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Targeting and Design of Organic Rankine Cycle Systems for Multiple Heat Sources with Simultaneous Working Fluid Selection

机译:具有同时工作流体选择的多热源有机朗斯循环系统的靶向与设计

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We propose a systematic model for the optimum design of Organic Rankine Cycles (ORC) used for power generation from multiple heat sources available at different temperatures. The model enables the automated generation of inclusive and flexible ORC cascades and is optimized using a global optimization algorithm. Design parameters include the number of ORC cascades, the shared structure of the heat exchanger network, the operating conditions and the working fluid used in each cascade in order to identify an overall ORC structure that maximizes the power output. Results indicate significant operating improvements from using a double ORC cascade with different working fluids.
机译:我们提出了一种用于从不同温度可用的多个热源的发电的有机朗肯循环(ORC)的最佳设计的系统模型。该模型可以通过全局优化算法实现自动化的包容性和灵活的兽人级联。设计参数包括兽人级联的数量,热交换器网络的共享结构,每个级联中使用的操作条件和工作流体,以识别最大化功率输出的整体兽人结构。结果表明,使用具有不同工作流体的双逆梯级级联的显着操作改进。

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