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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >COOLED VORTEX STREET GENERATED BY COOLING A CYLINDER AT LOW REYNOLDS NUMBER: EFFECTS OF REYNOLDS NUMBER DIFFERENCE ON COOLED WAKE AND COOLED VORTEX STREET
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COOLED VORTEX STREET GENERATED BY COOLING A CYLINDER AT LOW REYNOLDS NUMBER: EFFECTS OF REYNOLDS NUMBER DIFFERENCE ON COOLED WAKE AND COOLED VORTEX STREET

机译:通过冷却低雷诺数的汽缸产生的冷却涡街:雷诺数差对冷却苏醒和冷却涡街的影响

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First, the dominant action in the cooled wakes in mercury and water at the Reynolds number Re=22 and 44 is discussed. Next, the cooled wake at Re=22 is numerically simulated and is compared with the previous results at Re=44. Finally, effects of Re on the cooled wake and the cooled vortex street are elucidated, and are found to be extremely powerful as follows. 1. The dominant action can be determined at different fluids and different Re. Here, the vorticity and the temperature are relating with each other. a. ‘‘Table of diffusion intensity order’’ is invented. By obtaining and using this table, the dominant action can be determined automatically. b. The kinds of the dominant action are the advection and the diffusion in the vorticity and the temperature. c. In mercury and water at Re=44 and 22, the dominant action is the vorticity diffusion at the low Re, the vorticity advection at the high Re, the temperature diffusion at the low Peclet number Pe, and the temperature advection at the high Pe. d. The dominant action in air at Re=44 is between the dominant action in mercury and water at Re=44. The dominant action in air at Re=22 is the same as the dominant action in mercury at Re=22. e. By using the dominant action, the wake variations and item 2 below, i.e., the characteristics of the cooled wake behavior, can be explained. 2. When Re is decreased, the following occurs and its cause is elucidated. f. In the cooled wake, the Karman vortex street does not occur, but the cooled vortex street with g below occurs. g. The vortex spiral size is not changed in mercury but is increased in water. h. The following is decreased in mercury but is increased in water. The range of the absolute Richardson numberjRijgenerating the cooled vortex street, the spiral degree in the cooled vortex, the criticaljRij for the symmetric wake onset, and the reciprocal of the temperature wake area.
机译:首先,讨论了在雷诺数Re = 22和44时汞和水中的冷却尾流中的主要作用。接下来,对Re = 22时的冷却尾流进行数值模拟,并与Re = 44时的先前结果进行比较。最后,阐明了稀土元素Re对冷却的尾流和冷却的涡流道的影响,并发现其作用如下。 1.可以在不同的流体和不同的Re下确定主导作用。在此,涡度和温度彼此相关。一种。发明了“扩散强度顺序表”。通过获取和使用此表,可以自动确定主导行动。 b。主导作用的种类是对流和涡度和温度的扩散。 C。在Re = 44和22的汞和水中,主要作用是低Re的涡流扩散,高Re的涡流对流,低Peclet值Pe的温度对流和高Pe的温度对流。 d。在Re = 44时,空气的主要作用介于在Re = 44时,汞和水的主要作用。 Re = 22时在空气中的主导作用与Re = 22时在汞中的主导作用相同。 e。通过使用主导作用,可以解释尾流变化和下面的项目2,即冷却的尾流行为的特征。 2.降低Re时,会发生以下情况,并找出原因。 F。在冷却的尾流中,不会出现Karman涡街,但是会出现g以下的冷却涡街。 G。涡旋螺旋尺寸在汞中不变,但在水中增大。 H。汞含量下降,但水中含量上升。产生冷涡流道的绝对理查森数jRij的范围,冷涡旋中的螺旋度,对称尾流开始的临界jRij以及温度尾流面积的倒数。

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