刘建中1, 曹新玲2, 李自强2, 陈宗哲3, 戴焕栋3. 1987: 对扶余油田套管变形的几点看法. 地震学报, 9(1): 65-73.
引用本文: 刘建中1, 曹新玲2, 李自强2, 陈宗哲3, 戴焕栋3. 1987: 对扶余油田套管变形的几点看法. 地震学报, 9(1): 65-73.
LIU JIANZHONGup, CAO XINLINGup2, LI ZIQIANGup2, CHEN ZONGZHEup3, DAI HUANDONGup3payd. 1987: SOME IDEAS ABOUT THE DEFORMATION OF CASED HOLES IN THE FUYU OIL FIELD. Acta Seismologica Sinica, 9(1): 65-73.
Citation: LIU JIANZHONGup, CAO XINLINGup2, LI ZIQIANGup2, CHEN ZONGZHEup3, DAI HUANDONGup3payd. 1987: SOME IDEAS ABOUT THE DEFORMATION OF CASED HOLES IN THE FUYU OIL FIELD. Acta Seismologica Sinica, 9(1): 65-73.

对扶余油田套管变形的几点看法

SOME IDEAS ABOUT THE DEFORMATION OF CASED HOLES IN THE FUYU OIL FIELD

  • 摘要: 我们利用扶余油田的压裂资料,分析了该油田应力场的特点,探讨了油田套管变形的原因.认为该区以水平压应力作用为主.由于高压注水,有效法向应力降低,引起地层间的相对滑动,造成套管变形.主要的套管变形是由于地层沿水平间断面--AB 界面的滑动造成的.通过控制注入压力和注水方式可以降低 AB 界面中的空隙压力,使界面上的法向应力有所恢复,降低套管变形的速率.

     

    Abstract: The hydrofracturing data in the Fuyu oil field were used in the analysis of stress in the oil field, and the cause for the deformation of casing was discussed. The action of horizontal compress-stress plays a leading role in this region. Due to high pressure water injection, the effective normal stress is decreased, and this sets off the relative slide between the rock layers and resulting in the deformation of casing. The major deformation of casing is caused by slipping along the horizontal boundary surface AB.If the pressure of injection and the mode of water-injection can be controled, it may be possible to decrease the pore pressure of the AB boundary surface and the normal stress at the boundary surface can be restored and the rate of casing deformation can be decreased.

     

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