subject
Engineering, 15.04.2020 22:44 jameslinimk

Let us return to the ideal Rankine cycle in problem 9.1. We will now investigate the improvements to that cycle by employing superheat and reheat. Superheated vapor enters the turbine at p1 = 14 MPa and T1 = 400◦C. Steam expands through the first stage turbine to p2 = 3 MPa, and is then reheated to T3 = 360◦C. The processes through both turbine stages and the pump can be treated as isentropic, and states 5 and 6 in this problem correspond to states 3 and 4, respectively, in problem 9.1. (a) Find the total heat transfer per unit mass to the working fluid, ˙q23 + ˙q61, in kJ/kg. (b) Compute the overall thermal efficiency η for the cycle.

ansver
Answers: 1

Another question on Engineering

question
Engineering, 03.07.2019 23:20
Two technicians are discussing the intake air temperature (iat) sensor. technician a says that the computer uses the iat sensor as a backup to the engine coolant temperature (ect) sensor. technician b says that the powertrain control module (pcm) will subtract the calculated amount of fuel if the air measures hot. who is correct
Answers: 3
question
Engineering, 04.07.2019 18:10
The filament of an incandescent lamp has a temperature of 2000k. calculate the fraction of radiation emitted in the visible light band if the filament is approximated as blackbody
Answers: 2
question
Engineering, 04.07.2019 19:10
Arigid tank contains 10 kg of air at 137 kpa (abs) and 21°c. more air is added to the tank until the pressure and temperature rise to 242 kpa (abs) and 32°c, respectively. determine the amount of air added to the tank. [r-0.287 kj/kg k]
Answers: 3
question
Engineering, 04.07.2019 19:20
Heat transfer by is the fastest mode of heat transfer that requires no intervening medium. a)-conduction b)-convection c)-radiation d)-conduction and convection
Answers: 1
You know the right answer?
Let us return to the ideal Rankine cycle in problem 9.1. We will now investigate the improvements to...
Questions
question
Mathematics, 23.07.2019 15:00
question
History, 23.07.2019 15:00