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Late Quaternary faulting in the Sevier Desert driven by magmatism

机译:岩浆作用驱动的塞维尔沙漠晚期第四纪断层

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摘要

Seismic hazard in continental rifts varies as a function of strain accommodation by tectonic or magmatic processes. The nature of faulting in the Sevier Desert, located in eastern Basin and Range of central Utah, and how this faulting relates to the Sevier Desert Detachment low-angle normal fault, have been debated for nearly four decades. Here, we show that the geodetic signal of extension across the eastern Sevier Desert is best explained by magma-assisted rifting associated with Plio-Pleistocene volcanism. GPS velocities from 14 continuous sites across the region are best-fit by interseismic strain accumulation on the southern Wasatch Fault at c. 3.4 mm yr−1 with a c. 0.5 mm yr−1 tensile dislocation opening in the eastern Sevier Desert. The characteristics of surface deformation from field surveys are consistent with dike-induced faulting and not with faults soling into an active detachment. Geologic extension rates of c. 0.6 mm yr−1 over the last c. 50 kyr in the eastern Sevier Desert are consistent with the rates estimated from the geodetic model. Together, these findings suggest that Plio-Pleistocene extension is not likely to have been accommodated by low-angle normal faulting on the Sevier Desert Detachment and is instead accomplished by strain localization in a zone of narrow, magma-assisted rifting.
机译:大陆裂谷的地震危险随构造或岩浆过程的应变调节而变化。近四十年来,人们一直在讨论位于东部盆地和犹他州中部山脉的塞维尔沙漠的断层性质,以及该断层与塞维尔沙漠支队低角度正断层的关系。在这里,我们表明,穿越胶东-更新世火山爆发的岩浆辅助裂谷最好地解释了整个塞维尔沙漠东部扩展的大地测量信号。来自该地区14个连续站点的GPS速度最适合c处南部Wasatch断层的地震应变累积。 3.4?mm yr −1 ,带c。塞维尔沙漠东部0.5?mm yr −1 拉伸位错开口。现场勘测的地表变形特征与堤防引起的断层一致,而不与断层活动成活动脱离相一致。地质扩展率c。最后一个c时,0.6 mm yr −1 。塞维尔沙漠东部50 kyr与大地测量模型估计的速率一致。综合起来,这些发现表明,上塞维尔沙漠分离区的低角度正断层不可能适应上新世更新世,而是通过在狭窄的岩浆辅助裂陷区进行应变定位来完成的。

著录项

  • 期刊名称 Scientific Reports
  • 作者

    T. Stahl; N. A. Niemi;

  • 作者单位
  • 年(卷),期 -1(7),-1
  • 年度 -1
  • 页码 44372
  • 总页数 10
  • 原文格式 PDF
  • 正文语种
  • 中图分类
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