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车西洼陷低渗透储层孔隙结构特征及物性 被引量:5
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作者 万涛 蒋有录 +2 位作者 林会喜 彭传圣 毕彩芹 《断块油气田》 CAS 北大核心 2010年第5期537-541,共5页
根据岩心观察描述、铸体薄片、岩心分析化验等资料,研究了车西洼陷沙四上亚段低渗透储层孔隙结构特征,探讨了影响低渗透储层物性的主要因素。研究结果表明研究区沙四上亚段储层岩性以细砂岩和粉砂岩为主,平均孔隙度为14.3%,平均渗透率为... 根据岩心观察描述、铸体薄片、岩心分析化验等资料,研究了车西洼陷沙四上亚段低渗透储层孔隙结构特征,探讨了影响低渗透储层物性的主要因素。研究结果表明研究区沙四上亚段储层岩性以细砂岩和粉砂岩为主,平均孔隙度为14.3%,平均渗透率为13.2×10-3μm2,以低渗透砂岩储层为特征,储集空间以粒间溶孔、粒内溶孔和微裂缝为主,储层孔喉半径一般小于6μm。当孔喉半径小于0.24μm,渗透率小于0.4×10-3μm2,排替压力大于1 MPa时,储层含油气性变差。影响沙四上亚段储层物性的主要因素包括孔喉半径、沉积物颗粒大小、溶蚀孔隙和微裂缝的发育情况,以及泥质质量分数和碳酸盐岩质量分数。孔喉半径大的储层沉积物颗粒相对较粗,储层物性相对较好。溶蚀孔隙主要发育在2 000~2 600 m和3 000~3 700 m,溶蚀孔隙的发育能有效改善储层物性。微裂缝主要发育在断裂带附近,可提高储层渗透率5.4~220.1倍。泥质质量分数和碳酸盐岩质量分数的增加使孔隙度减少3%~5%。 展开更多
关键词 低渗透砂岩储层 孔喉半径 沉积物颗粒大小 溶蚀孔隙 微裂缝 车西洼陷 渤海湾盆地
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Difference in Organic Carbon Contents and Distributions in Particle-size Fractions between Soil and Sediment on the Southern Loess Plateau, China 被引量:6
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作者 LI Guang-lu PANG Xiao-ming 《Journal of Mountain Science》 SCIE CSCD 2014年第3期717-726,共10页
The purpose of this study was to assess the effect of long-term cultivation and water erosion on the soil organic carbon (OC) in particle-size fractions. The study site is located at Nihegou Watershed in the Souther... The purpose of this study was to assess the effect of long-term cultivation and water erosion on the soil organic carbon (OC) in particle-size fractions. The study site is located at Nihegou Watershed in the Southern Loess Plateau, China. The soil at this site is loess with loose and silty structure, and contains macropores. The results showed that the OC concentrations in sediments and in the particle-size fractions of sediments were higher than those in soils and in the particle-size fractions of soils. The OC concentration was highest in the clay particles and was lowest in the sand particles. Clay particles possessed higher OC enrichment ability than silt and sand particles. The proportions of OC in the silt fractions of soil and sediment were the highest (mean value of 53.87% and 58.48%, respectively), and the total proportion of OC in the clay and silt fractions accounted for 96% and 98% of the total OC in the soil and sediment, respectively. The loss of OC was highest in silt particles, with an average value of 0.16 Mg ha^-1 y^-1, and was lowest in the sand (0.003 Mg ha^-1 y^-l). This result suggests that the fine particle-size fraction in the removed sediment may be an important indicator to assess soil OC losses. 展开更多
关键词 Soil organic carbon Loess Plateau Enrichment ratio Water erosion Particle fraction
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