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Study of the deformation mechanism of the Gaoliying ground fissure

机译:高调地下裂缝的变形机制研究

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The Gaoliying ground fissure in Beijing has caused building cracking and road damage, and has seriously influenced city construction. Based on investigations and trenching, the influences of the fault and the variation of groundwater levels on the formation mechanism of the Gaoliying ground fissure were investigated by using FLAC3D. The results indicated that (1) the surface location of Gaoliying fissure is controlled by the underlying normal fault activity, and over pumping further exacerbates development of the ground fissure; (2) when the groundwater level declines, obvious differential settlement occurs at both sides of the ground fissure, in which greater settlement occurs in the vicinity of the hanging wall, the greater the distance from the hanging wall, the smaller the ground subsidence, however smaller ground subsidence occurs in the vicinity of the footwall, the greater the distance from the footwall, the greater the ground subsidence; (3) the vertical velocity of the ground fissure triggered by the fault activity and groundwater decline ranges from 15.5 to 18.3 mma~(-1), which is basically in line with the monitoring data. The fault activity contributes about 28-39 %, and the groundwater contributes about 61-72% to the deformation of the ground fissure, respectively.
机译:北京的高调地面裂缝引起了建筑裂缝和道路损害,并严重影响了城市建设。基于研究和挖沟,使用FLAC3D研究了故障与地下水位水平对高调地裂隙的形成机制的影响。结果表明(1)高温裂缝的表面位置由下面的正常断层活动控制,并且在泵送进一步加剧了地面裂缝的开发; (2)当地下水位下降时,地面裂缝的两侧发生明显的差动沉降,其中在悬挂墙附近发生更大的沉降,距离悬挂墙的距离越大,地面沉降越小,但地下沉降越小较小的地面沉降发生在脚踏空间附近,距离脚壁的距离越大,地面沉降越大; (3)故障活动触发的地面裂缝的垂直速度和地下水下降的范围从15.5到18.3 mMA〜(-1),基本上符合监测数据。故障活动贡献约28-39%,地下水分别为地面裂隙的变形有贡献约61-72%。

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