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《Research and Exploration in Laboratory》 2010-04
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Correction of Cubic Law and Calculation of Critical Velocity in Parallel Fractures

LU Zhan-guoa,YAO Juna,WANG Dian-shengb,LI Li-fenga(a.College of Petroleum Engineering;b.College of Physics Science and Technology,China University of Petroleum,Dongying 257061,China)  
In order to investigate the characteristics of fluid flow in fractures in fractured-vuggy carbonate reservoir,a series of single-phase flow experiments on parallel fracture models with aperture 50 ~ 300 μm were conducted using a special fractured vuggy media experimental setup.The empirical correlation for permeability of rough parallel fractures was obtained by multi-parameter fitting method.And critical velocity formula for identifying the beginning of nonlinear flow was proposed by combing Darcy law and nonlinear flow equation.The results show that the fluid flow in parallel fractures follows Darcy law when velocity is slow,however,with the increasing velocity,flow curves bend to pressure gradient axis and fluid flow presents nonlinear characteristics.The permeability obtained by empirical correlation is consistent with experimental value with error less than 4.49%.Critical velocity increases with increasing fracture aperture.It is hard to produce nonlinear flow in large aperture fractures.
【Fund】: 国家重点基础研究发展(973)计划资助项目(2006CB202404)
【CateGory Index】: TE312
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