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PHYSICAL AND MATHEMATICAL MODELS OF GAS-LIQUID DYNAMICS IN BOF CONVERTERS

机译:BOF转换器中气液动力学的物理和数学模型

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Water modeling experiments to study the physical interaction between oxygen and steel in LD converters have been carried out in this work and the conclusions reached are as follows: 1. Top blowing yields three zones, which depend on the lance height and gas flow rate; penetration with small splashing, splashing with a high intensity of this phenomenon and dimpling with small splashing. 2. During top blowing mixing time increases with bath height and lance distance from the bath surface. Although, gas flow rate decreases mixing time due to the increase of momentum imparted to the bath. 3. The computing VOF model is suitable to model the unsteady nature of the bath surface during top blowing. The bath surface suffers a cyclic rippling-waving deformation due to the impact of gas in the crater and the shear stresses exerted by gas on the liquid at the interface. Modified Froude number is important to characterize the penetration depth of the gaseous jet in the crater. 4. Mixing time during bottom injection decrease with bath height, number of tuyeres and gas flow rate. In combined mixing the increases of lance distance from the its tip to the bath surface, increase also the mixing time for some given conditions of bottom injection.
机译:在这项工作中进行了研究LD转换器中氧气与钢的物理相互作用的水模拟实验,达到的结论如下:1。顶部吹送产生三个区域,取决于矛高度和气体流速;小溅穿,溅起这种现象的高强度和小溅起的凹陷。 2.在顶部吹吹气时,浴室高度和距浴表面的距离增加。虽然,由于施加到浴的动量增加,气体流速降低了混合时间。 3.计算VOF模型适用于在顶部吹气期间模拟浴表面的不稳定性质。由于气体中的气体冲击,浴表面遭受循环波纹挥舞变形,并且在界面处液体上的气体施加的剪切应力。改进的FRoude数对于在火山口中表征气态喷射的渗透深度是重要的。 4.在底部注射期间混合时间随浴室的高度,大肠和气体流速减少。在组合混合从其尖端到浴面的距离的增加,也增加了一些给定的底部注射条件的混合时间。

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