INTERNSHIP PORTFOLIO

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ARCHITECTURAL PORTFOLIO

Prachi Shah

Selected Works Monsoon 2020 - Spring 2023

CEPT University, Ahmedabad

PRACHI SUKETU SHAH

D.O.B. 03 November, 2002

NATIONALITY: Indian

FROM: Mehsana, Gujarat

LANGUAGE: English Hindi Gujarati

I am a passionate architecture student, constantly exploring to enhance my work’s value and improve daily. Quality matters more to me than quantity, and I excel in collaborative teamwork. I eagerly embrace new skills and focus on mastering the functional and practical aspects of design through dedicated practice.

EDUCATION:

SECONDARY EDUCATION

2018 - GSEB

Sabari VIdya Vihar, Mehsana

HIGHER SECONDARY EDUCATION

2020 - GSEB

Sabari Vidya Vihar, Mehsana

BACHLOR IN ARCHITECTURE

2020 - CURRENTLY IN 4TH YEAR

CURRICULAM VITAE

CONTACT: +91 8238131102

EMAIL ID: shahprachi08@yahoo.com prachi.uar20210@cept.ac.in

CEPT ((Center for Environmental Planning and Technology) University, Ahmedabad

STUDIOS

Sem 1 CEPT FOUNDATION PROGRAM &2

Sem 3 Learning spaces beyond schooling

Sem 4 Abstraction Tectonic form

Sem 5 Design in Detail

Sem 6 Climate Responsive Architecture

Sem 7 Adaptive Re-use (Paris & Ahmedabad

SOFTWARE AND DIGITAL SKILLS:

Autodesk AutoCAD Sketchbook

Adobe Photoshop Illustrator

Indesign

After Effects (Basic)

3-D Modelling Rhinoceros + Grasshopper (Basic) Sketchup

Archicad

Rendering Lumion Enscape

INTERESTS:

Dancing

Sketching

Photography

Cooking

Travelling Badminton

MANUAL SKILLS:

Model Making

Drafting

Sketching

Rendering

Wood work

| CLIMATE RESPONSIVE ARCHITECTURE

MIRAGE: AN ARCHITECT’S RESIDENCE AND WORK SPACE

VINIMAY: A FARMER’S MARKET

| ABSTRACTION | TECTONICS | FORM

EXTRACTING KINETIC FORM: A VIEWING DECK

| DESIGN IN DETAIL 04 | LEARNING SPACES BEYOND SHCOOLING

VOID TO NATURE: A WARM LEARNING SPACE

| ONGOING SEMESTER: ADAPTIVE-RE USE

DATING FOR ALL: INTIMACY AND INCUBATION CENTRE

CONTENTS 01
03
06
02
05
| MISCELLANEOUS

CLIMATE RESPONSIVE ARCHITECTURE

MIRAGE: AN ARCHITECT’S RESIDENCE AND WORK SPACE

Studio 4 | Spring 2023

The studio dealt with observing and studying climatic conditions of a particular city and came with a build form to achieve comfort in the building. Data such as DBT (Dry bulb temperature), WBT, Humidity, Wind direction etc was studied along with theoretical understanding for different seasons was collected to compare it with the data collected during site visit. Vernacular architecture becomes very important when it comes to designing for comfort which embeds thousands of years of knowledge refined with time. It is even more fun to reinterpret the learnings from vernacular, to generate newer climate responsive forms, with latest materials and technologies. Feedback in terms of hands-on method of simulation as well as Early Design simulation of the design were key features of the Studio. The module helped to refine understanding about the built fabric in terms of performance and made them conscious of a performance oriented building design approach.

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THE NARRATIVE

The program is to design Residence and office for a family staying in Udaipur. Family includes a Wife who is an architect (with 5 interns working under her) and her husband is a photographer (who believes in making photograph with old techniques). They have 5 year old twins (one boy and a girl) and they live with their Grandparents.

The residence includes spaces such as Hall, dining, 4 Bedrooms and a recreational room whereas office comprises of spaces like pantry, studio, offices, walk-in exhibition area and a printing room.

FORM DEVELOPMENT

Floor plan at lvl. +7.5M

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Residence and office for a family staying in Udaipur. Family (with 5 interns working under her) and her husband in making photograph
old techniques). They Increasing area of Microclimate Use of curve geometry and compact form to reduce surface area Creating close form to reduce leakgae of cool air Closing mass from ground floor to achieve more compact form Taking mass out of geomtery for circulation and functions Final form where first floor mass also reduces keeping inside cool and circulation is in the center FORM DEVELOPMENT PLAN AT LVL. +13.5M RESIDENCE AND OFFICE WALL SECTION Use of curve geometry and compact form Increasing area of Microclimate Creating close form to reduce leakgae of cool air Closing mass from ground floor to achieve more compact form Taking mass out of geomtery for circulation and functions Final shape with reduced first floor mass to maintain interior cooling and centre circulation
with

BUILDING PHYSICS

The intention was to create a space which is contrast to the outer climate (hot and dry). The ground floor and first floor are connected via a microclimate which acts as a cool pocket and as a central core of the building. The privacy between the spaces is obtained with the help of level difference and nature. Light wells are provided at different levels for the light to get in basement.

In addition a kinetic wind catcher is provided which works on a pivot and hydraulic mechanism and open ups in the direction where wind is favourable which further helps to maintain the climate inside the building.

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Evaporative Cooling with the help of sprinkler at height Green courtyard to help creating cool air pocket Light well near the areas which are earth berm and receives less light Evaporative Cooling with the help of sprinkler at height

FLOOR PLAN AT LVL. +16.5M

Upper floor was designed in a manner such that no public place i.e office chaos bothers private areas. Areas such as bedroom and recreational rooms are arranged in a manner such that climatic advantage as well as view is not compromised. Every is provided with a stone jali wall which helps with the night perging as well as helping with privacy.

Cavity walls are created, and to make it light weight puter facade comprises of 100mm stone wall whereas from inside 300mm ACC block wall is created keeping 100mm gap between them. Also to avoid direct sunlight into the room, a walkway which acts as a chajja is created which further connects floor to terrace.

Adjustable Louvered Windows on the hotter directions to maintain the amount of sunglight getting in amount

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Stack vent to evacuate hot air from the space Earth berming by taking advantage of contoured land Stepped courtyard to decrease the amount of sunlight coming in

SECTION

The programmes were split across levels based on degree of privacy but connected volumetrically:

Basement (Public)

Ground floor (semi private)

First floor (Private)

It was necessary to provide light in the basement with the help of lightwells. Since build form was on a contoured land advantage of earth berming was primary and Along with that to reduce the amount of sun light in the microclimate stepped well is created to reduce the coverage. Terrace garden is provided keeping below spaces cooler and comfortable to live in.

RENDERED VIEWS

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WALL SECTION

The three-story building is essentially a load-bearing structure with a stepped base into the earth. In order to attain comfort and produce light-weight structures, many sorts of materials are utilised. In terms of visual and tactile perception, the surfaces are unbroken. In order to attain thermal comfort and contour weight, stone was chosen as the material. Terrazzo flooring was chosen so that the concept of continuity is evident due to the circular design.

PHYSICAL MODEL

DESIGN IN DETAIL

VINIMAY : A FARMER’S MARKET

Studio 3 | Monsoon 2022 Ahmedabad, Gujarat

This studio looks at design practise with the focus on concept execution and how a design is basically the sum of all of its little components. A meaningful architecture is created by these features interacting in unison. The goal is to use specifics to reveal an overarching purpose and clarity with logic in the design process. Additionally, it is crucial to consider how these concepts are developed in a building setting. Conceptualising also requires the ability to express an idea in a drawing. In order to comprehend the architectural ideas, materials, structure, features, and services of an existing building, we were initially requested to take it apart and record it.

Design program of the studio focuses on creating a farmer’s market- promoting a platform where farmers provide products to visitors along with other supporting functions. A parallel exercise to study details in ongoing sites and learn the execution aspects.

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GROUND FLOOR PLAN

Program was to create a farmer’s market to display their work. Stalls are created on the ground floor for esy access and are connected via a passage for easy circulation. First floor consists cafe whereas services are provided at ground floor.

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MONSOON 2022 DESIGN IN DETAIL AR 2036 NILANG PANDYA SHIRISHKUMAR PATEL JENY DAVE PRACHI SHAH UAR20210 SCALE 1:100 A-301 SECTIONS GROUND LVL. ± 0.0 MM STALL 5 STALL 4 STALL 3 STALL 2 STALL 1 W1 W6 W6 W6 W6 230 1125 450 2430 150 3030 540 1890 BRICK VAULT BRICK VAULT PLINTH LVL. ±1050 MM G.F BEAM BTM. ± 3630 MM G.F BEAM TOP ± 4080 MM BRICK VAULT TOP ± 5435 MM STALL 5 STALL 4 STALL 3 STALL 2 STALL 1 W1 W6 W6 W6 W6 BRICK VAULT BRICK VAULT OH TANK GROUND LVL. ± 0.0 MM PLINTH LVL. ±1050 MM G.F BEAM BTM. ± 3630 MM G.F BEAM TOP ± 4080 MM BRICK VAULT TOP ± 5435 MM F.F BEAM BTM. ± 6510 MM F.F BEAM TOP ± 6960 MM BRICK VAULT TOP ± 8755MM SECTION BB' SECTION CC' 150 2430 450 540 1890 2730 2430 4005 4005 2580 4445 W3 W3 W4 W4 W2 W7 W7 W7 BRICK VAULT BRICK VAULT 1865 3 3 4 5 6 4 5 6 3 4 5 6 7 8 9 9 DOOR SCHEDULE: NO. WIDTH x HEIGHT SILL LVL. LINTEL LVL. TOTAL D1 D2 D3 920 x 2430 950 x 2430 1200 x 2430-2430 2430 2430 1 2 1 NO. W7 3870 x 1650 2880 4450 3 4235 4005 2430 0 0.5 ENTRY UP UP UP MONSOON 2022 DESIGN IN DETAIL AR 2036 NILANG PANDYA SHIRISHKUMAR PATEL JENY DAVE N A-102 GROUND FLOOR PLAN 1265 460 1035 1438 2530 5000 1630 10060 3450 x 9600 mm 3680 1150 1553 1840 1553 230 2100 3450 3910 2100 16215 1 2 3 4 5 6 7 8 9 1 2 3 4 5 6 7 8 9 8A 8B F 3680 2330 5520 1840 8625 1725 3450 7475 115 115 115 115 EXHIBITION +750 mm lvl +00 mm lvl SECURITY CABIN +150 mm lvl W5 W5 D1 GENERAL NOTES: ALL DIMENSIONS ARE IN MM. UNLESS SPECIFIED ALL DIMENSIONS ARE FROM UNFINISHED SURFACES. DRAWINGS ARE TO BE READ, NOT MEASURED. IN CASE OF ANY AMBIGUITY PLEASE CONTACT ARCHITECT'S OFFICE. LEGEND: BRICK RCC PLANTERS COMPACTED EARTH BBCC WINDOW SCHEDULE: DOOR SCHEDULE: NO. WIDTH HEIGHT SILL LVL. LINTEL LVL. TOTAL D1 D2 D3 920 x 2430 950 x 2430 1200 x 2430-2430 2430 2430 1 2 1 NO. B A' B X Y' UP UP C' 3450 x 5290 mm STALL 5 STALL 6 3450 x 5290 mm 1265 460 2300 460 1265 1610 1035 2300 805 2300 1725 8855 5520 1840 8625 230 3910 2100 16215 1150 1250 460 1580 460 1250 230 MAIN ROAD 1035 1438 2100 115 NO. WIDTH HEIGHT SILL LVL. LINTEL LVL. TOTAL NO. W1 W2 W3 W4 W5 W6 W7 805 x 1890 920 x 1890 1150 x 1890 1150 x 1890 1370 x 1980 2992 x 1210 3870 x 1650 540 2430 540 540 1170 2880 2880 2430 2430 2430 2430 2430 4005 4450 2 1 2 2 2 10 3 SCALE 1:100 0 0.5 1.5 3 M UP ENTRY UP UP UP MONSOON 2022 DESIGN IN DETAIL AR 2036 NILANG PANDYA SHIRISHKUMAR PATEL JENY DAVE PRACHI SHAH UAR20210 A-102 GROUND FLOOR PLAN 1265 460 2300 4601265 1610 1035 2300 805 2300 1725 8855 5520 1840 8625 1035 1438 1438 805 1035 2530 5000 1630 10060 W3 W3 D2 D2 D3 W1 230 W1 RISER 160 TREAD: 300 3450 x 9600 mm PLINTH +1050 mm lvl 3680 1150 1553 1840 1553 230 230 1650 4330 1035 2415 5440 1035 1230 2100 1610 2070 3910 3450 3910 2100 16215 1 2 3 4 5 6 7 8 9 1 2 3 4 5 6 7 8 9 8A 8A 8B 8B A B C D E F A B C D E1 F D1 D1 E1 E 3680 2330 5520 1840 8625 1725 3450 7475 115 115 3680 2300 5230 2300 3680 115 115 EXHIBITION +750 mm lvl +00 mm lvl SECURITY CABIN +150 mm lvl W5 W5 D1 GENERAL NOTES: ALL DIMENSIONS ARE IN MM. UNLESS SPECIFIED ALL DIMENSIONS ARE FROM UNFINISHED SURFACES. DRAWINGS ARE TO BE READ, NOT MEASURED. IN CASE OF ANY AMBIGUITY PLEASE CONTACT ARCHITECT'S OFFICE. LEGEND: BRICK RCC PLANTERS COMPACTED EARTH BBCC WINDOW SCHEDULE: DOOR SCHEDULE: NO. WIDTH x HEIGHT D1 D2 D3 920 x 2430 950 x 2430 1200 2430 B B' A A' C B D X X' Y' Y UP UP C' 3450 x 5290 mm 3450 x 8395 mm STALL 5 STALL 4 STALL 6 +1200 mm lvl STALL 7 STALL 3 STALL 2 STALL 1 STALL 8 STALL 9 STALL 10 +1200 mm lvl +1200 mm lvl +1200 mm lvl 3450 x 5290 mm 3450 x 8395 mm 1265 460 2300 460 1265 1610 1035 2300 805 2300 1725 8855 5520 1840 8625 230 3910 2100 16215 1150 1250 460 1580 460 1250 805 230 1438 805 2300 805 1438 1035 1035 1610 1035 6785 3680 +00 mm lvl MAIN ROAD MAIN ROAD A C 1035 1438 1438 805 1035 2100 1610 1438 805 2300 805 1438 1035 1035 115 UP NO. WIDTH x HEIGHT W1 W2 W3 W4 W5 W6 W7 805 1890 920 1890 1150 x 1890 1150 x 1890 1370 x 1980 2992 1210 3870 1650 SCALE 1:100 0 0.5 TOILET +1200 mm lvl

Front view of a typical stall with niches acting as a storage space

SECTIONS

The structure is a load-bearing system that is one brick thick. The RCC slab that served as the spanning system also served as the gutter spouts. With the aid of height, vaults were employed as a roofing structure to distinguish rooms and impart a typical market feel. Considering the materials at hand, it was a fully exposed brick construction. To provide a visual link between the stalls, a courtyard is made between them. Niches created inside the stalls for natural light to penetrate in. An ongoing walkway was built to provide the appearance of a market. A separate building was constructed to house amenities including restrooms and a small cafe.

Flooring is used to differentiate the space between two stalls.

Concrete gutter is supported on the niches created

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SECTION AA' BRICK VAULT GROUND LVL. ± 0.0 MM PLINTH LVL. ±1050 MM G.F BEAM BTM. ± 3630 MM G.F BEAM TOP ± 4080 MM BRICK VAULT TOP ± 5435 MM STALL 6 STALL 5 W6 W6 W1 W1 150 2430 450 4005 450 1970 610 1355 3030 2580 GROUND LVL. ± 0.0 MM STALL 5 STALL 4 STALL 3 STALL 2 STALL 1 W1 W6 W6 W6 W6 230 1125 450 2430 150 3030 540 1890 BRICK VAULT BRICK VAULT PLINTH LVL. ±1050 MM G.F BEAM BTM. ± 3630 MM G.F BEAM TOP ± 4080 MM BRICK VAULT TOP ± 5435 MM W6 W6 W6 W6 BRICK VAULT BRICK VAULT OH TANK G.F BEAM BTM. ± 3630 MM G.F BEAM TOP ± 4080 MM BRICK VAULT TOP ± 5435 MM F.F BEAM BTM. ± 6510 MM F.F BEAM TOP ± 6960 MM BRICK VAULT TOP ± 8755MM SECTION BB' 450 540 1890 2430 4005 4005 4445 W4 W4 W2 W7 W7 W7 BRICK VAULT BRICK VAULT 1865 A A C C D D E E F F B B 3 3 4 5 6 4 5 6 3 4 5 6 7 8 9 4235 4005 GROUND LVL. ± 0.0 MM STALL 5 STALL 4 STALL 3 STALL 2 STALL 1 W1 W6 W6 W6 W6 230 1125 450 2430 150 3030 540 1890 BRICK VAULT BRICK VAULT PLINTH LVL. ±1050 MM G.F BEAM BTM. ± 3630 MM G.F BEAM TOP ± 4080 MM BRICK VAULT TOP ± 5435 MM STALL 5 STALL 4 STALL 3 STALL 2 STALL 1 W1 W6 W6 W6 W6 BRICK VAULT BRICK VAULT OH TANK GROUND LVL. ± 0.0 MM PLINTH LVL. ±1050 MM G.F BEAM BTM. ± 3630 MM G.F BEAM TOP ± 4080 MM BRICK VAULT TOP ± 5435 MM F.F BEAM BTM. ± 6510 MM F.F BEAM TOP ± 6960 MM BRICK VAULT TOP ± 8755MM SECTION BB' SECTION CC' 150 2430 450 540 1890 2730 2430 4005 4005 2580 4445 W3 W3 W4 W4 W2 W7 W7 W7 BRICK VAULT BRICK VAULT 1865 A C D E F B 3 3 4 5 6 4 5 6 3 3 4 5 6 4 5 6 7 7 8 8 9 9 4235 4005 2430
13 WALL SECTION

Exposed Brick- Flemish Bond Used For Walls

Exposed Rough Texture Concrete Used For Slab And Beams

Leatherfinish Grey Kota Stone Used-The Stalls And Corridor

Riverwash Brown Kota Stone Used -The Stalls And Corridor

Pink Rough Slate Used For Courtyard

China Mosaic Waterproofing

STAIRCASE DETAILS

Given that the cafe is on the first level, it only seemed practical to build a sturdy staricase. A delicate wooden railing is provided between the railing and the stair to bear the load from above in order to prevent it from becoming commercially unsuccessful. Treads made of Kota stone are utilised with consideration of public place.

15 4 5 6 7 PLINTH LVL. 1050MM SECTION BB' 8 1 2 3 4 5 6 7 8 10 11 12 13 14 15 16 17 18 9.5mm THK. AND 50mm WIDE BLACK MS PLATE 50 x 70 mm WOODEN RAILING Ø12mm BLACK MS STEEL BAR BALUSTER 25mm THK. GREY KOTA STONE FLOORING R.C.C RISER 15mm THK. BEDDING MORTAR 950 160 950 2730 120 120 D F F D E E GF BEAM BTM. +3630 MM BEAM TOP +4080 MM PLINTH LVL. +1050 MM GF LANDING +2640 MM FF LANDING +4080 MM FF BEAM BTM. +6510 MM FF BEAM TOP +6960 MM A B SECTION AA' 3873 2473 160 300 7 8 F F RISER 160 TREAD: 300 A' FF PLAN 3452 1485 230 1485 LANDING LEVEL- 2640mm 15 16 160 ANCHOR FASTENING Ø12mm OILPAINT BLACK MS STEEL BAR BALUSTER 120 x 120 x 6mm METAL PLATE 2MM X 3MM GROOVE 15mm THK. BEDDING MORTAR 25mm THK. GREY KOTA STONE FLOORING, 150mm RISER 25mm THK. GREY KOTA STONE FLOORING, 300mm TREAD R.C.C STAIRCASE DETAIL A SCALE 1:5 RISER 160 TREAD: 300 70 430 3452 1485 7 8 F F GF PLAN 230 A' 1485 LANDING LEVEL- 2550mm DETAIL B SCALE 1:5 70 50 15 40 120 6 12 50 x 70 x 15mm WOODEN RAILING 9.5mm THK. AND 40mm WIDE BLACK MS FLAT HANDRAIL SCREWED TO WOODEN RAILING Ø12mm BLACK MS STEEL BAR BALUSTER WELDED TO MS FLAT 120 x 120 x 6mm METAL PLATE WELDED TO MS STEEL BAR WOODEN RAILING JOINERY DETAIL SCALE 1:5 D E FF BEAM TOP +6960 MM E F RISER 160 TREAD: 300 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 UP 4330 75 145 300 1505 285 145 70 40 430 3452 1485 70 x 50mm WIDE WOODEN RAILING Ø12mm BLACK MS STEEL BAR BALUSTER B B' A 7 8 7 8 E F E F GF PLAN 300 1995 320 230 A' 290 1485 1395 430 1395 LANDING LEVEL- 2550mm SECTION BB' 8 7 2 3 7 8 10 11 12 13 14 15 16 17 18 9.5mm THK. AND 50mm WIDE BLACK MS PLATE 50 70 mm WOODEN RAILING Ø12mm BLACK MS STEEL BAR BALUSTER 25mm THK. GREY KOTA STONE FLOORING R.C.C RISER 15mm THK. BEDDING MORTAR 950 160 950 2730 120 120 D F F D E E GF BEAM BTM. +3630 MM BEAM TOP +4080 MM PLINTH LVL. +1050 MM GF LANDING +2640 MM FF LANDING +4080 MM FF BEAM BTM. +6510 MM FF BEAM TOP +6960 MM A B SECTION AA' 3873 2473 160 300 A' FF PLAN 3452 15 16 160 ANCHOR FASTENING Ø12mm OILPAINT BLACK MS STEEL BAR BALUSTER 120 x 120 6mm METAL PLATE 2MM X 3MM GROOVE 15mm THK. BEDDING MORTAR 25mm THK. GREY KOTA STONE FLOORING, 150mm RISER 25mm THK. GREY KOTA STONE FLOORING, 300mm TREAD R.C.C STAIRCASE DETAIL A SCALE 1:5 3452 8 GF PLAN A' 120 120 x 6mm METAL PLATE WELDED TO MS STEEL BAR METAL PLATE ANCHOR FASTENED TO CONCRETE STAIRCASE Ø12mm BLACK MS STEEL BAR BALUSTER WELDED TO MS FLAT Ø7mm METAL SCREW 9.5mm THK. AND 40mm WIDE BLACK MS FLAT HANDRAIL SCREWED TO WOODEN RAILING 50 70 15mm WOODEN RAILING DETAIL B SCALE 1:5 70 50 15 40 120 6 12 50 70 15mm WOODEN RAILING 9.5mm THK. AND 40mm WIDE BLACK MS FLAT HANDRAIL SCREWED TO WOODEN RAILING Ø12mm BLACK MS STEEL BAR BALUSTER WELDED TO MS FLAT 120 x 120 6mm METAL PLATE WELDED TO MS STEEL BAR WOODEN RAILING JOINERY DETAIL SCALE 1:5 MONSOON 2022 DESIGN IN DETAIL AR 2036 NILANG PANDYA SHIRISHKUMAR PATEL JENY DAVE PRACHI SHAH UAR20210 A-501 STAIRCASE DRAWINGS SCALE 1:20 SCALE 1:5 1 3 950 D F E PLINTH LVL. +1050 MM SECTION AA' 120 120 x 6mm METAL PLATE WELDED TO MS STEEL BAR DETAIL B SCALE 1:5 120 6 12 120 x 120 6mm METAL PLATE WELDED TO MS STEEL BAR WOODEN RAILING JOINERY DETAIL SCALE 1:5 PRACHI SHAH UAR20210 A-501 STAIRCASE DRAWINGS SCALE 1:20 SCALE 1:5 PLINTH LVL. 1050MM SECTION BB' 8 1 2 4 7 10 11 12 13 14 15 16 17 18 9.5mm THK. AND 50mm WIDE BLACK MS PLATE 50 70 mm WOODEN RAILING Ø12mm BLACK MS STEEL BAR BALUSTER 25mm THK. GREY KOTA STONE FLOORING R.C.C RISER 15mm THK. BEDDING MORTAR 950 160 950 2730 120 120 D F F D E E GF BEAM BTM. +3630 MM BEAM TOP +4080 MM PLINTH LVL. +1050 MM GF LANDING +2640 MM FF LANDING +4080 MM FF BEAM BTM. +6510 MM FF BEAM TOP +6960 MM B SECTION AA' 3873 2473 160 300 8 F F A' FF PLAN 3452 230 LANDING LEVEL- 2640mm 15 16 160 ANCHOR FASTENING Ø12mm OILPAINT BLACK MS STEEL BAR BALUSTER 120 120 x 6mm METAL PLATE 2MM X 3MM GROOVE 15mm THK. BEDDING MORTAR 25mm THK. GREY KOTA STONE FLOORING, 150mm RISER 25mm THK. GREY KOTA STONE FLOORING, 300mm TREAD R.C.C STAIRCASE DETAIL A SCALE 1:5 3452 7 8 F F GF PLAN 230 A' LANDING LEVEL- 2550mm DETAIL B SCALE 1:5 70 50 15 40 120 6 12 50 x 70 x 15mm WOODEN RAILING 9.5mm THK. AND 40mm WIDE BLACK MS FLAT HANDRAIL SCREWED TO WOODEN RAILING Ø12mm BLACK MS STEEL BAR BALUSTER WELDED TO MS FLAT 120 120 x 6mm METAL PLATE WELDED TO MS STEEL BAR WOODEN RAILING JOINERY DETAIL SCALE 1:5 1 2 3 6 7 8 10 11 12 13 14 15 16 17 18 9.5mm THK. AND 50mm WIDE BLACK MS PLATE Ø12mm BLACK MS STEEL BAR BALUSTER 25mm THK. GREY KOTA STONE FLOORING R.C.C RISER 15mm THK. BEDDING MORTAR 950 160 950 2730 120 120 D F E GF BEAM BTM. +3630 MM BEAM TOP +4080 MM PLINTH LVL. +1050 MM GF LANDING +2640 MM FF LANDING +4080 MM A B SECTION AA' 3873 2473 160 300 160 25mm THK. GREY KOTA STONE FLOORING, 300mm TREAD R.C.C STAIRCASE DETAIL A SCALE 1:5 DETAIL SCALE 70 50 15 40 120 6 12 50 70 x 15mm WOODEN RAILING 9.5mm THK. AND 40mm WIDE BLACK MS FLAT HANDRAIL SCREWED TO WOODEN RAILING Ø12mm BLACK MS STEEL BAR BALUSTER WELDED TO MS FLAT 120 x 120 6mm METAL PLATE WELDED TO MS STEEL BAR WOODEN RAILING JOINERY DETAIL SCALE 1:5

6 2990 X 1210 MM

WINDOW DETAILS

There are mainly two types of windows used: Openable hinged window and Pivot window both of them made out of wood.Hinged windows are mainly used in places where air circulation is needed. Places such as Bathroom and kitchen. At many places fixed windows are installed for natural light. In the vault, pivot windows have been put so that sellers may access them and open and close them as needed.

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PLAN OUT 2990 1210 SECTION PLAN WINDOW 6 2990 X 1210 MM FIXED GLASS WINDOW WITH PIVOT WINDOW TOTAL = 10 SCALE- 1:10 IN OUT OUT IN ELEVATION Y' Y Z OUT PLAN X OUT PLAN OUT PLAN OUT PLAN WINDOW 7 3870 X 1650 MM FIXED GLASS WINDOW WITH PIVOT WINDOW TOTAL = 3 3870 1650 IN OUT OUT IN SECTION PLAN ELEVATION 5MM THK. CLEAR GLASS 30 x 36 WOODEN BEADING PATTI 60 X 100 MM WOODEN WINDOW FRAME 230MM THK. BRICK WALL 10 MM DIA. MS PIVOT 65 X 35MM WOODEN SHUTTER FRAME 100 X 50 MM WOODEN WINDOW FRAME 5MM THK. CLEAR GLASS DETAIL Y SCALE 1:5 DETAIL Y' SCALE 1:5 30 20 100 35 65 3MM THK. GAP DETAIL Z WOODEN FRAME SCALE 1:2 6MM x 6MM GROOVE 33 20 IN OUT PLAN 230MM THK. BRICK WALL 15MM THK. CEMENT MORTAR 25MM THK. BLACK GRANITE POLISHED GRANITE 1.5MM THK. ALUMINIUM FRAME RUBBER GASKET 6MM THK. FROSTERED GLASS DETAIL X SCALE 1:5 10 X 10MM GAP 15MM THK. CEMENT MORTAR 25MM THK. BLACK GRANITE POLISHED GRANITE 1.5MM THK. ALUMINIUM FRAME RUBBER GASKET 6MM THK. FROSTERED GLASS 230MM THK. BRICK WALL DETAIL X' SCALE 1:5 63 40 20 MONSOON DESIGN AR NILANG SHIRISHKUMAR JENY PRACHI UAR20210 A-504 DOORSCALE SCALE 1890 805 ELEVATION SECTION PLAN WINDOW 1 805 X 1890 MM FIXED GLASS WITH WOODEN FRAME TOTAL = 2 IN OUT OUT IN 2990 1210 SECTION PLAN WINDOW 6 2990 X 1210 MM FIXED GLASS WINDOW WITH PIVOT WINDOW TOTAL = 10 SCALE- 1:10 IN OUT OUT IN ELEVATION Y' Y Z 1150 WINDOW 3 1150 X 1890 MM FIXED FROSTED GLASS WITH EXHAUST TOTAL = 2 1890 IN OUT OUT IN ELEVATION SECTION PLAN X X' 1890 WINDOW 4 1150 X 1890 MM OPENABLE HINGED WINDOW TOTAL = 2 IN OUT OUT IN ELEVATION SECTION PLAN WINDOW 2 920 X 1890 MM OPENABLE HINGED WINDOW TOTAL = 1 1890 920 IN OUT OUT IN ELEVATION SECTION PLAN WINDOW 5 1370 X 1890 MM OPENABLE HINGED WINDOW TOTAL = 1 1890 1454 IN OUT OUT IN ELEVATION SECTION PLAN WINDOW 7 3870 X 1650 MM FIXED GLASS WINDOW WITH PIVOT WINDOW TOTAL = 3 3870 1650 IN OUT OUT IN SECTION PLAN ELEVATION 5MM THK. CLEAR GLASS 30 x 36 WOODEN BEADING PATTI 60 X 100 MM 10 MM DIA. MS PIVOT 65 X 35MM WOODEN SHUTTER FRAME 100 X 50 MM 5MM THK. CLEAR GLASS 35 3MM THK. GAP OUT IN 950 2380 1000 IN OUT DOOR 1 950 X 2380 MM FLUSED DOOR WITH VINEYER TOTAL = 1 ELEVATION SECTION PLAN 1320 175 100 798 798 275 2380 STAINLESS STEEL LEVER HANDLE 15MM THK. CEMENT MORTAR 25MM THK. BLACK GRANITE POLISHED GRANITE 1.5MM THK. ALUMINIUM FRAME RUBBER GASKET 6MM THK. FROSTERED GLASS 10 X 10MM GAP 15MM THK. CEMENT MORTAR 25MM THK. BLACK GRANITE POLISHED GRANITE 1.5MM THK. ALUMINIUM FRAME RUBBER GASKET 6MM THK. FROSTERED GLASS 230MM THK. BRICK WALL 63 40 20 PLAN IN OUT 2990 1210 SECTION PLAN WINDOW 6 2990 X 1210 MM FIXED GLASS WINDOW WITH PIVOT WINDOW TOTAL = 10 SCALE- 1:10 IN OUT IN ELEVATION Y' Y Z IN OUT PLAN X IN OUT PLAN IN OUT PLAN IN OUT PLAN WINDOW 7 3870 X 1650 MM FIXED GLASS WINDOW WITH PIVOT WINDOW TOTAL = 3 3870 1650 IN OUT OUT IN SECTION PLAN ELEVATION 5MM THK. CLEAR GLASS 30 x 36 WOODEN BEADING PATTI 60 X 100 MM WOODEN WINDOW FRAME 230MM THK. BRICK WALL 10 MM DIA. MS PIVOT 65 X 35MM WOODEN SHUTTER FRAME 100 X 50 MM WOODEN WINDOW FRAME 5MM THK. CLEAR GLASS DETAIL Y SCALE 1:5 DETAIL Y' SCALE 1:5 30 20 100 35 65 DETAIL WOODEN SCALE 6MM x 6MM GROOVE 33 20 IN OUT ELEVATION SECTION PLAN 230MM THK. BRICK WALL 15MM THK. CEMENT MORTAR 25MM THK. BLACK GRANITE POLISHED GRANITE 1.5MM THK. ALUMINIUM FRAME RUBBER GASKET 6MM THK. FROSTERED GLASS DETAIL X SCALE 1:5 10 X 10MM GAP 15MM THK. CEMENT MORTAR 25MM THK. BLACK GRANITE POLISHED GRANITE 1.5MM THK. ALUMINIUM FRAME RUBBER GASKET 6MM THK. FROSTERED GLASS 230MM THK. BRICK WALL DETAIL X' SCALE 1:5 63 40 20 PLAN IN OUT 2990 1210 SECTION WINDOW 6 2990 X 1210 MM FIXED GLASS WINDOW WITH PIVOT WINDOW TOTAL = 10 SCALE- 1:10 IN OUT IN ELEVATION Y' Y Z IN OUT PLAN X IN OUT PLAN IN OUT PLAN IN OUT PLAN WINDOW 7 3870 X 1650 MM FIXED GLASS WINDOW WITH PIVOT WINDOW TOTAL = 3 3870 1650 IN OUT OUT IN SECTION PLAN ELEVATION 5MM THK. CLEAR GLASS x 36 WOODEN BEADING PATTI 60 X 100 MM WOODEN WINDOW FRAME 230MM THK. BRICK WALL 10 MM DIA. MS PIVOT 65 X 35MM WOODEN SHUTTER FRAME 100 X 50 MM WOODEN WINDOW FRAME 5MM THK. CLEAR GLASS DETAIL Y SCALE 1:5 DETAIL Y' SCALE 1:5 30 20 100 35 65 6MM x 6MM GROOVE 33 20 IN OUT ELEVATION SECTION PLAN 230MM THK. BRICK WALL 15MM THK. CEMENT MORTAR 25MM THK. BLACK GRANITE POLISHED GRANITE 1.5MM THK. ALUMINIUM FRAME RUBBER GASKET 6MM THK. FROSTERED GLASS DETAIL X SCALE 1:5 10 X 10MM GAP 15MM THK. CEMENT MORTAR 25MM THK. BLACK GRANITE POLISHED GRANITE 1.5MM THK. ALUMINIUM FRAME RUBBER GASKET 6MM THK. FROSTERED GLASS 230MM THK. BRICK WALL DETAIL X' SCALE 1:5 63 40 20 PLAN IN OUT 2990 1210 SECTION WINDOW
FIXED GLASS WINDOW WITH PIVOT WINDOW TOTAL = 10 SCALE- 1:10 IN OUT IN ELEVATION Y' Y Z IN OUT PLAN X IN OUT PLAN IN OUT PLAN IN OUT PLAN WINDOW 7 3870 X 1650 MM FIXED GLASS WINDOW WITH PIVOT WINDOW TOTAL = 3 3870 1650 IN OUT OUT IN SECTION PLAN ELEVATION 5MM THK. CLEAR GLASS 30 x 36 WOODEN BEADING PATTI 60 X 100 MM WOODEN WINDOW FRAME 230MM THK. BRICK WALL 10 MM DIA. MS PIVOT 65 X 35MM WOODEN SHUTTER FRAME 100 X 50 MM WOODEN WINDOW FRAME 5MM THK. CLEAR GLASS DETAIL Y SCALE 1:5 DETAIL Y' SCALE 1:5 30 100 35 65 6MM x 6MM GROOVE 33 20 IN OUT ELEVATION SECTION PLAN 230MM THK. BRICK WALL 15MM THK. CEMENT MORTAR 25MM THK. BLACK GRANITE POLISHED GRANITE 1.5MM THK. ALUMINIUM FRAME RUBBER GASKET 6MM THK. FROSTERED GLASS DETAIL X SCALE 1:5 10 X 10MM GAP 15MM THK. CEMENT MORTAR 25MM THK. BLACK GRANITE POLISHED GRANITE 1.5MM THK. ALUMINIUM FRAME RUBBER GASKET 6MM THK. FROSTERED GLASS 230MM THK. BRICK WALL DETAIL X' SCALE 1:5 63 40 20 PLAN IN OUT 2990 1210 WINDOW 6 2990 X 1210 MM FIXED GLASS WINDOW WITH PIVOT WINDOW TOTAL = 10 SCALE- 1:10 IN OUT ELEVATION Y' Y Z IN OUT PLAN X IN OUT PLAN IN OUT PLAN IN OUT PLAN WINDOW 7 3870 X 1650 MM FIXED GLASS WINDOW WITH PIVOT WINDOW TOTAL = 3 3870 1650 IN OUT OUT IN SECTION PLAN ELEVATION 5MM THK. CLEAR GLASS 30 x 36 WOODEN BEADING PATTI 60 X 100 MM WOODEN WINDOW FRAME 230MM THK. BRICK WALL 10 MM DIA. MS PIVOT 65 X 35MM WOODEN SHUTTER FRAME 100 X 50 MM WOODEN WINDOW FRAME 5MM THK. CLEAR GLASS DETAIL Y SCALE 1:5 DETAIL Y' SCALE 1:5 65 6MM x 6MM GROOVE 33 IN OUT ELEVATION SECTION PLAN 230MM THK. BRICK WALL 15MM THK. CEMENT MORTAR 25MM THK. BLACK GRANITE POLISHED GRANITE 1.5MM THK. ALUMINIUM FRAME RUBBER GASKET 6MM THK. FROSTERED GLASS DETAIL X SCALE 1:5 10 X 10MM GAP 15MM THK. CEMENT MORTAR 25MM THK. BLACK GRANITE POLISHED GRANITE 1.5MM THK. ALUMINIUM FRAME RUBBER GASKET 6MM THK. FROSTERED GLASS 230MM THK. BRICK WALL DETAIL X' SCALE 1:5 63 40 20 PLAN OUT 2990 1210 SECTION PLAN WINDOW 6 2990 X 1210 MM FIXED GLASS WINDOW WITH PIVOT WINDOW TOTAL = 10 SCALE- 1:10 IN OUT OUT IN ELEVATION Y' Y Z OUT PLAN OUT PLAN OUT PLAN OUT PLAN WINDOW 7 3870 X 1650 MM FIXED GLASS WINDOW WITH PIVOT WINDOW TOTAL = 3 3870 1650 IN OUT OUT IN SECTION PLAN ELEVATION 5MM THK. CLEAR GLASS 30 x 36 WOODEN BEADING PATTI 60 X 100 MM WOODEN WINDOW FRAME 230MM THK. BRICK WALL 10 MM DIA. MS PIVOT 65 X 35MM WOODEN SHUTTER FRAME 100 X 50 MM WOODEN WINDOW FRAME 5MM THK. CLEAR GLASS DETAIL Y SCALE 1:5 DETAIL Y' SCALE 1:5 30 20 100 35 65 3MM THK. GAP DETAIL Z WOODEN FRAME SCALE 1:2 6MM x 6MM GROOVE 33 20 OUT PLAN 230MM THK. BRICK WALL 15MM THK. CEMENT MORTAR 25MM THK. BLACK GRANITE POLISHED GRANITE 1.5MM THK. ALUMINIUM FRAME RUBBER GASKET 6MM THK. FROSTERED GLASS DETAIL X SCALE 1:5 10 X 10MM GAP 15MM THK. CEMENT MORTAR 25MM THK. BLACK GRANITE POLISHED GRANITE 1.5MM THK. ALUMINIUM FRAME RUBBER GASKET 6MM THK. FROSTERED GLASS 230MM THK. BRICK WALL DETAIL X' SCALE 1:5 63 40 20

Along with male-female washroom, Disabled washroom was also given. Instead of having single washroom accomodating all the neessary utilities, they were split so more than one user can use it at a time. An axo is made to to know all the materials and placement of the services and shafts.

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SERVICES

ABSTRACTION | TECTONICS | FORM

EXTRACTING KINETIC FORM : A VIEWING DECK

Studio 2 | Spring 2021 Lakhpat, Kutch

This project intends to investigate into ‘processes’ in architectural design activity. One of the important components in that is to get the process of transformation through different levels of interpretation. The process of transformation involves metamorphosis of the experiential data into architectural form and space with the help of abstraction. Students will be given an image/natural object as a starting point of the process, and through various stages of design process students will arrive at final architectural form that reflects the famous statement made by D’Arcy Thompson: Form is a Diagram of Forces.

First half of the studio, titled as ‘abstraction’, will involve developing abstract ideas from a ‘topic’ carefully selected by the student. The ‘topic’ could be an object, a process or an activity occurring in nature that has a fascinating play of forces. The ‘abstraction’ stage will come to conclusion with the introduction of site and program, wherein we had to suggest the architectural form for the program with the help of derived models from ‘abstraction’ stage.

The second half, titled as ‘tectonics’, will focus on developing structural system, construction materials, and technology appropriate for the architectural form derived at end of last stage.

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The butterfly is a swimming stroke that is performed on the chest with both arms moving symmetrically, accompanied by the butterfly kick (dolphin kick). A synchronous arm movement is combined with a synchronous leg kick in the butterfly method with the dolphin kick.

The wave-like body movement is also very significant in creating propulsion, as this is the key to easy synchronous over-water recovery and breathing. Mainly there are four movements that are observed:

1. Body displacement 2. Take-off movement

4. Turn and finish

3. Hand movement

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2D ABSTRACTION 3D ABSTRACTION
MOVEMENT PROCESS

OUTER FRAME M.S

EXPLOADED AXONOMETRIC

Viewing deck which is a purely dynamic construction, and hydraulics is used to regulate and direct its movements. It requires three hydraulics to close entirely. The major components are I-beams and M.S. box sections. Here, Exploaded Axo demonstrates how different components are related to one another and how their joineries are worked out. Additionally, it displays every pin joint and material employed in the kinetic structure.

SECONDARY BOX SECTION M.S FRAME 75*50MM

CONNECTOR

HYDRAULIC CYLINDER BOOM Ø100MM ROD Ø75MM

JOINERIES: 1 2

HYDRAULIC CYLINDER BOOM Ø100MM ROD Ø75MM

TAPERED BRACING M.S FRAME

BRACING PIPE CONNECTING MEMBERS Ø100MM

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CENTRI GLASS RAILING 10MM THK. BASE SHOE CORNER FOR SINGULAR RAILING 10MM THK. CENTRI GLASS 20MM THK. CONNECTOR SCREWS WITH PLATE 10MM THK. FRAME 75*50MM TAPERED PRIMARY BOX SECTION M.S FRAME 100*50MM PLATE 10MM THK. BASE SHOE CORNER JUNCTION RAILING 10MM THK. I-BEAM FLANGE 150MM*4MM THK.
0 1 3 5 M 2 1 5 3 4 6
I-BEAM WEB 300MM*4MM THK.
3

SECTIONAL ELEVATION

Mainly there are 3 viewing decks of different sizes (which is mirrored on the other side: refer roof plan and front elevation) as shown in sectional elevation. All of them are joined to the lakhpat fort wall. A kinetic ladder is also provided for one to reach the structure. Some of the main joineries are shown below to understand how the mechanism of hydraulic and materials of deck are worked out.

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6 4 5 4 5 6
ROOF PLAN

FRONT ELEVATION

Here, the primary goal was to create a structure that was modelled after the butterfly stroke. This diagram depicts the pattern created by the water as a swimmer reaches the water’s surface and uses his hand to push his body back under. The ascending and descending pattern in the schematic, roof plan, and front elevation are comparable to each other.

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LEARNING SPACES BEYOND SCHOOLING

VOID TO NATURE: A WARM LEARNING SPACE

Studio 1 | Monsoon 2021 De Pijp, Amsterdam

The constantly evolving educational system, deals with views on a desirable society, on specific learning methods and training of future teachers. An overlooked important aspect is the need to reflect on the Learning Environment, the spatial context in which education takes place. Unbind the Learning spaces, It can become a place to meet, for discoveries and learning in the neighbourhood.

The Studio focuses on learning spaces that are beyond Learning needs “multifunctional”, that have the potential to become the centre in the neighbourhood. Learning spaces would be designed for 5 to 15 years age group. The sites would be located in urban areas, dense neighbourhoods of two different geographical contexts and climates to learn climate response, construction technology, and material order of that particular zone.

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GROUND FLOOR PLAN

Ground floor is accessible to all making it a public space where auditorium and exhibition hall is provided along with canteen and services for them to access. Open space outside is assigned to students where park and football pitch is provided. All the trees on the site are preserved and placement of the building is considered according to that too.

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26 PLAN, SECTION AND WALL SECTION
27 EXPLOADED ISOMETRIC VIEW

ADAPTIVE RE-USE PARIS AND AHMEDABAD

DATING FOR ALL: INTIMACY AND INCUBATION CENTRE

On going semester | Monsoon 2023 Bagnolet, Paris

Following sheet represents the work of mid sem jury wherein how the existing building is adopted by using strategies such as subtraction, addition etc to accommodate the functions according to the program and along with that diagramatic representation of techniques used to achieve desire result.

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MISCELLANEOUS SKILLS

AQUIRED

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CASE STUDY PHYSICAL MODEL: BAMBOO SPORTS HALL, PANYADEN INTERNATIONAL SCHOOL- THAILAND

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ILLUSTRATIONS OF HENRI LABROUSTE WORKS

Following illustration shows the work of Henri Labrouste, a pioneering 19th-century French architect, crafted iconic works like the Bibliothèque Sainte-Geneviève and Bibliothèque Nationale in Paris. His architectural style embraced the innovative application of iron and glass, introducing spacious, light-filled interiors that exuded transparency and modernity.

Labrouste emphasized functional designs and structural honesty, diverging from ornate conventions, leaving a lasting imprint on architectural evolution. His incorporation of iron allowed for vast interior spaces, showcasing the potential of industrial materials and influencing subsequent architects in their pursuit of innovative

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DOCUMENTING THE PERCH

The Perch at Aalloa Hills is a weekend residence by JMA Design Collaborative, built keeping in mind the context of the site, with the three building blocks placed in the periphery of the flat land, without disturbing the existing landscape.

3MM THK. CORRUGATED SHEET

CLERESTORY WINDOW 100MM THK. MUD ROLL

B.B.CC WITH CHINA MOSAIC FINISH

25MM THK. STONE SLABS

50MM THK POLISHED STONE COPING 350MM THK. RANDOM RUBBLE STONE MASONRY

62MM THK. STONE LINTEL

150*75MM MS PIPE FRAMING FOR MANDANA STONE SLAB 24MM POLISHED STONE SILL

12MM THK. KOTA STONE

40MM THK. MORTAR

15MM THK. FIBRE CEMENT BOARD

12MM THK. KOTA STONE

6 MM THK. T ANGLE

170*90 MM M S BOX SECTION 240 MM THK. M.S TRUSS

HIGH DENSITY FOUNDATION PILE FOUNDATION

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CONSTRUCTION SITE VISIT

I visited an on going construction site to understand concrete as a material and the casting process of columns, stiarcases and slabs.The shuttering is modular in nature therefore the element sizes should correspond to the size of ply shuttering being used. Boilers, tie rods and ply are used for shuttering.

PORTRAIT SKETCHES

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EMAIL ID: shahprachi08@yahoo.com prachi.uar20210@cept.ac.in CONTACT: +91 8238131102

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