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Factors controlling the evolution of the Perdido Fold Belt, northwestern Gulf of Mexico, determined from numerical models

机译:由数值模型确定的控制墨西哥西北部珀迪多褶皱带演化的因素

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摘要

The Perdido Fold Belt (PFB) is a prominent salt-cored deep water structure in the northwestern Gulf of Mexico. It is characterized by symmetric, kink-banded folds of a ~4.5 km thick prekinematic layer and its vicinity to the extensive Sigsbee Salt Canopy. We use 2-D finite element numerical models to study the evolution of the PFB as a gravity-driven fold belt both in a local context and in the context of the larger-scale passive margin, influenced by adjacent allochthonous salt structures. We show that parameters such as overburden strength, salt geometry, or salt viscosity determine timing, extent, and location of the modeled fold belt. Simplified models of the Gulf of Mexico show that toe-of-slope folding is a viable mechanism to develop diapirs in the deep salt basin and to delay folding of the distal overburden. In this scenario, the PFB likely represents the terminal folding of a much larger, diachronously formed fold belt system.
机译:佩迪多褶皱带(PFB)是墨西哥西北部海湾一个以盐为核心的深水构造。它的特征是约4.5 km厚的前运动学层对称扭结带状褶皱,并且靠近宽阔的Sigsbee盐冠层。我们使用二维有限元数值模型来研究PFB作为重力驱动褶皱带的演化,该演化在局部环境和较大规模的被动边缘环境下,都受到相邻异源盐构造的影响。我们显示出诸如覆盖强度,盐几何形状或盐粘度之类的参数确定了建模褶皱带的时间,范围和位置。墨西哥湾的简化模型表明,坡脚折叠是一种可行的机制,可以在深盐盆地中形成底盘并延迟上覆岩层的折叠。在这种情况下,PFB可能代表了更大的,历时形成的折叠带系统的末端折叠。

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  • 来源
    《Tectonics 》 |2009年第2期| 31-58| 共28页
  • 作者单位

    Department of Earth Sciences, Dalhousie University, Halifax, Nova Scotia, Canada;

    Department of Oceanography, Dalhousie University, Halifax, Nova Scotia, Canada;

    Department of Oceanography, Dalhousie University, Halifax, Nova Scotia, Canada Now at ExxonMobil Upstream Research Company, Houston, Texas, USA.;

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