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Cold Model Investigations of Fluid Flow and Mixing Characteristics by Bottom-blowing in Discontinuous Metallurgical Reactors

机译:间断冶金反应器底吹流体流动和混合特性的冷模型研究

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Cold model investigations were performed in two and three phase systems, including water-, slag- and gas-phase. The following nozzle-arrangements were chosen: single central nozzle, centric row, eccentric row and eccentric triangle. The investigations show an intensive vortex formation in the bath as a result of a coupled variation of parameters like blowing rate and existence of a slag simulation phase. A clear-cut vortex is evident at an undercritical blowing rate. The buoyant free jets do not describe a stable path to the bath surface. Two liquid zones with two mutually distinct directions of circulation are present. In the case of the eccentric arrangements of the nozzles, a vortex occurs in the smaller partial zone; however, this vortex is not always stable. In the larger partial zone, a stable vortex with circular motion occurs. The tests with eccentric arrangements yield the best mixing results as a whole. The flow conditions in the bath at a supercritical volume flow rate effect the phenomenon of sloshing, that is an oscillating motion of the bath. The critical flow rate depends on the arrangement of the nozzles. The inception of sloshing occurs at a relatively low blowing rate with the use of a single, central nozzle. Turbulent regions are observed in the bath here. In the case of eccentric nozzle arrangements, sloshing occurs only at higher blowing rates.
机译:在两相和三相系统(包括水相,炉渣相和气相)中进行了冷模型研究。选择了以下喷嘴布置:单个中央喷嘴,中心排,偏心排和偏心三角形。研究表明,由于吹塑速率和熔渣模拟阶段等参数的耦合变化,熔池中形成了强烈的涡流。在低于临界的吹气速度下,明显的涡流很明显。无浮力的射流没有描述到浴表面的稳定路径。存在具有两个彼此不同的循环方向的两个液体区域。在喷嘴偏心布置的情况下,在较小的局部区域中产生涡流。但是,该旋涡并不总是稳定的。在较大的局部区域中,会发生带有圆周运动的稳定旋涡。使用偏心轮布置的测试总体上可获得最佳混合效果。浴中以超临界体积流量的流动条件影响晃动现象,即浴的振荡运动。临界流速取决于喷嘴的布置。通过使用单个中央喷嘴,在相对较低的吹气速率下开始出现晃动。在浴中观察到湍流区域。在偏心喷嘴装置的情况下,晃动仅在较高的吹风速率下发生。

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