›› 2016, Vol. 37 ›› Issue (5): 1-1.doi: 10.7657/XJPG20160513

• 论文 •    

塔里木盆地克拉2气田地应力对气田出水的影响

陈胜,张辉,王海应,王益民,刘新宇,袁芳   

  1. (中国石油 塔里木油田分公司 勘探开发研究院,新疆 库尔勒 841000)
  • 出版日期:2019-01-01 发布日期:1905-07-16

Influence of In-Situ Stress on Water Production in Kela-2 Gas Field, Tarim Basin

CHEN Sheng, ZHANG Hui, WANG Haiying, WANG Yimin, LIU Xinyu, YUAN Fang   

  1. (Research Institute of Exploration and Development, Tarim Oilfield Company, PetroChina, Korla, Xinjiang 841000, China)
  • Online:2019-01-01 Published:1905-07-16

摘要: 为探索造成塔里木盆地克拉2气田在开发过程中见水井数增加,不同构造部位气水界面上升不一致的机理,引进了地应力分析方法。通过建立三维动态地应力场模型,提取断层和裂缝面上的剪应力及有效正应力,计算剪应力与有效正应力比值的变化量,评价断层和裂缝在应力场演化过程中的力学活动性能,寻找与开发井出水的对应关系,研究气井出水机理。研究发现,地应力动态变化过程中断层和裂缝力学活动性能增强是导致气田出水主要原因,另外,不同构造部位断层和裂缝力学活动性能变化不同,造成气田不同构造部位气水界面上升不一致。

Abstract: An in-situ stress analysis method is introduced to understand the reason for increase of water-breakthrough wells and the mechanism of mismatch of gas-water contact rising at different structural positions. After the establishment of a 3D dynamic in-situ stress field model, shear stress and effective normal stress on the surfaces of faults and fractures are extracted, variation of shear stress to effective normal stress ratio is calculated, mechanical activity performances of faults and fractures during stress field evolution are evaluated, by which the corresponding relation with water-breakthrough in gas production wells could be found and the mechanism of water-breakthrough in them could be clearly understood. . The study shows that the enhancement of fault and fracture activities during the dynamic change process of in-situ stress is the main reason for water production in the gas field. Additionally, the differences of mechanical activity performances of faults and fractures at different structural positions result in the mismatch of gas-water contact rising at different structural positions

中图分类号: