首页> 外文会议>American Society of Mechanical Engineers(ASME) Summer Heat Transfer Conference(HT2005); 20050717-22; San Francisco,CA(UA) >EFFECT OF CONTACT ANGLE ON THE HEAT TRANSFER TO AN EVAPORATING MENISCUS ON A MOVING HEATED SURFACE
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EFFECT OF CONTACT ANGLE ON THE HEAT TRANSFER TO AN EVAPORATING MENISCUS ON A MOVING HEATED SURFACE

机译:接触角对运动加热表面上蒸发的微月球传热的影响

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Numerical simulation is carried out to study a 2D evaporating meniscus formed on a moving wall. The complete Navier-Stokes equations along with continuity and energy equations are solved. The liquid vapor interface is captured using the level set technique. The meniscus is fed with saturated water from the top whereas the bottom wall is maintained at a higher temperature and is also imparted with a velocity. The meniscus attains a steady shape when all the incoming liquid gets evaporated due to heat transfer from the wall. The advancing and receding contact region of the meniscus are provided with different contact angles. Results indicate that the average heat flux at the meniscus base increases with increase in contact angle. The primary reason for heat transfer from the wall is attributed to the liquid circulation inside the meniscus and the corresponding transient conduction from the wall. As the meniscus contact angle increases the liquid circulation is found to disturb the thermal boundary layer more effectively thereby resulting in increased wall heat transfer. The effect of contact angle on wall heat transfer to the moving and evaporating meniscus is compared to partial nucleate pool boiling.
机译:进行了数值模拟以研究在运动壁上形成的二维蒸发弯月面。求解了完整的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。从顶部向弯液面注入饱和水,而将底壁保持在较高温度,并赋予其速度。当所有进入的液体由于从壁传热而蒸发时,弯液面达到稳定的形状。弯月面的前进和后退接触区域设置有不同的接触角。结果表明,弯月面底部的平均热通量随接触角的增加而增加。从壁传热的主要原因是弯液面内部的液体循环以及来自壁的相应瞬态传导。当弯液面接触角增加时,发现液体循环更有效地干扰了热边界层,从而导致壁热传递增加。将接触角对壁向热弯月面和蒸发弯月面传热的影响与部分核池沸腾进行了比较。

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