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首页> 外文期刊>The Archive of Mechanical Engineering >Numerical Study of Friction Factor and Heat Transfer Characteristics for Single-Phase Turbulent Flow in Tubes with Helical Micro-Fins
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Numerical Study of Friction Factor and Heat Transfer Characteristics for Single-Phase Turbulent Flow in Tubes with Helical Micro-Fins

机译:螺旋微细管内单相湍流摩擦系数和传热特性的数值研究

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The paper presents a numerical study on the heat transfer and pressure drop, related to flow in pipes with helical micro-fins. For all tested geometries, one applied a constant wall heat flux and fully developed 3D turbulent flow conditions. The influence of the angle of micro fins (referred to the tube axis) on thermal-flow characteristics were tested. The value of this angle was varied – with a step of 10 degrees – from 0 to 90 degrees (representing grooves parallel and perpendicular to the axis, respectively). Before numerical investigation, the pipe with helical angle of 30 degree was tested on an experimental stand. The results obtained from experiment and numerical simulations were compared and presented on the charts. As an effect of the numerical simulations, the friction factor f and Nusselt number characteristics was determined for the range of Re=104/1.6x106. The analysis of the results showed high, irregular influence of the helical angle on thermal characteristics and pressure drops. Additionally, the ratios: f/fplain, Nu/Nuplainand efficiency indexes (Nu/Nuplain)/( f/fplain) as a function of the Reynolds number for every helical angle were shown on the charts.
机译:本文对与螺旋微翅片管内流动有关的传热和压降进行了数值研究。对于所有测试的几何形状,一个应用恒定的壁热通量和完全发展的3D湍流条件。测试了微散热片的角度(称为管轴)对热流特性的影响。该角度的值在0到90度之间以10度的步长变化(分别表示平行于和垂直于轴的凹槽)。在进行数值研究之前,在实验台上测试了螺旋角为30度的管道。比较了从实验和数值模拟获得的结果,并显示在图表上。由于数值模拟的影响,在Re = 104 / 1.6x106的范围内确定了摩擦系数f和Nusselt数特性。结果分析表明,螺旋角对热特性和压降有很大的不规则影响。此外,图表上还显示了比率:f / fplain,Nu / Nuplain和效率指数(Nu / Nuplain)/(f / fplain)与每个螺旋角的雷诺数的关系。

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