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首页> 外文期刊>Journal of Thermal Engineering >Geometry Effects on Thermohydraulic Behavior of Fluid Flow in a Square Enclosure with an Inner Circular Tube
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Geometry Effects on Thermohydraulic Behavior of Fluid Flow in a Square Enclosure with an Inner Circular Tube

机译:几何形状对带有内圆管的方形外壳中流体流动的热工水力行为的影响

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摘要

Convective heat transfer in non circular channels are of interest in many industrial applications. In the present work, fluid flow in the space between a square channel and a circular tube with different positions of the holder rigid plate is investigated numerically. The use of holder plates is applicable in industrial applications. Holder plates allow different flows with different thermal and hydrodynamic behaviors in a channel at constant Reynolds numbers. Six geometries selected to explore the effect of the position of holder plate on heat transfer rate. Results demonstrated that the plate position has significant effects on fluid flow behavior. It is found that hydrodynamic and thermal behavior affected by the plate position for different Reynolds numbers. For example, for the case that the circular tube is positioned in the center of the square channel with two inclined plates, average convective heat transfer outside and between the two plates is 344 [wm2k] and 465 [wm2k], respectively.
机译:在许多工业应用中,非圆形通道中的对流传热非常重要。在目前的工作中,数值研究了方形通道和圆形管之间的空间中的流体流动,该方形通道与圆形管之间的夹持器刚性板的位置不同。固定板的使用适用于工业应用。固定板允许以恒定的雷诺数在通道中以不同的热力学和流体力学特性流动。选择了六个几何形状,以探索固定板位置对传热速率的影响。结果表明,板的位置对流体流动行为有重要影响。发现对于不同的雷诺数,流体动力学和热行为受板位置的影响。例如,对于圆形管位于带有两个倾斜板的方形通道的中心的情况,在两个板的外部和之间的平均对流传热分别为344 [wm2k]和465 [wm2k]。

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