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Coupled conduction-convection problem for an underground duct containing eight insulated cables

机译:包含八根绝缘电缆的地下管道的耦合传导-对流问题

摘要

The coupled heat conduction/convection problem for eight insulating and heat-generating cables in an underground circular tunnel filled with air is solved by an operator-splitting pseudo-time-stepping finite element method, which automatically satisfies the continuity of the interfacial temperature and heat flux. The main feature of the solution procedure is that the multi-phases are treated as a single computational domain with unknown interfacial boundary conditions. The temperature distribution in the metal cores, the insulating layers, and in the surrounding air and soil, together with the convective flow pattern are obtained simultaneously. From the profile of the local Nusselt number, which is strongly dependent on the thermal conductivity ratios and weakly dependent on the Rayleigh number, it is concluded that most of the heat transfer takes place via the bottom of the enclosure through a conductive mode.
机译:通过操作员分解伪时步有限元方法解决了地下充满空气的圆形隧道中八根绝缘和发热电缆的耦合传热/对流问题,该方法自动满足界面温度和热量的连续性通量。求解过程的主要特征是将多相视为具有未知界面边界条件的单个计算域。同时获得金属芯,绝缘层,周围空气和土壤中的温度分布以及对流流动模式。从局部Nusselt数的分布图可以得出结论,该分布主要通过导热模式通过外壳的底部进行,该局部Nusselt数很大程度上取决于热导率,而与瑞利数的依赖程度较小。

著录项

  • 作者

    Liu Y; Phan-Thien N; Kemp R;

  • 作者单位
  • 年度 2000
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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