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CO_2混相驱油井产能预测方法 被引量:3
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作者 王玉霞 尚庆华 王艳霞 《东北石油大学学报》 CAS 北大核心 2013年第1期97-103,11,共7页
为预测CO2混相驱油井产能,基于混相驱机理,建立一注一采和五点法井网布井方式下CO2混相驱油井产能预测模型.模拟结果表明:在油层和流体相同条件下,一注一采和反五点井网布井方式下CO2混相驱相对于水驱油井产能有明显提高,油井产能随混... 为预测CO2混相驱油井产能,基于混相驱机理,建立一注一采和五点法井网布井方式下CO2混相驱油井产能预测模型.模拟结果表明:在油层和流体相同条件下,一注一采和反五点井网布井方式下CO2混相驱相对于水驱油井产能有明显提高,油井产能随混相区向采油井的不断推移而增大,CO2与原油混相区突破后,存在某一井底流压,使油井产能达到最大,随着井底流压降低,产能减小;随段塞长度增大,采油指数与累计产油量由线性关系向乘方关系转化;随累计产油量增大,采油指数和段塞长度呈类似规律变化.CO2超临界区增大对油井产能的贡献比CO2溶于原油起到作用更明显.该研究结果为配产及油井举升工艺设计提供参考. 展开更多
关键词 CO2 油井产能 采油指数 混相区 累计产油 段塞长度
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Fracture suppression at steel/concrete connection zones by ECC 被引量:2
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作者 钱吮智 《Journal of Southeast University(English Edition)》 EI CAS 2012年第2期190-194,共5页
In order to avoid brittle fracture failure, a ductile engineered cementitious composite (ECC) was attempted in steel/concrete connection zones to replace normal concrete. The influence of the ECC material ductility ... In order to avoid brittle fracture failure, a ductile engineered cementitious composite (ECC) was attempted in steel/concrete connection zones to replace normal concrete. The influence of the ECC material ductility on connection failure modes and structural performance was investigated via the pushout test of stud/ECC connection, the pullout test of two-dimensional anchor bolt/ECC connection and the finite element modeling (FEM). The experimental results suggest that the micromechanically designed ECC with a tensile ductility 300 times that of normal concrete switches the brittle fracture failure mode to a ductile one in steel connection zones. This modification in material behavior leads to higher load carrying capacity and structural ductility, which is also confirmed in FEM investigation. The enhancement in structural response through material ductility engineering is expected to be applicable to a wide range of engineering structures where steel and concrete come into contact. 展开更多
关键词 engineered cementitious composite (ECC) material ductility steel/concrete interaction zones fracture suppression
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