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 |
Operating Dynamics: Modulating Control vs On-Off Level Switches
Small packaged firetube boilers frequently utilize on-off level switches (e.g. McDonnell & Miller float or electrode controls). When water level drops to the switch threshold, the pump starts, rapidly injects cold feedwater, and shuts off when the high water mark is reached. Because the pump is operating only 40% to 60% of the time, its delivery rate must be 1.5 to 2.0 times the average steaming rate to recover drum level while the burner fires at 100%. Conversely, medium and large boilers utilize continuous modulating control valves, allowing feed pumps to operate continuously with a modest 1.15 to 1.20 sizing safety margin.
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.