SafeGuard Projects — Preliminary Sizing Tool
Relief & Vent Sizing Helper
Estimate required relief device orifice area for vapor, liquid, and fire exposure cases using simplified API 520 equations.
⚠ Professional Engineering Note
Relief device sizing for pressure vessels, fired equipment, and PSM-covered processes must be performed and stamped by a licensed Professional Engineer (PE). This tool provides preliminary estimates for feasibility and education only — it is not suitable for final design, procurement, or regulatory compliance.
Vapor case — API 520 Eq. (1) for gas/vapor relief
Liquid case — API 520 Eq. (27) for liquid relief
Fire case — API 521 wetted surface area method
Conventional and balanced-bellows PSV types
Discharge coefficient Kd / back pressure correction Kb
API nozzle designation lookup (D through T)
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Preliminary Tool — PE Required for Final Design

Relief & Vent
Sizing Helper

Estimate pressure safety valve orifice area for vapor, liquid, and fire exposure cases using simplified API 520/521 equations. Identify API nozzle designation and check sizing against standard orifice areas.

API 520 / API 521Vapor Case Liquid CaseFire Case API Nozzle TablePrint-Ready
⚠ Preliminary only. Final relief device sizing must be performed and stamped by a licensed Professional Engineer per ASME Section VIII / API 520/521.
API 520 Vapor Case (Eq. 1)
A = W / (C × Kd × P1 × Kb)
  × √(T × Z / M)
A = Required orifice area (in²)
W = Required relieving capacity (lb/hr)
C = Gas constant (function of k)
P1 = Relieving pressure (psia)
T = Relieving temperature (°R)
⚗️
Relief Case
Select the governing overpressure scenario
💨 Vapor / Gas
💧 Liquid
🔥 Fire Exposure
API 520 Vapor Formula
A = W/(C·Kd·P1·Kb) × √(T·Z/M)
P1 = Pset × 1.1 + 14.696 (psia, 10% overpressure) · T in °R (°F + 459.67) · C = f(k) · Kb from back pressure ratio
🔩
API Standard Orifice Nozzle Designations
Select next standard size above calculated area
Designation Area (in²) Typical Inlet Size Status
Sizing Results
Required Orifice Area (A)
in²
⚠ Preliminary Estimate Only
These results use simplified API 520/521 equations for quick screening. Final sizing requires rigorous two-phase flow analysis, detailed thermodynamics, and PE stamp. Consult a licensed Process Safety Engineer.
📚 API 520/521 Reference Data ▸ Expand
C Factor vs. Cp/Cv Ratio (k)
kCkC
1.03151.4356
1.13271.5366
1.23371.6376
1.33471.8394
Typical Latent Heat Values
FluidL (BTU/lb)MW
Water (212°F)97018
Propane18444
Butane16658
Methane (LNG)22016
Ethylene20828
Benzene16978
Toluene15692
Naphtha (avg)120100

Need a PE-Stamped Relief Study?

Preliminary sizing is just the starting point. A complete relief and vent system study — including two-phase flow, scenario selection, vent header sizing, and ASME/API documentation — must be performed by a licensed PE. SafeGuard Projects partners with experienced pressure relief engineers for PSM capital projects.

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