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鄂尔多斯盆地上三叠统延长组长7段深水重力流沉积类型 被引量:8
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作者 张倚安 李士祥 +2 位作者 田景春 周新平 杨田 《沉积学报》 CAS CSCD 北大核心 2021年第2期297-309,共13页
以鄂尔多斯盆地上三叠统延长组长7段取芯段为主要研究对象,以详细的岩芯观察为基础,以Z43井为例,研究鄂尔多斯盆地延长组长7段深水重力流沉积类型及其特征。研究结果表明,研究区主要发育砂质碎屑流沉积、低密度浊流沉积及混合事件层三... 以鄂尔多斯盆地上三叠统延长组长7段取芯段为主要研究对象,以详细的岩芯观察为基础,以Z43井为例,研究鄂尔多斯盆地延长组长7段深水重力流沉积类型及其特征。研究结果表明,研究区主要发育砂质碎屑流沉积、低密度浊流沉积及混合事件层三种沉积类型。砂质碎屑流沉积整体呈块状,岩性为中—细砂岩,内部可见多个接触面,为多套砂质碎屑流沉积垂向叠置形成。低密度浊流沉积中大部分为中—薄层的正粒序砂岩垂向叠置而成,部分泥质含量较高,表现出砂泥互层的特征。混合事件层主要由下部干净的块状细砂岩与上部富含变形泥岩撕裂屑的砂质泥岩或泥质砂岩成对组合形成,其成因为浊流流动过程中侵蚀泥质基底,黏土物质或泥质碎屑的混入导致浊流向泥质碎屑流转化,最终形成下部浊流沉积上部泥质碎屑流沉积的混合事件层。相近位置不同深度不同类型的深水重力流沉积垂向叠置,指示了复杂多变的重力流流体演化过程。对重力流沉积类型的准确认识,能进一步促进对深水重力流流体转化过程的理解,明确深水重力流沉积分布,为鄂尔多斯盆地深水重力流沉积及常规与非常规油气勘探与开发提供理论指导。 展开更多
关键词 低密度浊流 砂质碎屑流 混合事件层 深水重力流 沉积类型 延长组
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深水碎屑流与浊流混合事件层沉积特征及分布——以鄂尔多斯盆地西南长7油层组为例 被引量:10
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作者 吕奇奇 罗顺社 +2 位作者 李梦杰 官玉龙 张建坤 《东北石油大学学报》 CAS 北大核心 2020年第2期69-78,I0005,I0006,共12页
采用岩石学、深水沉积学等方法,解剖野外露头及重点钻井岩心,结合测井、分析化验等资料,研究鄂尔多斯盆地西南延长组长7油层组深水碎屑流与浊流混合事件层的沉积特征及分布。结果表明:研究区长7油层组发育下部砂质碎屑流上部浊流混合事... 采用岩石学、深水沉积学等方法,解剖野外露头及重点钻井岩心,结合测井、分析化验等资料,研究鄂尔多斯盆地西南延长组长7油层组深水碎屑流与浊流混合事件层的沉积特征及分布。结果表明:研究区长7油层组发育下部砂质碎屑流上部浊流混合事件层、下部浊流上部泥质碎屑流混合事件层(分为下部浊流上部富泥质碎屑和下部浊流上部贫泥质碎屑混合事件层)、泥质碎屑流和浊流频繁互层混合事件层3种类型。其中,下部砂质碎屑流上部浊流、下部浊流上部富泥质碎屑混合事件层发育于重力流沉积区的近端和远端,下部浊流上部贫泥质碎屑、泥质碎屑流和浊流频繁互层混合事件层主要分布于重力流沉积区的远端。研究区长7油层组深水重力流沉积具有近端呈条带状分布、水道化特征显著,远端相邻朵体沉积物相互叠置、连片、呈环带状分布的特征。该结果对完善深水重力流沉积理论及开展非常规油气勘探、开发具有指导意义。 展开更多
关键词 混合事件层 深水重力流 砂质碎屑流 浊流 长7油层组 鄂尔多斯盆地西南
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Deepwater Turbidite Lobe Deposits:A Review of the Research Frontiers 被引量:6
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作者 ZHANG Leifu PAN Mao WANG Hongliang 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2017年第1期283-300,共18页
Deepwater/deep-marine turbidite lobes are the most distal part of a siliciclastic depositional system and hold the largest sediment accumulation on the seafloor. As many giant hydrocarbon provinces have been discovere... Deepwater/deep-marine turbidite lobes are the most distal part of a siliciclastic depositional system and hold the largest sediment accumulation on the seafloor. As many giant hydrocarbon provinces have been discovered within deepwater lobe deposits, they represent one of the most promising exploration targets for hydrocarbon industry. Deepwater exploration is characterized by high cost, high risk but insufficient data because of the deep/ultra–deepwater depth. A thorough understanding of the deepwater turbidite lobe architecture, hierarchy, stacking pattern and internal facies distribution is thus vital. Recently, detailed outcrop characterizations and high–resolution seismic studies have both revealed that the deepwater lobe deposits are characterized into four–fold hierarchical arrangements from "beds", to "lobe elements", to "lobes" and to "lobe complex". Quantitative compilations have shown that hierarchical components of lobe deposits have similar length to width ratios but different width to thickness ratios depending on different turbidite systems. At all hierarchical scales, sand–prone hierarchical lobe units are always separated by mud–prone bounding units except when the bounding units are eroded by their overlying lobe units thus giving rise to vertical amalgamation and connectivity. Amalgamations often occur at more proximal regions suggesting high flow energy. A mixed flow behavior may occur towards more distal regions, resulting in deposition of "hybrid event beds". These synthesized findings could(1) help understand the lobe reservoir distribution and compartmentalization therefore benefit the exploration and development of turbidite lobes within the deep marine basins(e.g. South China Sea) and(2) provide rules and quantitative constraints on reservoir modeling. In addition, the findings associated with deepwater turbidite lobes might be a good starting point to understand the sedimentology, architecture and hierarchy of turbidites in deep lacustrine envir 展开更多
关键词 DEEPWATER turbidite lobes architecture HIERARCHY quantitative characterization hybrid event beds
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