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A Physical Model for the Two-phase Flow in a Continuous Casting Mold

机译:连铸结晶器两相流的物理模型

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Two-phase flow in a water-air model of a continuous casting slab mold is studied using Particle Image Velocimetry technology. At low gas-loads (mass flow rate of gas/mass flow rate of liquid) fluid flow patterns of phases, gas and liquid, are different and with increases of this parameter both flow fields become similar. In the liquid phase, angles of the jet-root (in front of the SEN's ports) and jet core (main jet-body) are complex functions of the gas flow and casting rates. The first is decreased well below the angle of the SEN's port and the second is increased well above the same angle for all gas-loads. The jet-root angle increases, from small values, while the jet-core angle observes a maximum with the gas flow rate at any casting rate. The jet-core angle approaches to the angle of the SEN's port at high gas flow rates. Accumulation of bubbles is observed in the mold cavity when the casting rate is high at low or high flow rates of gas. Averaged bubble sizes depend on the coalescence-breakup kinetics, which vary with the gas-load. Liquid entrainment by gas to the flux is greatly increased with the casting rate even at low gas-loads. Further understanding of the two-phase flow dynamics should be attained in order to improve the boundary conditions of mathematical models.
机译:利用粒子图像测速技术研究了连铸板坯结晶器水-空气模型中的两相流动。在低气体负荷(气体的质量流量/液体的质量流量)下,相(气体和液体)的流体流动模式是不同的,并且随着该参数的增加,两个流场变得相似。在液相中,射流根(在SEN的端口前面)和射流芯(主射流体)的角度是气体流量和浇铸速率的复杂函数。对于所有气体负载,第一个减小到远低于SEN端口的角度,第二个增大到远高于相同角度。射流根角从较小的值开始增加,而射流芯角在任何铸造速率下的气体流量下都达到最大值。在高气体流速下,射流芯角接近SEN端口的角度。当气体流速低或高时,铸造速率高时,在型腔中会观察到气泡的积累。平均气泡大小取决于聚结分解动力学,其随气体​​负荷而变化。即使在低载气量下,气体向助熔剂的液体夹带也会随着浇铸速率的增加而大大增加。为了改善数学模型的边界条件,应该进一步了解两相流动动力学。

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