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首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >Mathematical simulation and water modelling of liquid steel interaction with an argon bubble curtain in a one strand continuous casting tundish
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Mathematical simulation and water modelling of liquid steel interaction with an argon bubble curtain in a one strand continuous casting tundish

机译:用一股连续铸造中间包中氩气泡窗帘液体钢相互作用的数学仿真与水建模

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The injection of argon into a continuous casting tundish stimulates the zones of active flow (plug and ideal mixing flow) in the liquid steel and reduces the stagnant volume flow. In this research, numerical simulations and laboratory experiments were conducted on the use of a gas-permeable barrier (GPB) in the one-strand tundish. The investigations were aimed at increasing active liquid steel flow in the tundish, without using standard flow-control devices, under variable thermal conditions. The software program ANSYS-Fluent was used to perform numerical simulations. A water model was used to validate the numerical model. The water motion vector fields confirm the hydrodynamic patterns obtained from the computer simulations. The argon flow rate, location of the GPB, and the thermal conditions influence the liquid steel motion in the tundish. The best GPB positions were identified based on the lowest value of stagnant flow at argon injection flow rates of 15 and 5 Nl/min.
机译:将氩气注入连续铸造包中刺激液体中的主动流动(塞子和理想混合流程)的区域,并降低停滞体积流量。 在本研究中,对使用透气性屏障(GPB)的透气屏障(GPB)进行了数值模拟和实验室实验。 该研究旨在增加中间包中的活性液体钢流量,而无需使用标准流量控制装置,在可变热条件下。 软件程序ANSYS-FLUENT用于执行数字模拟。 水模型用于验证数值模型。 水运动矢量场确认从计算机模拟中获得的流体动力学模式。 氩流量,GPB的位置,以及热条件影响了中间包中的液体钢运动。 基于氩气注射流量为15和5 nL / min的储存流程的最低值来鉴定最佳GPB位置。

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