Bir Reküperatörün Basınç Düşüşleri ve İşletme Maliyetleri Göz önünde bulundurularak Teknoekonomik Optimizasyonu

Erhan KAYABAŞI
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Abstract

In this study, heat transfer and cost optimization of a gas-to-gas heat exchanger (recuperator) operating in the targeted temperature range has been made. Firstly, the thermophysical properties of the waste heat source and the volumetric flow rates of the flows were obtained, and the maximum heat that could be recovered was obtained. Afterward, a parametric study was carried out to size the recuperator. The parameters affecting the cost, such as hot flow and cold flow outlet temperatures, were determined by the overall heat transfer coefficient, effectiveness, and pressure drop. Finally, the thermal parameters obtained from the parametric study are used in the technoeconomic analysis. The recuperator geometry with the maximum saving coefficient was determined considering investment and operating costs. As a result, the 108th simulation resulted in maximum savings with 653 252 $/year using 321.19 m2 heat transfer surface area.
考虑压降和运行成本的换热器技术经济优化
在本研究中,对在目标温度范围内运行的气-气换热器(回热器)进行了传热和成本优化。首先,得到了废热源的热物理性质和流动的体积流量,得到了可回收的最大热量。随后,进行了参数化研究,以确定回热器的尺寸。影响成本的参数,如热流和冷流出口温度,由总体换热系数、有效性和压降决定。最后,将参数化研究得到的热参数用于技术经济分析。考虑投资和运行成本,确定节约系数最大的回热器几何形状。因此,在第108次模拟中,使用321.19平方米的传热表面积,最大节省了653 252美元/年。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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