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Compressor Gas Power & Polytropic Screening Calculator

GPSA Sec. 13 / API 617 / ASME PTC 10 screening
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← All indexable specifications for this calculator· Current spec: Air 1.013→7 bar(a) · 1000 m³/h

Air 1.013→7 bar(a) · 1000 m³/h polytropic power summary

Pre-seeded geometry for this programmatic URL. Adjust inputs in the calculator to recalculate; primary selections update the clean path for sharing and indexing.

ParameterValue
Test gasAir

Engineering Reference & ASME Code Basis

1. Core Formula & Variable Definitions

GPSA Engineering Data Book — Section 13 Compressors and Expanders (polytropic head & power) · API Standard 617 — Axial and Centrifugal Compressors and Expander-compressors (Clause 4.1 & Annex E context) · ASME PTC 10 — Performance Test Codes on Compressors and Exhausters (acceptance context)

Pressure ratio: rp = P2 / P1

Polytropic exponent: (n−1)/n = (k−1)/(k·ηp)

Polytropic head: Hp = (Zavg·R·T1/M)·(n/(n−1))·[rp(n−1)/n − 1]

Gas power & T₂: Pgas = ·Hp/ηp  ·  T2 = T1·rp(n−1)/n

GPSA Engineering Data Book Sec. 13 · API 617 · ASME PTC 10 screening

Hero P_gas · T₂Head H_p polytropicη_p in (n−1)/nScreen API 617 T₂ / r_p

R = 8.314462618 kJ/(kmol·K). M in kg/kmol (= g/mol numeric). ρ₁ = P₁ M /(Z R T₁) with absolute suction pressure. Screening only — confirm OEM performance maps, multi-stage layout, and real-gas EOS.

  • r_p (Pressure ratio)P₂/P₁ absolute suction and discharge pressures.
  • (n−1)/n (Polytropic exponent factor)(k−1)/(k·η_p) with k = Cp/Cv and polytropic efficiency η_p.
  • H_p (Polytropic head)Specific polytropic work (kJ/kg or ft·lbf/lb) from GPSA-style relation.
  • P_gas (Gas power)ṁ·H_p/η_p (kW or hp). Mass flow from Q₁·ρ₁ at suction.
  • T₂ (Discharge temperature)T₁ · r_p^((n−1)/n) absolute temperatures.
  • Z_avg (Average compressibility)User/screening Z between suction and discharge (not a full EOS solve).

2. Screening Rules Matching This Calculator

GPSA polytropic head with (n−1)/n = (k−1)/(k η_p), gas power = ṁ H_p / η_p, and T₂ = T₁ r_p^((n−1)/n). OEM maps, PTC 10 tests, and full EOS Z are out of scope.

Default dutyNG 5→25 bar(a) · 5000 m³/h · η_p 75%

Hero ≈ 1902 kW · 219.6 °C with H_p ≈ 270.2 kJ/kg, r_p = 5 (high T₂ and high r_p alerts).

T₂ screenT₂ ≤ 150 °C

API 617 single-stage screening cue for seals/gas quality — recommend intercooled multi-stage above this band.

Pressure-ratio screenr_p ≤ 4.5

Single-stage centrifugal duties above ≈ 4.5 warrant stage split for stress and efficiency.

Out of scope hereOEM map · PTC 10 · EOS Z

No impeller aerodynamics, surge control, or Lee–Kesler/RK Z solve. Confirm with vendor rating.

Quick Reference Lookup Table

Default natural-gas duty (5→25 bar(a) · 35 °C · 5000 m³/h · η_p = 75% · M = 18.5 · k = 1.28 · Z = 0.95) — engine assert
QuantityValueUnitNotes
r_p5.00P₂/P₁
(n−1)/n0.2917(k−1)/(k η_p)
H_p270.2kJ/kgGPSA polytropic head
T₂219.6°CHigh-temp alert (>150 °C)
ρ₁3.800kg/m³P M /(Z R T) at suction
19 002kg/hQ₁ · ρ₁
P_gas1902kWṁ H_p / η_p
Air 1.013→7 bar · 1000 m³/h · 72%114 kW · 358 °CkW / °CH_p ≈ 244.5 kJ/kg
NG 70→350 psia · 3000 ICFM · 75%2510 hp · 427 °Fhp / °FSame r_p = 5 polytropic path
N₂ 15→90 psia · 1500 ICFM · 70%370 hp · 641 °Fhp / °FH_p ≈ 77 200 ft·lbf/lb

Hero reports polytropic gas power and discharge temperature. Default NG duty asserts H_p ≈ 270.2 kJ/kg, T₂ ≈ 219.6 °C, P_gas ≈ 1902 kW (suction density included). Spec LLM heroes that omit ρ₁ are discarded.

3. Applicability & Gas / Regime Limits

Fluid and single-stage regime limits for this screening tool. Metallurgy is not computed — select materials from PMS / API 617 separately.

Group / RegimeRange / ConditionLimit / CriterionEngineering Notes
Lean natural gas / air / nitrogen (constant k, Z)T₁ −50–200 °C screeningZ_avg 0.5–1.5 user/screenUses handbook MW and k defaults. Custom gas requires user M, k, and Z_avg.
Single-stage high pressure ratior_p > 4.5 warnMechanical / efficiency screenSplit stages when r_p exceeds the single-stage screen to limit temperature rise and casing stress.
High discharge temperatureT₂ > 150 °C (302 °F)Seal / O-ring / packing screenAPI 617 context recommends intercooling / multi-stage when discharge temperature exceeds this band.
High-pressure real-gas bandP₂ > 50 bar(a)Constant-Z may understate H_pConfirm Z_avg with Lee–Kesler or Redlich–Kwong EOS — not solved inside this calculator.

Code Applicability & Safety Boundaries

  • Not a substitute for OEM performance maps or ASME PTC 10 acceptance tests
  • T₂ > 150 °C and r_p > 4.5 trigger screening warnings
  • Constant Z_avg — no full EOS integration

4. Step-by-Step Worked Example

Field VerificationShow

Worked Example — Natural Gas 5→25 bar(a)

Screen a single-stage centrifugal compressor raising lean natural gas from 5 bar(a) to 25 bar(a) at 35 °C suction with 5000 m³/h inlet volume flow, η_p = 75%, M = 18.5, k = 1.28, Z_avg = 0.95.

Gas:Natural gas · M = 18.5 · k = 1.28 · Z = 0.95Pressures:P₁ = 5 bar(a) · P₂ = 25 bar(a)Suction:T₁ = 35 °C · Q₁ = 5000 m³/hEfficiency:η_p = 75%
1

Pressure ratio and polytropic factor

Formula: r_p = P₂/P₁ · (n−1)/n = (k−1)/(k η_p)
5/5 = 5 · (0.28)/(1.28·0.75) = 0.291667
Result:r_p = 5.00 · (n−1)/n ≈ 0.2917
2

Polytropic head

Formula: H_p = (Z R T₁/M)·(n/(n−1))·[r_p^((n−1)/n) − 1]
R = 8.314 · T₁ = 308.15 K · M = 18.5
Result:H_p ≈ 270.2 kJ/kg
3

Discharge temperature

Formula: T₂ = T₁ · r_p^((n−1)/n)
308.15 · 5^0.2917
Result:T₂ ≈ 219.6 °C (high-temp alert)
4

Suction density, mass flow, gas power

Formula: ρ₁ = P M/(Z R T) · P_gas = ṁ H_p / η_p
ρ₁ ≈ 3.80 kg/m³ · ṁ ≈ 19 002 kg/h
Result:P_gas ≈ 1902 kW
Conclusion: Screening duty is ≈ 1902 kW with T₂ ≈ 219.6 °C at r_p = 5. High temperature and pressure-ratio alerts recommend reviewing intercooled multi-stage compression before locking the datasheet.

5. How to calculate compressor polytropic gas power

  1. 1

    Select gas and enter M, k, Z_avg

    Choose air, natural gas, nitrogen, or custom. Confirm molecular weight, specific heat ratio, and average compressibility.

  2. 2

    Enter absolute suction and discharge pressures

    Use bar(a) or psia. Discharge must exceed suction. Pressure ratio r_p = P₂/P₁ drives head and T₂.

  3. 3

    Set suction temperature, inlet volume flow, and η_p

    Enter T₁, Q₁ (m³/h or ICFM), and polytropic efficiency percent (typically 60–88%).

  4. 4

    Read P_gas, T₂, H_p, and screening alerts

    Hero shows gas power and discharge temperature. Review T₂ > 150 °C and r_p > 4.5 warnings before OEM selection.

6. Frequently Asked Questions & Technical References

Show

FEK uses the GPSA form H_p = (Z_avg·R·T₁/M)·(n/(n−1))·[r_p^((n−1)/n) − 1] with (n−1)/n = (k−1)/(k·η_p).

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