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Exergy and Environmental Impact Assessment between Solar Powered Gas Turbine and Conventional Gas Turbine Power Plant

机译:太阳能燃气轮机和常规燃气轮机发电厂的火用和环境影响评估

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Recuperator is a heat exchanger that is used in gas turbine power plants to recover energy from outlet hot gases to heat up the air entering the combustion chamber. Similarly, the combustion chamber inlet air can be heated up to temperatures up to 1000 (°C) by solar power tower (SPT) as a renewable and environmentally benign energy source. In this study, comprehensive comparison between these two systems in terms of energy, exergy, and environmental impacts is carried out. Thermodynamic simulation of both cycles is conducted using a developed program in MATLAB environment. Exergetic performances of both cycles and their emissions are compared and parametric study is carried out. A new parameter (renewable factor) is proposed to evaluate resources quality and measure how green an exergy loss or destruction or a system as a whole is. Nonrenewable exergy destruction and loss are reduced compared to GT with recuperator cycle by 34.89% and 47.41%, respectively. Reductions in CO2, NO_x, and CO compared to GT with recuperator cycle by 49.92%, 66.14%, and 39.77%, respectively, are in line with renewable factor value of around 55.7 which proves the ability of the proposed green measure to evaluate and compare the cycles performances.
机译:换热器是一种热交换器,用在燃气轮机发电厂中,从出口的热气中回收能量,以加热进入燃烧室的空气。同样,燃烧室进气可通过太阳能塔(SPT)作为可再生和对环境无害的能源被加热到高达1000(°C)的温度。在这项研究中,在能量,火用和环境影响方面对这两个系统进行了全面比较。两个循环的热力学模拟是使用MATLAB环境中开发的程序进行的。比较两个循环的能量表现及其排放,并进行参数研究。提出了一个新的参数(可再生因子)来评估资源质量并衡量火用损失或破坏或整个系统的绿色程度。与带有换热器循环的GT相比,不可再生的火用破坏和损失分别减少了34.89%和47.41%。与GT相比,换热器循环时CO2,NO_x和CO的减少分别减少了49.92%,66.14%和39.77%,与可再生因子值约55.7一致,证明了拟议的绿色措施具有评估和比较的能力自行车表演。

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