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Identification of Interlayer in Strong Bottom Water Reservoir and Its Influence on Development Effect 被引量:2
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作者 Jie Tan Jianbo Chen +2 位作者 Zhang Zhang Chunyan Liu Wentong Zhang 《Journal of Geoscience and Environment Protection》 2022年第7期132-138,共7页
X oilfield is located in Bohai Sea area, in which G oil formation is a typical drape anticline structure, which is composed of multiple sets of thick sandy conglomerate and multiple sets of argillaceous intercalation.... X oilfield is located in Bohai Sea area, in which G oil formation is a typical drape anticline structure, which is composed of multiple sets of thick sandy conglomerate and multiple sets of argillaceous intercalation. From the perspective of development effect, muddy interlayer has a great impact on the oilfield. In this paper, through core identification and well logging identification, the electrical discrimination standard is summarized to identify the interlayer. Through statistics and analysis of the production performance of actual wells, the influence of muddy interlayer on the development performance of oil wells is summarized. This study provides guidance for the development of strong bottom water reservoirs with interlayer. 展开更多
关键词 Strong Bottom Water Reservoir Drape Anticline structure Interlayer Identification Development Effect
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Distribution laws of large gas fields and further exploration orientation and targets in China 被引量:2
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作者 Wei Guoqi Li Jun +7 位作者 She Yuanqi Zhang Guangwu Shao Liyan Yang Guiru Guan Hui Yang Shen Lin Jie Wang Rong 《Natural Gas Industry B》 2018年第5期485-498,共14页
With the rapid expansion and extension of natural gas exploration and development,it is more and more difficult to discover large-scale reserves in China.To intensify the research on new natural gas exploration domain... With the rapid expansion and extension of natural gas exploration and development,it is more and more difficult to discover large-scale reserves in China.To intensify the research on new natural gas exploration domains,we reviewed the progress and trend of natural gas exploration and analyzed the main areas with large-scale proved gas in place(GIP).Then,based on a statistic analysis of large gas fields in China as well as their hydrocarbon accumulation characteristics,their genetic systems were classified and each system's distribution law was also identified.Some research results were obtained.First,carbonate paleo-uplifts of cratonic basins,tight sandstones of extensive gentle slopes and thrust structures of foreland basins are the main areas with large-scale proved GIP in China.Second,there are five genetic systems for large gas fields,i.e.cratonic rift and paleo-uplift(A),stable slope of low-angle open lake(B),thrust structure of piedmont fault depression(C),faulted uplift and igneous rock of intracontinental pull-apart fault depression(D),and anticline structure of epicontinental strikeeslip fault depression(E),and one genetic system(F)for unconventional gas,i.e.adsorption and accumulation in nano-scale space.Third,there is one core genetic system for large conventional gas fields in each geologic cycle.Fourth,two-level accumulation,i.e.no migration inside the source and large scale transportation termination,exists in each single genetic system,and sequential accumulation is formed under the control of multiple factors in the areas where multiple genetic systems are superimposed.Fifth,the multi-system superimposed area is rich in large gas fields and the multistress hinge zone in the central area is the natural gas convergence zone.Finally,the future orientation and targets of natural gas exploration in China were pointed out.First,the system A includes SinianeLower Paleozoic in the Sichuan Basin,Cambrian in the Tarim Basin and CambrianeOrdovician in the Ordos Basin.Second,the system C includes the transform zone of Kuqa thrust structure,the northwestern Sichuan Basin and the southwestern Tarim Basin.Third,the system E includes the basins in the eastern China seas.Fourth,the system F includes organic-rich shales in South China and deep coal beds in the Ordos Basin in central China. 展开更多
关键词 China Large gas field Distribution law New area Cratonic rift and paleo-uplift Thrust structure of piedmont fault depression Anticline structure of epicontinental strikeeslip fault depression Adsorption and accumulation in nano-scale space
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