机构地区:[1]中国石油大学(北京),油气资源与探测国家重点实验室,北京102249 [2]中国石油大学(北京)非常规油气科学技术研究院,北京102249
出 处:《科学技术与工程》2021年第2期512-521,共10页Science Technology and Engineering
基 金:国家科技重大专项(2017ZX05035-002-006);国家自然科学基金(41502123)。
摘 要:下志留统龙马溪组是中国重要的页岩气勘探开发层位。其中页岩气主要产自下部含黏土硅质海相页岩。为探究渝东南地区各井段勘探效果差异性,压裂段产气不均等问题,以YC-6井为例,通过矿物组分将页岩样品划分为含硅黏土质页岩和含黏土硅质页岩,结合有机碳含量(total organic carbon,TOC)测试,镜质体反射率测试,X射线衍射分析(X-ray diffraction,XRD),低压氮气吸附及高压压汞(mercury intrusion capillary pressure,MICP)实验,分析了YC-6井龙马溪组两种不同岩相页岩的孔隙结构特征。并基于Frenkel-Halsey-Hill(FHH)模型计算了不同岩相页岩的孔隙分形维数。结果表明:YC-6井龙马溪组整体含气量低。下部含黏土硅质页岩平均TOC为4.31%,高于上部含硅黏土质页岩(1.13%),同时总孔体积和比表面积也高于后者。不同岩相页岩的分形维数D2均大于D1,表明孔隙结构复杂程度大于孔隙表面。分形维数与总孔体积和比表面积均呈正相关关系,表明具有大比表面积,大孔容的孔隙结构更复杂。TOC和矿物组分含量是页岩孔隙分形维数的重要影响因素。TOC与分形维数呈正相关关系,有机质含量越高,在热演化过程中将生成更多微小的孔隙,从而使孔隙结构更加复杂;黏土矿物含量越多,分形维数越低,黏土矿物在成岩过程中受到压实作用,使得黏土矿物颗粒排列更为紧密,孔隙更加规则,均质性更强,分形维数更低;海相页岩中的石英多为生物成因,其自身的不规则性将使孔隙结构复杂,分形维数变大。The Lower Silurian Longmaxi Formation is an important shale gas exploration and development stratum in China.The shale gas is mainly produced from clay-bearing siliceous marine shale in the lower part.In order to explore the different gas production between different wells,the YC-6 well was taken as an example,shale samples were divided into silicate-bearing clayey shale and clay-bearing siliceous shale by mineral composition,combined with total organic carbon content(TOC)test,vitrinite reflectance test,and X-ray diffraction analysis(XRD),Low-pressure nitrogen adsorption and mercury intrusion capillary pressure(MICP)experiments,analyzed the pore structure characteristics of two different lithofacies shales in the Longmaxi Formation of YC-6.Based on the Frenkel-Halsey-Hill(FHH)model,the pore fractal dimensions of shales in different lithofacies were calculated.Results show that the gas content of YC-6 is low,the average TOC of the clay-bearing siliceous shale in the lower part is 4.31%,which is higher than silicate-bearing clayey shale(1.13%)in the upper.At the same time,the total pore volume and specific surface area are also higher than the latter.The fractal dimension D2 of different shale lithofacies is greater than D1,indicating that the complexity of the pore structure is greater than that of the pore surface.The fractal dimension has a positive correlation with total pore volume and specific surface area,indicating that pore structure with large specific surface area and pore volume is more complicated.TOC and mineral content are important factors affecting the fractal dimension.TOC is positively related to fractal dimension.The higher the TOC,the more pores will be generated during hydrocarbon generation process,which will make the pore structure more complicated.The more the clay mineral content,the lower fractal dimension will be.The reason is clay minerals subjected to compaction during the diagenesis.The clay mineral particles are arranged more closely,the pores are more regular and the homogeneity is
分 类 号:TE122[石油与天然气工程—油气勘探] P624[天文地球—地质矿产勘探]
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