首页> 外文会议>GCSSEPM Foundation Bob F Perkins Research Conference >Tectonic-Controlled Stratal Architecture Variability of Shelf-Edge, Growth Faulted Deltaic Systems: A Case Study from the Frio Formation in Corpus Christi Bay, South Texas
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Tectonic-Controlled Stratal Architecture Variability of Shelf-Edge, Growth Faulted Deltaic Systems: A Case Study from the Frio Formation in Corpus Christi Bay, South Texas

机译:构造控制的划分架构的搁板边缘,生长断裂带系统:南德克萨斯州科斯皮斯克里斯蒂湾的自我形成的案例研究

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摘要

Nearly 2,000 feet of continuous core, combined with well log and 3-D seismic data, afford a rare opportunity to document variations of stratal architecture and related processes of shelf-edge, growth faulted deltaic systems through active and inactive periods of growth faults at the scale of 4~(th)-order sequences in the Frio Formation in Corpus Christi Bay. The growth fault history, examined by expansion ratio and T-Z plots, is divided into three different periods: (1) development (rapid subsidence, growth ratio > 2, steep and positive slope of T-Z plot); (2) less active to inactive (no growth, flat to negative slope of T-Z plot); and (3) maintenance (slow subsidence, growth ratio ~ 1, flat and positive slope of T-Z plot). These periods can be correlated to aggradational, repetitive fourth-order sequences of shoreface deposits, a transgressive unit composed of backstepping shoreface deposits, and several high-frequency progradational fourth-order sequences represented by wave-dominated, fluvial-influenced deltaic deposits. Varying subsidence rates serve as a dominant process in stratigraphic development of the Frio Formation, whereas sediment supply and eustatic sea-level changes are subordinate. The decameter-scale fourthorder sequences within the hanging wall section are grouped into two categories based on stratal architecture: (1) T-R cycles within development period of growth faults and (2) R cycles within maintenance period of growth faults. T-R cycles have complete transgressive and regressive intervals of similar thickness (R-T thickness ratio ~ 1.7), created by a balance between rapid sediment supply and rapid accommodation rate caused by high subsidence rate and low sea-level drop rate. This balance permits the possibility of preserving of both regressive and transgressive units and provides more time for modification of deltaic deposits by wave-storm processes. R cycles are dominated by regressive intervals containing minor transgressive intervals (R-T thickness ratio > 6). R cycles are the results of rapid progradation stacking as rapid sediment supply, slow subsidence and rapid sealevel drop. The reservoir quality of wave-dominated deposits is highly controlled by the percentage of the bioturbated beds that constitute permeability barriers. Within the period of development of growth faults, a high subsidence rate associated with high sediment rate may indicate a relative high energy environment with fewer bioturbated beds and better reservoir quality as documented by porosity and permeability data. Relatively more antithetic faults are present during the growth fault development period, making the interval structurally complex with potentially greater number of reservoir compartments.
机译:近2,000英尺的连续核心,结合良好的日志和3-D地震数据,提供了一种难得的机会,通过主动和非活动期的生长断层的活跃和非活动期通过活跃和非活动期地记录划分架构和相关过程的变化。 Corpus Christi湾的FRIO形成中的4〜(TH)序列的规模。通过扩展比和T-Z图检查的增长故障史分为三个不同的时期:(1)开发(快速沉降,生长比> 2,陡峭和正坡的T-Z图); (2)对无活性的活性较少(没有生长,平坦到T-Z图的负斜率); (3)维护(滞后,生长比率〜1,平坦和正斜率的T-Z图)。这些时段可以与肖尚沉积物的聚集,重复的四阶序列相关,这是由反向映射沉积物组成的近级沉积物,以及由波导,氟血管受影响的甜节沉积物表示的几个高频促成四阶序列。不同的沉降率作为地层发展的主要过程,而沉积物供应和南部海平面变化是下属的。悬挂墙体部分内的透明四分之一序列在基于划分结构中分为两类:(1)在增长故障的发育期内的T-R循环和(2)r循环在增长期内的增长期。 T-R循环具有相似厚度(R-T厚度比率〜1.7)的完全近似和回归间隔,由快速沉积物供应和由高沉降率和低海平面下降率引起的快速住宿率之间的平衡产生。这种平衡允许保留两种回归和侵扰单元的可能性,并通过波浪风暴过程提供更多时间来修改甜甜圈沉积物。 r循环以含有轻微的离前间隔(R-T厚度比> 6)的回归间隔为主。 R循环是快速抛弃堆叠作为快速沉积物供应的结果,缓慢沉降和快速的Sealevel Drop。波导沉淀沉积物的储层质量受到构成渗透性屏障的生物干扰床的百分比。在增长故障的发展期间,与高沉积率相关的高沉降率可能表明具有较少的生物矛盾床和更好的储层质量的相对高能量环境,如孔隙率和渗透性数据所示。在生长故障开发时段期间存在比较多的抗静性故障,使得间隔结构复杂地具有潜在更多数量的储层隔室。

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