Shaft Work in Compressible Flow Machines Solution

STEP 0: Pre-Calculation Summary
Formula Used
Shaft Work = (Enthalpy at Compressor Inlet+Compressor Inlet Velocity^2/2)-(Enthalpy at Exit of Compressor+Compressor Exit Velocity^2/2)
Ws = (h1+C1^2/2)-(h2+C2^2/2)
This formula uses 5 Variables
Variables Used
Shaft Work - (Measured in Joule) - Shaft Work is mechanical energy used to drive a mechanism, such as a pump, compressor, or turbine.
Enthalpy at Compressor Inlet - (Measured in Joule) - Enthalpy at Compressor Inlet is the heat energy of flow at the entry of compressor.
Compressor Inlet Velocity - (Measured in Meter per Second) - Compressor Inlet Velocity is the velocity of gases entering the compressor.
Enthalpy at Exit of Compressor - (Measured in Joule) - Enthalpy at Exit of Compressor is the heat energy of the flow after compression.
Compressor Exit Velocity - (Measured in Meter per Second) - Compressor Exit Velocity is the velocity of gases exiting the compressor.
STEP 1: Convert Input(s) to Base Unit
Enthalpy at Compressor Inlet: 387.6 Kilojoule --> 387600 Joule (Check conversion ​here)
Compressor Inlet Velocity: 30.8 Meter per Second --> 30.8 Meter per Second No Conversion Required
Enthalpy at Exit of Compressor: 548.5 Kilojoule --> 548500 Joule (Check conversion ​here)
Compressor Exit Velocity: 17 Meter per Second --> 17 Meter per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Ws = (h1+C1^2/2)-(h2+C2^2/2) --> (387600+30.8^2/2)-(548500+17^2/2)
Evaluating ... ...
Ws = -160570.18
STEP 3: Convert Result to Output's Unit
-160570.18 Joule -->-160.57018 Kilojoule (Check conversion ​here)
FINAL ANSWER
-160.57018 Kilojoule <-- Shaft Work
(Calculation completed in 00.004 seconds)

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Shaft Work in Compressible Flow Machines Formula

​LaTeX ​Go
Shaft Work = (Enthalpy at Compressor Inlet+Compressor Inlet Velocity^2/2)-(Enthalpy at Exit of Compressor+Compressor Exit Velocity^2/2)
Ws = (h1+C1^2/2)-(h2+C2^2/2)

What is shaft work?

Shaft work is defined as the mechanical energy used to drive a mechanism, such as a pump, compressor, or turbine.

How to Calculate Shaft Work in Compressible Flow Machines?

Shaft Work in Compressible Flow Machines calculator uses Shaft Work = (Enthalpy at Compressor Inlet+Compressor Inlet Velocity^2/2)-(Enthalpy at Exit of Compressor+Compressor Exit Velocity^2/2) to calculate the Shaft Work, The Shaft Work in Compressible Flow Machines measures the energy transferred to or from the compressor shaft during operation. This formula calculates the shaft work by considering the changes in enthalpy and kinetic energy between the compressor inlet and exit. Understanding and utilizing this formula is crucial for engineers to assess the performance and efficiency of compressible flow machines. Shaft Work is denoted by Ws symbol.

How to calculate Shaft Work in Compressible Flow Machines using this online calculator? To use this online calculator for Shaft Work in Compressible Flow Machines, enter Enthalpy at Compressor Inlet (h1), Compressor Inlet Velocity (C1), Enthalpy at Exit of Compressor (h2) & Compressor Exit Velocity (C2) and hit the calculate button. Here is how the Shaft Work in Compressible Flow Machines calculation can be explained with given input values -> -0.16057 = (387600+30.8^2/2)-(548500+17^2/2).

FAQ

What is Shaft Work in Compressible Flow Machines?
The Shaft Work in Compressible Flow Machines measures the energy transferred to or from the compressor shaft during operation. This formula calculates the shaft work by considering the changes in enthalpy and kinetic energy between the compressor inlet and exit. Understanding and utilizing this formula is crucial for engineers to assess the performance and efficiency of compressible flow machines and is represented as Ws = (h1+C1^2/2)-(h2+C2^2/2) or Shaft Work = (Enthalpy at Compressor Inlet+Compressor Inlet Velocity^2/2)-(Enthalpy at Exit of Compressor+Compressor Exit Velocity^2/2). Enthalpy at Compressor Inlet is the heat energy of flow at the entry of compressor, Compressor Inlet Velocity is the velocity of gases entering the compressor, Enthalpy at Exit of Compressor is the heat energy of the flow after compression & Compressor Exit Velocity is the velocity of gases exiting the compressor.
How to calculate Shaft Work in Compressible Flow Machines?
The Shaft Work in Compressible Flow Machines measures the energy transferred to or from the compressor shaft during operation. This formula calculates the shaft work by considering the changes in enthalpy and kinetic energy between the compressor inlet and exit. Understanding and utilizing this formula is crucial for engineers to assess the performance and efficiency of compressible flow machines is calculated using Shaft Work = (Enthalpy at Compressor Inlet+Compressor Inlet Velocity^2/2)-(Enthalpy at Exit of Compressor+Compressor Exit Velocity^2/2). To calculate Shaft Work in Compressible Flow Machines, you need Enthalpy at Compressor Inlet (h1), Compressor Inlet Velocity (C1), Enthalpy at Exit of Compressor (h2) & Compressor Exit Velocity (C2). With our tool, you need to enter the respective value for Enthalpy at Compressor Inlet, Compressor Inlet Velocity, Enthalpy at Exit of Compressor & Compressor Exit Velocity and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Shaft Work?
In this formula, Shaft Work uses Enthalpy at Compressor Inlet, Compressor Inlet Velocity, Enthalpy at Exit of Compressor & Compressor Exit Velocity. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Shaft Work = Enthalpy at Compressor Inlet-Enthalpy at Exit of Compressor
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