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An integrated structural analysis on seismic of a paleo mound development (Woolsey Mound, northern Gulf of Mexico).

机译:对古丘陵开发区(伍尔西丘陵,墨西哥湾北部)地震的综合结构分析。

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摘要

Woolsey Mound is ∼1 km diameter thermogenic gas hydrate and cold seep (GHCS) complex system. It is located at ∼900 m water depth in the Mississippi Canyon Lease Block 118 (MC-118) on the upper continental slope of the northern Gulf of Mexico (GOM). Due to its complex geology, widespread hydrate seepage activity and presence of benthic habitat, the mound serves as a permanent research site for a multidisciplinary seafloor observatory, thus providing insights into the dynamics of shallow fluid expulsion, their spatial and time variations and possible geological forcing mechanisms.;This study utilizes a set of high resolution 2D autonomous underwater vehicle (AUV) borne chirp seismic data acquired at MC-118, and it provides a unique basis for a twofold detailed structural characterization of an interpreted paleo mound development (PMD). The profiler gives ∼50 m of subbottom penetration with ∼0.1 m of vertical resolution. First, isochore analysis of deeper stratigraphy suggests 1) uniform sedimentation prior to and post PMD with strata variance of ∼0.5--1 m, and 2) uneven sediment distribution during PMD activity, showing a localized growth strata or differential subsidence of ∼5--6 m, as well as truncation and onlapping synkinematic geometry. In addition, integration with modern chronostratigraphic results further indicates that PMD is correlative to relative sea level highstands, of mid-Late Pleistocene. Second, PMD appears to have occurred during quiescent tectonic environment as evidenced by a constant offset of ∼1--2 m throughout stratigraphy, along major faults. These data may substantiate that Woolsey Mound cold seeps are 'episodic', and that sea level fluctuation or tectonic governance alone may not be critical geological triggers of seepage development.
机译:伍尔西丘是直径约1公里的热成天然气水合物和冷渗漏(GHCS)复合系统。它位于墨西哥湾北部(GOM)上大陆坡的密西西比峡谷租赁块118(MC-118)的水深约900 m。由于其复杂的地质,广泛的水合物渗漏活动和底栖生境的存在,该丘陵是多学科海底观测站的永久研究地点,从而提供了对浅层流体驱逐动力学,其时空变化以及可能的地质强迫的见解。这项研究利用了在MC-118采集的一组高分辨率2D自主水下航行器(AUV)chi声地震数据,它为解释古丘发育(PMD)的双重详细结构特征提供了独特的基础。剖析仪可提供约50 m的井底穿透力和约0.1 m的垂直分辨率。首先,对较深地层的等时线分析表明:1)PMD前后沉积均匀,地层方差约为0.5--1 m,2)PMD活动期间沉积物分布不均匀,显示出局部生长地层或微分沉降约5。 -6 m,以及截断和重叠的运动几何。此外,与现代年代地层结果的整合进一步表明,PMD与中晚更新世的相对海平面高位有关。其次,PMD似乎是在静止的构造环境中发生的,在整个地层中沿着主要断层的约1--2 m的恒定偏移量证明了这一点。这些数据可能证实Woolsey Mound冷渗流是“间歇性的”,而且仅海平面波动或构造治理可能不是渗流发展的关键地质触发因素。

著录项

  • 作者单位

    University of South Carolina.;

  • 授予单位 University of South Carolina.;
  • 学科 Geology.;Petroleum geology.;Geophysics.
  • 学位 M.S.
  • 年度 2016
  • 页码 44 p.
  • 总页数 44
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:42:41

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