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Study on the influence of water flow on temperature around freeze pipes and its distribution optimization during artificial ground freezing

机译:冻结冻结水流对温度的影响及其分布优化在人工地面冻结期间

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摘要

Artificial ground freezing is usually used to improve ground and provide temporary support. However, the freezing process is dramatically influenced by water flow. Evidently, water flow with high velocity brings large heat energy that prevents the freezing of porous media around freeze pipes. In this paper, for safety and energy-saving, the influence of water flow on freezing process is simulated by a developed coupled hydro-thermal model considering water/ice phase transition and the positions of freeze pipes around circular tunnel are optimized through combining this model with Nelder-Mead simplex method based on COMSOL multiphysics platform. According to the evolution law of freezing band under well-distribution of freeze pipes, three kinds of potential frequently-used probability distribution functions are adopted to reduce control parameters and improve the efficiency of optimization program including normal distribution, Poisson distribution and chi-square distribution. The results show that the proposed combining simulation method is suitable for optimization of freeze pipes arrangement. The freezing time is significantly reduced no matter which one of the above distribution functions is employed through careful design.
机译:人造冻结通常用于改善地面并提供临时支持。然而,冷冻过程受到水流动的显着影响。显然,具有高速度的水流带来了大的热能,可防止冻结冻结冻结的多孔介质。本文为了安全和节能,考虑水/冰相过渡的发达的耦合水力 - 热模型和循环隧道周围的冻结位置的位置来模拟水流对冷冻过程的影响。基于COMSOL Multiphysics平台的Nelder-Mead Simplex方法。根据冷冻管道良好分布下冰箱的演化法,采用三种潜在的经常使用的概率分布函数来减少控制参数,提高优化计划的效率,包括正态分布,泊松分布和Chi-Square分布。结果表明,所提出的组合模拟方法适用于优化冻管装置。无论通过仔细设计采用上述分配功能中的哪一个,冷冻时间明显降低。

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