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Mathematical simulation of effects of flow control devices and buoyancy forces on molten steel flow and evolution of output temperatures in tundish

机译:流量控制装置和浮力对钢水流动和中间包输出温度变化的影响的数学模拟

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The effects of flow control devices and buyoyancy forces on the melt flow in a large tundish have been mathematically simulated using a k-#epsilon# turbulence model. Flow control devices included arrangements consisting of a pair of weirs and a pair of dams, a turbulence inhibitor and a pair of dams, and only a turbulence inhibitor Buoyancy forces were simulated using step Inputs of temperature and inputs of varying ladle stream temperature into the tundish. It was found that with inputs of hot steel, flow control devices improve performance by driving the melt upwards through the action of buoyancy forces. A bare tundish is less sensitive to buoyancy forces and shows greater thermal mixing than any other arrangement. Inputs of temperature steps promote higher temperature gradients of liquid steel inside the vessel than inputs of varying ladle stream temperatures. A turbulence inhibitor delays the thermal disturbance compared with a bare tundish or a tundish with a weir-dam arrangement. When using a turbulence inhibitor higher volume fractions of melt obey a pluglike flow. The dimensionless quantity Gr/Re~2, where Grand Re are the Grashof and Reynolds number respectively, quantifies buoyancy forces: high values indicate that buoyancy forces have more effect than inertial forces on fluid flow. When Gr/Re~2< 5, buoyancy forces have no noticeable influence on fluid flow.
机译:流动控制装置和浮力对大中间包中的熔体流动的影响已使用k-ε湍流模型进行了数学模拟。流量控制装置包括由一对堰和一对坝,湍流抑制器和一对坝组成的装置,并且仅使用以下步骤模拟了浮力抑制器的浮力:输入温度和将钢包流温度改变到中间包中。已经发现,在输入热钢的情况下,流量控制装置通过浮力的作用将熔体向上驱动,从而提高了性能。裸露的中间包对浮力较不敏感,并且比任何其他布置显示更大的热混合。输入温度阶梯比改变钢包流温度的输入促进了容器内钢水温度梯度的升高。与裸露中间包或带有堰坝布置的中间包相比,湍流抑制剂可延迟热干扰。当使用湍流抑制剂时,较高体积分数的熔体服从塞状流。无量纲的量Gr / Re〜2,其中Grand Re分别是Grashof和雷诺数,可量化浮力:高值表示浮力比惯性力对流体流动的影响更大。当Gr / Re〜2 <5时,浮力对流体流量没有明显影响。

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