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Effects of Film Thickness on Heat Transfer in Taylor Flows Under Constant Wall Heat Flux Boundary Condition

机译:薄膜厚度对恒壁热通量边界条件下泰勒流动热传递的影响

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Numerical simulations of heat transfer in two-phase Taylor flows in microchannels have been performed for different film thicknesses. Film thickness has been changed by adjusting surface tension and consequently Capillary number to investigate effects of film thickness on heat transfer processes under constant wall flux boundary condition. As stated in the early literature, film thickness is an important factor in Taylor flow hydrodynamics and governs the ratio between the portion of liquid which is in circulation and the portion which is bypassed through the thin liquid film around gas bubbles. It has been shown that film thickness has to be considered in the heat transfer correlations for this type of flow. Something which has not been considered in previous research.
机译:针对不同的膜厚度进行了微通道中的两相泰勒流中的传热中传热的数值模拟。通过调节表面张力并因此调节毛细数来改变膜厚度,以研究膜厚度对恒定壁磁通边界条件下的传热过程的影响。如早期文献所述,薄膜厚度是泰勒流动流体动力学的重要因素,并控制在循环中的液体部分与绕过气泡周围的薄液体膜的部分之间的比例。已经表明,必须考虑膜厚度在这种流动的传热相关中。在以前的研究中尚未考虑的东西。

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