应用重磁技术模拟犹他州悖论盆地洋葱溪盐底辟北缘的几何形状

Julia Astromovich, M. Baker, D. Doser, W. Houston
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引用次数: 0

摘要

洋葱溪盐底辟位于犹他州东南部的Paradox盆地内,在那里它形成了一组盐构造的一部分,这些盐构造将Paradox盆地分隔成更小的子盆地。在二叠纪卡特勒群的洋葱溪底辟北侧出现了一系列异常的致密褶皱。这些褶皱被认为与浅滑脱层有关,其可能的成因有三:1)卡特勒群内的弱页岩层;2)盐纳玛克尔;或者盐肩。我们收集并分析了洋葱溪部分隐伏盐体的重力和磁力数据。由于这些盐的密度和磁性都不如卡特勒组的硅塑料,因此这些地球物理数据有助于确定地下盐的范围。我们的重力数据显示,随着更多的卡特勒群覆盖地下盐层,底辟上的自由空气异常逐渐增加。磁数据显示了类似的趋势,但也表明研究区域下方存在更复杂的三维结构。正演和反演结果表明,盐肩模型最适合地球物理资料。这些结果表明,重磁法在油气勘探研究中是一种低成本的评估地下盐结构的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of gravity and magnetic techniques to model the geometry of the northern margin of the Onion Creek salt diapir, Paradox Basin, Utah
The Onion Creek salt diapir lies within the Paradox Basin of southeast Utah where it forms part of a group of salt structures that separate the Paradox Basin into smaller sub-basins. A series of anomalous, tight folds occur on the northern side of the Onion Creek diapir within the Permian Cutler Group. These folds are thought to be associated with a shallow detachment horizon with three possible origins: 1) a weak shale layer within the Cutler Group; 2) a salt namakier; or 3) a salt shoulder. We collected and analyzed gravity and magnetics data across a portion of the concealed Onion Creek salt body. Since the salt is less dense and less magnetic than the Cutler Group siliciclastics, these geophysical data aid in defining the extent of subsurface salt. Our gravity data show a free-air anomaly low over the diapir with a gradual increase in values as more of the Cutler Group covers the subsurface salt. Magnetic data display a similar trend, but also suggest more complicated 3-D structure exists beneath the study area. Forward and inverse modeling indicated a salt shoulder model best fit the geophysical data. These results suggest gravity and magnetic methods are a low-cost method to evaluate plausible subsurface salt structure for oil and gas exploration studies.
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