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This study aimed to investigate the complete distribution of reservoir space in tight oil sandstone combining casting slices, field emission scanning electron microscopy(FE-SEM), the pore-throat theory model, high-resolution image processing, mathematical statistics, and other technical means. Results of reservoir samples from the Xin'anbian area of Ordos Basin showed that the total pore radius curve of the tight oil sandstone reservoir exhibited a multi-peak distribution, and the peaks appeared to be more focused on the ends of the range. This proved that pores with a radius of 1–50,000 nm provided the most significant storage space for tight oil, indicating that special attention should be paid to this range of the pore size distribution. Meanwhile, the complete throat radius curve of the tight oil sandstone reservoir exhibited a multipeak distribution. However, the peak values were distributed throughout the scales. This confirmed that the throat radius in the tight oil sandstone reservoir was not only in the range of hundreds of nanometers but was also widely distributed in the scale approximately equal to the pore size. The new rapid determination method could provide a precise theoretical basis for the comprehensive evaluation, exploration, and development of a tight oil sandstone reservoir.  相似文献   
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针对全国范围内各地区地震发生频度、经济发展水平、人口密度分布的差异,提出采用多种途径建立不同层次和精度的中国大陆地区地震损失评估数据库,即详实型数据、欠详实数据和普适型数据。然后,分别阐述了每个层次数据库的建设思路和涵盖内容,并描述各类数据间的相互关联以及数据的应用场景。最后建立了基于Web GIS的基础数据库共享平台。通过实际地震灾害损失评估检验,多层次多精度的地震基础数据库能够适应于不同尺度的地震灾害损失评估,解决了大尺度范围下某些区域数据缺失以及高精度的数据无法充分利用的问题。  相似文献   
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