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Regional Structure and Kinematic History of the Sevier Fold-and-Thrust Belt, Central Utah: Discussion

机译:犹他州中部塞维尔褶皱冲断带的区域结构和运动史:讨论

摘要

DeCelles and Coogan (2006) summarize the structure and evolution of the Late Jurassic to Paleocene Sevier orogenic belt in central Utah, inferring at least 220 km of crustal shortening on the basis of a regional balanced cross section. Difficulties arise in an otherwise excellent synthesis in their treatment of the Sevier Desert basin, where 47 km of normal slip is interpreted on a Cenozoic detachment in spite of mounting evidence that no such structure exists. DeCelles and Coogan acknowledge the possibility that the prominent seismic reflection marking the Paleozoic-Cenozoic contact may correspond with an unconformity rather than a fault. However, they dismiss the inconvenient absence of evidence for deformation along the interpreted detachment as “local and equivocal,” ignore a comprehensive re-evaluation of subsurface geophysical and geological data by Wills et al. (2005), and claim incorrectly that the construction of a balanced cross section “implicitly demonstrates the geometric and kinematic validity of the detachment interpretation for the …. reflection” (p. 844). Balanced cross sections are only as good as the observational constraints and assumptions upon which they are based. If the detachment that is a central assumption of DeCelles and Coogan's cross section is, in fact, not a fault, a better section can be drawn.
机译:DeCelles和Coogan(2006)总结了犹他州中部晚侏罗世至古新世Sevier造山带的结构和演化,根据区域平衡的断面推断出至少220 km的地壳缩短。在塞维尔沙漠盆地的处理中,如果以其他方式获得出色的综合效果会出现困难,尽管有越来越多的证据表明,在新生代脱离了47 km的正常滑动,尽管没有证据表明这种结构存在。 DeCelles和Coogan承认标记古生代-新生代接触的明显地震反射可能与不整合而不是断层相对应的可能性。然而,他们认为沿解释性分离的变形缺乏证据是“局部的和模棱两可的”,不便,而忽略了Wills等人对地下地球物理和地质数据的全面重新评估。 (2005年),并错误地声称“平衡横截面的构造”隐式地证明了……的脱离解释的几何和运动学有效性。反射”(第844页)。平衡的横截面仅与它们所基于的观测约束和假设一样好。如果作为DeCelles和Coogan横截面的中心假设的分离实际上不是故障,则可以绘制一个更好的截面。

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