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Implications of ground-deformation measurements across earth fissures in subsidence areas in the southwestern USA

机译:美国西南部沉降区跨地裂缝的地面变形测量的意义

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Ground deformation was monitored at earth fissures in areas of land subsidence induced by groundwater extraction in the southwestern United States. The ground deformation is consistent with the mechanism that fissures are caused by horizontal strains generated by bending of overburden in response to localized differential compaction. Subsidence profiles indicated that localized differential subsidence occurred across the fissures and that maximum convex-upward curvature was at the fissure. The overall shape of the profile stayed similar with time, and maximum curvature remained stationary at the fissure. Horizontal displacements were largest near the fissure, and generally were small to negligible away from the fissure. Maximum tensile horizontal strains were at the fissure and coincided with maximum curvature in the subsidence profiles. Horizontal tensile strain continued to accumulate at fissures after they formed, with rates of opening ranging from 30 to 120 microstrain/year at fissures in Arizona.
机译:在美国西南部的地下水开采引起的地面沉降区域中,监测了地面裂缝处的地面变形。地面变形与裂缝的机制是一致的,裂缝是由响应于局部压实压实作用而引起的上覆土层弯曲而产生的水平应变所引起的。沉降曲线表明,在裂隙中发生了局部微分沉降,并且最大的凸向上弯曲处在裂隙处。轮廓的整体形状与时间保持相似,并且最大曲率在裂缝处保持固定。水平位移在裂缝附近最大,并且通常很小,在裂缝附近可以忽略不计。最大拉伸水平应变在裂缝处,并且与沉降曲线中的最大曲率一致。裂缝形成后,水平拉伸应变继续在裂缝中累积,在亚利桑那州的裂缝中,开裂速率为每年30至120微应变。

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