Calculate pump hydraulic and shaft power
Hydraulic Pump Power
The ideal hydraulic power to drive a pump depends on
- the mass flow rate the
- liquid density
- the differential height
- either it is the static lift from one height to an other or the total head loss component of the system - and can be calculated like
Ph(kW) = q ρ g h / (3.6 106)
= q p / (3.6 106) (1)
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BASIC CONCEPTS OF THERMODYNAMICS 1.1 Introduction Thermodynamics is a branch of science that deals with energy in all its forms and the laws governing the transformation of energy from one form to another. Since, there are many forms of energy such as mechanical, thermal or heat, chemical, electrical, etc.
where
Ph(kW) = hydraulic power (kW)
q = flow (m3/h)
ρ = density of fluid (kg/m3)
g = acceleration of gravity (9.81 m/s2)
h = differential head (m)
p = differeential pressure (N/m2, Pa)
The hydraulic Horse Power can be calculated as:
Ph(hp) = Ph(kW) / 0.746 (2)
where
Ph(hp) = hydraulic horsepower (hp)
Or - alternatively
Ph(hp) = qgpm hft SG / (3960 η) (2b)
where
qgpm = flow (gpm)
hft = differential head (ft)
SG = Specific Gravity (1 for water)
Thermodynamics Quality Calculator
η = pump efficiency
Example - Power pumping Water
1 m3/h of water is pumped a head of 10 m. The theoretical pump power can be calculated as
Ph(kW) = (1 m3/h) (1000 kg/m3) (9.81 m/s2) (10 m) / (3.6 106)
= 0.027 kW
Shaft Pump Power
The shaft power - the power required transferred from the motor to the shaft of the pump - depends on the efficiency of the pump and can be calculated as
Ps(kW) = Ph(kW)/ η (3)
where
Ps(kW) = shaft power (kW)
η = pump efficiency
Online Pump Calculator - SI-units
The calculator below can used to calculate the hydraulic and shaft power of a pump:
Online Pump Calculator - Imperial units
The calculator below can used to calculate the hydraulic and shaft power of a pump using Imperial units:
- Check the relation between Density, Specific Weight and Specific Gravity
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Related Topics
Thermodynamics Basic Calculations
- Pumps - Piping systems and pumps - centrifugal pumps, displacement pumps - cavitation, viscosity, head and pressure, power consumption and more
Related Documents
- Centrifugal Pumps - An introduction to Centrifugal Pumps
- Centrifugal Pumps and Influence from Viscosity - When a liquid flow through a pump, hydrodynamic losses depends on fluid viscosity
- Centrifugal Pumps and Shut-Off Head - Centrifugal pumps and maximum (shut-off) head
- Electrical Motor Shaft Power - Electrical motors are rated in horsepower or watt
- Hydraulic Pumps and Motor Sizing - Motor size versus flow rate, shaft torque, shaft power and hydraulic power
- Positive Displacement Pumps - Introduction tutorial to positive displacement pumps basic operating principles
- Power - Power is the rate at which work is done or energy converted
- Power Gained by Fluid from Pump or Fan - The power gained by fluid from an operating pump or fan
- Pump - Volume Flow and Temperature Rise - Calculate temperature rise in pumps
- Pump and Fan Efficiency - Overall pump and fan efficiency is the ratio power actually gained by the fluid to the shaft power supplied
- Pumping Water - Energy Cost Calculator - The energy costs of pumping water
- Pumping Water - Required Horsepower - Horsepower required to pump water
- Pumps, Fans and Turbines - Horsepower - British Horse Power in pumps, fans and turbines - and how to convert to other units
- Specific Work done by Turbo Machines - Pumps, Compressors and Fans - Specific work from pumps, fans, compressors and turbines
- System Curve and Pump Performance Curve - Utilize the system curve and the pump performance curve to select the proper pump for a particular application
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Tag Search
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- es: bombas de presión de cabeza de la energía del flujo calculadora en línea
- de: Pumpen Strom Online-Rechner Fließdruck Kopf
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