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Mathematical Comparison of Two VOD Nozzle Jets

机译:两台VOD喷嘴喷射的数学比较

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Studies of physical phenomena in a jet caused by VOD (Vacuum Oxygen Decarburization) nozzles have been carried out. The VOD process is a metallurgical process where the steel-making route is controlled under vacuum environment with oxygen top blowing. In this work, two VOD nozzle models have been employed for an investigation based on two real De Laval geometries used in industry. Numerical modeling was used to study oxygen blowing states of the nozzles at different temperatures and ambient pressures. The nozzle models were numerically computed with two dimensional domains, where vacuum conditions and temperatures were specifically defined. The modeling results showed that one of the nozzles was more applicably proper for lower pressures, displaying a more stable flow pattern. Furthermore, it was found that a change in ambient pressure has a stronger effect on the jet force than a change in ambient temperature. In addition, it was proved that the profiles of the dynamic pressure at a certain blowing distance fit well to Multi-Gaussian curves.
机译:已经对由VOD(真空氧气脱碳)喷嘴引起的喷射流中的物理现象进行了研究。 VOD工艺是一种冶金工艺,在炼钢工艺中,在真空环境中通过吹氧顶吹来控制炼钢工艺。在这项工作中,基于工业中使用的两种实际的德拉瓦勒几何形状,采用了两种VOD喷嘴模型进行调查。使用数值模型研究了在不同温度和环境压力下喷嘴的氧气吹塑状态。喷嘴模型是通过二维域进行数值计算的,其中明确定义了真空条件和温度。建模结果表明,其中一个喷嘴更适用于较低的压力,显示出更稳定的流动模式。此外,已经发现,环境压力的变化比环境温度的变化对喷射力的影响更大。另外,证明了在一定的吹送距离下动压的分布曲线很好地拟合了多高斯曲线。

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