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Effect of swirl on pure turbulent thermal plume development

机译:涡流对纯湍流热羽流发展的影响

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Pure thermal plumes have been experimentally investigated under swirling conditions. Such conditions are applied upon the heated source impinging directly on the plume development. Results clearly underlined the existence of a threshold swirling number. Below the latter, i.e., at small swirling velocities, ascendant flow behaves like a classical static plume while at a high swirling number, the flow is clearly affected even if characteristic power laws are still valid. However, swirling of the source favors transition from laminar to turbulence as well as breakdown of coherent structures all around the plume motion. A direct measurement method was applied in order to assess instantaneous entrainment coefficients, and results clearly show appreciable influence of the swirling motion on the plume development. The driving mechanisms, i.e., contraction and expulsion phenomena, are strongly amplified and as a consequence directly interact on entrainment.
机译:已经在旋流条件下对纯热羽进行了实验研究。这些条件适用于加热源直接撞击羽流的情况。结果清楚地强调了阈值涡旋数的存在。在后者之下,即,在小旋流速度下,上升流的行为类似于经典的静态羽流,而在大旋流数下,即使特征幂律仍然有效,该流量也明显受到影响。然而,源的旋流有利于从层流过渡到湍流,并有利于羽流周围所有相干结构的破裂。为了评估瞬时夹带系数,采用了直接测量方法,结果清楚地表明了旋流运动对羽流的显着影响。驱动机制,即收缩和排出现象,被强烈放大,结果在夹带时直接相互作用。

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