首页> 外文期刊>Marine and Petroleum Geology >Sedimentary infill of shallow water deltaic sand bodies controlled by small-scale syndepositional faults related paleogeomorphology: Insights from the paleogene Shahejie formation in the Dongying depression, Bohai Bay Basin, Eastern China
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Sedimentary infill of shallow water deltaic sand bodies controlled by small-scale syndepositional faults related paleogeomorphology: Insights from the paleogene Shahejie formation in the Dongying depression, Bohai Bay Basin, Eastern China

机译:由小规模二甲素沉积物控制的沉积填料与小型二甲素缺陷相关古神话:来自东营萧条的古代沙河街形成的见解,东部渤海湾盆地

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摘要

Formed in extensional structural system, syndepositional faults are widely distributed in rift basins. Large basinal scale syndepositional faults play important roles in controlling the development and dispersion of depositional systems in rift basins. When it comes to the intensively developed small-scale syndepositional faults related to those large basinal scale syndepositional faults in complex fault blocks, the controlling effects to sedimentary architecture in the finer scale are still not well understood in the depositional systems. Thus, commonly used sedimentary models without considering small-scale syndepositional faults related paleogeomorphology are difficult to apply in complex fault blocks of rift basins. In this study, using the interpretation of 3D seismic profiles, wire-line log curves, and cores, patterns of small-scale syndepositional faults and their related finer scale stratigraphic sequences are described in the upper Es2 member, Shahejie Formation of the W43 complex fault block area, Dongying Depression, Bohai Bay Basin. The syndepositional faults are intensively distributed in the W43 complex fault block area. Based on the interpretation of sequence boundaries, four types of syndepositional faults related paleogeomorphology units were identified. They are named the micro slope break belt, micro-horst belt, and the micro-graben belt. The stacking patterns and development scale of individual deltaic sand bodies in the parasequences are controlled by activity of the syndepositional faults. In the hanging wall area near the syndepositional fault of the micro-step and micro-graben, thickened multi-stage continuously individual sand bodies are deposited controlled by low topography during the depositional period with sufficient sediment supply. In the footwall area of single micro syndepositional fault and micro-horst belt, individual sand bodies became thinner and less aggraded in vertical direction. The small-scale syndepositional fault-related paleogeomorphology is a new important factor that controls the sedimentary architecture of the shallow water deltaic sand bodies in the rift basin. This study provides insights into tectonic control of finer-scale sedimentary architecture and hydrocarbon reservoirs development in continental rift basins.
机译:形成在延长结构系统中,Syndeposital断层广泛分布在裂缝盆地中。大型底座Syndepositoral断层在控制裂缝盆地沉积系统的开发和分散方面发挥着重要作用。当涉及到与复杂故障块中那些大型底座Syndeposital断层相关的小型型小规模的小型二级故障,在沉积系统中仍未清楚地对沉积架构的控制效果仍未得到很好的理解。因此,常用的沉积模型在不考虑小规模的Syndeposital故障相关的古神话中难以施加在裂缝盆地的复杂断层块中。在本研究中,使用3D地震曲线的解释,线线日志曲线和核心,小型Syndeposital故障的模式及其相关的越粒度的地层序列在上部ES2构件中描述了W43复杂故障的Shahejie形成渤海湾盆地东营萧条砌块区。 Syndeposital故障在W43复杂故障块区域中集中分布。基于对序列边界的解释,鉴定了四种类型的Sypdeposital故障相关的古神话单元。它们被命名为微坡断带,微钟带和微抓住皮带。在解剖滤乱中单个红细胞体的堆叠模式和发展规模由Syndeposital断层的活动控制。在靠近微步和微抓的Syndeposital故障附近的悬挂墙区域中,在具有足够沉积物的沉积时段期间,通过低地形控制增稠的多级连续各个砂体。在单层微型二聚体故障和微钟带的脚壁区域中,各个砂体变得较薄,垂直方向略低。小规模的Syndeposital Firforal相关的古神经形式是一种新的重要因素,用于控制裂缝盆地浅水红外砂体的沉积建筑。本研究提供了对大陆裂缝盆地的细粒度沉积建筑和碳氢化合物储层开发的构造控制的见解。

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