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Increase of power and efficiency of the 900 MW supercritical power plant through incorporation of the ORC

机译:通过合并ORC来提高900 MW超临界电厂的功率和效率

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The objective of the paper is to analyse thermodynamical and operational parameters of the supercritical power plant with reference conditions as well as following the introduction of the hybrid system incorporating ORC. In ORC the upper heat source is a stream of hot water from the system of heat recovery having temperature of 90 ?°C, which is additionally aided by heat from the bleeds of the steam turbine. Thermodynamical analysis of the supercritical plant with and without incorporation of ORC was accomplished using computational flow mechanics numerical codes. Investigated were six working fluids such as propane, isobutane, pentane, ethanol, R236ea and R245fa. In the course of calculations determined were primarily the increase of the unit power and efficiency for the reference case and that with the ORC.
机译:本文的目的是在参考条件下以及引入包含ORC的混合系统之后,分析超临界电厂的热力学和运行参数。在ORC中,上部热源是温度为90°C的热回收系统中的热水流,此外,蒸汽汽轮机放气中的热量也可以辅助加热。使用计算流体力学数字代码可完成对超临界设备(装有或不装有ORC)的热力学分析。研究了六种工作流体,例如丙烷,异丁烷,戊烷,乙醇,R236ea和R245fa。在计算过程中,确定的主要是参考案例和ORC的单位功率和效率的增加。

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