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3.2 System Integration The chosen ORC system integration into the plant is illustrated in figure 4.15. The boilers FPA and FPB are modeled as an aggregate boiler FPAB. Figure 3.1: Model of the boiler station with an ORC integrated. An Organic Rankine cycle system can be integrated into the boiler station in several ways, however in order to maximize the electricity production, and the revenues therefrom, it is desirable that: 1. The temperature of the heat transfer fluid mass flow (water) through the evaporative heat exchanger is high 2. The temperature of the heat transfer fluid mass flow (water) through the condensing heat exchanger is low 3. The mass flow rate of the heat transfer fluid mass flow (water) through the condensing heat exchanger is high By having a high temperature mass flow through the evaporative heat exchanger the maximum allowable boiler pressure, and turbine inlet pressure, is increased. Similarly, a low temperature cooling flow through the condenser in combination with a high mass flow results in a low condenser pressure. The pressure difference over the turbine is thus increased by a high temperature difference, which is desirable. Since the hot water circuit temperature of boiler FPC is greater than the HWC temperatures of 40PDF Image | Analysis of Organic Rankine Cycles for a Boiler Station
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