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Morphology of the basement and Hormuz salt distribution in offshore Abu Dhabi from constrained 3-D inversion of gravity and magnetic data

机译:近岸Abu Dhabi的地下室和Hormuz盐分布的形态学来自重力和磁数据的约束3-D逆转

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摘要

Many seismic surveys and exploration wells have been conducted in offshore Abu Dhabi, United Arab Emirates. However, the Neoproterozoic basement and the Infracambrian Hormuz salts were not imaged or penetrated by seismic and well data. To delineate the morphology of the basement and distribution of salt bodies, we applied a 3-D constrained inversion method to aerogravity and aeromagnetic data covering offshore Abu Dhabi. Well and seismic data were used to constrain and validate the inversion results. The magnetic inversion model resulted in a robust basement model that varies in depth from 8 to 10 km with two highs at 8 and 8.5 km highlighting possibly magmatic bodies. In contrast, the gravity inversion model does not delineate very well the basement morphology, possibly due to the lower density salt bodies masking the gravity response of the higher density basement. By calculating and removing the gravity response of the magnetic basement model from the observed gravity data, we recovered the residual gravity response of the Hormuz salts. The 3-D gravity inversion of the residual shows that the Hormuz salts are more wide-spread and thicker than previously thought with a depth to top of salt varying from 5.5 to 8.5 km. This salt model suggests that the giant oilfields in offshore Abu Dhabi, such as Umm Shaif, Nasr, Abu Al-Bukhoosh, Zakum, Sarb and Hail, occur exactly above crests of salt pillows. In addition, a series of smaller oilfields are found located at the margin of the northern basement high, and three structural lineament trends (NE-SW, NW-SE, and N-S) were identified from the inverted basement and salt models. Reactivation of these fault trends and associated diapiric salt uplifts, as observed in the seismic sections and curvature map, played a major role in shaping the basement morphology and mobilization of the Hormuz salts.
机译:许多地震调查和勘探井已经在阿拉伯联合酋长国海上阿布扎比进行。然而,NeoproteroZoic地下室和Infracambrian Hormuz盐没有被地震和井数据成像或渗透。为了描绘盐体的地下室和分布的形态,我们将3-D约束反演方法应用于空气争夺和航空磁性数据覆盖海上阿布扎比。井和地震数据用于约束和验证反演结果。磁反转模型导致了强大的基础模型,其深度从8到10公里处变化,两个高8.5 km突出显示可能的岩浆体。相反,重力倒置模型并不描除基础形态,可能是由于掩蔽了较高密度地下缘的重力响应的较低密度盐体。通过计算和去除从观察到的重力数据的磁性地下室模型的重力响应,我们回收了霍尔苏兹盐的残留重力响应。残留的3-D重力倒置表明,霍尔努斯盐比以前思维更广泛,深度差异从5.5到8.5公里的盐。这种盐模型表明,乌米·沙比岛海上巨型油田,如umm shaif,nasr,abu al-bukhoosh,zakum,sarb和hail,正常以高于盐枕头。此外,发现一系列较小的油田位于北部地下室高的边缘,并从倒置的地下室和盐模型中鉴定了三种结构序列趋势(NE-SW,NW-SE和N-S)。如在地震切片和曲率图中所观察到的那样,在地震切片和曲率图中观察到的重新激活这些故障趋势和相关的浸润盐隆起在塑造地下室形态和动员的霍尔苏斯盐的动员方面发挥了重要作用。

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  • 来源
    《Oceanographic Literature Review》 |2020年第9期|1954-1955|共2页
  • 作者

    M. Geng; M.Y. Ali; J.D. Fairhead;

  • 作者单位

    Khalifa University of Science and Technology Abu Dhabi United Arab Emirates;

    Khalifa University of Science and Technology Abu Dhabi United Arab Emirates;

    Khalifa University of Science and Technology Abu Dhabi United Arab Emirates;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 22:54:16

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