9-101C Consider a simple ideal Rankine cycle with fixed turbine inlet conditions. What is the effect of lowering the condenser pressure on Pump work input: (a) increases, (b) decreases, (C) remains the same Turbine work (a) increases, (b) decreases, (c) remains the same (a) increases, (b) decreases, (c) remains the same (a) increases, (b) decreases, (c) remains the same (a) increases, (b) decreases, (c) remains the same (a) increases, (b) decreases, (c) remains the same output: Heat supplied: Heat rejected: Cycle efficiency: Moisture content at turbine exit:

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9-101C Consider a simple ideal Rankine cycle with fixed
turbine inlet conditions. What is the effect of lowering the
condenser pressure on
Pump work input: (a) increases, (b) decreases,
(C) remains the same
Turbine work
(a) increases, (b) decreases,
(c) remains the same
(a) increases, (b) decreases,
(c) remains the same
(a) increases, (b) decreases,
(c) remains the same
(a) increases, (b) decreases,
(c) remains the same
(a) increases, (b) decreases,
(c) remains the same
output:
Heat supplied:
Heat rejected:
Cycle efficiency:
Moisture content
at turbine exit:
Transcribed Image Text:9-101C Consider a simple ideal Rankine cycle with fixed turbine inlet conditions. What is the effect of lowering the condenser pressure on Pump work input: (a) increases, (b) decreases, (C) remains the same Turbine work (a) increases, (b) decreases, (c) remains the same (a) increases, (b) decreases, (c) remains the same (a) increases, (b) decreases, (c) remains the same (a) increases, (b) decreases, (c) remains the same (a) increases, (b) decreases, (c) remains the same output: Heat supplied: Heat rejected: Cycle efficiency: Moisture content at turbine exit:
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