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Deformation mechanism of an expressway embankment in warm and high ice content permafrost regions

机译:温暖高冰含量高速公路堤坝的变形机制永久冻土区

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Based on monitoring data from the Qinghai-Tibet Testing Expressway (QTTE) in the Beiluhe Basin on the Qinghai-Tibet Plateau, we investigated the deformation mechanism of an expressway embankment in a typical warm and ice-rich permafrost region. Compared with the Qinghai-Tibet Highway (QTH) under similar environmental conditions, the QTTE has the following unique characteristics with respect to thermal effects and embankment deformation: (1) Under the multiplied heat of the QTTE and the thermal gathering effect, the thermal disturbance to the underlying permafrost increased by approximately 2.8 times, promoting permafrost degeneration and warming. (2) The maximum embankment settlement of the QTTE was approximately 2.5 times that of the QTH, and the maximum transverse deformation difference was 1.3 times that of the QTH. (3) The settlement of permafrost thaw and the creep of warm permafrost increased by double the rate of permafrost degradation and permafrost warming under the QTTE. (4) The wider pavement of the QTTE promoted the sunny-shady slope effect on embankment deformation. (5) The spatial distribution of ice underground contributed to the deformation difference and affected the development tendency of embankment deformation. Facing the higher construction standards of expressways, the stability of the future-built Qinghai-Tibet Expressway (QTE) would be much more serious, and more engineering failures may develop along the QTE without adequately efficient measures. (C) 2017 Elsevier Ltd. All rights reserved.
机译:基于青藏高原贝卢赫盆地中青藏检测高速公路(QTTE)的监测数据,我们研究了高速公路堤防在典型的温暖和富含冰冻多年冻土区域的变形机制。与青藏公路(QTH)相比相似环境条件,QTTE相对于热效应和路堤变形具有以下独特特性:(1)在QTTE的乘以和热采集效果下,热干扰潜在的永久乳腺增加约2.8倍,促进永久冻土变性和变暖。 (2)QTTE的最大路堤沉降约为qth的2.5倍,最大横向变形差异为Qth的1.3倍。 (3)QTTE在QTTE下的多年冻土降解率和永久冻土升温的双倍的沉淀和温热冻土的蠕变和蠕变的沉降增加。 (4)QTTE的更广泛的路面促进了对堤防变形的阳光阴影斜坡效应。 (5)冰地下的空间分布导致变形差异,影响了路堤变形的发展趋势。面对高速公路的较高施工标准,未来建造的青藏高速公路(QTE)的稳定性将更加严重,并且在没有充分高效的措施的情况下,QTE可能会沿着QTE开发更多的工程故障。 (c)2017 Elsevier Ltd.保留所有权利。

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