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EXAMINATION PAPER: ACADEMIC S ES S ION 2020/2021
Campus
Medway
Faculty
Engineering & Science
Level
5
Exam Session
May 2021
MODULE CODE
MECH061
MODULE TITLE
THERMODYNAMICS
Exam Type
Online Exam
Original Exam Duration 2 hours (Now 3 hours)
Instructions to Candidates
Answer AL L questions from PART A - Moodle Quiz (separate)
Answer AL L questions from PART B
Answer ALL questions from PART C
S team tables and calculators may be used.
Students will be required to achieve an overall grade of 40% to achieve a pass grade
Type the answers to all questions attempted in the exam into this document using a computer- based text editing software such as MS Word and for equations the equation editor.
PartA
ANSWER(Purchase full paper to get all the solution)
The working fluid is pushed through the system and undergoes states changes. The refrigerant enters the compressor as a gas under low pressure and having a low temperature.
Answer AL L questions in Part B
Q6.
An ideal Rankine cycle has the following operating conditions. Steam enters the turbine at 50 bar and 500oC and exhausts to the condenser at pressure of 0.1 bar if the turbine output is 12,000 kW
[8 marks]
[6 marks]
[Total 30 marks]
Q7.
A stationary gas- turbine power plant operates on a simple ideal Brayton cycle with air as the working fluid. The air enters the compressor at 100 kPa and 300 K and the turbine at 2000 kPa and 1000 K temperature. Take cp = 1.005 kJ /kg- K and k = 1.4
[ 4 marks]
[10 marks]
[4 marks]
[ 6 marks]
Answer AL L questions in PART C
Q8.
Define entropy and enthalpy and state the units (include the difference between the first law of thermodynamics and the second law of thermodynamics)
Q9.
Draw a P- v diagram of a simple Otto cycle, label the four stages and describe the states of the process.
Q10.
Draw a block diagram of a simple Refrigeration cycle and indicate at which stage work is added to the system; discuss why energy needs to be added.
Q11.
Draw a block diagram of a two stage (high pressure/ low pressure) turbine and explain why this turbine type is more efficient than a single stage turbine.
Q12.
Draw a process flow diagram of a heat exchanger in counter current flow, indicate the direction of the process streams and discuss why the counter current flow heat exchanger is more efficient than the parallel flow heat exchanger.
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Last updated: Jun 23, 2021 10:59 AM
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