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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy >Thermoenvironomic optimization of gas turbine cycles with air preheat
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Thermoenvironomic optimization of gas turbine cycles with air preheat

机译:带有空气预热的燃气轮机循环的热环境优化

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摘要

In optimization of thermodynamic cycles, it is appropriate for the economic and environmental aspects to be considered simultaneously. The sum of the fuel and investment cost flowrates is known as thermoeconomic objective function. A new objective function, known as a thermoenvironomic objective function, is obtained by integrating the environmental impacts, which should be defined and expressed in terms of cost, and thermoeconomic objective function. The objective of this paper is to study the effect of air preheater (APH) in the thermodynamic cycles by considering environmental impacts. In order to perform this, four simple thermodynamic cycles are selected and economic and environmental aspects are optimized. All considered thermodynamic cycles produce 30 MW of electricity and two of them, which are cogeneration systems, produce 18 kg/s of saturated steam at 20 bar, too. For optimization of these cycles, a code has been developed in MATLAB based on the real coding and optimal solutions have been obtained. The results show that the existence of APH increases exergetic efficiency of the cycles and the environmental impacts cost flowrate but decreases the total cost flowrate. Also, in the cycles without APH, the optimum values of decision variables corresponding to thermoeconomic and thermoenvironomic objective functions do not change considerably, while in the cycles with APH, they change noticeably.
机译:在优化热力学循环时,同时考虑经济和环境方面是适当的。燃料和投资成本流量之和称为热经济目标函数。通过整合环境影响获得新的目标函数,称为热环境目标函数,应根据成本和热经济目标函数定义和表示环境影响。本文的目的是通过考虑环境影响来研究空气预热器(APH)在热力学循环中的作用。为了执行此操作,选择了四个简单的热力学循环,并优化了经济和环境方面。所有考虑的热力学循环均产生30兆瓦的电能,其中两个是热电联产系统,在20巴时也产生18千克/秒的饱和蒸汽。为了优化这些循环,已在MATLAB中基于实际编码开发了代码,并获得了最佳解决方案。结果表明,APH的存在增加了循环的能量利用效率,对环境影响了成本流量,但降低了总成本流量。同样,在没有APH的循环中,与热经济和热环境目标函数相对应的决策变量的最佳值不会显着变化,而在具有APH的循环中,它们的变化会明显。

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