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Natural Gas Compressibility Z-Factor & Density Calculator

AGA Report No. 8 / API MPMS 14.2 / Standing–Hall–Yarborough / CNGA
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Engineering Reference & ASME Code Basis

1. Core Formula & Variable Definitions

AGA Report No. 8 / API MPMS Chapter 14.2 — Compressibility Factor of Natural Gas and Related Hydrocarbon Gases (screening use) · Standing / Sutton pseudo-critical correlations; Hall–Yarborough Z; CNGA method fallback · Wichert–Aziz acid-gas correction (CO₂); Kay mixing rule for N₂ · ISO 12213-2 — molar-composition compression factor (full GERG/AGA-8 Detail out of scope here)

Real-gas density: ρ = P · M / (Z · R · T) = P · SG · Mair / (Z · R · T)

Standing pseudo-criticals (sweet gas): Tpc = 168 + 325·SG − 12.5·SG² [°R],   Ppc = 677 + 15·SG − 37.5·SG² [psia]

Reduced properties: Tr = T/Tpc,   Pr = P/Ppc  ·  Z = f(Pr, Tr) via Hall–Yarborough (CNGA fallback)

AGA Report No. 8 / API MPMS 14.2 screening · Wichert–Aziz CO₂ · Kay N₂ blend · ISO 12213-2 composition methods out of scope

Hero Z · ρMethod Hall–YarboroughPpc/Tpc StandingM_air 28.9625 g/mol

Screening Z from Standing Ppc/Tpc with Wichert–Aziz CO₂ correction and Kay N₂ blend, then Hall–Yarborough (CNGA fallback). Density uses the real-gas law with M = SG · 28.9625 g/mol. Not a full AGA-8 Detail or GERG-2008 composition equation of state.

  • Z (Compressibility factor)Real-gas Z from Hall–Yarborough on reduced P_r, T_r (ideal gas Z = 1).
  • ρ (Real-gas density)ρ = P M / (Z R T) in kg/m³ or lb/ft³.
  • SG (Specific gravity (air = 1))Typical lean natural gas 0.55–0.75. M = SG · M_air.
  • P / T (Absolute pressure / temperature)Absolute operating P (bar abs or psia) and T (°C/°F → K/°R).
  • P_pc / T_pc (Pseudo-critical pressure / temperature)Standing correlations; CO₂ via Wichert–Aziz; N₂ via Kay blend.
  • P_r / T_r (Reduced pressure / temperature)P/P_pc and T/T_pc used by the Z correlation.

2. Screening Rules Matching This Calculator

Standing sweet-gas Ppc/Tpc, optional Wichert–Aziz CO₂ and Kay N₂ blend, then Hall–Yarborough Z with CNGA fallback. Real density from the real-gas law. Full AGA-8 Detail / GERG-2008 composition EOS is out of scope.

Default duty30 bar abs · 25 °C · SG 0.60

Lean natural gas M ≈ 17.38 g/mol. Hero ≈ Z = 0.935 · ρ = 22.50 kg/m³ (P_r ≈ 0.65, T_r ≈ 1.50).

Input rangesP 0.5–250 bar abs · T −50–150 °C · SG 0.55–0.90

CO₂ and N₂ each 0–20 mol%. Combined non-hydrocarbon fraction capped for this screening path.

Impurity correctionsWichert–Aziz (CO₂) · Kay (N₂)

H₂S not entered in this tool (treated as zero). High acid-gas fractions need composition EOS verification.

Out of scope hereAGA-8 Detail · GERG-2008 · LNG envelopes

For P ≳ 150 bar, supercritical transport, or cryogenic phase envelopes, verify with full molar-composition methods (ISO 12213-2 / AGA-8 Detail).

Quick Reference Lookup Table

Default duty (30 bar abs · 25 °C · SG 0.60 · CO₂ 0% · N₂ 0%) — engine assert
QuantityValueUnitNotes
Z0.935Hall–Yarborough
ρ (real)22.50kg/m³1.404 lb/ft³
ρ (ideal)21.03kg/m³Z = 1
Deviation+7.0%(ρ − ρ_ideal)/ρ_ideal
P_r / T_r0.647 / 1.497Reduced properties
P_pc / T_pc46.37 / 199.2bar / K672.5 psia / 358.5 °R
M17.38g/molSG × 28.9625
50 bar · 40 °C · SG 0.65Z 0.896 · ρ 40.33kg/m³High-pressure duty
10 bar · 15 °C · SG 0.55Z 0.979 · ρ 6.79kg/m³Distribution duty
80 bar · 50 °C · SG 0.60Z 0.883 · ρ 58.60kg/m³Transmission duty

Hero reports Z and real density from Standing Ppc/Tpc + Hall–Yarborough. Default duty (30 bar abs · 25 °C · SG 0.60) asserts Z ≈ 0.935 and ρ ≈ 22.50 kg/m³.

3. Applicability & Fluid Limits

This tool is fluid-property screening for lean-to-moderately rich natural gas. Metallurgy is not computed — apply pipe/valve material selection separately.

Group / RegimeRange / ConditionLimit / CriterionEngineering Notes
Lean natural gas (SG ≈ 0.55–0.70)−50 to 150 °C screening bandStanding Ppc/Tpc validTypical transmission / distribution SG. Default SG 0.60 is the worked example.
CO₂ / N₂ impurities (≤ 20 mol% each)Same screening bandWichert–Aziz · Kay blendAcid-gas and inert corrections adjust Ppc/Tpc only — not a full multicomponent EOS.
High-pressure / supercritical NG (P ≳ 150 bar)N/AOut of screening confidenceVerify Z and density with AGA-8 Detail or GERG-2008 before custody transfer or dense-phase design.
LNG / cryogenic phase envelopesBelow screening bandOut of scopeTwo-phase and cryogenic properties require composition-based flash calculations — not this Z/ρ path.

Code Applicability & Safety Boundaries

  • Screening Z/ρ only — not AGA-8 Detail or ISO 12213-2 certified composition compressibility
  • Absolute pressure required (bar abs / psia). Do not enter gauge pressure without adding atmospheric pressure

4. Step-by-Step Worked Example

Field VerificationShow

Worked example — 30 bar abs · 25 °C · SG 0.60

Lean natural gas at 30 bar absolute and 25 °C with SG = 0.60 (air = 1), no CO₂ or N₂.

P:30 bar absT:25 °C (298.15 K)SG:0.60 → M = 17.38 g/mol
1

Pseudo-criticals (Standing)

T_pc = 168 + 325·0.60 − 12.5·0.60²; P_pc = 677 + 15·0.60 − 37.5·0.60²
Result:T_pc = 358.5 °R (199.2 K); P_pc = 672.5 psia (46.37 bar)
2

Reduced properties

T_r = T/T_pc; P_r = P/P_pc
Result:T_r ≈ 1.497; P_r ≈ 0.647
3

Z and density

Hall–Yarborough Z(P_r, T_r); ρ = P M / (Z R T)
Result:Z ≈ 0.935; ρ ≈ 22.50 kg/m³ (ideal ρ ≈ 21.03 kg/m³, +7.0%)
Conclusion: Hero screening value is Z = 0.935 · Density = 22.50 kg/m³. Use AGA-8 Detail / GERG-2008 when composition or supercritical duty requires certified compressibility.

5. How to calculate natural gas Z-factor and density

  1. 1

    Enter absolute pressure and temperature

    Use bar abs or psia (not gauge) and operating °C or °F in the active unit system.

  2. 2

    Enter specific gravity and impurities

    SG relative to air (typical 0.55–0.75). Optionally add CO₂ and N₂ mole % for Wichert–Aziz / Kay adjustments.

  3. 3

    Read Z and real density

    Hero shows Z and ρ. Badges summarize SG, P_r, T_r, and ideal-vs-real density deviation.

  4. 4

    Export or carry to related tools

    Export CSV/text/PDF for the duty pack, or continue to valve Cv / choked / noise screening with the same pressure context.

6. Frequently Asked Questions & Technical References

Show

A screening tool that estimates Z from reduced pressure and temperature (Standing P_pc/T_pc + Hall–Yarborough) and converts that into real-gas density ρ = P M / (Z R T).

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