Analysis of Organic Rankine Cycles for a Boiler Station

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Analysis of Organic Rankine Cycles for a Boiler Station ( analysis-organic-rankine-cycles-boiler-station )

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4.8 Scenario Analysis 4.8.1 Scenario 1: Aggregating the boiler powers The aggregated boiler power profile is shown in figure 4.25. It closely follows the DHS demand; the aggregated boiler power is low during the summer and high during the winter. Figure 4.25: Aggregated boiler power profile. The maximum NPV is 2.88 MSEK for a 400 kWel system, and the maximum IRR is 9.40% for a 300 kWel system, shown in figure 4.26. Thus, aggregating the boiler powers does not seem to increase the profitability much at all. The additional electricity generation is a modest 134 000 kWh/year, or an additional 5.8%. This is due to the limited mass flow (cooling flow) available to the ORC condenser; increasing the power rating of the system to e.g. 2000 kWel such that the machine can receive up to 2 MWth would result in a very high condensation temperature. Furthermore, for a smaller system the additional revenues will solely come from the available power production during the 30 day period in which FPC is shut-off, which is not much at at. 78

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