石油钻采工艺
石油鑽採工藝
석유찬채공예
OIL DRILLING & PRODUCTION TECHNOLOGY
2009年
5期
101-104
,共4页
张志全%游园%何永明%柏笑寒%莫非
張誌全%遊園%何永明%柏笑寒%莫非
장지전%유완%하영명%백소한%막비
泥岩蠕变%非均匀地应力%弹性模量%泥岩黏性系数%注水
泥巖蠕變%非均勻地應力%彈性模量%泥巖黏性繫數%註水
니암연변%비균균지응력%탄성모량%니암점성계수%주수
mudstone creep deformation%heterogeneous crustal stress%elastic modulus%mudstone viscosity coefficient%water injection
油田注水开发以后,由于泥岩层吸水软化,改变了作用在套管上的非对称外挤蠕变载荷分布而导致套管出现径向缩径变形的损坏现象.通过建立套管-水泥环-围岩的三维有限元数学模型,定量分析了注水开发引起泥岩蠕变对套管的影响,给出了注水开发引起泥岩层套管受蠕变载荷作用而损坏的机理.研究表明:蠕变载荷从0上升到最大的稳定值时间与泥岩的蠕变特性有关,一般约需400d;当弹性系数由10GPa降低到6GPa时,套管所爱径向载荷由61.95MPa增大到68.36MPa;泥岩吸水软化后,随着泥岩弹性模量的降低,套管外壁的附加载荷会明显增大,即泥岩在较高的注水压力下吸水软化,加剧蠕变载荷分布的非均匀性并加大蠕变载荷值,超过套管的抗外挤能力使套管柱发生径向缩径变形而损坏.
油田註水開髮以後,由于泥巖層吸水軟化,改變瞭作用在套管上的非對稱外擠蠕變載荷分佈而導緻套管齣現徑嚮縮徑變形的損壞現象.通過建立套管-水泥環-圍巖的三維有限元數學模型,定量分析瞭註水開髮引起泥巖蠕變對套管的影響,給齣瞭註水開髮引起泥巖層套管受蠕變載荷作用而損壞的機理.研究錶明:蠕變載荷從0上升到最大的穩定值時間與泥巖的蠕變特性有關,一般約需400d;噹彈性繫數由10GPa降低到6GPa時,套管所愛徑嚮載荷由61.95MPa增大到68.36MPa;泥巖吸水軟化後,隨著泥巖彈性模量的降低,套管外壁的附加載荷會明顯增大,即泥巖在較高的註水壓力下吸水軟化,加劇蠕變載荷分佈的非均勻性併加大蠕變載荷值,超過套管的抗外擠能力使套管柱髮生徑嚮縮徑變形而損壞.
유전주수개발이후,유우니암층흡수연화,개변료작용재투관상적비대칭외제연변재하분포이도치투관출현경향축경변형적손배현상.통과건립투관-수니배-위암적삼유유한원수학모형,정량분석료주수개발인기니암연변대투관적영향,급출료주수개발인기니암층투관수연변재하작용이손배적궤리.연구표명:연변재하종0상승도최대적은정치시간여니암적연변특성유관,일반약수400d;당탄성계수유10GPa강저도6GPa시,투관소애경향재하유61.95MPa증대도68.36MPa;니암흡수연화후,수착니암탄성모량적강저,투관외벽적부가재하회명현증대,즉니암재교고적주수압력하흡수연화,가극연변재하분포적비균균성병가대연변재하치,초과투관적항외제능력사투관주발생경향축경변형이손배.
After waterflooding, mudstone layers are softened by water injection, as a result, asymmetry load distribution of external creep deformation is changed. So casing failure is caused by the diameter reduction and deformation at radial direction. Through the establishment of the "casing-cement mantle-surround rock" 3D finite-element mathematical model, the effect of mudstone creep deformation on casing resulted from waterflooding development is analyzed quantitatively. The mechanism of casing failure of mudstone layers caused by waterflooding development is presented. Study shows that the time of creep load increasing from 0 to the maximum is related to the creep characteristics of mudstone, about 400 d are needed generally. When the elastic coefficient decreases from 10 GPa to 6 GPa, the load on casing at radial direction will be increased to 68.36 MPa from 61.95 MPa. When the mudstone gets softened by water injection, the additional load on casing will witness an obvious increase with the decrease of elastic modulus. That is to say, as the mudstone gets softened under high water injection pressure, the heterogeneity of creep load distribution is intensified and the creep load exceeds the resistance to external pressure. As a result, the casing string becomes deformed at radial direction.