2012, La Unión Corp. implemented an MWM trigeneration solution with an absorption chiller in order to cool the stored products effectively. The MWM TCG 2020 V16 gas engine installed for this purpose produced about 1,500 kW of power, and the ammonia absorption chiller generated 820 kW of cold at -3°C. The generated cold was transferred to the connected cooling chambers for cooling purposes. The absorption chiller, whose heat demand was covered by the heat generated by the engine exhaust gas, cooled a glycol/ water mixture to -3°C. In this way, the combined engine absorption chiller produced 820 kW of cold throughout most of the year. Of the electrical energy generated by the MWM gas engine, about 12 GWh of power were exported to the public grid every year, an amount sufficient to cover the power consumption of about 12,000 people. Even More Performance with New MWM TCG 2020 V16 Gas Engine In view of the significant energy savings already achieved with the MWM trigeneration system installed back in 2012, La Unión decided to modernise the plant with another MWM gas engine. After some 70,000 operating hours, the old engine was replaced with a powerful MWM TCG 2020 V16 gas engine, has an electrical efficiency of 43.2 percent and supplies 1,543 kW of heat energy to the ammonia absorption chiller. The total efficiency of the gas engine is about 87.6 per cent. The new engine has optimised the temperature of the charge air cooling circuit, thereby improving the performance of the gas engine during the summer months and increasing the plant’s yearly electrical energy production.
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INDEPENDENT POWER ASIA
CHP Plant Ready to Use in Only Two Weeks To minimise the downtime of the plant, the MWM TCG 2020 V16 gas engine was delivered and commissioned within only two weeks. The trigeneration plant with its new engine went live on October 9, 2020, reliably supplying La Unión Corp. with power and cold for product cooling purposes. Cogeneration and Trigeneration Enable Energy Savings Compared to the separate generation of electrical energy and heat, cogeneration and trigeneration plants make much better use of the primary energy. MWM cogeneration power plants (CHP plants) enable economically and ecologically efficient energy generation. The plant transforms the employed energy into electrical energy and heat right on site. The resulting exhaust heat can be reused directly and is not lost. Viable fuels include natural gas, biogas, mine gas, or other gases. The power generated by the
cogeneration power plant can be consumed on site or be fed into the public grid for a feed-in tariff. The MWM gas engines of the TCG 2020 series are perfectly geared to the challenges of a dynamic market environment. The generator sets in the output range of 1,000 – 2,000 kWel meet the high requirements of a broad range of applications and guarantee efficiency, reliability, flexibility and environmental sustainability, together with low lifecycle costs and high profitability. For more information please visit: www.mwm.net
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GENSETS
NOVEMBER 2020
NEW AND CONTAINERISED - THE 1MWE TWINGEN GQW1400V GENSET
T
he GQW1400V Twingen is PRAMAC’s brand new power product, conceived for the Mobile/Rental market and designed to provide flexibility and efficiency. The machine features two gensets fitting into a 30ft high-cube container, engineered to achieve an attested noise level of only 57dB(A)@7m, reports IPA. Given its containerised and modular design, Twingen represents the ideal solution for many temporary applications, and guarantees to meet the varying power demands of the user. The TWINGEN offers better performances and lower fuel consumption in comparison to a single genset of 1MWe Prime. This is achieved through the ability to manage the load better with two gensets working in sync, having the ability to run the gensets independently or in parallel, says the manufacturer. The TWINGEN package from PRAMAC consists of a 30-foot soundproof and weatherproof high-cube container which has uncompromised service and maintenance access.
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INDEPENDENT POWER ASIA
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THE TWINGEN OFFERS BETTER PERFORMANCES AND LOWER FUEL CONSUMPTION IN COMPARISON TO A SINGLE GENSET OF 1MWE PRIME. THIS IS ACHIEVED THROUGH THE ABILITY TO MANAGE THE LOAD BETTER WITH TWO GENSETS WORKING IN SYNC.” The two gensets deployed inside the container are cooled by two remote radiators which utilise 4 electric fans placed in a special compartment and a further fan located within the engine compartment, fan speed is controlled by an inverter. The TWINGENS fuel system consists of a double wall metal fuel tank which serves both gensets. Quick-release fuel couplings allow for the simple connection of an external fuel supply and a double leak detection systems offers a high degree of protection. There is a command and control panel - a single automatic synchronising control panel to run one or
both gensets according to power demand. The 30-foot High Cube is said to offer high structural resistance, ISO lifting hooks (CSC Safety Approval), double seal gaskets, a roof access ladder & roof security anchorage points and an internal canopy lighting system with manual switch for easy operation, even with low ambient light conditions. The Twingen is equipped with a special lifting system. The special lifting system with hydraulic pistons guarantees ease and safety of transport with no need for a Hiab lorry or onsite crane to off load and position the unit, says Pramac. Volvo manufactures the Model TWD1643GE water-cooled engine which also features 6 in-line cylinders (displacement 16120 cm³). Aspiration is turbocharged; there is an electric fan and an electronic Speed governor. Lube oil consumption @ PRP (max) is at 0.1%. Coolant capacity is 60L and the electric circuit is 24V. The engine and block features an optimised cast iron cylinder block with optimum distribution of forces and wet, replaceable cylinder liners. The design offers crankshaft induction hardened bearing surfaces and fillets with seven bearings for moderate load on main and high-end bearings. Keystone top compression rings provide long service life, as do the replaceable valve guides and valve seats and tapered connecting rods for an increased piston lifetime. There is an overhead camshaft and four valves per cylinder, hot parts protection with metal grids and heavy-duty air filters. The fuel system offers electronic unit injectors and a fuel prefilter with water separator and watering-fuel indicator / alarm, a fine fuel filter with manual feed pump and fuel pressure switch, plus a lubrication system. The design provides a full flow oil cooler, a full flow disposable spin-on oil filter, for extra high filtration, and a gear type lubricating oil pump, gear driven by the transmission. The integrated cooling system provides efficient cooling with accurate coolant control through a water distribution duct in the cylinder block. Also provided is a reliable sleeve thermostat with minimum pressure drop and a belt-driven coolant pump with high degree of efficiency. www.pramac.com
www.gmp.uk.com
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POWER PLANT
NOVEMBER 2020
POWER BLOCK INSTALLATION AND PLANT CONSTRUCTION WORK AT THE GIMPO CHP PLANT, SOUTH KOREA
D
oosan has signed dual contracts with Korea Western Power Co. for the power block installation and plant construction work required at the Gimpo CHP plant. Doosan won these contracts following the gas turbine supplier agreement that it signed with Korea Western Power Co. in December 2019. The power block contract is valued at about 230 billion won and involves Doosan supplying and installing the steam turbine, generator and heat recovery steam generator (HRSG). The contract for the plant construction work, which includes installing the transmission lines and industrial water treatment systems for the power plant, is valued at approximately 130 billion won. The Gimpo CHP plant, which is located in the Gyeonggi province, is scheduled to be built by the first half of 2023.
“
“DOOSAN WILL BE SUPPLYING AND INSTALLING THE STEAM TURBINE, GENERATOR AND HRSG. THE CONTRACT FOR THE PLANT INCLUDES TRANSMISSION LINES.”
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INDEPENDENT POWER ASIA
The 500 MW LNG-based plant will be supplying district heat and electricity in the region. Doosan will be deploying Korea’s first locally manufactured gas turbine, which it started developing in 2013 as a government-backed project and for which final assembly was completed last September. “According to the recently released 9th Basic Plan for Electricity Supply & Demand, … Korea’s natural gas market will grow explosively from the current market size of 41.3 GW in 2020 to 60.6 GW by 2034” commented Hongook Park, CEO of Doosan Heavy’s Power Service Business Group. He added, “Given that a huge market growth is expected, we aim to further promote our company’s growth by leveraging our industryacademia-research alliances to effectively develop a Korean standard gas-fired combined cycle power plant model.” The Gimpo CHP Plant has a plan to use gas turbines to initially produce electricity and then the waste heat will be used to activate the steam turbine to once more produce and supply electricity and thermal energy. The power block at Gimpo refers to the electricity generating section and is comprised of the power plant’s main components, such as the turbine and generator. The power block contract that Doosan won is valued at about 230 billion won and involves Doosan supplying and installing the components which form a power block, such as the steam turbine, generator and heat recovery steam generator (HRSG). The contract for the plant construction work, which involves installing components like the transmission lines and industrial water treatment systems for the power plant, is valued at approximately 130 billion won.
The 500MW LNG-based power plant will be supplying heat and electricity to the nearby regions. Doosan is a member of the “Task Force for Development of Korean Standard Gas-Fired Combined Cycle Power Plant,” which was launched by the Ministry of Trade, Industry and Energy in February 2020. The task force is composed of players from both the private and public sectors, including companies from Korea’s gas turbine industry, such as Sung-il Turbine P&S and Korea LostWax, Korea’s high-ranking universities, such as Seoul National University, Yonsei University and Inha University, five companies from the power generation sector, as well as the Korea Institute of Energy Technology Evaluation and Planning (KETEP). As the task force aims at innovating the LNG-based power generation sector, the task force is working on developing a standard LNG-fired combined cycle power plant, devising plans to ensure the supply of such power facilities and seeking to promote the growth of Korea’s gas turbine industry. www.doosan.com
www.gmp.uk.com
GENSETS
NOVEMBER 2020
WORLD’S HIGHEST CLASS EFFICIENCY HAS BEEN ACHIEVED FOR KHI & PBST GAS ENGINES
“
THE NEW KG-18-T GAS ENGINE RAISES HIGH EXPECTATIONS. THIS ENGINE IS THE LATEST AND MOST-EFFICIENT ADDITION TO THE ‘KAWASAKI GREEN GAS ENGINE’ SERIES. “
K
awasaki Heavy Industries’ (KHI) new type KG-18-T gas engine, equipped with German air management specialist, PBST’s two-stage-turbocharging ‘ECOCHARGE’ system, has recorded the world’s highest class power generation efficiency with Japanese standard city gas. Designed for power generation applications, the KG-18-T’s ECOCHARGE solution consists of 1 × PBST TCX23 and 1 × PBST TCA66 turbochargers. According to the manufacturer the technology has improved ipower-generation efficiency by 1.5% compared to the previous generation of the engine, delivering a world-best class 51.0% in its output class. KHI notes that the engine and turbochargers have passed a durability test and are now ready for serial production. The turbochargers themselves were inspected after the durability test with KHI reporting their condition as very good. The ECOCHARGE principle optimally combines a low-pressure turbocharger – usually a TCT, TCA or TCR – with a high-pressure stage for which the newly-developed TCX series was designed. PBST ECOCHARGE offers increased turbocharging efficiencies, in comparison to single-stage turbochargers. This is mainly related to the intercooler – positioned between the low-pressure-stage and highpressure-stage turbochargers – which
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INDEPENDENT POWER ASIA
significantly reduces the energy required to compress the intake air to high pressure. The resulting, higher efficiencies have an instantaneous impact on the engine by advantageously increasing the air pressure over the cylinder during the scavenging process. Additionally, greater charged pressure by two-stage turbochargers foster the reduction of NOx emissions through the Miller cycle, while the improved scavenging efficiencies provided by the ECOCHARGE system make the engine more fuel efficient. The higher power-density generated by the ECOCHARGE technology presents the opportunity to choose between significantly boosting an engine’s power output or reducing engine size, all the while maintaining engine performance. The ECOCHARGE system’s increased efficiencies and higher cylinder rating facilitate the use of a smaller engine with the same power output of a larger unit that employs traditional, single-stage turbocharging. KHI’s senior manager four-stroke engine department and head of design department, Mr. Sakai, said: “The new KG-18-T gas engine raises high expectations. This engine is the latest and most-efficient addition to the ‘Kawasaki Green Gas Engine’ series. “The design is based on its previous models KG-18-V and KG-18. The newly -developed two-stage turbocharging system improves power generation efficiency significantly resulting in
significantly resulting in the world’s highest class efficiency in this output range. Consequently, we are keenly awaiting to continue this engine’s success story.” PBST’s vice president of sales & license turbochargers & exhaust-gas treatment, Ralph Klaunig, said: “Naturally we are very happy with this announcement since KHI is the very first Original Equipment Manufacturer in the medium speed segment to launch an engine with our two-stage turbocharging solution. “PBST is a market leader within two-stage turbocharging, with more than 35 million operating hours recorded from over 2,000 units, and it is very pleasing that we can now add the world’s most efficient gas engine to our reference list.” PBST has its roots in Gemany and the Czech Republic and has more than 85 years of experience in designing and manufacturing turbochargers and after treatment soultions. The company says it is committed to pushing the limits to create high performance technologies, such as two-stage turbocharging, the EGR blower and SCR reactors for all applications, in order to meet current and future challenges for its customers. Global after-sales services are provided by MAN PrimeServ. www.pbst.eu https://global.kawasaki.com
www.gmp.uk.com
LOAD BANKS
NOVEMBER 2020
CONTAINER PORTS, CRANES AND POWER STRUGGLES: OVERCOMING THE ISSUE OF REVERSE POWER
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THE MOST PRACTICAL SOLUTION FOR DEALING WITH HIGH LEVELS OF REGENERATIVE POWER IS TO PAIR THE GENERATOR WITH A CORRECTLY-RATED RESISTIVE LOAD BANK WHICH CAN EFFECTIVELY ABSORB AND DISSIPATE ANY EXCESS POWER.”
T
he last twelve months have seen ports throughout Asia increase their already dominant share of the global market, with Thailand, Vietnam and Indonesia likely to see an increase in trade resulting from a postCoronavirus move out of China. However, with market uncertainty prevalent across many industries in the post-pandemic world, many ports are opting to meet fluctuating demand by employing stand-alone power generators as a temporary measure. While this solution allows the port to increase crane capacity quickly, it comes with the downside of producing ‘regenerative power’. Paul Brickman from Crestchic Loadbanks explores the issue and how to avoid it. The container shipping industry is a fast-paced and competitive, with the speed of throughput ultimately impacting productivity and profitability for both the port and those reliant on its services. However, while ports throughout Asia are continuing to grow, power infrastructure can’t always increase in-line with requirements, and access to the grid is not always possible, making diesel generators a viable solution. A crucial piece of equipment in any busy port, cranes are used to load, haul and move heavy containers around the site. The constant movement and huge power requirements of these giant pieces of equipment mean that they produce
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rapidly changing load profiles on the local power supply network, from high demand, through low demand and often the unwelcome regenerative return-load effect. What is regenerative power? Generally, in crane applications, a variable frequency drive controls the motor by supplying it with energy, which then powers the crane to lift its load. When the crane lowers the load, the energy flow can reverse, going back through the motor and into the drive. In most grid-connected situations, this regenerative/reverse power will be absorbed by the grid without too many issues. However, when connected a stand-alone power source such as a generator, this reverse power can have a catastrophic effect on the asset. If this regenerative power is significant, the energy will return to the initial power source causing energy flow into the drive from the motor, motorising the alternator and making it turn in the opposite direction. This reversal can twist the shaft and cause alignment problems, causing irreversible damage to the generator alternator and engine and resulting in immediate and costly downtime. The reverse power can also make the voltage swell, resulting in an unstable system and potentially causing damage to other critical loads. The most practical solution for dealing with high levels of regenerative power is to pair the generator with
a correctly rated resistive load bank, which can effectively absorb and dissipate any excess power and avoid damage to both the generator and the equipment it is powering. The majority of load bank applications use a traditional electro-mechanical contactor - essentially a switching device that opens or closes a contact, allowing electricity to be switched fully on and fully off to meet the needs of the application. Regenerative load applications often have a constant in/out load - where speed and repeatability are key to efficient operation. Crestchic’s research and development team has developed a way to apply the technology in steps, providing faster switching times and a longer service life. As well as being less prone to wear, interference, “noise” or vibration from other devices this technology also offers improved voltage stability when the load is increased. The benefits of employing load bank technology in these applications extend beyond the issue of reverse power. Load banks also play a crucial role in overcoming the issue of light loading. By their very nature, cranes create a short and intense power draw as they lift their load, rather than a continuous and stable demand. This type of operation is far from ideal for a generator, making regular testing even more important. As with any other type of engine, a robust and proactive approach to testing and maintenance of gensets is crucial to their effective operation. Using a load bank to test electrics, lubrication, cooling and fuel systems at full load can minimise the likelihood of unscheduled breakdowns and outages. www.crestchicloadbanks.com
www.gmp.uk.com
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Service & Parts Centre All Makes of High Voltage Rewinds UK & International Field Support James Bexon
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Colchester Engineering Systems Unit 5 Chancers Farm,Farm, Fossetts Lane, Fordham, Unit 5 Chancers Fossetts Lane, Colchester, Essex, CO6 3NY, England Fordham, Colchester, Essex, CO6 3NY, Tel: fax 01206 240788 telEngland 01206 240788 01206 240099 email: colengsys@aol.com email:alan@colengsys.com www.colchesterengineering.com www.colchesterengineering.com
Specialists in Noise Control and Ventilation Systems for all types of applications
This includes digital & print copies. ITALIAN MANUFACTURER OF GENERATING SETS FROM 3kVA TO 2250kVA
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POWER WHEN YOU NEED IT
GF Genovate provide total power solutions for the UK & Ireland Energy markets. Diesel & Gas Generating Units. STOR/CM AND PEAKING CHP SCR SERVICE & WARRANTY 24/7/365
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IPU design and manufacture products and bespoke systems for critical diesel and gas engine applications:
ENGINE STARTING FUEL CONDITIONING ENGINE CONTROLS EMISSIONS SOLUTIONS PROTECTION RELAYS COMPONENTS
Tel: +44 (0)1942 932100 Email: sales@indps.co.uk Web: www.indps.co.uk
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W: WWW.IPU.CO.UK E: IPU@IPU.CO.UK T: +44 (0) 121 511 0400
Alternators Made in Italy
ENERGY WHERE NEEDED with INNOVATIVE SOLUTIONS COGENERATION
POWER PLANT
Viale del Lavoro, 30 - 37040 Arcole (VR) Italy T. +39 045 7639201 - F.+39 045 7639202 info@linzelectric.com - www.linzelectric.com
THERMAL
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classified unit 42x36mm.indd 1 20/04/2016 17:35:24
•
Diesel and Natural Gas Fueled Generators www.pramac.com
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Engine Pre-heater Systems • Diesel Fuel Heaters • Hydraulic Oil Heaters • Storage Tank Heaters • Customer Specials etc WWW.preheat.co.uk Tel: 020 (8) 848 1912 Sales@preheat.co.uk
Service and product provider, specialising in the power generation industry. Sole UK & Ireland distributor for CRE Technology. Expertise in land & marine applications including: G59/3 Relay Testing Single/Multi Running Systems Paralleling Systems to the Utility AVR Replacements Contact: Mr Alistair Hickey Tel: +44 (0) 161 818 8720 Email: sales@totalgeneratorsolutions.com www.totalgeneratorsolutions.com
CLASSIFIED
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R Schmitt Enertec GmbH
INNIO Jenbacher gas engines
Headquarters: A-6200 Jenbach (Austria) T +43 5244 600-0 F +43 5244 600-527 jenbacher.info@ge.com www.gejenbacher.com Manufacturer of gas driven generator sets and cogeneration systems in a power range from 0.25 to 3 MW. Model JMS 208 GS JMS 208 GS JMS 312 GS JMS 312 GS JMS 316 GS JMS 316 GS JMS 320 GS JMS 320 GS JMS 412 GS JMS 416 GS JMS 420 GS JMS 612 GS JMS 616 GS JMS 620 GS
Fuel
rpm
g g g g g g g g g g g g g g
1,500 1,800 1,500 1,800 1,500 1,800 1,500 1,800 1,500 1,500 1,500 1,500 1,500 1,500
Pel
Pth
330 335 625 633 834 848 1,063 1,060 844 1,131 1,415 1,820 2,433 3,041
358 406 731 808 988 1,079 1,190 1,313 892 1,194 1,492 1,792 2,399 3,020
Ratings natural gas standard, NOx ≤ 500 mg/ m3N. Dry exhaust gas; based on 5% O2. For engines with 1,200 rpm please contact GE Energy’s Jenbacher product team.
AMPS SECTION FG WILSON T: 028 9049 5000 F: 028 2826 1111 E: sales@fgwilson.com FG Wilson is a world leader in the manufacture of diesel and gas generator sets. With almost 50 years’ experience and a global network of 370 Dealers in more than 150 countries, we have developed a reputation for electric power expertise and ongoing technical support.
TAD1242GE TAD1640GE TAD1641GE TAD1642GE
352 393 433 485
409 462 509 570
Perkins Engines Company Limited
Peterborough PE1 5FQ Contact name:- Simon Gray Tel: +44 (0) 1733 583000 Email: gray_simon_j@perkins.com Perkins is one of the world’s leading suppliers of off-highway diesel and gas engines, offering dependable cost-effective power up to 2500 kVA in dieselor 1000 kWE prime in gas.
T: 01572 771160 F: 01572 771161 E: gen@meccalte.co.uk Alternators produced are from 1kVA to 3000kVA in synchronous form for all market sectors including marine, military, CHP, agriculture, rail, telecom and RTGC.
T: +44 (0)1908 210210 F: +44 (0)1908 329483 E: info@scania.com As a premium brand, Scania focuses on quality, performance and efficiency in order to deliver the best possible operating economy and the lowest whole life costs. The environment is also an important consideration for Scania, and as such the company has long been recognised as a leader in the field.
fuel
Freq.
M06-G/B T0D41 g 50 M06-G/B TID41 g 50 M06-G/B T2D41 g 50 M08-G/B TID41 g 50 M08-G/B T2D41 g 50 M12-G/B TID41 g 50 M12-G/B T2D41 g 50 M06-G/B T0D41 g 60 M06-G/B TID41 g 60 M06-G/B T2D41 g 60 M08-G/B TID41 g 60 M08-G/B T2D41 g 60 M12-G/B TID41 g 60 M12-G/B T2D41 g 60 RSE engines for LPG M06-PT0D41 g 50 M06-PTID41 g 50 M06-PT2D41 g 50 M08-PTID41 g 50 M08-PT2D41 g 50 M12-PTID41 g 50 M12-PT2D41 g 50 M06-PT0D41 g 60 M06-PTID41 g 60 M06-PT2D41 g 60 M08-PTID41 g 60 M08-PT2D41 g 60 M12-PTID41 g 60 M12-PT2D41 g 60 RSE engines for Woodgas M06-HT2D41 g 50 M08-HT2D41 g 50 M12-HT2D41 g 50 M06-HT2D41 g 60 M08-HT2D41 g 60 M12-HT2D41 g 60
Electric output 140 kW 200 kW 250 kW 260 kW 333 kW 400 kW 500 kW 150 kW 210 kW 250 kW 280 kW 333 kW 420 kW 500 kW 115 kW 173 kW 205 kW 233 kW 260 kW 350 kW 450 kW 130 kW 173 kW 205 kW 233 kW 260 kW 350kW 450 kW 122 kW 166 kW 250 kW 140 kW 180 kW 275 kW
405 08 Gothenburg, Sweden Tel +46 31 235460 SE-151 87 Sodertalje Sweden Tel +468553 81000 Fax +468553 898 12 E-mail engines@scania.com Web www.scania.com UK Contact – Mark Swindell Scania GB Ltd Tel +44 1908 329386 E-mail mark.swindell@scania.com Diesel & Gas engines for power generation Prime power 250kVA to 700kVA Stand by power 250kVA to 770kVA Engine range prime power 50hz & 60hz at (70% mean load factor)
Scania (Great Britain) Ltd
Model
Volvo Penta
SCANIA ENGINES MECC ALTE UK LTD
56743 Mendig, Germany T +49 2652 9351810 F +49 2652 9351822 info@rschmitt-enertec.com www.rschmitt-enertec.com Manufacturer of gas driven engines,generator sets and cogeneration systems in the range from 100 - 500 kW. RSE Engines for natural gas and biogas
Scania produce diesel and gas powered engines for various Industrial and Marine applications, superior quality and reliability, offering exceptionally low fuel consumption. All models are available to meet current emissions requirements, Scania engines are now available to meet both Tier 4F and EU Stage V. Alternative fuels Many of our engines can also operate on Bio-diesel conforming to EN14214 and HVO conforming to EN159540
Model Spec RPM kWm kVA TAD530GE Diesel 15002) 75 85 TAD531GE Diesel 15002) 88 100 TAD532GE Diesel 15002) 113 130 1) TAD550GE Diesel 15002) 76 86 TAD551GE1) Diesel 15002) 89 101 TAD730GE Diesel 15002) 113 130 TAD731GE Diesel 15002) 132 152 TAD732GE Diesel 15002) 162 186 TAD733GE Diesel 15002) 175 201 TAD734GE Diesel 15002) 213 245 TAD750GE1) Diesel 15002) 114 131 TAD751GE1) Diesel 15002) 13 152 TAD752GE1) Diesel 15002) 158 182 1) 2) TAD753GE Diesel 1500 173 199 TAD754GE1) Diesel 15002) 217 250 2) TAD940GE Diesel 1500 241 277 TAD941GE Diesel 15002) 280 326 TAD1341GE Diesel 15002) 271 315 TAD1342GE Diesel 15002) 303 352 TAD1343GE Diesel 15002) 325 378 TAD1344GE Diesel 15002) 354 412 TAD1345GE Diesel 15002) 388 451 1) TAD1351GE Diesel 15002) 279 324 1) TAD1352GE Diesel 15002) 314 365 1) TAD1354GE Diesel 15002) 328 381 1) TAD1355GE Diesel 15002) 355 413 TAD1640GE Diesel 15002) 392 461 TAD1641GE Diesel 15002) 430 505 TAD1642GE Diesel 15002) 503 591 TWD1643GE Diesel 15002) 536 630 TAD1650GE1) Diesel 15002) 393 462 TAD1651GE1) Diesel 15002) 430 505 Engines are also available for1800rpm/60Hz
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