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Water to Nanofluids heat transfer in concentric tube heat exchanger: Experimental study

机译:同心管热交换器中纳米流体热传递的水:实验研究

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Concentric tube heat exchanger is a low cost, which increases reliability by restricting mixing of fluids exchanging heat. Concentric tube heat exchanger has potential application such as heat recovery from engine cooling circuit, oil cooling, desuperheating in refrigeration and air conditioning, dairy, and chemical industry, pharmaceutical industry, refinery, etc. This paper concentrate on an experimental study on concentric tube heat exchanger for water to nanofluids heat transfer with various concentrations of nanoparticles in to base fluids and application of nanofluids as working fluid. The experimental results on this type of heat exchanger configuration and water nanofluids could not be located in literature. Overall heat transfer coefficient was experimentally determined for a fixed heat transfer surface area with different volume fraction of nanoparticles in to base fluids and results were compared with pure water. It observed that, 3 % nanofluids shown optimum performance with overall heat transfer coefficient 16% higher than water.
机译:同心管热交换器是一种低成本,这通过限制流体交换热量的混合来提高可靠性。同心管热交换器具有潜在的应用,例如发动机冷却回路的热回收,制冷和空调,乳制品和化学工业,制药行业,炼油厂等。本文集中了同心管热的实验研究用水至纳米流体的交换剂以各种浓度的纳米颗粒在碱流体中和纳米流体作为工作流体的应用。这种类型的热交换器配置和水纳米流体的实验结果不能位于文献中。实验总传热系数针对具有不同体积分数的纳米颗粒的固定传热表面积实验,并将结果与​​纯水进行比较。它观察到,3%纳米流体显示出最佳性能,总传热系数比水高16%。

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