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Exergy analysis of internal regeneration in supercritical cycles of ORC power plant

机译:ORC电厂超临界循环内部再生的火用分析

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In the paper presented is an idea of organic Rankine cycle (ORC) operating with supercritical parameters and so called dry fluids. Discussed is one of the methods of improving the effectiveness of operation of supercritical cycle by application of internal regeneration of heat through the use of additional heat exchanger. The main objective of internal regenerator is to recover heat from the vapour leaving the turbine and its transfer to the liquid phase of working fluid after the circulation pump. In effect of application of the regenerative heat exchanger it is possible to obtain improved effectiveness of operation of the power plant, however, only in the case when the ORC plant is supplied from the so called sealed heat source. In the present paper presented is the discussion of heat sources and on the base of the case study of two heat sources, namely the rate of heat of thermal oil from the boiler and the rate of heat of hot air from the cooler of the clinkier from the cement production line having the same initial temperature of 260 oC, presented is the influence of the heat source on the justification of application of internal regeneration. In the paper presented are the calculations for the supercritical ORC power plant with R365mfc as a working fluid, accomplished has been exergy changes and exergy efficiency analysis with the view to select the most appropriate parameters of operation of the power plant for given parameters of the heat source.
机译:在本文中提出的是一种有机朗肯循环(ORC)的概念,该循环以超临界参数运行,即所谓的干液。讨论的是通过使用附加的热交换器通过内部热量再生来提高超临界循环操作效率的方法之一。内部蓄热器的主要目的是从离开涡轮机的蒸汽中回收热量,并将其传递给循环泵后的工作流体液相。然而,仅在ORC设备由所谓的密封热源供应的情况下,通过使用蓄热式热交换器,可以提高发电厂的运行效率。在本文中,我们将对热源进行讨论,并在两个热源的案例研究的基础上,即锅炉产生的导热油的热率和来自熟料冷却器产生的热空气的热率。水泥生产线具有相同的初始温度260 oC,显示的是热源对内部再生应用合理性的影响。在本文中介绍了以R365mfc为工作流体的超临界ORC电厂的计算,完成了火用变化和火用效率分析,以针对给定的热量参数选择最合适的电厂运行参数资源。

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