首页> 外文会议>ASME(American Society of Mechanical Engineers)/JSME(Japanese Society of Mechanical Engineers) Thermal Engineering Summer Heat Transfer Conference 2007 >NUMERICAL SIMULATION OF THE COORDINATION BETWEEN VELOCITY AND TEMPERATURE FIELDS FOR AIR FLOW ACROSS STAGGERED ELLIPTIC TUBE BUNDLES
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NUMERICAL SIMULATION OF THE COORDINATION BETWEEN VELOCITY AND TEMPERATURE FIELDS FOR AIR FLOW ACROSS STAGGERED ELLIPTIC TUBE BUNDLES

机译:交错的椭圆形管束内气流速度与温度场协调性的数值模拟

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摘要

The coordination between the velocity and temperature fields in 2-D developed turbulent flow is analyzed for air across the staggered elliptic tube bundles by means of numerical simulation. The results indicate that the convective heat transfer performance is dominated by the degree of coordination between the velocity and temperature fields. Furthermore, the included angle β between the dimensionless velocity and dimensionless temperature gradient vectors is one of the important factors to control the coordination. The field coordination can be improved by adjusting the include angle β, subsequently the heat transfer can be enhanced effectively. Field coordination principle promotes the development of heat transfer research in a controllable direction.
机译:通过数值模拟分析了二维交错湍流中速度和温度场之间的协调,以分析穿过交错椭圆管束的空气。结果表明,对流换热性能主要取决于速度场与温度场之间的协调程度。此外,无量纲速度和无量纲温度梯度向量之间的夹角β是控制协调的重要因素之一。通过调整夹角β可以改善场的协调性,随后可以有效地提高热传递。场协调原理在可控的方向上促进了传热研究的发展。

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