Boiler & Operating Parameters
Pump Sizing Output & Hydraulic Head
| Hydraulic Component | Pressure (PSI) | Head (Feet) |
|---|---|---|
| Boiler Design Safety Pressure (+3%) | 154.5 PSI | 372.9 ft |
| Feedwater Control Valve Drop | 20.0 PSI | 48.3 ft |
| Economizer Heat Recovery Coils | 15.0 PSI | 36.2 ft |
| Discharge Piping & Check Valve Loss | 10.0 PSI | 24.1 ft |
| Static Elevation Lift | 6.2 PSI | 15.0 ft |
| Total Feed Pump Discharge Target | 205.7 PSI | 514.0 ft |
Discharge Pressure Summation and Overpressure Protection
The feed pump must be capable of delivering design flow even when boiler pressure approaches the setpoint of the highest-set safety valve. Under ASME Section I Boiler and Pressure Vessel Code, safety valves must relieve at maximum allowable working pressure (MAWP) with up to 3% accumulation. If a boiler operates at 200 PSIG MAWP, the safety valve lifts at 206 PSIG. Adding 25 PSI for the modulating feedwater regulating valve, 15 PSI for economizer tube passes, 10 PSI for pipe and check valve losses, and 7 PSI static lift results in a minimum pump discharge pressure of 263 PSIG.
1. Base Evaporation: Mass_steam (lb/hr) = BHP x 34.5
2. Feed Mass Flow: Mass_feed (lb/hr) = Mass_steam / (1 - Blowdown_fraction) x Safety_Factor
3. Volumetric Flow: GPM = Mass_feed / (500 x Specific_Gravity)
4. Total Dynamic Head: TDH (ft) = [P_discharge (PSI) - P_suction (PSI)] x 2.31 / Specific_Gravity
5. Deaerator NPSHA: NPSHA (ft) = H_static (elevation above pump) - H_suction_friction (ft)
6. Pump Shaft Power: BHP_pump = (GPM x TDH x Specific_Gravity) / (3,960 x Pump_Efficiency)
Boiler Feedwater Calculators & Engineering Tools
Explore specialized calculators for flow rate conversion, TDH summation, deaerator sizing, and motor specifications.