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Engineering, 24.03.2021 14:00 katiebug197

. Part 1: Saturated (water) vapor enters the turbine of a basic, ideal Rankine cycle (Figure 2) at a pressure of 10 MPa. The condenser is operating at a pressure of 20 kPa. If the mass flowrate of
the water through the cycle is 125 kg/s, determine
(a) the net power produced in the cycle, (30 points)
(b) the thermal efficiency of the cycle, and (10 points)
(c) BONUS: the maximum possible efficiency for a power cycle under these conditions. (10
points)
Figure 2: Ideal Rankine Cycle
Part 2: This basic Rankine cycle now has a turbine of isentropic efficiency of 0.8 while the pump
has an isentropic efficiency of 0.7. The mass flowrate is still 125 kg/s. Determine
(d) the net power produced in the cycle, and (25 points)
(e) the thermal efficiency of the cycle. (15 points)

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. Part 1: Saturated (water) vapor enters the turbine of a basic, ideal Rankine cycle (Figure 2) at a...
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