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Heat Transfer from a Hot Steel Plate Impinged by Air-atomized Water Jet and Impinging Water Jet

机译:空气雾化水射流和撞击水射流撞击热钢板的传热

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Thermo-mechanical controlled process (TMCP) technology has been widely used to improve the mechanical properties of hot-rolled steel plate. Laminar cooling has been the main cooling form in the steel mills. However, the performance of laminar cooling is limited by its low cooling capacity, nonuniformity, and inefficiency. In this work, it was demonstrated that the air-atomized water jet can be applied in the hot-rolled plate manufacturing process with excellent cooling performance. The cooling efficiency of the steel plate (700°C) was significantly improved by applying air-atomized jet (AJ) with different water densities compared with impinging jet (IJ). Moreover, the local spray density, boiling curves at different positions and the corresponding average heat flux of both cooling methods were systematically investigated by mathematical correlations. The experimental data in this study would be beneficial for design and simulation of the cooling device to achieve better cooling rate and uniformity.
机译:热机械控制过程(TMCP)技术已被广泛用于改善热轧钢板的机械性能。层流冷却已成为钢厂的主要冷却形式。然而,层流冷却的性能受到其低冷却能力,不均匀性和低效率的限制。在该工作中,证明了空气雾化水射流可以以优异的冷却性能应用于热轧板制造过程中。与冲击射流(IJ)相比,采用不同水密度的空气雾化射流(AJ)可以显着提高钢板(700°C)的冷却效率。此外,通过数学相关性系统地研究了两种冷却方法的局部喷雾密度,不同位置的沸腾曲线以及相应的平均热通量。本研究中的实验数据将有助于冷却装置的设计和仿真,以实现更好的冷却速率和均匀性。

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