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INTERACTION OF SYNTHETIC JET COOLING PERFORMANCE WITH GRAVITY AND BUOYANCY DRIVEN FLOWS

机译:合成喷射冷却性能与重力和浮力驱动流的相互作用

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Meso scale cooling devices have been of interest for low form factor, tight space, and high COP thermal management problems. A candidate meso scale device, known as synthetic jets, operates with micro fluidic principles and disturbs the boundary layer causing significant heat transfer over conventional free convective heat transfer in air. Previous papers have dealt with the impingement and cross flow, but did not study mixed convection for synthetic jet with natural convection. In the present study, we discuss the results of an experimental study to investigate the interplay between jet orientations with respect to gravity, elevated temperature conditions, and synthetic jet heat dissipation capacity. Experiments were performed by placing synthetic at different positions around a square, 25.4mm heated flat surface. The flow physics behind the experimental findings is discussed. It is found that impingement heat transfer outperformed more than 30% compared to other orientations. The jet showed about 15% sensitivity to angular orientations.
机译:Meso Scale冷却装置对低形状,狭小的空间和高COP热管理问题感到兴趣。一种候选中间刻度装置,称为合成射流,用微流体原理进行操作,扰乱边界层,导致在空气中传统的自由对流热传递的显着传热。之前的论文已经处理了冲击和交叉流动,但没有研究与自然对流的合成喷射混合对流。在本研究中,我们讨论了实验研究的结果,以研究引导相对于重力,高温条件和合成射流散热能力之间的喷射方向之间的相互作用。通过将合成在25.4mm加热的平坦表面上的不同位置处放置合成来进行实验。讨论了实验结果背后的流量物理。结果发现,与其他取向相比,冲击热传递优于超过30%。喷气机显示对角度取向的敏感性约为15%。

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