中国西北部鄂尔多斯盆地铝岩系气藏的主要控制因素及勘探启示

IF 7 Q1 ENERGY & FUELS
Lei ZHANG , Qian CAO , Caili ZHANG , Jianwu ZHANG , Jiayi WEI , Han LI , Xingjian WANG , Xing PAN , Ting YAN , Haiqi QUAN
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引用次数: 0

摘要

以露头、岩心、测井、测气、实验等资料为基础,采用天然气积聚与铝质岩成矿综合研究方法,分析了中国西北部鄂尔多斯盆地铝质岩系有效储层的控制因素,以及测煤源岩与铝质岩系储层的构造。建立了天然气积聚模型,评价了盆地煤层下铝质岩系的天然气勘探潜力。鄂尔多斯盆地铝质岩系有效储层由蜂窝状铝土矿组成,具有多孔残余鲕粒和脱落构造,透辉石含量大于80%,以溶解孔隙为主要储集空间。铝土矿储层是在刨蚀控制物质供应、岩溶古地貌控制成岩作用、地表淋溶改善储层质量的模式下形成的。石炭纪晚期-二叠纪早期的炎热潮湿气候和海平面变化主导了典型的煤-铝-铁三级地层结构的发展。煤质源岩广泛生烃产生的天然气在煤层下的铝质岩系中积聚,显示了源下生烃的积聚模式。在上石炭世-下二叠世期间,华北地块古陆或古岛边缘的相对低洼地区被开发。在华北克拉通上古生界多点成群、呈透镜状的铝质岩系气藏,是极具潜力的新的重要天然气勘探领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Main controlling factors and exploration enlightenment of aluminous rock series gas reservoirs in Ordos Basin, NW China

Based on the data of outcrop, core, logging, gas testing, and experiments, the natural gas accumulation and aluminous rock mineralization integrated research was adopted to analyze the controlling factors of aluminous rock series effective reservoirs in the Ordos Basin, NW China, as well as the configuration of coal-measure source rocks and aluminous rock series reservoirs. A natural gas accumulation model was constructed to evaluate the gas exploration potential of aluminous rock series under coal seam in the basin. The effective reservoirs of aluminous rock series in the Ordos Basin are composed of honeycomb-shaped bauxites with porous residual pisolitic and detrital structures, with the diasporite content of greater than 80% and dissolved pores as the main storage space. The bauxite reservoirs are formed under a model that planation controls the material supply, karst paleogeomorphology controls diagenesis, and land surface leaching improves reservoir quality. The hot humid climate and sea level changes in the Late Carboniferous–Early Permian dominated the development of a typical coal-aluminum-iron three-stage stratigraphic structure. The natural gas generated by the extensive hydrocarbon generation of coal-measure source rocks was accumulated in aluminous rock series under the coal seam, indicating a model of hydrocarbon accumulation under the source. During the Upper Carboniferous–Lower Permian, the relatively low-lying area on the edge of an ancient land or island in the North China landmass was developed. The gas reservoirs of aluminous rock series, which are clustered at multiple points in lenticular shape, are important new natural gas exploration fields with great potential in the Upper Paleozoic of North China Craton.

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