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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Nonlinear analysis of coupled temperature-seepage problem of warm oil pipe in permafrost regions of Northeast China
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Nonlinear analysis of coupled temperature-seepage problem of warm oil pipe in permafrost regions of Northeast China

机译:东北多年冻土区暖油管耦合渗流问题的非线性分析

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摘要

This study investigated the influence of an underground warm oil pipe on the stability of the permafrost foundation in Northeast China on the basis of a coupled mathematical model of heat transfer and seepage and the finite element method. The thawing cycles around a non-insulated oil pipe and around an oil pipe packaged with insulations of three different thicknesses were analyzed. The results show that in the case of the non-insulated pipe, the maximum thawing depth under the pipe exceeded 8 m after 30 years of operation. Further, the maximum thawing depth decreased significantly after the pipe was insulated. The thawing cycle of the permafrost foundation expanded and shrank alternately between the warm and cold seasons. The range of thermal influence of the warm oil pipe on the upper active layer was much smaller than that on the lower permafrost foundation in the vertical direction. Among the different insulation thicknesses examined (5 cm, 8 cm, and 10 cm), the 8-cm-thick insulation was found to be sufficient to keep the permafrost foundation stable when the oil temperature was maintained at 15℃. Insulation of the underground warm oil pipe can help maintain the stability of the permafrost and reduce the disturbance of the permafrost environment.
机译:本文基于传热-渗流耦合数学模型和有限元方法,研究了地下暖油管道对东北多年冻土基础稳定性的影响。分析了非绝缘油管周围和装有三种不同厚度的绝缘材料的油管周围的融化循环。结果表明,在非绝缘管道的情况下,运行30年后,管道下方的最大解冻深度超过8 m。此外,在管道绝热后,最大解冻深度显着降低。多年冻土基础的融化周期在冷暖季节之间交替扩大和缩小。在垂直方向上,暖油管对上部活性层的热影响范围要比对下部冻土基础的热影响范围小得多。在所检查的不同绝缘厚度(5 cm,8 cm和10 cm)中,发现当油温保持在15℃时,厚度为8 cm的绝缘足以保持永久冻土基础稳定。地下暖油管道的隔热有助于保持多年冻土的稳定性,并减少对多年冻土环境的干扰。

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