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Effect on Heat Transfer Characteristics of Nanofluids Flowing under Laminar and Turbulent Flow Regime - A Review

机译:流动下流动流动纳米流体传热特性对综述 - 综述

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Heat transfer is a most important phenomenon that influence the performance of working device. To date several attempts have been made by researchers to minimize the size of heat exchangers in order to reduce the cost. Earlier we use some conventional fluids (water, air, engine oil etc.) for cooling of automobile, refrigeration and some other industrial applications. But it is observed here that by using these fluids there is curb and hindrance in heat transfer rate because of very low thermal conductivity. From last ten-years new generation fluid introduced known as nanofluid. To increase the thermal conductivity of base fluid some amount of nanoparticles is added. Nanofluid have combined properties of nanoparticles as well as base fluid. Researcher found that heat transfer rate fully dependent of the thermal conductivity of nanoparticles as well as nanoparticle size diameter and volume concentration. This review paper summarised the recent research on enhancement of heat transfer and thermal performance of nanofluid as coolant for industrial applications.
机译:传热是影响工作装置性能的最重要现象。迄今为止,研究人员已经进行了多次尝试,以最大限度地减少热交换器的尺寸,以降低成本。早些时候,我们使用一些常规流体(水,空气,发动机油等)来冷却汽车,制冷和一些其他工业应用。但是,在这里观察到,由于导热性极低,通过使用这些流体存在传热速率的遏制和障碍。从最后十年的新一代液引入纳米流体。为了增加基础流体的导热率,添加了一定量的纳米颗粒。纳米流体具有纳米颗粒的组合性和基础流体。研究人员发现,传热速率完全依赖于纳米颗粒的导热率以及纳米颗粒尺寸直径和体积浓度。该综述综述了最近提高纳米流体的热传递和热性能的研究,作为工业应用的冷却剂。

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