Hydraulic Accumulator Usable Oil Volume
How much usable oil a gas-charged hydraulic accumulator delivers between two pressures.
Example
You enter
- Accumulator size V0 (gal) 1
- Gas precharge P0 (psig) 1500
- Minimum working pressure P1 (psig) 1600
- Maximum working pressure P2 (psig) 3000
- Gas process isothermal
You get
- Usable oil volume 0.4356 gal (100.6 in^3)
- Utilization (%) 43.6
Details, formula, and sources
By the gas law, dV = V0[(P0/P1)^(1/n) - (P0/P2)^(1/n)] with absolute pressures, n = 1 isothermal (slow) or 1.4 adiabatic (fast). A 1-gallon accumulator precharged to 1,500 psig, working 1,600-3,000 psig, gives 0.44 gal usable on a slow cycle (43.6% of the shell) but only 0.34 gal run fast, since the heated gas stores less. The precharge must sit at or below the minimum working pressure (a common rule is 0.9 P1); widen the band or precharge closer to the minimum for more. Temperature correction, real-gas effects, and response time are separate. A design aid; Machinery Handbook / NFPA and the accumulator maker govern.
P = P_gauge + 14.7; dV = V0[(P0/P1)^(1/n) - (P0/P2)^(1/n)]; n = 1 isothermal, 1.4 adiabatic. Precharge P0 <= min working P1.
The gas-charged hydraulic accumulator usable-volume relation with absolute pressures (Machinery's Handbook; NFPA fluid-power practice; Boyle's law, isothermal n = 1 / adiabatic n = 1.4), by name.
The accumulator gas-law relation is standard published fluid-power design; the accumulator size, precharge, and working pressures are the user's inputs.
Estimate. AHJ and licensed professional govern.
Field names used by the API: accumulator_size_gal, precharge_psig, min_pressure_psig, max_pressure_psig, gas_process, usable_volume_gal, utilization_pct
- Gas law dV = V0[(P0/P1)^(1/n) - (P0/P2)^(1/n)], absolute pressures, n = 1 or 1.4Boyle's law / fluid-power design
- Precharge P0 at or below the minimum working pressure (common rule 0.9 P1)accumulator practice
- Scope usable volume only; precharge temperature correction, real-gas, response time are separatescope of this tile