新疆石油地质 ›› 2023, Vol. 44 ›› Issue (5): 562-571.doi: 10.7657/XJPG20230507

• 油藏工程 • 上一篇    下一篇

广义气水混驱特征曲线的建立及应用

贾蕊1(), 袁泉2a, 汤欣2a, 吕奇奇1, 高文君2b()   

  1. 1.长江大学 地球科学学院,武汉 430100
    2.中国石油 吐哈油田分公司 a.鄯善采油管理区;b.勘探开发研究院,新疆 哈密 839009
  • 收稿日期:2022-07-20 修回日期:2023-05-06 出版日期:2023-10-01 发布日期:2023-09-25
  • 通讯作者: 高文君(1971-),男,陕西乾县人,高级工程师,油藏工程,(Tel)0902-2765308(E-mail)gaowj7132@petrochina.com.cn
  • 作者简介:贾蕊(1990-),女,甘肃酒泉人,硕士研究生,油气田开发,(Tel)13289089502(E-mail)276563844@qq.com
  • 基金资助:
    中国石油科技重大专项(2017E-04-07)

Establishment and Application of Generalized Characteristic Curves of Gas-Water Miscible Flooding

JIA Rui1(), YUAN Quan2a, TANG Xin2a, LYU Qiqi1, GAO Wenjun2b()   

  1. 1. School of Geosciences, Yangtze University, Wuhan, Hubei 430100, China
    2. PetroChina Tuha Oilfield Company, a.Shanshan Oil Production Management Area; b.Research Institute of Exploration and Development, Hami, Xinjiang 839009, China
  • Received:2022-07-20 Revised:2023-05-06 Online:2023-10-01 Published:2023-09-25

摘要:

为解决目前气水混驱特征曲线评价油藏开发效果方法较少的问题,引入了地下含气水率,并类比水驱油藏含水变化规律广义数学模型,建立了广义气水混驱特征曲线及其对应的广义含气水变化规律数学模型。新的广义气水混驱特征曲线在n=0和m=0时,为甲型气水交替驱特征曲线;在n=1和m=0时,则为乙型气水交替驱特征曲线。nm取不同数值时,广义气水混驱特征曲线可以转化为S型气水混驱特征曲线,也可以转化为凸型、S-凸型、S-凹型、凹型等气水混驱特征曲线。为了便于矿场应用,给出了气水混驱特征曲线通式及其对应的含气水变化规律数学模型的求解方法,并应用于葡北油田三间房组油藏气水交替驱和锦州油田S31油藏气顶气+边水驱开发效果的评价,拟合精度较高,可供其他油藏借鉴。

关键词: 葡北油田, 锦州油田, 气水混驱油藏, 广义气水混驱特征曲线, 地下含气水率, 含气水变化规律, 数学模型

Abstract:

Considering the limited methods for evaluating reservoir development performance using gas-water miscible flooding characteristic curves, a concept of underground water-gas cut was introduced. By analogy with the generalized mathematical model of water cut variation in water flooding reservoirs, generalized gas-water miscible flooding characteristic curves and the corresponding generalized mathematical models of underground gas-water cut variation were established. The generalized gas-water miscible flooding characteristic curve is a Type A water-alternating-gas (WAG) injection characteristic curve when n=0 and m=0, and a Type B WAG injection characteristic curve when n=1 and m=0. By varying the values of n and m, the generalized gas-water miscible flooding characteristic curve can be transformed into S-shaped, convex, S-convex, S-concave, and concave gas-water miscible flooding characteristic curves. For purpose of field application, a general formula for the generalized gas-water miscible flooding characteristic curve and solution method for the corresponding mathematical model combining underground gas-water cut variation were provided. The application to the evaluation of the development performance of WAG injection in the reservoir of Sanjianfang formation in Pubei oilfield, and of gas cap gas + edge water displacement in S31 reservoir in Jinzhou oilfield shows a high fitting accuracy. This method can be a reference for other reservoirs.

Key words: Pubei oilfield, Jinzhou oilfield, reservoir with gas-water miscible flooding, generalized gas-water miscible flooding characteris-tic curve, underground gas-water cut, gas-water cut variation, mathematical model

中图分类号: