Study of Thermal Performance of Common Heat Exchangers by Using Nanofluids

Tayyab-ul-Islam, Rasikh Tariq, K. A. Sheikh, Muhammad Shayyan
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引用次数: 3

Abstract

In this work, an experimental study is carried out by using CuO based nanofluid in four different configurations of some common heat exchangers including shell-and-tube type, concentric, spiral and plate heat exchanger for the counter-flow arrangement. Necessary equipment, instrumentation, data-acquisition module and nanofluid preparation method is described. The experimental setup is benchmarked using water in both hot and cold fluid channels by validating its results with results reported in the literature. Afterwards, nanofluid is used in the hot fluid chamber and tap water is used for cold fluid for each of the heat exchangers. The analysis is carried out for three different concentrations of the nanofluid including 0.2%, 0.4%, and 0.6% of CuO. The influence of nanofluid on the heat transfer from the hot fluid chamber and effectiveness is reported experimentally for three volume fractions. A ∼21% enhancement of heat transfer in concentric, shell-and-tube, and spiral heat exchanger; whereas, a 26% enhancement is observed in plate heat exchanger. This research identifies an important avenue towards a more compact design of new heat exchangers, and heat transfer enhancement of existing heat exchangers.
利用纳米流体研究普通换热器的热性能
本文在壳管式、同心式、螺旋式和板式换热器等四种常见换热器的逆流布置中,对CuO基纳米流体进行了实验研究。介绍了必要的设备、仪器仪表、数据采集模块和纳米流体制备方法。通过与文献中报道的结果验证其结果,实验装置在热流体和冷流体通道中使用水进行基准测试。然后,在热流体室中使用纳米流体,在每个热交换器中使用自来水作为冷流体。对三种不同浓度的纳米流体进行了分析,包括0.2%、0.4%和0.6%的CuO。实验研究了纳米流体对热流体室传热的影响及其在三种体积分数下的有效性。在同心、管壳式和螺旋式换热器中传热提高~ 21%;而板式换热器的传热效率提高了26%。这项研究确定了一个重要的途径,朝着更紧凑的设计新的热交换器,并传热增强现有的热交换器。
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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