根据湍流理论及异形坯连铸的特点, 建立了异形坯结晶器三维流场数学模型, 对不同条件下的流场进行了数值模拟, 分析了水口结构和工艺参数变化时异形坯结晶器内涡心深度的变化规律及液面湍动能的分布状态. 结果表明: 采用上倾式水口, 水口夹角为120°, 拉速为0.9m/s时, 结晶器内流场分布较为合理, 液面较稳定. 模拟结果与水模实验结果吻合较好. 该模型可对连铸过程进行离线分析, 确定最佳参数, 并可作为在线控制模型的基础.
参考文献
[1] | Szekely J .The mathematical and physical modeling of turbulent recirculating flow[J].Metallurgical and Materials Transactions,1979,10:34-41. |
[2] | Szekely J .Flow pattern velocity and turbulence energy measurement and prediction in a water model of an argon-stirred ladle[J].Metallurgical and Materials Transactions,1976,7:287-295. |
[3] | Thomas B G;Mika L J;Najjar F M .Simulation of fluid flow and heat transfer inside a continuous slab casting machine[J].Metallurgical and Materials Transactions B:Process Metallurgy and Materials Processing Science,1990,21:387-400. |
[4] | Thomas B G .Application of mathematical models to the continuous slab casting mold[J].ISS Transactions,1989,16(12):53-66. |
[5] | Flint P J.A three-dimensional finite difference model of heat transfer fluid flow and solidification in the continuous slab caster[A].Detroit:ISSI AIME,1990:481-490. |
[6] | 杜艳平,史荣,杜建新,刘才,崔小朝.异型坯连铸液固温耦合计算机仿真[J].矿冶工程,2000(04):75-77. |
[7] | 杨建伟,杜艳平,崔小朝,史荣,刘才.异形坯连铸过程流场与温度场耦合三维数值模拟[J].金属学报,2001(07):767-771. |
[8] | 朱苗勇;萧泽强.钢的精炼过程数学物理模拟[M].北京:冶金工业出版社,1998:67-68. |
[9] | 李宝宽;赫冀成.薄板坯连铸结晶器内钢液流场电磁制动的模拟研究[J].金属学报,1997(11):1207-1214. |
[10] | Launder B E;Spslding D B.The numerical computation of turbulent flow[J].Computer Methods in Applied Mechanics and Engineering,1974(03):269-271. |
[11] | PATANKAR S V.Numerical Heat Transfer and Fluid Flow[M].New York: Hemisphere Pub Corp,1980:22. |
[12] | 沈昶,周俐,李建中.异形坯连铸结晶器流场的水模型研究[J].炼钢,2000(01):30-33. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%