首页> 外文会议>International conference on nanochannels, microchannels and minichannels;ICNMM2011 >HEAT AND MASS TRANSFER ENHANCEMENT BY ACTIVE FLOW CONTROL IN MICRO DOMAINS
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HEAT AND MASS TRANSFER ENHANCEMENT BY ACTIVE FLOW CONTROL IN MICRO DOMAINS

机译:通过主动控制微域中的传热和传质

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A flow control method is presented that employ liquid and gas jets to enhance heat and mass transfer in micro domains. By introducing pressure disturbances, mixing can be significantly enhanced through the promotion of early transition to a turbulent flow. Since heat transfer mechanisms are closely linked to flow characteristics, the heat transfer coefficient can be significantly enhanced with rigorous mixing. The flow field of water around a low aspect ratio micro circular pillar of diameter 150 μm entrenched inside a 225 μm high by 1500 μm wide microchannel with active flow control was studied and its effect on mixing is discussed. A steady control jet emanating from a 25 μm slit on the pillar was introduced to induce favorable disturbances to the flow in order to modify the flow field, promote turbulence, and increase large-scale mixing. Micro particle image velocimetry (μPIV) was employed to quantify the flow field, the spanwise vorticity, and the turbulent kinetic energy (TKE) in the microchannel. Flow regimes (i.e., steady, transition from quasi-steady to unsteady, and unsteady flow) were elucidated. The turbulent kinetic energy was shown to significantly increase with the controlled jet, and therefore, significantly enhance mixing at the micro scale.
机译:提出了一种流量控制方法,该方法采用液体和气体射流来增强微域中的传热和传质。通过引入压力扰动,可以通过促进向湍流的早期过渡来显着增强混合。由于传热机制与流动特性密切相关,因此通过严格混合可以显着提高传热系数。研究了直径为150μm的低长宽比微圆形柱子周围的水流场,该柱子固定在225μm高1500μm宽的微通道内,具有主动流量控制功能,并讨论了其对混合的影响。引入了一个稳定的控制射流,该射流从立柱上的25μm狭缝发出,对流产生有利干扰,从而改变了流场,促进了湍流并增加了大规模混合。微粒图像测速仪(μPIV)用于量化微通道中的流场,翼展方向涡度和湍动能(TKE)。阐明了流动状态(即稳定,从准稳态到不稳定和不稳定流动)。湍流动能显示出随着受控射流的增加而显着增加,因此,显着增强了微观尺度上的混合。

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