首页> 外文期刊>Geological Society of America Bulletin >Three-dimensional structural reconstruction of a thrust system overprinted by postorogenic extension,Wah Wah thrust zone,southwestern Utah
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Three-dimensional structural reconstruction of a thrust system overprinted by postorogenic extension,Wah Wah thrust zone,southwestern Utah

机译:犹他州西南部华华逆冲带后造山伸展叠印的逆冲系统的三维结构重建

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Extensional collapse after crustal shortening is a common process in mountain belts.The resulting overprinting of structures can make structural reconstruction quite challenging,especially where both extensional and shortening structures are geometrically complex.We address this challenge in a segment of the Sevier thrust belt located in the Basin and Range province of southwestern Utah.The Wah Wah Mountains are unusual because all known thrusts in this part of the Sevier belt are exposed in a single range,and therefore it is unnecessary to correlate thrusts between ranges in order to assemble a complete cross section across the thrust belt.However,the thrusts are overprinted by a threedimensional array of extensional faults that make conventional two-dimensional cross-section restoration methods inadequate.On the basis of new mapping in the Blawn Mountain-Rose Spring Canyon area and published maps of adjacent areas,we reconstruct the geometry and kinematics for part of the Sevier thrust stack,which we here refer to as the "Wah Wah thrust system," by itrative restoration and balancing of a grid of three-dimensional cross sections.We removed the effects of Tertiary extensional faulting and then restored the thrust geometry.The results of the final restoration indicate that the structure ofr the Wah Wah thrust system is more complex than previously recognized and comprises a roof thrust above a stack of two major and four minor footwall imbricates.Minimum total shortening across the thrust system is 38 km.The internal evolution of the thrust system appears to have been mainly backward-breaking,in contrast to the overall regional forward-breaking sequence of the Sevier thrust bvelt along strike.Cross-section restorations indicate that the roof thrust accumulated at least 15 km of slip after emplacement of all footwall imbricates.We speculate that bleeding off of pore pressure from the decollement by fluid discharge along ramp thrusts caused incremental strengthening and abandonment of the frontal area of the decollement and therefore led to development of the backward-breaking thrust sequence.
机译:地壳缩短后的伸展塌陷是山地带的常见过程。结构的叠印可能使结构重建具有很大的挑战性,尤其是在伸展和缩短结构都几何复杂的情况下。 Wah Wah山是不寻常的,因为Sevier带这部分的所有已知推力都暴露在一个范围内,因此不必将范围之间的推力关联起来就可以组成一个完整的十字路口。然而,逆冲断层被伸展断层的三维阵列套印,这使得常规的二维断面修复方法不充分。根据布劳恩山-罗斯泉峡谷地区的新地图绘制和已发布的地图对相邻区域,我们通过塞维尔河的一部分重建了几何和运动学st叠层,这里我们称为“ Wah Wah推力系统”,它通过迭代恢复和平衡三维横截面的网格。我们消除了第三系伸展断层的影响,然后恢复了推力几何形状。最后的修复表明,Wah Wah推力系统的结构比以前认为的要复杂,包括在两个主要和四个次要底盘叠层之上的顶棚推力,整个推力系统的最小总缩短为38 km。内部演化与塞维耶逆冲断层沿走向的整体区域性向前冲断序列相反,逆冲断层的推力系统似乎主要是向后突断。断面修复表明,顶置推力在冲刺发生后至少积累了15 km的滑动。我们推测,沿坡道推力排出的流体从弯折中渗出的孔隙压力会导致逐渐增强d放弃折角的前部区域,因此导致了向后断裂的推力序列的发展。

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