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(1) clarifying the open feedwater heater adiabatic condition to confirm the mass
fraction of steam y requirement to bleed off the LP turbine of the generator, (2)
determining the saturated liquid state in the deaerator, and (3) confirming both the
condensate pump and the feedwater pump adiabatic condition in order to determine
the energy obtained from geothermal source to drive the pumps to general energy
into the house or building (Fig. 4.2).
Subsequently, the mass fraction of (1 − y) is obtained at less 0 power output due
to a reduced mass flow rate in part of the turbine from the tap (t) to station (4), and
then implemented into the generator installed in the home building in order to determine the net electricity energy generation by conducting mathematical model analysis using MATLAB software [28–30]. Here, the model is clarified in order to
confirm that the transfer mechanism of the fluid dynamic torque of the rotor is
quantified in order to determine the speed of the gearbox of the generator to confirm
the net energy generation rate. Since the rotor is directly connected to the groundsource heat pump, the model is calculated based on the torsional force of the rotor
and is expressed as
Fig. 4.1 The mechanism technology is referred to as a regenerative heating cycle, and describes
the excellent geothermal energy generation showed in a P-h diagram and its conversion process
through open feedwater heater
Materials and Methods
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