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Full repowering of an existing fossil fuel steam power plant in terms of energy, exergy, and environmen for efficiency improvement and sustainable development

机译:在效率改进和可持续发展方面,全面重新重新排斥现有的化石燃料蒸汽发电厂

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In this study, the feed-water-heating method is studied due to its numerous advantages for the repowering of 320 MW units at Isfahan power plant. In this method, only low-pressure heat exchangers or only high-pressure heat exchangers can be replaced with a new gas-water heat exchanger, or both can be replaced by two high-pressure and low-pressure heat exchangers. It is also possible to do the preheating of boiler feed water in parallel with existing heat exchangers and new heat exchangers. Each of this method has its own characteristics that have advantages and disadvantages. We first analyze the energy and exergy of the existing cycle and then analyze the methods used to feed-water-heating repowering. Various gas turbines are used for this work, and the results are expressed. Energy and exergy efficiencies are considered as objective functions, and finally, while considering other limiting parameters, it is recommended for each method of optimal gas turbine. The characteristics of the new heat exchangers are also described. In the first method, net efficiency of energy and exergy is increased relatively to 8.25% and 8.4%, respectively, and in the second method net efficiency of energy and exergy is increased relatively to 10.96% and 11.56%, respectively.
机译:在这项研究中,通过其在伊斯法罕发电厂重新推动320 MW单位的众多优势,对进料水加热方法进行了研究。在该方法中,只有低压热交换器或仅替换高压热交换器,可以用新的气水热交换器代替,或者两者都可以用两个高压和低压热交换器代替。还可以与现有的热交换器和新型热交换器平行进行锅炉供给水的预热。每个方法都有自己的特征,具有具有优缺点。我们首先分析现有循环的能量和漏斗,然后分析用于饲料 - 加热重新电力的方法。各种燃气轮机用于该工作,结果表示。能量和漏洞效率被认为是客观功能,最后,在考虑其他限制参数时,建议为每种最佳燃气轮机的方法。还描述了新型热交换器的特性。在第一种方法中,能量和排泄的净效率分别增加了8.25%和8.4%,并且在第二种方法中,能量和排泄的净效率分别增加到10.96%和11.56%。

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