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THERMAL PERFORMANCE ENHANCEMENT OF AN INDUSTRIAL SHELL AND TUBE HEAT EXCHANGER

机译:工业外壳和管式换热器的热性能增强

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This paper aims to enhance the thermal performance of an industrial shell-and-tube heat exchanger utilized for the purpose of cooling raw natural gas by means of mixture of Sales gas. The main objective of this work is to provide an optimum and reliable thermal design of a single-shelled finned tubes heat exchanger to replace the existing two- shell and tube heat exchanger due to the space limitations in the plant. A comprehensive thermal model was developed using the effectiveness-NTU method. The shell-side and tube-side overall heat transfer coefficient were determined using Bell-Delaware method and Dittus-Boelter correlation, respectively. The obtained results showed that the required area to provide a thermal duty of 1.4 MW is about 1132 m~2 with tube-side and shell-side heat transfer coefficients of 950 W/m~2K and 495 W/m~2K, respectively. In order to verify the obtained results generated from the mathematical model, a numerical study was carried out using HTRI software which showed a good match in terms of the heat transfer area and the tube-side heat transfer coefficient.
机译:本文旨在提高工业壳管式换热器的热性能,该换热器用于通过与销售气体的混合气来冷却原始天然气。这项工作的主要目的是为单壳翅片管式换热器提供最佳且可靠的热设计,以由于工厂空间的限制而取代现有的双壳管式换热器。使用有效性-NTU方法开发了一个综合的热模型。分别使用Bell-Delaware方法和Dittus-Boelter相关性确定壳侧和管侧的总传热系数。获得的结果表明,提供1.4 MW热负荷所需的面积约为1132 m〜2,管侧和壳侧的传热系数分别为950 W / m〜2K和495 W / m〜2K。为了验证从数学模型生成的结果,使用HTRI软件进行了数值研究,该研究显示了传热面积和管侧传热系数的良好匹配。

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