石油化工高等学校学报
石油化工高等學校學報
석유화공고등학교학보
Journal of Petrochemical Universities
2015年
5期
41-48
,共8页
桑宇%杨胜来%陈浩%李圣涛
桑宇%楊勝來%陳浩%李聖濤
상우%양성래%진호%리골도
加砂压裂%产量预测%非达西流%气水同产%裂缝导流能力
加砂壓裂%產量預測%非達西流%氣水同產%裂縫導流能力
가사압렬%산량예측%비체서류%기수동산%렬봉도류능력
Artificial fracture%Productivity evaluation%Non-Darcy flow%Gas production with water%Fracture conductivity
在单、双相非达西流裂缝导流能力室内实验的基础上,测定了不同工况下的裂缝渗透率和非达西流系数,建立了产量预测方法,研究了气井压裂后产量的影响因素及敏感程度。研究表明,闭合应力和铺砂浓度是影响产量的两个最主要因素,随着闭合应力增加,产量降低;随着铺置浓度增加,产量升高。而同样的参数变化比例下,闭合应力对产量的影响程度明显大于铺置浓度。两相流的存在对产气量影响非常大。压裂井一旦气水同产,气产量将明显降低,对于压后产水的井,有必要尽可能提高铺砂浓度。在此基础上,建立了新的压裂设计的优化方法。
在單、雙相非達西流裂縫導流能力室內實驗的基礎上,測定瞭不同工況下的裂縫滲透率和非達西流繫數,建立瞭產量預測方法,研究瞭氣井壓裂後產量的影響因素及敏感程度。研究錶明,閉閤應力和鋪砂濃度是影響產量的兩箇最主要因素,隨著閉閤應力增加,產量降低;隨著鋪置濃度增加,產量升高。而同樣的參數變化比例下,閉閤應力對產量的影響程度明顯大于鋪置濃度。兩相流的存在對產氣量影響非常大。壓裂井一旦氣水同產,氣產量將明顯降低,對于壓後產水的井,有必要儘可能提高鋪砂濃度。在此基礎上,建立瞭新的壓裂設計的優化方法。
재단、쌍상비체서류렬봉도류능력실내실험적기출상,측정료불동공황하적렬봉삼투솔화비체서류계수,건립료산량예측방법,연구료기정압렬후산량적영향인소급민감정도。연구표명,폐합응력화포사농도시영향산량적량개최주요인소,수착폐합응력증가,산량강저;수착포치농도증가,산량승고。이동양적삼수변화비례하,폐합응력대산량적영향정도명현대우포치농도。량상류적존재대산기량영향비상대。압렬정일단기수동산,기산량장명현강저,대우압후산수적정,유필요진가능제고포사농도。재차기출상,건립료신적압렬설계적우화방법。
The conductivity of artificial fractures and coefficient of non-Darcy gas flow in gas wells are affected by many factors.It is difficult to predict them accurately through mathematical methods.To get a more accurate value through the experiments of actual fracture conductivity,laboratory tests are conducted to measure fracture permeability and non-Darcy flow coefficientβ under different conditions.Computational formula of productivity based on the experimental data is established and the influential factors of the production of the artificial fractured gas well are studied.The results show that closure pressure and sanding concentration are the most important factors affecting the productivity and that gas-water production will greatly decrease the productivity of the gas well.The optimization methods in fracturing design based on the experimental data is set, that is:obtaining fracture permeability and non-Darcy flow coefficient β under different conditions through non-Darcy flow experiments and two-phase flow experiments,and then using them to forecast the productivity of fractured gas well,finally optimizing the fractured length,sanding concentration and other parameters accordingly.