新疆石油地质 ›› 2022, Vol. 43 ›› Issue (2): 177-182.doi: 10.7657/XJPG20220207

• 油藏工程 • 上一篇    下一篇

哈得4CⅢ油藏隔夹层控制倾斜油水界面成因数值模拟

练章贵1a(), 卞万江1a, 韩涛1a, 劳斌斌2, 王开宇1a, 曾江涛1b   

  1. 1.中国石油 塔里木油田分公司 a.勘探开发研究院;b.实验检测研究院,新疆 库尔勒 841000
    2.斯伦贝谢 中国分公司,北京 100015
  • 收稿日期:2021-09-06 修回日期:2021-12-15 出版日期:2022-04-01 发布日期:2022-03-24
  • 作者简介:练章贵(1967-),男,四川自贡人,教授级高级工程师,博士,油气藏开发,(Tel)13779696983(E-mail) lianzg-tlm@petro-china.com.cn

Numerical Simulation on Tilted OWC Controlled by Interlayers in Hade 4CⅢ Reservoir

LIAN Zhanggui1a(), BIAN Wanjiang1a, HAN Tao1a, LAO Binbin2, WANG Kaiyu1a, ZENG Jiangtao1b   

  1. 1. PetroChina Tarim Oilfield Company, a.Research Institute of Exploration and Development; b.Research Institute of Experiment and Testing, Korla, Xinjiang 841000, China
    2. Schlumberger China, Beijing 100015, China
  • Received:2021-09-06 Revised:2021-12-15 Online:2022-04-01 Published:2022-03-24

摘要:

哈得4CⅢ油藏为边底水海相砂岩油藏,存在高差近100 m的大幅度倾斜油水界面,其成藏机理和倾斜油水界面成因尚存争议。根据该油藏储集层、流体和隔夹层特征,建立相应的地质模型,通过调整隔夹层的数量、分布范围、毛细管压力、天窗数量等,模拟该油藏油气二次运移成藏过程。隔夹层数量及分布对倾斜油水界面的形成和油水分布有明显影响;隔夹层毛细管压力越大,油水界面倾斜幅度越大;隔夹层延伸长度越大,油水界面倾斜幅度越大;隔夹层天窗数量和位置不同,油藏成藏期末油水分布和油水界面也明显不同。该油藏油水界面大幅度倾斜成因主要是隔夹层遮挡作用和成藏过程中油水重力分异作用,其次为构造运动和非稳态成藏作用。

关键词: 哈得4CⅢ油藏, 隔夹层, 倾斜油水界面, 构造运动, 非稳态成藏, 剖面模型, 毛细管压力, 天窗, 数值模拟

Abstract:

The Hade 4CⅢreservoir is a marine sandstone reservoir with edge and bottom water, where there is a largely-tilted oil-water contact (OWC) with a height difference of nearly 100 m. The hydrocarbon accumulation mechanism and the origin of the tilted OWC are still controversial. According to the characteristics of beds, fluid and interlayers in the reservoir, a corresponding geological model was established. By adjusting the number, distribution, capillary pressure, and skylights of the interlayers, the process of secondary migration and accumulation of oil and gas in the reservoir was numerically simulated. The number and distribution of the interlayers have a significant impact on the formation of the tilted OWC and on the distribution of oil and water. The higher the capillary pressure of the interlayer, the greater the inclination of the tilted OWC. The longer the extension of the interlayer, the greater the inclination of the tilted OWC. If the number and location of interlayer skylights are different, the oil-water distribution and oil-water contact are also significantly different at the end of the hydrocarbon accumulation period. The great inclination of the tilted OWC in the Hade 4CⅢreservoir is mainly due to the shielding of interlayers and the differentiation of oil-water gravity during the hydrocarbon accumulation, followed by tectonic movement and unsteady hydrocarbon accumulation.

Key words: Hade 4CⅢreservoir, interlayer, tilted oil-water contact, tectonic movement, unsteady hydrocarbon accumulation, cross-sec tional model, capillary pressure, skylight, numerical simulation

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