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Two-phase sink vortex suction mechanism and penetration dynamic characteristics in ladle teeming process 被引量:8
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作者 Da-peng Tan Ye-sha Ni Li-bin Zhang 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2017年第7期669-677,共9页
At the late stage of continuous casting(CC)ladle teeming,sink vortex can suck the liquid slag into tundish,and cause negative influences on the cleanliness of molten steel.To address this issue,a twophase fluid mech... At the late stage of continuous casting(CC)ladle teeming,sink vortex can suck the liquid slag into tundish,and cause negative influences on the cleanliness of molten steel.To address this issue,a twophase fluid mechanical modeling method for ladle teeming was proposed.Firstly,a dynamic model for vortex suction process was built,and the profiles of vortex flow field were acquired.Then,based on the level set method(LSM),a two-phase 3Dinterface coupling model for slag entrapment was built.Finally,in combination with high-order essentially non-oscillatory(ENO)and total variation diminishing(TVD)methods,a LSM-based numerical solution method was proposed to obtain the 3Dcoupling evolution regularities in vortex suction process.Numerical results show that the vortex with higher kinetic energy can form an expanded sandglass-shape region with larger slag fraction and lower rotating velocity;there is a pressure oscillation phenomenon at the vortex penetration state,which is caused by the energy shock of two-phase vortex penetration coupling. 展开更多
关键词 Ladle teeming Sink vortex suction mechanism Two-phase coupling Level set method Pressure oscillation
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THE INVESTIGATION OF VORTEX METHOD AND ITS APPLICATION TO DRAG REDUCTION TECHNOLOGY 被引量:1
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作者 GAO Li-jin 《Journal of Hydrodynamics》 SCIE EI CSCD 2006年第3期378-378,共1页
The flow past a circular cylinder and airfoil with varying mathematical roughness function are numerically simulated. A new model about blowing and suction is constructed by using the concept of mathematical roughness... The flow past a circular cylinder and airfoil with varying mathematical roughness function are numerically simulated. A new model about blowing and suction is constructed by using the concept of mathematical roughness function. The flow field and the drag are investigated through this new model. By the numerical study about bluff body, some conclusions are drawn to reduce the drag. 展开更多
关键词 mathematical roughness function sublayer of laminar flow blowing and suction mechanism drag reduction respond time
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