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机构地区:[1]中国石油大学地球科学与技术学院,山东青岛266555 [2]中国海油湛江分公司,广东湛江524057
出 处:《新疆石油地质》2016年第1期36-40,共5页Xinjiang Petroleum Geology
摘 要:在低孔低渗砂岩储集层中,微孔隙给岩石的导电性及物性参数的评价带来了一定的困难。以苏里格气田A区块盒8段储集层为例,将动力与阻力平衡时所得到的孔隙半径0.15μm作为微孔隙的上限,通过数值模拟及数理统计等手段解释了研究区的"非阿尔奇"现象。研究表明,孔隙类型决定微孔隙发育比例,孔隙度越大,微孔隙比例越小;随着微孔隙比例增大,渗透率明显降低;微孔隙发育的低孔低渗砂岩储集层具有中子孔隙度明显增大、密度和声波时差变化较小的特点,且随着黏土含量增多,束缚水饱和度增高,导电网络发育,导电性增强,电阻率降低。所以,微孔隙发育是研究区低孔低渗砂岩储集层出现低阻的主要原因。In low porosity and low permeability sandstone reservoirs, the development of micropores bring some difficulties to the evaluation of rock conductivity and petrophysical parameters. Taking Block A in Sulige gas field as an example, the micropore limit in this field is redetermined as 0.15 μm by means of the principle of balanced dynamics and resistance, and the "non-Archie" phenomenon is explained by numerical simulation and mathematical statistics. The studies show that the pore type determines proportion of micropores, and the bigger the porosity, the smaller the proportion of mieropores; with the proportion of micropores increasing, the permeability is obviously decreased; the sandstone reservoir with low porosity and permeability is characterized by significantly inereamental neutron porosity and small changes of the density and the interval transit time, and with the increase of clay content, the irreducible water saturation increases, the conductive network develops, conductivity enhances, and the resistivity decreases. Therefore, the micropores occurrence is the main reason for the low resistivity phenomenon appeared in the low porosity and low permeability reservoirs in this area.
关 键 词:苏里格气田 低孔低渗储集层 微孔隙 岩电参数 孔隙类型 测井评价
分 类 号:TE112.24[石油与天然气工程—油气勘探]
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