首页> 外文期刊>Sadhana: Academy Proceedings in Engineering Science >Effects of tangential and radial velocity on fluid flow and heat transfer for flow through a pipe with twisted tape insert-laminar flow
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Effects of tangential and radial velocity on fluid flow and heat transfer for flow through a pipe with twisted tape insert-laminar flow

机译:切向和径向速度对流体流过管式流体流动和热传递的影响

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The present study reports the numerical analysis of fluid flow and heat transfer in a pipe with full length twisted tape insert. The investigation is carried out for five different twist ratios of 4, 5, 6, 8 and 10 at 100 = Re = 1000. The velocity field in terms of streamwise, tangential and radial velocity and temperature field are studied as a function of Reynolds number and twist ratio. The variation of friction factor and Nusselt number with Reynolds number for different twist ratios is also presented. The heat transfer enhancement due to insertion of twisted tape mainly comes from the tangential and radial components of velocities, which are regarded as secondary fluid motion. It is evident from the results that with increase in Reynolds number the axial convection increases. However, with the decrease in the twist ratio, the tangential and radial convection increases, leading to increased heat transfer. The secondary flow affects the thermal boundary layer inside the tube and increases the cross-flow mixing, which increases the heat transfer. The correlations for prediction of friction factor and Nusselt number based on the numerical data are also proposed.
机译:本研究报告了具有全长扭转带插入件的管道中流体流量和传热的数值分析。在100个& = 1000处进行5种不同捻度比的5种不同的捻度比。雷诺数和捻度的功能。还介绍了不同扭曲比的雷诺数的摩擦因子和泡沫数的变化。由于插入捻胶带的传热增强主要来自速度的切向和径向部件,其被视为二次流体运动。从结果中的结果是明显的,随着摇晃的数量增加,轴向对流增加。然而,随着扭曲比的降低,切向和径向对流增加,导致传热增加。二次流动影响管内的热边界层并增加横流混合,这增加了热传递。还提出了基于数值数据的摩擦因子和诺斯号的预测的相关性。

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