首页> 外文会议>ASME(American Society of Mechanical Engineers)/JSME(Japanese Society of Mechanical Engineers) Thermal Engineering Summer Heat Transfer Conference 2007 >NUMERICAL STUDY OF CONJUGATE HEAT TRANSFER DUE TO GROWTH OF A VAPOR BUBBLE DURING FLOW BOILING OF WATER IN A MICROCHANNEL
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NUMERICAL STUDY OF CONJUGATE HEAT TRANSFER DUE TO GROWTH OF A VAPOR BUBBLE DURING FLOW BOILING OF WATER IN A MICROCHANNEL

机译:微通道内水沸腾过程中蒸气起泡引起的共轭传热的数值研究

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The present study is performed to numerically investigate temperature distribution at the channel walls during growth of a vapor bubble inside a microchannel. The microchannel is of 200 μm square cross section and a vapor bubble nucleates at one of the walls, with liquid flowing in through the channel inlet. Constant heat flux boundary condition is specified at the bottom wall of the microchannel. The complete Navier-Stokes equations along with continuity and energy equations are solved using the SIMPLER method. The liquid vapor interface is captured using the level set technique. The conjugate heat transfer problem is solved at the bottom and side walls. The bubble grows rapidly due to heat transfer from the walls and soon turns into a plug filling the entire channel cross section. The temperature distribution at the channel walls is studied for different values of wall heat flux. The bubble growth rate is found to increase with increase in wall heat flux. High temperatures are noted at the wall below the bubble base due to vapor contact causing axial temperature gradients. Areas of high heat transfer are also seen to exist in the thin layer of liquid between bubble and the channel sidewalls.
机译:进行本研究以数值研究在微通道内的蒸气气泡的生长期间通道壁处的温度分布。该微通道的横截面为200μm正方形,并且气泡在其中一个壁上成核,液体通过通道入口流入。在微通道的底壁上指定了恒定的热通量边界条件。使用SIMPLER方法可以求解完整的Navier-Stokes方程以及连续性和能量方程。使用水平设置技术捕获液体蒸气界面。共轭传热问题在底壁和侧壁处得到解决。由于从壁传热,气泡迅速增长,并很快变成塞子,塞满了整个通道的横截面。针对壁热通量的不同值,研究了通道壁处的温度分布。发现气泡的增长率随着壁热通量的增加而增加。由于蒸气接触导致轴向温度梯度,在气泡底部下方的壁上注意到高温。还可以看到,在气泡和通道侧壁之间的液体薄层中存在高传热区域。

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