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《Acta Sedimentologica Sinica》 2007-01
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Genetic Type and Intrafomational Heterogeneity Pattern of Low-porosity and Low-permeability Sandbodies in Fuxian Exploration Area

CHEN Jing-shan1 ZHOU Yan1 PENG Jun1 TAN Xiu-cheng1 WANG Ming-xian2 GOU Yin-chun3 (1.Southwest Petroleum University, Chengdu 610500; 2. Zhongyuan Oilfield Company, SINOPEC, Puyan Henan 457000; 3.Northwest Branch of PetroChina Exploration and Production Research Institute,Lanzhou 730020)  
On the basis of a careful analysis of sedimentary facies from outcrop sections, cores, test data, drilling and well loggings, delta, lake, and sub-lacustrine fan facies are mainly developed in the Chang 6 Member, Yangchang Formation, Upper Triassic in Fuxian Exploration Area of Ordos Basin. Ten microfacies types of sand-body have been distinguished in these sedimentary facies, for example distributary channel, river-mouth bar, distal bar, gravity-flow channel, and distal turbidite sandbodies. Their reservoirs range from 2.20% to 14.90% in the porosity and vary from 0.01×10-3μm2 to 6.50×10-3μm2 in the permeability. These sandbodies are mostly the reservoir type of low porosity and permeability. They are resulted from post-depositional compaction, cementation and filling. The loss ratio of porosity from the compaction is 18%~19%, and those from cementation and filling is equally about 9%. An average of ultimate porosity is equally about 10% today. Four basic types of intraformational heterogeneity are recognized by the vertical pattern of grain size, porosity, permeability and other reservoir parameters and logging response. These types of intraformational heterogeneity are porosity and permeability pooring upward, porosity and permeability improving upward, compound, and complex types. The former three types of intraformational heterogeneity are determined by sandbody microfacies, depositional hydrodynamics, sediment grain-size, depositional sequence. The complex type of intrafomational heterogeneity is largely related to the diagenetic reworking, including differential cementation and differential buried dissolution.
【Fund】: 四川省重点学科建设项目(编号SZD0414)资助
【CateGory Index】: P618.13
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