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Thermoeconomic Optimization of a 450 MW Natural Gas Burning Steam Power Plant

机译:450 MW天然气燃烧蒸汽发电厂的热经济优化

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The theory of thermoeconomics and local optimization were used to investigate how the cost of the resources consumed by a 450 MW power plant varies with the unit cost of the resources consumed, the technical production coefficients of the productive structure and/or the external demand for the products. In order to accomplish this, the costs of exergy of the productive structure were analyzed under three different conditions by using the relevant characteristic equations. In general, itwas found that the thermoeconomic cost of a flow consists of two parts, namely the monetary cost of the fuel exergy (natural gas in the present study) needed to produce the flow, that is, its thermoeconomic cost and the costs due to the productive process (cost of capital equipment, maintenance, etc.). The results show that the steam leaving the boiler has the lowest exergy cost, while the condenser has the highest. The sequential quadratic programming (SQP) algorithm was used to obtain the optimized solutions of each major component of the plant. It was found that substantial operational and capital cost benefits were realized by optimizing most of the major plant equipment (boiler, turbines, feedwater heaters and the pumps). However, optimization of the condenser did not yield any cost benefit in capital equipment cost, but did produce some savings in operational cost.
机译:热经济学和局部优化理论用于调查450 MW发电厂所消耗的资源成本如何随所消耗的资源的单位成本,生产性结构的技术生产系数和/或外部需求产品。为了实现这一点,通过使用相关的特征方程,在三种不同的条件下分析了生产结构的漏洞的成本。通常,ITWA发现流量的热量经济成本由两部分组成,即燃料暴露(本研究中天然气)的货币成本需要产生流量,即其热经济成本和由于成本生产过程(资本设备,维护等成本)。结果表明,离开锅炉的蒸汽具有最低的低得力成本,而冷凝器最高。顺序二次编程(SQP)算法用于获得植物每个主要部件的优化解决方案。发现通过优化大部分主要植物设备(锅炉,涡轮机,喷水器和泵)来实现大量运营和资本成本效益。然而,优化冷凝器的优化并没有在资本设备成本中产生任何成本效益,但确实可以节省一些运营成本。

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