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Isothermal Work Done Given Isothermal Power For Double-Acting Compressor Calculator

Formula Used:

\[ W_{Isothermal} = \frac{P_{Isothermal} \times 60}{2 \times N} \]

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RPM

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1. What is the Isothermal Work Done Formula?

The Isothermal Work Done formula calculates the energy required to compress a gas isothermally in a double-acting compressor. This is essential in various thermodynamic processes and systems where maintaining constant temperature during compression is crucial.

2. How Does the Calculator Work?

The calculator uses the formula:

\[ W_{Isothermal} = \frac{P_{Isothermal} \times 60}{2 \times N} \]

Where:

Explanation: The formula calculates the work done during isothermal compression by relating the isothermal power and the rotational speed of the compressor.

3. Importance of Isothermal Work Calculation

Details: Accurate calculation of isothermal work is crucial for designing efficient compression systems, energy optimization, and ensuring proper operation of thermodynamic processes.

4. Using the Calculator

Tips: Enter isothermal power in watts and speed in RPM. Both values must be positive numbers for accurate calculation.

5. Frequently Asked Questions (FAQ)

Q1: What is isothermal compression?
A: Isothermal compression is a thermodynamic process where a gas is compressed while maintaining a constant temperature throughout the process.

Q2: Why is work done calculation important?
A: Calculating work done helps in determining the energy requirements and efficiency of compression systems.

Q3: What are typical units for these measurements?
A: Isothermal power is measured in watts, speed in RPM, and work done in joules.

Q4: Can this formula be used for single-acting compressors?
A: This specific formula is designed for double-acting compressors. Different formulas may apply to single-acting compressors.

Q5: What factors affect isothermal work calculation?
A: The main factors are the isothermal power input and the rotational speed of the compressor.

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