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DETERMINATION OF CAVITY PROFILE INDUCED BY SUPERSONIC JETS IMPINGING ONTO LIQUIDS SURFACE

机译:撞击液体表面上的超音速喷射诱导的腔谱的测定

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The impingement onto the surface of bath by top-blown jets is a significant process characteristic in BOF and EAF steelmaking process. The cavity is one of the most important outcomes of the interaction and plays an important role on reaction kinetics and reactors performance. But to date, the understanding to cavity is still so limited. In present study, a water model for a BOF converter is established and the dimension of cavity profile is investigated. The effects of lance height, gas flow rate, nozzle inclination angle and the amounts of slag are discussed. The results show that penetration depth increases with the increase of gas flow rate and the amount of slag, and the decrease of lance height and nozzle inclination angle. Furthermore, a theoretical model of cavity dimension is proposed for multiply jets impinging liquid bath on the basis of energy balance at the stagnation point of cavity.
机译:通过顶部吹式喷射浴表面的冲击是BOF和EAF炼钢过程中的显着工艺特性。腔是相互作用最重要的结果之一,并在反应动力学和反应器性能上起重要作用。但到目前为止,对腔的理解仍然如此有限。在目前的研究中,建立了BOF转换器的水模型,研究了腔谱的尺寸。讨论了矛高度,气体流速,喷嘴倾斜角度和渣量的影响。结果表明,随着气体流速的增加和炉渣的量,渗透深度和矛杆高度和喷嘴倾斜角度的降低增加。此外,提出了一种腔体尺的理论模型,用于基于腔的节能点的能量平衡撞击液体浴的乘法射流。

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