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Formation Mechanism and Controlling Factors of Natural Gas Reservoirs of the Jialingjiang Formation in the East Sichuan Basin
作者姓名:ZHU  Guangyou  ZHANG  Shuichang  LIANG  Yingbo  ZHOU  Guoyuan  WANG  Zhengjun
作者单位:[1]Research Institute of Petroleum Exploration and Development, China National Petroleum Corporation, Beijing 100083 [2]East Sichuan Drilling Co. Ltd., Sichuan Petroleum Administration, Chongqing 400021
基金项目:国家自然科学基金 , 国家重点基础研究发展计划(973计划)
摘    要:The Lower Triassic Jialingjiang Formation reservoirs are distributed widely in the East Sichuan Basin, which are composed mainly of fractured reservoirs. However, natural gas with high concentration of H2S, ranging from 4% to 7%, was discovered in the Wolonghe Gas pool consisting primarily of porous reservoirs, while the other over 20 fractured gas reservoirs have comparatively low, tiny and even no H2S within natural gases. Researches have proved the H2S of the above reservoirs are all from the TSR origin. Most of the Jialingjiang Formation natural gases are mainly generated from Lower Permian carbonate rocks, the Wolonghe gas pool's natural gases are from the Upper Permian Longtan Formation, and the natural gases of the Huangcaoxia and Fuchengzhai gas pools are all from Lower Silurian mudstone. The formation of H2S is controlled by the characteristics and temperature of reservoirs, and is not necessarily related with gas sources. The Jialingjiang Formation in East Sichuan is buried deeply and its reservoir temperature has ever attained the condition of the TSR reaction. Due to poor reservoir potential, most of the gas pools do not have enough room for hydrocarbon reaction except for the Wolonghe gas pool, and thus natural gases with high H2S concentration are difficult to be generated abundantly. The south part of East Sichuan did not generate natural gases with high H2S concentration because the reservoir was buried relatively shallow, and did not suffer high temperature. Hence, while predicting the distribution of H2S, the characteristics and temperature of reservoirs are the necessary factors to be considerd besides the existence of anhydrite.

关 键 词:三叠纪岩石  气资源  碳同位素  四川盆地
修稿时间:2006-08-15

Formation Mechanism and Controlling Factors of Natural Gas Reservoirs of the Jialingjiang Formation in the East Sichuan Basin
Authors:ZHU Guangyou  ZHANG Shuichang  LIANG Yingbo  ZHOU Guoyuan  WANG Zhengjun
Abstract:The Lower Triassic Jialingjiang Formation reservoirs are distributed widely in the East Sichuan Basin,which are composed mainly of fractured reservoirs.However,natural gas with high concentration of H_2S,ranging from 4% to 7%,was discovered in the Woionghe Gas pool consisting primarily of porous reservoirs,while the other over 20 fractured gas reservoirs have comparatively low,tiny and even no H_2S within natural gases.Researches have proved the H_2S of the above reservoirs are all from the TSR origin.Most of the Jialingjiang Formation natural gases are mainly generated from Lower Permian carbonate rocks,the Wolonghe gas pool's natural gases are from the Upper Permian Longtan Formation,and the natural gases of the Huangcaoxia and Fuchengzhai gas pools are all from Lower Silurian mudstone.The formation of H_2S is controlled by the characteristics and temperature of reservoirs,and is not necessarily related with gas sources.The Jialingjiang Formation in East Sichuan is buried deeply and its reservoir temperature has ever attained the condition of the TSR reaction.Due to poor reservoir potential,most of the gas pools do not have enough room for hydrocarbon reaction except for the Wolonghe gas pool,and thus natural gases with high H_2S concentration are difficult to be generated abundantly.The south part of East Sichuan did not generate natural gases with high H_2S concentration because the reservoir was buried relatively shallow,and did not suffer high temperature.Hence,while predicting the distribution of H_2S,the characteristics and temperature of reservoirs are the necessary factors to be considerd besides the existence of anhydrite.
Keywords:Lower Triassic Jialingjiang Formation  gas source  carbon isotope  hydrogen sulphide  Wolonghe gas pool  Sichuan Basin
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