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Main controlling factors and enrichment area evaluation of shale gas of the Lower Paleozoic marine strata in south China 被引量:32
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作者 Xian-Ming Xiao Qiang Wei +5 位作者 Hai-Feng Gai Teng-Fei Li Mao-Lin Wang Lei Pan Ji Chen Hui Tian 《Petroleum Science》 SCIE CAS CSCD 2015年第4期573-586,共14页
The Lower Paleozoic shale in south China has a very high maturity and experienced strong tectonic defor- mation. This character is quite different from the North America shale and has inhibited the shale gas evaluatio... The Lower Paleozoic shale in south China has a very high maturity and experienced strong tectonic defor- mation. This character is quite different from the North America shale and has inhibited the shale gas evaluation and exploration in this area. The present paper reports a com- prehensive investigation of maturity, reservoir properties, fluid pressure, gas content, preservation conditions, and other relevant aspects of the Lower Paleozoic shale from the Sichuan Basin and its surrounding areas. It is found that within the main maturity range (2.5 % 〈 EqRo 〈 3.5 %) of the shale, its porosity develops well, having a positive cor- relation with the TOC content, and its gas content is con- trolled mainly by the preservation conditions related to the tectonic deformation, but shale with a super high maturity (EqRo 〉 3.5 %) is considered a high risk for shale gas exploration. Taking the southern area of the Sichuan Basin and the southeastern area of Chongqing as examples of uplifted/folded and faulted/folded areas, respectively, geo- logical models of shale gas content and loss were proposed. For the uplifted/folded area with a simple tectonic defor- mation, the shale system (with a depth 〉 2000 m) has lar- gely retained overpressure during uplifting without a great loss of gas, and an industrial shale gas potential is generally possible. However, for the faulted/folded area with a strong tectonic deformation, the sealing condition of the shale system was usually destroyed to a certain degree with a great loss of free gas, which decreased the pressure coefficient and resulted in a low production capacity. It is predicted that the deeply buried shale (〉3000 m) has a greater gas potential and will become the focus for further exploration and development in most of the south China region (outside the Sichuan Basin). 展开更多
关键词 Lower Paleozoic shale gas MATURITY maincontrolling factors Tectonic deformation
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基于综合主成分分析法的深部煤层底板采动损伤指数的主控指标 被引量:3
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作者 曲立平 杨威 +1 位作者 孙明 郑文翔 《煤矿安全》 CAS 北大核心 2013年第1期203-207,共5页
深部煤层底板采动损伤指数取决于采场底板的应力场、底板岩体的节理分布和应用的采煤方法。建立了深部煤层采动损伤指数控制指标体系,分析了各控制指标在损伤过程中的耦合作用。在此基础上,分析并建立综合主成分模型并筛选出深部煤层采... 深部煤层底板采动损伤指数取决于采场底板的应力场、底板岩体的节理分布和应用的采煤方法。建立了深部煤层采动损伤指数控制指标体系,分析了各控制指标在损伤过程中的耦合作用。在此基础上,分析并建立综合主成分模型并筛选出深部煤层采动损伤指数的13个主控指标。结果表明:应用综合主成分分析能将定性问题转化为定量问题,可以比较客观、准确地对类似复杂非线性问题进行分析。 展开更多
关键词 深部煤层底板 采动损伤指数 控制指标体系 综合主成分分析 主控指标
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