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川中高石梯—磨溪地区震旦系灯影组储层构型研究
引用本文:胡修权,鲁洪江,易驰,李江寒,陈克勇,鲁杰,肖陈静.川中高石梯—磨溪地区震旦系灯影组储层构型研究[J].中国岩溶,2022,41(6):847-859.
作者姓名:胡修权  鲁洪江  易驰  李江寒  陈克勇  鲁杰  肖陈静
作者单位:1.成都理工大学能源学院, 四川 成都 610059
基金项目:国家自然科学基金面上项目(42172175);国家科技重大专项(2016ZX05052);成都理工大学油气藏地质及开发工程国家重点实验室资助项目(PLC201710)
摘    要:川中高石梯—磨溪地区是我国迄今为止发现的单体规模最大碳酸盐岩整装气藏,震旦系灯影组受多期构造运动改造的影响,具有成岩和成藏演化复杂的特点。结合野外、岩芯、测井以及生产动态将储层构型划分4种,层状溶洞构型FMI成像测井为高亮背景下暗色斑点顺层分布;葡萄花边状溶洞构型为亮色背景下暗色斑块零星分布;角砾间溶洞构型为高亮背景下暗色斑点、暗色短线状影像杂乱分布;缝洞组合构型为高亮背景下暗色正弦线状影像和暗色斑点分布。层状溶洞构型推测为埋藏期外来酸性流体的溶蚀作用形成,角砾间溶洞构型、缝洞组合构型推测为表生喀斯特岩溶作用形成,葡萄花边状溶洞构型推测为次生成因,海平面下降时形成缝洞体系,海平面上升时海水充填缝洞,形成葡萄花边胶结物。不同储层构型在常规测井特征上也存在差异。通过多测井系列联立建立相应的判别模型,能在一定程度上将4类储层构型进行区分。利用测井构型解释成果,在地震反演约束的条件下开展了灯影组储层构型建模,分别在高石梯地区和磨溪地区,探讨灯四段储层构型平面展布规律。钻井试气结果表明层状溶洞构型厚度对油气产能有一定的控制作用,层状溶洞构型较发育区为勘探潜力较大的区域。 

关 键 词:储层建模    灯影组    储层构型    判别模型    高石梯—磨溪地区
收稿时间:2021-12-03

A study of reservoir architecture of Dengying formation in Gsoshiti-Moxi area,Sichuan Basin
Institution:1.College of Energy Resources, Chengdu University of Technology, Chengdu, Sichuan 610059, China2.State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Chengdu University of Technology, Chengdu, Sichuan 610059, China3.Exploration and Development Research Institute, PetroChina Southwest Oil & Gas Field Company, Chengdu, Sichuan 610041, China4.Sinopec Northwest Oilfield Company, Urumqi, Xinjiang 830011, China
Abstract: There is a largest complete carbonate gas reservoir so far found in the mid of Sichuan Gaoshiti-Moxi area. Influenced by multi-period tectonic movement, this reservoir presents complex characteristics of diagenesis and reservoir formation. Combined with the field, lithologic, logging and production dynamic, the reservoir architecture can be divided into four types. The FMI of layered cavitation configuration shows layered distribution with dark spots on light background; the FMI of grape-lacelike cavitation configuration shows sporadic distribution of dark patches on light background; the FMI of the inter-breccia cavitation configuration shows clutter distribution of dark patches and short line images; and the FMI of cavitation configuration combined with crevices shows distribution of dark sinusoidal line images and patches on light background. The layered cavitation configuration is supposed to be formed by the dissolution of external acidic fluids during the burial period. The inter-breccia cavitation configuration and cavitation configuration combined with crevices are supposed to be formed by supergene karstification, and the grape-lacelike cavitation configuration is presumed to be a secondary cause—When the sea level rises, seawater fills the cracks and holes, forming grape lace cement. Different reservoir configurations are also different in conventional logging characteristics. The establishment of a corresponding discriminant model by multiple logging series can, to a certain extent, distinguish these four types of reservoir configurations. In this study, the single well logging, the variance function analysis, and the sequential indicator simulation method based on pixel are adopted to carry out the reservoir structure modeling of Dengying formation under the condition of seismic inversion constraint. The distribution law of reservoir configuration in No.4 segment of Dengying Formation in Gaoshiti-Moxi area is discussed. The method of reservoir structure analysis that enriches the methods and studies of carbonate rocks has a wide range of application prospects. The results of drilling gas test show that the thickness of layered cavitation configuration has a certain control effect on oil and gas productivity, and the areas where the layered cavitation configuration is relatively developed are of great exploration potential.  
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