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Single and Double Drop Impingement on a Heated Plate CFD and Experimental Investigation

机译:加热板CFD和试验研究的单滴和双滴冲击

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A drop impingement on a hot surface is known as an effective way for heat removal. The present work uses a VOF (volume of fluid) model to simulate the flow behavior and temperature distribution on a 50 °C heated plate while relatively cold water drop is impinging. The temperature distribution at the impingement zone is used to examine the transient heat transfer coefficients using a single drop and double drops conditions. The spreading factor is tested in both cases. A test rig is built to verify the temperature distribution and a heat balance method is introduced to find the experimental heat coefficients on the heated. The CFD solution and its flow results gives a good agreement for single drop previous results. The results for the double drop condition show a high tendency for rebound and splash of the drop leaving the central zone without water drop coverage which way causes a burn out in case of high heat fluxes. The single drop condition show a symmetrical temperature and heat transfer coefficientsdistribution while the double drop impingement gives lower value of coefficients with non-uniform and unsymmetrical distribution specially at the bigger drop to plate distances. The experimental average heat coefficients gives relatively low error of only 5% in case of double drop when compared to the single drop values.
机译:热表面上的滴落冲击被称为热除去的有效方法。目前的作品使用VOF(体积的流体)模型来模拟50℃加热板上的流动行为和温度分布,而相对冷的水滴撞击。冲击区的温度分布用于使用单个液滴和双滴条件检查瞬态传热系数。在这两种情况下测试扩散因子。构建试验台以验证温度分布,并引入热平衡方法,以找到加热的实验热量系数。 CFD解决方案及其流量结果为单次递减先前的结果提供了良好的一致性。双滴条件的结果表明,在没有水滴覆盖的情况下,在没有水滴覆盖的情况下,液滴的反弹和飞溅的高趋势在高热量通量的情况下导致烧坏。单滴条件示出了对称温度和传热系数,而双滴冲击较低的系数值,特别是在更大的下降到板距离的较大下降。与单滴值相比,实验平均热系数在双滴时,在双液滴时仅提供相对较低的误差。

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