李栋伟, 汪仁和, 胡璞. 多圈管冻结瞬态温度场有限元数值分析[J]. 煤田地质与勘探, 2007, 35(2): 38-41.
引用本文: 李栋伟, 汪仁和, 胡璞. 多圈管冻结瞬态温度场有限元数值分析[J]. 煤田地质与勘探, 2007, 35(2): 38-41.
LI Dong-wei, WANG Ren-he, HU Pu. FEM analysis of transient freezing temperature field of frozen multi-wall tube[J]. COAL GEOLOGY & EXPLORATION, 2007, 35(2): 38-41.
Citation: LI Dong-wei, WANG Ren-he, HU Pu. FEM analysis of transient freezing temperature field of frozen multi-wall tube[J]. COAL GEOLOGY & EXPLORATION, 2007, 35(2): 38-41.

多圈管冻结瞬态温度场有限元数值分析

FEM analysis of transient freezing temperature field of frozen multi-wall tube

  • 摘要: 人工冻结温度场是空间和时间相关且含有相变的不稳定瞬态传热问题。以淮南某煤矿冻结工程为研究背景,应用大型非线性有限元计算程序ADINA模拟冻结管偏斜条件下的冻结壁厚度、平均温度与冻结时间等,结果和现场实测十分接近。研究表明:应用有限元方法分析冻结温度场,能很好地预测冻结壁温度场发展,可为冻结工程信息化施工提供参考。

     

    Abstract: The artificial freezing temperature field is an unstable transient heat conduction phenomenon related to space and time,as well as phase changing. On the basis of a case study regarding freezing engineering project from a coal mine,Huainan,the frozen wall thickness,average temperature,freezing time of an oblique frozen tube are simulated using large-scale non-linear finite element computational procedure ADINA numerical simulator,resulting in the data coincided with site measured.The study demonstrated that the application of finite method analysis can predict the temperature field development of frozen tube wall,and it can provide reference data for performance of freezing engineering projects.

     

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