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Measured-flow arithmetic

Compressed-Air Leak Electricity Cost

Calculate reference volume, electrical energy and electricity cost from a measured leak flow and measured same-basis system specific energy. No hole-diameter orifice model is used.

Measured leak flowMeasured SECNo orifice estimate

Matched-basis gate: leak flow and SEC must use the same reference volume definition, system boundary and representative pressure/control regime. The active interval must represent when the leak is actually pressurized.

Leak electricity arithmetic

Electricity cost over supplied interval
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Leaked reference volume
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Associated electrical energy
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Electricity cost per active hour
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Vleak=Qleakt;   Eleak=VleakSEC;   C=Eleakp

Na stránkách US DOE compressed-air evaluation protocol describes measured/trended load profiles and separate leak-flow quantification. ISO 11011:2013 assesses the whole compressed-air system from energy input through supply, transmission and demand. ISO 1217:2009/Amd1:2016 covers displacement-compressor acceptance tests for volume flow and power; it does not validate an arbitrary leak-hole formula.

No orifice prediction: diameter alone is insufficient. Real gas mass flow requires geometry/Cd, absolute upstream and downstream pressure, gas temperature/properties and choked/subcritical regime, followed by an explicit reference-volume conversion. Use a calibrated flow method, leak-down test, bag method or validated model as appropriate.

The cost result includes electricity energy only. Demand charges, maintenance, lost production, repair and benefits from changing system pressure/control are outside this arithmetic.

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Measured leak-flow electricity arithmetic only; no orifice or total-cost estimate. Scientific review: July 2026.

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