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Forced, natural and mixed-convection heat transfer and fluid flow in annulus: A review

机译:环空强迫自然对流传热与流体流动:综述

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The enhancement of the thermal performance of heat exchanging equipment transport energy at low financial cost by various techniques is presented in this review. Heat transfer is classified into three forms, namely, conduction, convection, and radiation. Convection is one of the major modes of heat transfer that can be qualified in terms of being natural, forced, gravitational, granular, or thermomagnetic. In the past decade, several studies on convection heat transfer in annular pipes with nanofluids have been reported. The effect of eccentricity in horizontal, inclined and vertical directions on heat transfer rate in most numerical and experimental investigations for horizontal, inclined and vertical annular tubes is studied. The effects of heater length, as well as the Darcy, Prandtl, Reynolds, Grashof and Rayleigh numbers on heat transfer in concentric and eccentric annular tubes are also investigated. This paper reviews various researches on fluid flow and heat transfer behavior in an annulus. A basic description of the convection heat transfer is given. Numerical and experimental investigations are conducted according to the concentric and eccentric annuli. Finally, conclusions and important summaries are presented according to the collected data.
机译:本文介绍了通过各种技术以较低的财务成本提高热交换设备运输能源的热性​​能。传热分为三种形式,即传导,对流和辐射。对流是主要的传热方式之一,可以自然,强制,重力,粒状或热磁的方式进行对流。在过去的十年中,已经报道了对具有纳米流体的环形管道中对流传热的一些研究。在水平,倾斜和垂直环形管的大多数数值和实验研究中,都研究了水平,倾斜和垂直方向上的偏心距对传热速率的影响。还研究了加热器长度以及Darcy,Prandtl,Reynolds,Grashof和Rayleigh数对同心和偏心环形管中传热的影响。本文综述了关于环空中流体流动和传热行为的各种研究。对流传热的基本描述。根据同心和偏心环进行了数值和实验研究。最后,根据收集到的数据给出了结论和重要的摘要。

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