首页> 外文会议>International conference on nanochannels, microchannels and minichannels >FLOW PATTERNS AND HEAT TRANSFER IN THIN LIQUID FILMS ON WALLS WITH STRAIGHT, MEANDERING AND ZIGZAG MINI-GROOVES
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FLOW PATTERNS AND HEAT TRANSFER IN THIN LIQUID FILMS ON WALLS WITH STRAIGHT, MEANDERING AND ZIGZAG MINI-GROOVES

机译:具有直,蜿蜒和曲折迷你槽的壁上的薄液膜中的流动模式和传热

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Thin liquid films flowing along solid walls are widely used in technological applications in which high rates of heat and mass transport are required. The transport processes can be further intensified by using structured walls. In the present work hydrodynamics and heat transfer in falling liquid films on heated vertical and inclined walls with mini-grooves are studied experimentally and theoretically/numerically. The experiments are performed with straight, meandering and zigzag mini-grooves. The film dynamics is investigated using a confocal chromatic sensoring (CHR) technique. The flow patterns and the temperature of the liquid-gas interface are visualized using the high-speed infrared thermography. The wall temperature distribution is measured with thermocouples. A numerical model for description of the velocity and temperature fields in the thermal entrance region of the falling films on smooth and structured walls is developed. This model is based on the solution of the Graetz-Nusselt problem for falling films on grooved plates. We show that the mini-grooves significantly affect the flow patterns, film stability and heat transfer in falling liquid films. Using grooved walls leads to the increase of the maximal attainable heat transfer rate.
机译:沿着固体壁流动的薄液体膜广泛用于技术应用中,其中需要高速率和大规模运输。通过使用结构墙可以进一步加强运输过程。在目前的工作中,通过实验和理论上/数值在具有迷你槽的加热垂直和倾斜壁上的下降液膜中的流体动力学和传热。实验用直,蜿蜒和锯齿扣迷你槽进行。使用共焦色传感器(CHR)技术来研究胶片动力学。使用高速红外热成像,可视化流动模式和液体气体接口的温度。用热电偶测量壁温分布。开发了一种数字模型,用于描述平滑和结构墙壁上的落膜的热入口区域中的速度和温度场。该模型基于Graetz-Nusselt问题的解决方案在沟槽板上的落叶薄膜的解决方案。我们表明迷你槽显着影响下降液体膜中的流动模式,薄膜稳定性和热传递。使用带槽壁导致最大可达到的传热速率的增加。

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