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Heat Transportation by Oscillatory Flow with Steady Flow Component

机译:振荡流与稳态流的热传递

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This paper deals with heat transportation by an oscillatory flow composed of a sinusoidal oscillatory flow superimposed with a steady flow. Velocity and temperature fields, heat transportation rate, work rate, and heat transportation efficiency were investigated through numerical analysis. Results obtained elucidated that (1) the phase difference between velocity and temperature variation remained the same as that of the sinusoidal reciprocal flow without the use of a steady flow component. (2) In the upstream direction heat was mainly transported by the steady flow component and in the downstream direction transportation was mainly performed by the oscillatory flow component. (3) The heat transportation rate of the present oscillatory flow composed of both steady and oscillatory flow components was less than the arithmetic sum of the rates produced by the steady flow and the sinusoidal oscillatory flow. (4) The heat transportation rate was increased immensely by superimposing the steady flow on the sinusoidal oscillatory flow. (5) Conversely, work done by the present oscillatory flow increased only slightly.
机译:本文通过由正弦振荡流与稳定流叠加而成的振荡流处理热量传输。通过数值分析研究了速度场和温度场,传热速率,工作速率和传热效率。得到的结果表明:(1)速度和温度变化之间的相位差与正弦往复流动的相位差保持不变,而没有使用稳定的流动分量。 (2)在上游方向,热量主要由稳定流分量传递,而在下游方向,热量主要由振荡流分量进行。 (3)由稳定流和振荡流组成的当前振荡流的热传输速率小于稳定流和正弦振荡流产生的速率的算术总和。 (4)通过将稳定流叠加在正弦振荡流上,极大地提高了热传输率。 (5)相反,由当前振荡流完成的功仅略有增加。

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