首页> 外文会议>ASME International Heat Transfer Conference >HEAT TRANSFER DURING DROP IMPACT ONTO WETTED HEATED SMOOTH AND STRUCTURED SUBSTRATES: EXPERIMENTAL AND THEORETICAL STUDY
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HEAT TRANSFER DURING DROP IMPACT ONTO WETTED HEATED SMOOTH AND STRUCTURED SUBSTRATES: EXPERIMENTAL AND THEORETICAL STUDY

机译:滴落液体撞击液体撞击加热光滑和结构性基材:实验和理论研究

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Spray cooling is a very effective means of heat removal from hot surfaces. Its efficiency can be further improved using structured wall surfaces. One of the fundamental processes governing spray cooling is an impact of a single cold droplet onto a heated wetted wall. The hydrodynamics of drop impact governs the transient heat transport in the film and in the wall. We study hydrodynamics and heat transfer during impact of a single drop onto heated smooth and structured heated plates. The temperature distribution in the heated plates has been measured with seven thermocouples. The splash dynamics and the evolution of interface temperature distribution have been visualized using high-speed infrared thermography. The film thickness evolution in the inner region has been measured using chromatic confocal imaging technique. Initial film thickness and drop impact parameters have been varied in the experiments. The evolution of the temperature distribution at the liquid-gas interface and the instationary temperature distribution in the heated plate depend on the initial film thickness, impact parameters and the plate topography. A self-similar analytical solution of the full Navier-Stokes equations and of the energy equation is obtained for the velocity and temperature fields in the spreading film. The theory allows prediction of the contact temperature and the residual film thickness.
机译:喷雾冷却是从热表面的非常有效的热量移除。使用结构壁表面可以进一步改善其效率。用于喷雾冷却的基本过程之一是单个冷液滴到加热的湿润壁上的影响。下降冲击的流体动力学控制薄膜和墙壁中的瞬态热传输。我们研究了一个液滴在加热光滑和结构加热板上的冲击过程中的流体动力学和传热。使用七个热电偶测量加热板中的温度分布。使用高速红外热成像,可视化拆除动力学和接口温度分布的演化。使用彩色共焦成像技术测量内部区域中的膜厚度演变。在实验中,初始膜厚度和滴落局部撞击参数已经变化。液体 - 气体接口温度分布的演变和加热板中的气体温度分布取决于初始膜厚度,冲击参数和板材地形。为漫射膜中的速度和温度场获得完整的Navier-Stokes方程和能量方程的自相似的分析解。该理论允许预测接触温度和残余膜厚度。

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