Define pump.
A pump is a device that moves fluids (liquids or gases), or sometimes slurries, by mechanical action, typically converted from electrical energy into Hydraulic energy. Pumps can be classified into three major groups according to the method they use to move the fluid: direct lift, displacement, and gravity pumps. Pumps operate by some mechanism (typically reciprocating or rotary), and consume energy to perform mechanical work moving the fluid. Pumps operate via many energy sources, including manual operation, electricity, engines, or wind power, and come in many sizes, from microscopic for use in medical applications, to large industrial pumps.
Define enthalpy.
Enthalpy is a property of a thermodynamic system, defined as the sum of the system's internal energy and the product of its pressure and volume. It is a convenient state function standardly used in many measurements in chemical, biological, and physical systems at a constant pressure. The pressure-volume term expresses the work required to establish the system's physical dimensions, i.e. to make room for it by displacing its surroundings. As a state function, enthalpy depends only on the final configuration of internal energy, pressure, and volume, not on the path taken to achieve it.
How to Calculate Volume Expansivity for Pumps using Enthalpy?
Volume Expansivity for Pumps using Enthalpy calculator uses Volume Expansivity = ((((Specific Heat Capacity at Constant Pressure*Overall Difference in Temperature)-Change in Enthalpy)/(Volume*Difference in Pressure))+1)/Temperature of Liquid to calculate the Volume Expansivity, The Volume Expansivity for Pumps using Enthalpy formula is defined as the function of specific heat capacity, the difference in temperature, volume, change in enthalpy, temperature, and the difference in pressure for a pump. Volume Expansivity is denoted by β symbol.
How to calculate Volume Expansivity for Pumps using Enthalpy using this online calculator? To use this online calculator for Volume Expansivity for Pumps using Enthalpy, enter Specific Heat Capacity at Constant Pressure (Cp), Overall Difference in Temperature (ΔT), Change in Enthalpy (ΔH), Volume (VT), Difference in Pressure (ΔP) & Temperature of Liquid (T) and hit the calculate button. Here is how the Volume Expansivity for Pumps using Enthalpy calculation can be explained with given input values -> 0.008592 = ((((1.005*20)-190)/(63*10))+1)/85.