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Experimental investigation on thermal performance and economic analysis of cosine wave tube structure in a shell and tube heat exchanger

机译:壳管式换热器余弦波管结构的热性能实验研究及经济性分析

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摘要

A novel design of tube structure with cosine wave is proposed in this study to investigate effects of wavy surface characteristics on enhancement of heat transfer in a shell and tube heat exchanger, experimentally. All experiments have been designed and carried out on water/water loops. Response Surface Methodology is used to investigate the optimization procedure. Four effective parameters of wavy starting length (0 mm <= b <= 120 mm), hot water flow rates (11 l/min <= Q(c) <= 19 l/min), cold water flow rates (7 l/min <= Q(h) <= 11 l/min) and wavy wavelength (0 mm <= lambda <= 80 mm) in five levels was selected to obtain the maximum thermal performance factor. The results showed that the thermal performance factor reduces by increasing of the hot water flow rate. The thermal performance factor of wave tubes is found to be larger than that of smooth tubs. Optimizing of the procedure indicated that to maximize the thermal performance factor, the lower values of wave starting length and hot water flow rate, and higher values of cold water flow rate and a wavelength of 33.13 mm, must be selected. Also results show that the corrugating process is useful from economic analysis point of view.
机译:在这项研究中提出了一种具有余弦波的管结构的新颖设计,以实验方式研究波浪形表面特性对增强壳管式热交换器中的传热的影响。所有实验均已设计并在水/水回路上进行。响应面方法用于研究优化程序。波浪形起始长度(0 mm <= b <= 120 mm),热水流量(11 l / min <= Q(c)<= 19 l / min),冷水流量(7 l / min)的四个有效参数min <= Q(h)<= 11 l / min)和五个波长的波状波长(0 mm <=λ<= 80 mm)被选择以获得最大的热性能因子。结果表明,随着热水流量的增加,热性能系数降低。发现波管的热性能系数比光滑的浴缸大。程序的优化表明,要最大化热性能因子,必须选择较低的起波长度和热水流量值,以及较高的冷水流量值和波长33.13 mm。结果还表明,从经济分析的角度来看,瓦楞纸的生产过程是有用的。

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