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Flow Field Characteristics of Coherent Jet with Preheating Oxygen under Various Ambient Temperatures

机译:常温下预热氧气相干射流的流场特性

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In the electric arc furnace steelmaking process, the coherent jet was adopted to improve the stirring effect of supersonic oxygen jet and reaction rate in molten bath. However, so little research had been done for the coherent jet behavior. In this study, the coherent jet flow field with preheating oxygen in hot (1700 K) and cold (298 K) condition were studied. The axial velocity and total temperature of main oxygen jet were measured by combustion experiment. Flow field characteristics of coherent jet were simulated by Fluent software. The detail chemical kinetic mechanism including 53 species and 325 reversible reactions was adopted to achieve a more accurate result of shrouding flame and main oxygen jet. The results showed that the low-density region surrounding the main oxygen jet were formed by the combustion, and thus suppressed the entrainment of the ambient gas into the main jet. The higher oxygen temperature increased the axial velocity of coherent jet, with the potential core reducing. Moreover, the higher ambient temperature could prolong the potential core of coherent jet and conventional jet.
机译:在电弧炉炼钢过程中,采用相干射流以提高超声速氧射流的搅拌效果和熔池中的反应速率。但是,对于相干射流的行为还很少进行研究。在这项研究中,研究了在热(1700 K)和冷(298 K)条件下预热氧气的相干射流场。通过燃烧实验测量了主氧气射流的轴向速度和总温度。用Fluent软件模拟了相干射流的流场特性。采用详细的化学动力学机理,包括53种和325个可逆反应,以更准确地覆盖火焰和主氧气射流。结果表明,围绕主氧气射流的低密度区域是通过燃烧形成的,因此抑制了周围气体夹带进入主氧气射流。较高的氧气温度增加了相干射流的轴向速度,而潜在的铁心却减少了。此外,较高的环境温度可以延长相干射流和常规射流的潜在核心。

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