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屏蔽式暂堵技术中钻井液固相颗粒的最优化计算方法
引用本文:姚恒申,牟伯中,赵正文.屏蔽式暂堵技术中钻井液固相颗粒的最优化计算方法[J].钻井液与完井液,1997(4).
作者姓名:姚恒申  牟伯中  赵正文
作者单位:西南石油学院 四川南充 (姚恒申,牟伯中),西南石油学院 四川南充(赵正文)
摘    要:采用屏蔽式暂堵技术时,如何确定钻井液中固相颗粒的粒径及其所占比例是一个关键因素。分析了内、外屏蔽的形成机理。认为储层中的孔隙喉道截面和外屏蔽(滤饼)中已沉积颗粒之间的孔隙喉道截面都可处理为曲边三角形,根据曲边三角形的内切圆半径可以确定下一级颗粒的半径。钻井液中固相颗粒粒径的最佳比例关系为1,0.16,0.07,0.037,0.023,0.016,……。此计算结果与实验结果相一致。给出了各级颗粒数量所占比例的计算方法。

关 键 词:钻井液  颗粒  粒度  计算方法  临时性封堵  孔隙喉道  岩石孔隙  孔隙大小

Calculating solid particle size and particle amount in shielding temporary plugging technology
Yao Heng-Shen, Mou Bo-Zhong and Zhao Zheng-Wen,Southwest China Petroleum Institute,Nan-chong,Sichuan Province.Calculating solid particle size and particle amount in shielding temporary plugging technology[J].Drilling Fluid & Completion Fluid,1997(4).
Authors:Yao Heng-Shen  Mou Bo-Zhong and Zhao Zheng-Wen  Southwest China Petroleum Institute  Nan-chong  Sichuan Province
Abstract:Solid particle size and particle amount in drilling fluid are main factors affecting shielding temporary plugging result. The methods of calculating the said factors are introduced. It is indicated that the section of pore throat in shielding can be treated as curved line trangle. The size of next level particle can be determined by the inscribed circle radius of curved line trangle. The optimum ratio of particle size is also given.
Keywords:Temporary Plugging  Drilling Fluid  Particle Size
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