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首页> 外文期刊>E3S Web of Conferences >Sedimentary Characteristics and Lithological Trap Identification of Distant Braided Delta Deposits: A Case on Upper Cretaceous Yogou Formation of Termit Basin, Niger
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Sedimentary Characteristics and Lithological Trap Identification of Distant Braided Delta Deposits: A Case on Upper Cretaceous Yogou Formation of Termit Basin, Niger

机译:远距离辫状三角洲沉积物的沉积特征和岩性圈闭识别-以尼日尔特尔米特盆地上白垩统优古组为例

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Lithological trap identification in thin sand and thick shale layers is still a challenge for hydrocarbon exploration. Based on the high-resolution sequence stratigraphy theory and the establishment of high-resolution sequence stratigraphy framework with seismic-well tie, the dynamic deposition process of braided delta sands on late Cretaceous Yogou formation has been analyzed on 62 wells in passive rifting Termit basin with multi-stages depressions and reversals. (1) Six kinds of sedimentary microfacies and three major reservoir sands with multi-stages vertical stacking and lateral migration are in late Cretaceous; (2) Based on accommodation space/Sediments supply change and depositional progress, sedimentary facies distribution evolution has been done according to sands thickness statistics of sedimentary micro-facies, and narrow-time seismic attributes and slices analysis, multi-sources braided delta depositional model has been concluded; (3) Based on source rock and caprock evaluation, with reservoir sands distribution and faults impact on Yogou formation of Termit basin, four types of traps, including structure-lithology, Structure-strata, stratigraphic and lithology are concluded. Traps influencing factors, i.e., structure geometry, sands distribution, paleotopography, stratigraphy cycling, sand/shale lateral connection, reservoir quality and so on, have different impacts on these traps, and different lithologic-stratigraphy traps have different exploration risks. Structure geometry and sands distribution are very important for the structure-lithology traps; structure geometry and paleotopography are the key factors in Structure-strata traps. Sands distribution and reservoir quality can be focused on lithology traps. Moreover, paleotopography and sand/shale lateral connection are significant on stratigraphic traps. Therefore, different hydrocarbon accumulation types of lithological traps have been established.
机译:薄砂和厚页岩层的岩性圈闭识别仍然是油气勘探的挑战。基于高分辨率层序地层学理论,建立了带地震井带的高分辨率层序地层格架,分析了被动裂陷特米特盆地62口井晚白垩世Yogou组辫状三角洲砂的动态沉积过程。多阶段的萧条和逆转。 (1)白垩纪晚期为六种沉积微相和三期多期垂直堆积和横向运移的主要储层砂岩; (2)根据沉积空间/沉积物供应变化和沉积过程,根据沉积微相的砂层厚度统计,窄时地震属性和切片分析,多源辫状三角洲沉积模型,进行了沉积相分布演化。已经结束; (3)基于烃源岩和盖层评价,结合储集砂分布和断层对特尔米特盆地优沟组的影响,总结出了圈闭圈闭的4种类型,包括构造-岩性,构造-地层,地层和岩性。圈闭的影响因素,即构造几何,砂体分布,古地貌,地层循环,砂页岩侧向连接,储层质量等,对这些圈闭有不同的影响,不同的岩性地层圈闭有不同的勘探风险。结构的几何形状和砂的分布对于构造-岩性圈闭非常重要。结构几何学和古地形学是构造-地层圈闭的关键因素。砂的分布和储层质量可以集中在岩性圈闭上。而且,古地貌和砂/页岩的横向联系在地层圈闭中很重要。因此,已经建立了岩性圈闭的不同油气成藏类型。

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