Determine the change in exergy

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Reference no: EM13950380

1. Consider 100 kg of steam initially at 20 bar and 240°C as the system. Determine the change  in  exergy, in  kJ,  for each of the following processes:

(a) The system is heated at constant pressure until its volume doubles.

(b) The system expands isothermally until its volume doubles.

Let T0 5 20°C, p0 5 1 bar and ignore the effects of motion and gravity.

Applying the Exergy Balance: Closed  Systems

2. Two kilograms of water in a piston-cylinder assembly, initially at 2 bar and 120°C, are heated at constant pressure with no internal irreversibilities to a final state where the water is a saturated vapor. For the water as the system, determine the work, the heat transfer, and the amounts of exergy transfer accompanying work and heat transfer, each in kJ. Let T0 5 20°C, p0 5 1 bar and ignore the effects of motion and gravity.

Reference no: EM13950380

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Determine the change in exergy : 1. Consider 100 kg of steam initially at 20 bar and 240°C as the system. Determine the change  in  exergy, in  kJ,  for each of the following processes:
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