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LOCAL SINGLE-PHASE HEAT TRANSFER RESEARCH OF NATURAL CIRCULATION IN NARROW RECTANGULAR CHANNEL

机译:矩形矩形通道内自然循环的局部单相传热研究

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In order to explore and analyze the heat transfer characteristics in narrow rectangular channel, experiments on local single-phase heat transfer of natural circulation in a one-side heating narrow rectangular channel have been conducted under vertical and inclined condition. The thermotechnical parameters such as inlet temperature, heat flux and inclination angle varies during the experiments. The width of the flow channel is 40 mm and the narrow gap is 2 mm. It is heated from one side with a homogeneous and constant heat flux and the working medium is deionized water. Based on the experimental results, under vertical condition, the driving force in the loop goes up and the Reynolds number also increases when the inlet temperature is elevated, which causes an increase in local Nusselt number. When the heat flux rises, the local Nusselt number increases and the heat transfer temperature difference increases. The local Nusselts number is influenced by entrance effect and the entrance region length is computed for laminar and turbulent flow. Under inclined condition, with the inclination angle from -30° to 30°, it is found that when the inclination angle is positive, the local Nusselt number in fully developed region is larger than that under vertical condition and increases with the angle value, even though the Reynolds number decreases by the effect of incline. This phenomenon is explained by giving an analysis of the natural convection, which is characterized by the normal Grashof number, in the direction perpendicular to the heating plat. Moreover, the variation of heat transfer is also interpreted on the basis of field coordination principle. However, when the inclination angle is negative, the heat transfer shows no obvious difference between vertical condition and inclined condition.
机译:为了探索和分析窄矩形通道内的传热特性,在垂直和倾斜条件下进行了单侧加热窄矩形通道内自然循环的局部单相传热实验。在实验过程中,诸如入口温度,热通量和倾角之类的热工参数会发生变化。流道的宽度为40毫米,窄间隙为2毫米。它从一侧以均匀且恒定的热通量加热,工作介质为去离子水。根据实验结果,在垂直条件下,当入口温度升高时,回路中的驱动力会上升,雷诺数也会增加,这会导致局部Nusselt数增加。当热通量增加时,局部Nusselt数增加,并且传热温度差增加。局部努塞尔数受入口效应的影响,并计算层流和湍流的入口区域长度。发现在倾斜条件下,倾斜角度为-30°到30°时,当倾斜角度为正时,完全展开区域的局部Nusselt数大于垂直条件下的局部Nusselt数,并且随角度值的增加而增大。尽管雷诺数由于倾斜的影响而减小。通过对自然对流的分析来解释这种现象,自然对流的特征是在垂直于加热板的方向上具有正常的Grashof数。此外,还基于场协调原理来解释热传递的变化。但是,当倾斜角度为负时,垂直状态和倾斜状态之间的传热没有明显差异。

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