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Convective heat transfer and friction factor correlations of nanofluid in a tube and with inserts: A review

机译:纳米流体在管子和插入物中的对流传热与摩擦系数的关系:综述

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In the heat transfer area researches have been carried out over several years for the development of convective heat transfer enhancement techniques. The use of additives in the base fluid like water or ethylene glycol is one of the techniques applied to augment the heat transfer. Recently an innovative nanometer sized particles have been dispersed in the base fluid in heat transfer fluids. The fluids containing the solid nanometer size particle dispersion are called 'nanofluids'. The dispersed solid metallic or nonmetallic nanoparticles change the thermal properties like thermal conductivity, viscosity, specific heat, density, heat transfer and friction factor of the base fluid. Nanofluids are having high thermal conductivity and high heat transfer coefficient compared to single phase fluids. The enhancement in heat transfer coefficient with the effect of Brownian motion of the nanoparticles present in the base fluid. In this paper, a comprehensive literature on the correlations developed for heat transfer and friction factor for different kinds of nanofluids flowing in a plain tube under laminar to turbulent flow conditions have been compiled and reviewed. The review was also extended to the correlations developed for the estimation of heat transfer coefficient and friction factor of nanofluid in a plain tube with inserts under laminar to turbulent flow conditions. However, the conventional correlations for nanofluid heat transfer and friction factor are not suitable and hence various correlations have been developed for the estimation of Nusselt number and friction factor for both laminar and turbulent flow conditions inside a tube with inserts.
机译:在传热领域,已经进行了数年的研究以开发对流传热增强技术。在基础流体中使用添加剂(例如水或乙二醇)是用于增强传热的技术之一。最近,创新的纳米级颗粒已经分散在传热流体中的基础流体中。包含固体纳米尺寸颗粒分散体的流体称为“纳米流体”。分散的固体金属或非金属纳米颗粒会改变热性能,例如基础流体的导热率,粘度,比热,密度,热传递和摩擦系数。与单相流体相比,纳米流体具有高导热率和高传热系数。在基础流体中存在的纳米颗粒的布朗运动的影响下,传热系数的提高。本文对层流至湍流条件下在普通管中流动的各种纳米流体的传热与摩擦因数之间的相关性进行了综合研究。审查还扩展到相关性,用于估计在层流到湍流条件下带有插入件的普通管中纳米流体的传热系数和摩擦系数。但是,纳米流体传热和摩擦系数的常规相关性不合适,因此,对于带有插入物的管内的层流和湍流条件,已开发出各种相关性来估算努塞尔数和摩擦系数。

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