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Design of Multi-pressure Organic Rankine Cycles for Waste Heat Recovery in Site Utility Systems

机译:现场公用事业系统中余热回收的多压力有机朗肯循环设计

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This work addresses the design of Organic Rankine Cycle (ORC) processes used for power generation from low-grade heat available in site utility systems. The Exergy Composite Curves approach is used within a systemic optimization framework to explore various complex ORC configurations. The method facilitates interconnectivity at several temperature and pressure levels, considering different types and numbers of turbines as design decision parameters simultaneously with other operating ORC features. It is employed to investigate the performance of two generic ORC configurations, namely one considering independent pressure loops with expansion turbines and the other considering pressure loops contacted through induction turbines. To optimize the number of pressure levels, ORC structural configuration, and operating parameters an inclusive objective function is used considering thermodynamic criteria. The application of the method is demonstrated by a case study on waste heat recovery and reuse in a utility plant.
机译:这项工作解决了有机朗肯循环(ORC)工艺的设计问题,该工艺用于现场公用事业系统中的低品位热量发电。系统综合优化框架中使用了Exergy复合曲线方法,以探索各种复杂的ORC配置。该方法促进了在几个温度和压力水平下的互连性,同时考虑了不同类型和数量的涡轮机作为设计决策参数,同时还考虑了其​​他运行中的ORC功能。它用于研究两种通用ORC配置的性能,一种配置考虑与膨胀涡轮机独立的压力回路,另一种考虑通过感应涡轮机接触的压力回路。为了优化压力水平,ORC结构配置和操作参数的数量,考虑热力学标准,使用了包容性目标函数。该方法的应用通过对电厂中余热回收和再利用的案例研究进行了演示。

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