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(a)
The mass flow rate of the steam flowing to the turbine.
(a)
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Explanation of Solution
Given:
The initial pressure of the steam
The initial temperature of the steam
The inlet velocity of the steam
The final pressure of the steam
The final temperature of the steam
The exit velocity of the steam
The power output of the turbine
Calculation:
Refer Table A-6, “Superheated water”, for the pressure of 5 MPa and temperature of
Temperature, |
Enthalpy |
Entropy |
600 | 3666.9 | 2511.5 |
650 | ? 3783.60 | ?7.387 |
700 | 3900.3 | 2506.2 |
Write the formula of interpolation method of two variables.
Substitute
Substitute
Refer Table A-6, “Superheated water”, select the actual enthalpy
Write the energy balance equation for closed system.
Here, rate of net energy transfer in to the control volume is
At steady state, rate of change in internal energy of the system is zero.
Rewrite Equation (I) for energy balance for the closed system.
Thus, the mass flow rate of the steam flowing to the turbine is
(b)
The isentropic efficiency of the turbine
(b)
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Explanation of Solution
Refer to Table A-5, “Saturated water-Pressure table”, obtain the following properties at the pressure of
Calculate the vapor quality is
Calculate the final enthalpy for the isentropic process.
For the reversible adiabatic process, the entropy remains constant.
Write the expression for the power output of the isentropic turbine
Calculate the isentropic efficiency of the turbine
Thus, the isentropic efficiency of the turbine is
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Chapter 8 Solutions
Fundamentals of Thermal-Fluid Sciences
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