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NUMERICAL SIMULATION OF CONTINUOUS CASTING PROCESS OF BLOOM BY FIFITE POINT METHOD

机译:薄点连续喷丸过程的数值模拟。

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摘要

In this paper a meshless method called Finite Point Method (FPM) is developed to simulate the solidification process of continuously cast bloom steel in both primary and secondary cooling region. The method is based on the use of a weighted least-square interpolation procedure. A transverse slice of bloom as it moves with casting speed is considered as computational domain. The two dimensional heat transfer equation together with temperature dependent thermophysical properties is solved in the computational domain. The present work is verified in the mold region by the comparison of the surface temperature simulated by FPM and finite volume method (FVM) and also comparison of solidified shell thickness simulated by FPM and measured on a breakout bloom. For secondary cooling region the validation is done by comparison of the surface temperature simulated by FPM, FVM and thermovision measurements.
机译:在本文中,开发了一种称为有限点法(FPM)的无网格方法来模拟连续冷却大方钢在一次和二次冷却区域的凝固过程。该方法基于加权最小二乘插值过程的使用。水华随着浇铸速度移动的横向切片被视为计算域。在计算领域中求解了二维传热方程以及与温度相关的热物理性质。通过比较通过FPM和有限体积法(FVM)模拟的表面温度,以及通过FPM模拟并在突坯上测量的凝固壳厚度,可以在模具区域验证本工作。对于二次冷却区域,通过比较FPM,FVM和热像仪测量的表面温度进行验证。

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