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A new approach to determining the intermediate temperatures of endoreversible combined cycle power plant corresponding to maximum power

机译:确定与最大功率相对应的内可逆联合循环电厂中间温度的新方法

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Determining the optimal operating temperatures of power plants corresponding to maximum power is important for not only the analysis of cycle performance, but also the selection of appropriate working fluids and their pressures. This study develops a new and convenient approach to determining the intermediate operating temperatures of n-stage endoreversible combined cycle power plants comprising n (arbitrary number) Carnot heat engines corresponding to the twice maximized power output by using the entransy transfer efficiency as an auxiliary parameter. The new approach reveals that when the temperatures of the hot and cold reservoirs, the total thermal conductance as well as the stage number of the n-stage power plant are given, only two of these intermediate temperatures have fixed values, while the other ones are variable. It provides considerable flexibility for the designers to the selection of the optimal operating temperatures and appropriate working fluids. The procedures for determining all the possible values of these intermediate temperatures are demonstrated. Next, a practical optimization problem of a two-stage combined cycle power plant is taken as an example to illustrate the superiority of the newly proposed approach to the existing one. Finally, the physical meaning of entransy transfer efficiency, together with its limitation is discussed and a comparison between the entransy-based efficiency and exergy-based efficiency is presented.
机译:确定与最大功率相对应的发电厂的最佳运行温度不仅对循环性能的分析很重要,而且对于选择合适的工作流体及其压力也很重要。这项研究开发了一种新的便捷方法,可通过使用转移传输效率作为辅助参数来确定n阶内可逆联合循环发电厂的中间运行温度,该装置包括n个(任意数量)卡诺热机,对应于两倍于最大功率输出。新方法表明,当给出冷热库的温度,总热导率以及n级发电厂的级数时,这些中间温度中只有两个具有固定值,而其他中间温度是固定值。变量。它为设计人员选择最佳工作温度和合适的工作流体提供了极大的灵活性。演示了确定这些中间温度的所有可能值的过程。接下来,以两级联合循环电厂的实际优化问题为例,以说明新提出的方法对现有方法的优越性。最后,讨论了能源转移效率的物理意义及其局限性,并提出了基于能源转移效率和基于火用效率的比较。

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