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Boiling Heat Transfer Characteristics of Vertical Water Jet Impinging on Horizontally Moving Hot Plate

机译:垂直向水射流撞击水平移动热板上的沸腾传热特性

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This study investigates the heat transfer characteristics of a circular jet pointing upward that impinges on a moving hot steel sheet by using a laboratory-scale setup. The test liquid was water at 17°C, and the volumetric flow rate of the coolant was set to 450, 960, and 1480 mL/min. The test solid was 0.3 mm thick stainless steel (SUS430) with an initial temperature in the range 300–700°C. The moving velocity of the solid was set to 0.5, 1.0, and 1.5 m/s, and its temperature profile was measured by an infrared camera. The results showed that a region of high heat flux appeared in the area impacted by the jet. The heat transfer characteristics relied heavily on the initial temperature of the solid associated with the boiling patterns—namely, nucleate, transition, and film boiling. Along the boundary between the strong nucleate and the transition boiling regimes, the heat flux took peak values. The local minimum values of heat flux obtained between the transition and the film boiling regimes. The initial temperatures of the solid exhibiting these values were influenced by its moving velocity and the jet impact velocity. Moreover, the heat fluxes in the jet impact region for upward-impinging jets were compared with reported data for downward-impinging jets under the condition whereby the jet impact velocity and diameter in the two cases were nearly identical prior to impact. The two sets of results showed very similar trends, although the flow motions of water varied because of the effect of gravity.
机译:这项研究使用实验室规模的装置研究了撞击在移动的热钢板上的向上指向的圆形射流的传热特性。试验液体是17℃下的水,并且冷却剂的体积流量设定为450、960和1480mL / min。测试的固体是0.3毫米厚的不锈钢(SUS430),初始温度在300-700°C范围内。将固体的移动速度设定为0.5、1.0和1.5m / s,并通过红外照相机测量其温度曲线。结果表明,在受射流影响的区域中出现了高热通量区域。传热特性在很大程度上取决于与沸腾模式相关的固体初始温度,即成核,转变和薄膜沸腾。沿着强核和过渡沸腾状态之间的边界,热通量达到峰值。在转变和薄膜沸腾状态之间获得的热通量的局部最小值。表现出这些值的固体的初始温度受其移动速度和射流冲击速度的影响。此外,在两种情况下,在冲击之前,两种情况下的射流冲击速度和直径几乎相同的条件下,将向上冲击射流的射流冲击区域中的热通量与向下冲击射流的报告数据进行了比较。两组结果显示出非常相似的趋势,尽管水的流动运动由于重力的作用而变化。

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