FLUID POWER WORLD FEBRUARY 2020

Page 36

ENERGY EFFICIENCY Ron Marshall • Contributing Editor

Customer turns it off — and saves!

A

A leakage assessment was done at a small industrial shop and a constant flow was found in a CNC machine. This machine was very rarely used, perhaps running less than 1% of the time — however, it was consuming a significant flow for internal purging. While testing this flow, a duty cycle test was done using the compressor. During this test, the loaded versus running time was measured with a stopwatch to estimate flow. (The test is done both with and without the potential inappropriate use of compressed air to estimate the flow.) This helps estimate the flow of the usage — which might be called an “abandoned use,” because air flow is only necessary when the machine is actually operating. When this test was done, the CNC flow was determined to be only 3 cfm, enough to cost about $650 in energy per year. However, a strange thing was noticed. When this flow was “on,” the 10-hp compressor ran constantly loaded at about 10%, but running unloaded the remaining 90% of the time. When the flow was turned “off,” the compressor load reduced by about 8%, but the compressor turned fully off between load cycles. This compressor consumes about 3.5 kW while running unloaded — but produces no air and the estimated annual hours in this condition is about 7,845 in wasted operation. The loaded power consumption of this compressor cost about $745 per year, but the unloaded power consumption was costing $2,760 per year. Turning off the CNC flow saves significantly more than expected, due to the reduction in compressor run time. An automatic valve was installed on the machine to turn off the purge flow when there is no production. This is expected to save much more annually than the $300 cost of the shutoff valve. Even more savings would be gained if system storage was increased to slow down the compressor cycles. This is another example of what can be gained by simply turning off the flow of compressed air when not required!

This valve turns off a constant compressed air flow when not required.

FPW

34

FLUID POWER WORLD

2 • 2020

www.fluidpowerworld.com


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Articles inside

5 common failures of hydraulic cylinder seals

2min
page 139

February 2020 Products

4min
pages 134-137

Best practices for industrial compressed air systems

8min
pages 128-133

Multi-axis motion controllers synchronizes press operation

6min
pages 122-127

A disruptive sensor for intelligent hydraulics

9min
pages 116-121

What makes mobile hydraulics different from industrial?

6min
pages 110-115

Mobile hydraulics embraces electrics

10min
pages 72-78

Designing with seals used on mobile machinery

1min
pages 70-71

Designing with pressure transducers on mobile machinery

1min
page 69

Designing with hydraulic motors on mobile machinery Designing with hydraulic

2min
page 68

Designing with manifolds on mobile machinery

1min
page 67

Designing with hydraulic valves on mobile machinery

2min
page 66

Designing with HPUs for mobile machinery

2min
pages 64-65

Designing with hydraulic pumps on mobile machinery

2min
pages 62-63

Designing with  lters on mobile machinery

2min
pages 60-61

Designing with hydraulic hose on mobile machinery

1min
page 59

Designing with  ttings and couplings on mobile machinery

1min
page 58

Designing with hydraulic cylinders on mobile machinery

3min
pages 56-57

It's bigger and better in Vegas - always

7min
pages 38-55

Customer turns it off - and saves!

1min
pages 36-37

Registration open for NAHAD annual meeting in Bahamas

5min
pages 32-35

Learning hydraulics on a tablet

4min
pages 30-31

Hydraulic symbology 202 - stacked and piloted industrial valves

4min
pages 26-29

February 2020 Design Notes

14min
pages 16-25

February 2020 Association Watch

3min
pages 14-15

Embrace hydraulics, or call it quits

3min
pages 12-13

Fluid power manufacturers make the LEAP

2min
pages 6-7

Keep optimism through IFPE and beyond

1min
pages 4-5
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