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英南2井气藏致密砂岩盖层的形成 被引量:9
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作者 余和中 张丽霞 +2 位作者 韩守华 朱国华 斯春松 《石油勘探与开发》 SCIE EI CAS CSCD 北大核心 2004年第5期133-135,共3页
钻井取心和录井资料显示,塔里木盆地英南2井侏罗系气藏中的主力气层之上均为砂岩,缺少泥岩盖层.通过对铸体薄片的观察,结合电性、物性、压汞、扫描电镜和黏土矿物X衍射分析资料,发现英南2井主力气层之上有两段致密砂岩层能够作为气藏的... 钻井取心和录井资料显示,塔里木盆地英南2井侏罗系气藏中的主力气层之上均为砂岩,缺少泥岩盖层.通过对铸体薄片的观察,结合电性、物性、压汞、扫描电镜和黏土矿物X衍射分析资料,发现英南2井主力气层之上有两段致密砂岩层能够作为气藏的有效盖层.致密砂岩层内富含高度分散的泥杂基(含量达6.6%~13.8%),呈网状和包膜状分布于砂粒表面和粒间,其强烈的水锁效应能使气体渗透率降低80%以上,在含水条件下,气体渗透率可由0.47~0.69mD降至小于0.1mD或趋于不渗透状态,这是这类致密砂岩成为有效盖层的主要原因. 展开更多
关键词 塔里木盆地 气藏 致密砂岩层 泥杂基 盖层 水锁效应
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Mechanical properties of polyvinyl alcohol-basalt hybrid fiber engineered cementitious composites with impact of elevated temperatures 被引量:4
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作者 WANG Zhen-bo HAN Shuo +2 位作者 SUN Peng LIU Wei-kang WANG Qing 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第5期1459-1475,共17页
In the present study,the mechanical properties of polyvinyl alcohol(PVA)-basalt hybrid fiber reinforced engineered cementitious composites(ECC)after exposure to elevated temperatures were experimentally investigated.F... In the present study,the mechanical properties of polyvinyl alcohol(PVA)-basalt hybrid fiber reinforced engineered cementitious composites(ECC)after exposure to elevated temperatures were experimentally investigated.Five temperatures of 20,50,100,200 and 400℃ were set to evaluate the residual compressive,tensile and flexural behaviors of hybrid and mono fiber ECC.It was shown that partial replacement of PVA fibers with basalt fibers endowed ECC with improved residual compressive toughness,compared to brittle failure of mono fiber ECC heated to 400℃.The tension tests indicated that the presence of basalt fibers benefited the tensile strength up to 200℃,and delayed the sharp reduction of strength to 400℃.Under flexural load,the peak deflections corresponding to flexural strengths of hybrid fiber ECC were found to be less vulnerable ranging from 20 to 100℃.Further,the scanning electron microscopy(SEM)results uncovered that the rupture of basalt fiber at moderate temperature and its pullout mechanism at high temperature was responsible for the mechanical evolution of hybrid fiber ECC.This work develops a better understanding of elevated temperature and basalt fiber impact on the residual mechanical properties and further provides guideline for tailoring ECC for improved fire resistance. 展开更多
关键词 engineered cementitious composites hybrid fiber basalt fiber mechanical properties elevated temperature
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