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Thermal Stability Analysis under Embankment with Asphalt Pavement and Cement Pavement in Permafrost Regions

机译:多年冻土区沥青路面和水泥路面路堤下的热稳定性分析

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摘要

The permafrost degradation is the fundamental cause generating embankment diseases and pavement diseases in permafrost region while the permafrost degradation is related with temperature. Based on the field monitoring results of ground temperature along G214 Highway in high temperature permafrost regions, both the ground temperatures in superficial layer and the annual average temperatures under the embankment were discussed, respectively, for concrete pavements and asphalt pavements. The maximum depth of temperature field under the embankment for concrete pavements and asphalt pavements was also studied by using the finite element method. The results of numerical analysis indicate that there were remarkable seasonal differences of the ground temperatures in superficial layer between asphalt pavement and concrete pavement. The maximum influencing depth of temperature field under the permafrost embankment for every pavement was under the depth of 8 m. The thawed cores under both embankments have close relation with the maximum thawed depth, the embankment height, and the service time. The effective measurements will be proposed to keep the thermal stabilities of highway embankment by the results.
机译:多年冻土退化是造成多年冻土区路堤病和路面病害的根本原因,而多年冻土退化与温度有关。根据高温多年冻土区G214公路沿线地面温度的现场监测结果,分别讨论了混凝土路面和沥青路面的表层地面温度和路堤下的年平均温度。利用有限元方法研究了混凝土路面和沥青路面路堤下最大温度场的深度。数值分析结果表明,沥青路面与混凝土路面的表层地温存在明显的季节性差异。多年冻土路堤下每条路面的温度场最大影响深度在8 m以下。两个路堤下的融化岩心与最大解冻深度,路堤高度和使用时间密切相关。结果将提出有效的测量方法,以保持公路路堤的热稳定性。

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