thermodynamics project

Completed Posted 1 month ago Paid on delivery
Completed Paid on delivery

Steam enters the turbine of a Rankine cycle at 15 MPa, 550 [login to view URL] condenser pressure is 10 kPa. The turbine and pump each have isentropic efficiencies of 85%, and the mass flow rate of steam entering the turbine is 100 kg/s

Develop a mathematical model to perform the following calculations:

a. The net power developed (kW),

b. The rate of heat provided in the boiler (kW),

c. The thermal efficiency of the cycle.

d. The rate of heat rejection in the Condenser (kW),

It is important to explain the procedure step by step and include all the necessary equations.

Solve part 1 step by step and show the results.

 

2. Show P-v (pressure-volume) and T-s (temperature-entropy) diagrams of the cycle. (by hand, showing all the values of pressure, specific volume, temperature, and entropy)

3. Calculate each of the quantities from part (1), (a)–(c), assuming the isentropic efficiencies of both the turbine and pump are equal and vary from 80% to 100% in increments of 5%.

3.1 First show all the results in tables.

3.2 Plot two charts, isentropic efficiencies in x-axis, and power in the y-axis, and another chart isentropic efficiencies in x-axis, and thermal efficiency of the cycle in the y-axis

3.3 Discuss your findings.

4. Keeping turbine and pump isentropic efficiency equal to 85%, recalculate and plot each of the quantities from part (1), (a)–(c), to explore the impact of varying the turbine exit pressurestarting from 10 kPa to 100 kPa. Discuss your findings.

4.1 First show all the results in tables.

4.2 Plot two charts, pressure in x-axis, and power in the y-axis, and another chart pressure in x-axis, and thermal efficiency of the cycle in the y-axis

4.3 Discuss your findings.

 

General rules:

a. Submit the assignment in a computer-generated format for text, equations, tables, and graphs. For P-v and T-s diagram, hand drawing is ok. Submit the file in PDF format

b. Use Excel for calculations (part 3 and part 4) and include the MATLAB/Excel file with your report.

Mathematics Engineering Mechanical Engineering Matlab and Mathematica Physics

Project ID: #38854313

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