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Effects of framed embankment for high-grade expressway in permafrost regions

机译:框架堤防对多余地区高档高速公路的影响

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Construction of high-grade highways is an important action to meet the requirement of communication and transportation in permafrost regions. Frame embankment is proposed to reduce the scale effects caused by wide pavement. Numerical simulation method is employed to analyze the improvement of frame embankment for thermal stability of roadbed, with the consideration of global warming. Compared the response of permafrost at symmetric position of each embankment to construction, the consistency degree of response is taken as decision fundament. Two indexes are selected, that is, the difference of permafrost table between the embankment and that at natural side, and the change of mean annual geothermal under the embankment. Additionally, the convenient for construction and wind-blown sand hazard are considered to determine reasonable frame space. So, numerical simulation of flow field of wind around embankments is carried out. It is concluded that the minimum space between two embankment is 6 m. The aim of this study is to provide scientific guidelines on construction of major permafrost engineering in the future.
机译:高档高速公路的建设是满足永久冻土地区的通信和运输要求的重要行动。建议框架堤防,以减少宽阔的路面造成的尺度效应。采用数值模拟方法来分析框架路堤对路基热稳定性的改进,思考全球变暖。比较多年冻土在每条路堤对称位置的响应,施工,响应的一致性程度被视为决策基调。选择了两种指标,即堤防与自然一侧之间的永久冻土表的差异,以及在堤防下的平均年地热的变化。此外,建筑和风吹沙灾害的方便被认为是确定合理的框架空间。因此,进行了堤防周围的风力场的数值模拟。结论是,两条路堤之间的最小空间为6米。本研究的目的是为未来提供科学建设的科学指导。

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