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Mathematical solution of steady-state temperature field of circular frozen wall by single-circle-piped freezing

机译:单圆管冻结法求解圆形冻结壁稳态温度场的数学解

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摘要

Ground temperature distribution is one of the fundamental problems in the theory of artificial ground freezing. For the most widely applied freezing scheme, single-circle-piped freezing, there is only one analytical solution up to now, for the situation that the core is totally frozen. This paper gives a mathematical model to the steady-state temperature field of circular frozen wall by single-circle-piped freezing with unfrozen core. Then, the solutions are theoretical derived with some hypothesis, using conformal mapping and boundary separation method, as well, the same methods has been verified by the specific single-row-piped solution - Bakholdin's solution. After that, comparison between the analytical solutions and the numerical analysis is in good consistency. In addition, the methods to calculate the thickness and the average temperature of circular frozen wall are present.
机译:地面温度分布是人工地面冻结理论中的基本问题之一。对于最广泛使用的冷冻方案,单圆管冷冻,到目前为止,对于芯完全冷冻的情况,只有一种分析解决方案。本文通过单管非冻结芯圆管冻结,给出了圆形冻结壁稳态温度场的数学模型。然后,使用保形映射和边界分离方法,以某种假设从理论上推导了这些解决方案,同样的方法也已经通过特定的单行管道解决方案-Bakholdin解决方案得到了验证。之后,解析解与数值分析之间的比较是一致的。另外,存在计算圆形冷冻壁的厚度和平均温度的方法。

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