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Characterization of seasonal variation of the active layer above permafrost with reverse time migration of GPR profiles near the Qinghai-Tibet Highway

机译:在青藏高速公路附近的RPPR型材相反的时间迁移,表征活性层上方的活性层的季节变化

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The permafrost on the Qinghai-Tibet Plateau (QTP) is critically sensitive to temperature changes. The balance of heat transfer between the land and the atmosphere in permafrost regions were disturbed by the construction of man-made infrastructures, such as the Qinghai-Tibet Highway (QTH), the towers of power lines and telecommunications. Obviously, the characteristics of permafrost have been altered near the QTH. Reversely, thawing and degradation of the permafrost have a serious impact to the stability of QTH. Ground-penetrating radar (GPR) surveys can detect the subsurface structure of permafrost layer near the QTH that differentiate the situations in summer and winter and enable us to analyze the feature of permafrost table and active layer thickness (ALT) in different seasons. Consequently, it can provide the characterization of the relationship between the permafrost thawing and stability of QTH. Numerous studies have used the GPR to detect the permafrost and collected GPR data in summer in previous studies. However, due to the high loss of GPR signal in summer time caused by the blocking nature of the melted active layer limited the detection of formation features in greater depth. In this paper, we collected GPR data near the QTH in Beiluhe region in both summer and winter seasons and used the finite-difference reverse time migration (RTM) algorithm to process the GPR data. From the results of RTM profiles, we find that: 1) the RTM profiles in winter can provide high resolution interpretation image and clearly register the active layer/permafrost boundary and lithological interfaces within the active layer; 2) the top boundary of the permafrost and ALT have significant change near the QTH, which may be caused by the degradation of the surface vegetation and higher temperature on sides of QTH. With the accumulation of more GPR surveys, we can potentially analyze more details and wider coverage for the characteristics of permafrost top boundary and ALT in different seasons and provide more objective input to reduce the adverse impact from engineering constructions.
机译:青藏高原(QTP)上的永久冻土对温度变化敏感。通过建设人造基础设施(如青藏公路(QTH),电力线和电信塔的建设,土地和多年冻土地区的大气之间的传热平衡受到干扰。显然,Permafrost的特征已在QTH附近改变。逆转,Permafrost的解冻和降解对Qth的稳定性产生了严重影响。地面穿透雷达(GPR)调查可以检测QTH附近的多年冻土层的地下结构,以区分夏季和冬季的情况,并使我们能够分析不同季节的永久冻土表和有源层厚度(ALT)的特征。因此,它可以提供QTH的永久冻土解冻与稳定性之间的关系的表征。许多研究使用GPR在以前的研究中检测夏季夏季的永久冻土和收集的GPR数据。然而,由于由熔化的有源层的阻塞性质引起的夏季时间在夏季时间的高损失,限制了形成特征的检测更深度。在本文中,我们在夏季和冬季将GPR数据收集到北冬季节七,并使用了有限差分反向时间迁移(RTM)算法来处理GPR数据。从RTM简介的结果,我们发现:1)冬季的RTM配置文件可以提供高分辨率解释图像,并清楚地注册有源层内的有源层/永磁边界和岩性接口; 2)Permafrost和Alt的顶部边界在QTH附近具有显着的变化,这可能是由表面植被的降解和Qth侧面的较高温度引起的。随着更多GPR调查的积累,我们可以分析更多细节和更广泛的覆盖,以便在不同季节中的永久冻土顶部边界和ALT的特点,并提供更多客观的输入来降低工程结构的不利影响。

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