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复合射孔压裂火药爆燃后气液作用分析
引用本文:赵旭,柳贡慧,李中权.复合射孔压裂火药爆燃后气液作用分析[J].西南石油大学学报(社会科学版),2011,30(5):141-144.
作者姓名:赵旭  柳贡慧  李中权
作者单位:中国石油大学石油工程教育部重点实验室,北京102249
摘    要:针对目前在复合射孔理论模型的研究中,国内外各石油公司及相关研究机构主要集中在火药的爆燃机理、岩石的压裂机理和裂缝的生成方面,但对于压裂火药燃烧结束后剩余高能气体及上部

关 键 词:压井液    气液作用    爆生气体    脉动作用    计算模型

HIGH ENERGY GAS AND CONTROL LIQUID ACTION CHARACTERISTICS AFTER DEFLAGRATION IN COMPLEX PERFORATION PROCESSING
ZHAO Xu LIU Gong-hui LI Zhong-quan.HIGH ENERGY GAS AND CONTROL LIQUID ACTION CHARACTERISTICS AFTER DEFLAGRATION IN COMPLEX PERFORATION PROCESSING[J].Journal of Southwest Petroleum University(Social Sciences Edition),2011,30(5):141-144.
Authors:ZHAO Xu LIU Gong-hui LI Zhong-quan
Institution:CMOE Key Laboratory of Petroleum Engineering,China University of Petroleum,Beijing 102249,China
Abstract:In the theoretical model research on complex perforation,domestic and international oil companies and relevant research institutions mainly place their concentration on deflagrate mechanism,fracturing mechanism of rock and formulation of the crack,however,the research on effect of surplus high energy gas and water hammer of control fluid is inadequate.The function characters of high energy gas and water hammer of control fluid after fracturing charge are studied and the motion differential equation derived in this paper,a mathematical model for evaluating bottom hole pressure is proposed,the change of wellbore pressure comprehensively studied,slug of control fluid,pulse action of high energy gas and water hammer after fracturing charge are studied in detail.Last,through an example computation,it is proved that water hammer of control fluid and pulse action of surplus high energy gas have positive function on the effect of complex perforation.
Keywords:control fluid                                                                                                                        gasliquid interaction                                                                                                                        high energy gas                                                                                                                        pulse action                                                                                                                        mathematical model
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