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Thermoeconomic analysis of a biomass and solar energy based organic Rankine cycle system under part load behavior

机译:零件负荷行为下的生物质和太阳能基于有机朗肯循环系统的热经济分析

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In this paper, the modeling and simulation of a solar and biomass powered organic Rankine cycle (ORC) system under part load behavior is presented. The model combines the turbomachinery equations for the pump and turbine with the energy equations of the other ORC components to find the net electrical power for a given demand. In addition, exergy based thermoeconomic analysis is applied to determine electricity cost throughout the year. As a case study, the electricity demand of a farm is considered to be supplied from an on-site ORC system and the electrical power grid. The electrical demand of the farm varies in the range of 0-15 kWe and the electrical power output of the ORC can change between 5 and 10 kWe. A comparison between using both the ORC system and the electrical power grid and only the electrical power grid is done in terms of performance and cost. The case study showed that supplying electricity demand with both the ORC and the electrical power grid costs $5238.6 per year, which is 30% more profitable than that with only the electrical power grid.
机译:本文提出了零件负载行为下的太阳能和生物质动力有机朗肯循环(ORC)系统的建模和仿真。该模型将泵和涡轮机的涡轮机械方程与其他兽人组件的能量方程组合,以找到给定需求的净电力。此外,基于漏极的热经济分析应用于全年确定电力成本。作为案例研究,将农场的电力需求从现场ORC系统和电力电网供应。农场的电气需求在0-15 kWe的范围内变化,兽人的电力输出可以在5到10 kWe之间变化。在性能和成本方面,使用ORC系统和电网和电网仅进行电网的比较。案例研究表明,使用兽人和电力电网供应电力需求,每年费用为5238.6美元,这比仅具有电网的盈利盈利30%。

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