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Experimental study of heat transfer coefficient on hot steel plate during water jet impingement cooling

机译:射流冲击冷却过程中热钢板传热系数的实验研究

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Experiments were performed, under transient conditions, to investigate the heat transfer phenomena of stationary hot steel plate under multiple top circular jets on run-out table. Based on inverse heat conduction model, a two-dimensional finite difference program was developed to calculate the local surface convective heat transfer coefficients and corresponding temperatures. The cooling water jet flow rate was varied from 15 L/min to 35 L/min and its effect on the convective heat transfer coefficient and surface temperature was analyzed. The results show that heat transfer coefficients are nonlinear functions of surface temperature. The cooling flow rate has no effect on heat transfer coefficient and surface temperature at stagnation point. Within 70 mm distance from stagnation line, heat transfer coefficient ratio changes slightly from 0.87 to 0.97. Beyond surface temperature of 350℃, heat transfer coefficient ratio decreases with increasing distance from stagnation line.
机译:在瞬态条件下进行了实验,以研究跳动台上多个顶部圆形射流下固定热钢板的传热现象。基于逆导热模型,开发了二维有限差分程序来计算局部表面对流换热系数和相应的温度。冷却水射流的流速从15 L / min更改为35 L / min,并分析了它对对流传热系数和表面温度的影响。结果表明,传热系数是表面温度的非线性函数。冷却流量对驻点处的传热系数和表面温度没有影响。在距停滞线70毫米的距离内,传热系数比从0.87略微变化至0.97。超过350℃的表面温度,传热系数比随着与停滞线距离的增加而减小。

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