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Experimental and numerical analysis of the free surface in a water model of a slab continuous casting mold

机译:板坯连铸结晶器水模型中自由表面的实验和数值分析

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The flow patterns prevailing at the free-surface in a water mode! of a slab continuous casting mold using several water flow rates and entry nozzle submergence depths are experimentally and numerically studied in this work. The experimental study was carried out using an one-third scale cold water model, constructed in accordance with the Froude similarity criterion. Water level measurements were carried out with ultrasonic distance sensors and recorded in a computer. Numerical simulations were made with a commercial computational fluid dynamics software. It was found that free-surface oscillations are composed by several periodic components. There exists a fundamental periodic frequency of 1.2 Hz. Besides, there exist two other frequencies of 1.8 and 2.1 Hz whose contribution to the free surface dynamic behavior depend on the spatial position and on the process parameters, namely, the volumetric flow rate and the submerged entry nozzle (SEN) submergence depth. In accordance with the obtained results, several recommendations about operating policies of actual industrial casters are made.
机译:水模式在自由表面上占主导地位的流动模式!在这项工作中,通过实验和数值研究了使用几种水流量和入口喷嘴浸没深度的板坯连铸结晶器的制造方法。实验研究是使用按照Froude相似性标准构建的三分之一比例的冷水模型进行的。用超声波距离传感器进行水位测量并记录在计算机中。用商业计算流体动力学软件进行数值模拟。发现自由表面振动是由几个周期分量组成的。存在1.2 Hz的基本周期频率。此外,还有另外两个频率为1.8和2.1 Hz,它们对自由表面动态行为的贡献取决于空间位置和工艺参数,即体积流量和浸入式喷嘴(SEN)浸入深度。根据获得的结果,对实际工业脚轮的运行策略提出了一些建议。

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