期刊文献+

New P3D Hydraulic Fracturing Model Based on the Radial Flow

New P3D Hydraulic Fracturing Model Based on the Radial Flow
下载PDF
导出
摘要 Pseudo three-dimension (P3D) hydraulic fracturing models often overpredict the fracture height for a poorly contained fracture. To solve this problem, a new method is presented in shaping the P3D fracture geometry on the basis of the fundamental theory and the original 1D fluid flow is replaced with a more representatively radial flow. The distribution of the fluid in the modified fluid field is analyzed and a sound explanation to the problem is given. Due to the consideration of the fluid flow in the vertical direction, the modified model can predict the fracture height much better. To validate the rationality of the radial fluid flow assumption, the distribution of the fluid in the modified fluid field is simulated with the plane potential flow by using finite element method. And the results agree effectively with those from the assumption. Through comparing with the full 3D model, the results show that this new P3D model can be used to aid the fracturing design and predict the fracture height under poorly contained situation. Pseudo three-dimension (P3D) hydraulic fracturing models often overpredict the fracture height for a poorly contained fracture. To solve this problem, a new method is presented in shaping the P3D fracture geometry on the basis of the fundamental theory and the original 1D fluid flow is replaced with a more representatively radial flow. The distribution of the fluid in the modified fluid field is analyzed and a sound explanation to the problem is given. Due to the consideration of the fluid flow in the vertical direction, the modified model can predict the fracture height much better. To validate the rationality of the radial fluid flow assumption, the distribution of the fluid in the modified fluid field is simulated with the plane potential flow by using finite element method. And the results agree effectively with those from the assumption. Through comparing with the full 3D model, the results show that this new P3D model can be used to aid the fracturing design and predict the fracture height under poorly contained situation.
出处 《Journal of Beijing Institute of Technology》 EI CAS 2004年第4期430-435,共6页 北京理工大学学报(英文版)
基金 SponsoredbytheNational9thFiveYearPlanKeyTaskProject(0 1 0 70 32 )
关键词 hydraulic fracturing fracture height radial flow finite element method plane potential flow hydraulic fracturing fracture height radial flow finite element method plane potential flow
  • 相关文献

参考文献8

  • 1Jadedly.Newdevelopmentofhydraulicfracturingtech nology[]..1992
  • 2PalmerID,DarrollHBJr.Three dimensionhydraulicfracturepropagationinthepresenceofstressvariations[].SPE.1982
  • 3AdnaviSH,KhattabH,LeeJK.Hydraulicfracturesmodeling,predictionandcomparisons[].SPE.1985
  • 4RiceJR.Mathematicalanalysisinthemechanicsoffrac true[]..1968
  • 5PalmerID,DarrollHBJr.Numericalsolutionforheightofelongatedhydraulicfractures[].SPE.1983
  • 6XiaoWeiwen.Incorporationof2Dfluidflowintopseudo3Dhydraulicfracturingsimulator[].SPE.1991
  • 7ZhangBenzhao.Usageofthefiniteelementmethodinthehydrodynamics[M ][]..1986
  • 8Perkims T K,Kern L R.Width of hydraulic fractures[].Journal of Petrology.1961

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部