新疆石油地质 ›› 2001, Vol. 22 ›› Issue (3): 235-237.

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砂岩油藏高含水期底水锥进的几个动态问题

朱中谦1, 程林松2   

  1. 1.中国石油塔里木油田公司勘探开发研究院,新疆 库尔勒 841000;
    2.石油大学,北京 102200
  • 收稿日期:2000-07-26 出版日期:2001-06-01 发布日期:2020-08-14
  • 作者简介:朱中谦(1969-),男,四川大竹人,油藏工程硕士,工程师,从事油藏工程及数模研究。

Some Dynamic Problems on Bottom Water Coning During High Water Cut Stage in Sandstone Bottom-Water Reservoir

ZHU Zhong-qian, CHENG Lin-song   

  • Received:2000-07-26 Online:2001-06-01 Published:2020-08-14
  • About author:ZHU Zhong -qian (1969-), Male, Master in Reservoir Engineering, Reservoir Engineering and Numerical Study, Research Institute of Exploration and Development, Tarim Oilfield Company, CNPC, Korla, Xinjiang 841000, China

摘要: 塔里木油区砂岩 底水油藏多,底水油藏产量占全区产量比例大,并且目前大部分底水油藏底水锥进明显,含水上升快,产量递减严重,油田稳产的难度大,因此准确地把握底水油藏底水锥进动态是很重要的。对目前人们最关心的底水油藏几个动态问题:水锥大小的计算、底水油藏水淹体积的计算以及底水油藏体积波及系数的计算进行了较深入的研究,提供了现场实用的计算方法。对塔里木某油田的计算表明,所得到的结果合理可靠,方法正确,能准确地反映油田的实际动态。

关键词: 底水油气藏, 水锥, 动态, 波及系数, 高含水期

Abstract: In Tarim oilfield, there exist a great number of sand bottom-water reservoirs, where the output accounts for a large proportion of the total amount. At present most bottom-water reservoirs are experiencing significant bottom water coning, rapid increase of water-cut, serious production decline and great difficulty in maintaining the stablilized prodction. Therefore it is of vital to know accurately the water coning behavior. This paper made an in-depth study on some problems of reservoir performances which are researchers concerned most, such as: calculation of water coning scale,calculation of water-flooded volume of bottom- water reservoirs and calculation of volumetric sweep efficiency of the bottom-water reservoir etc. We also provided a practical calculation method for field application. Calculation made for a certain Tarim oilfield demonstrated that the results calculated in this way are reasonable and reliable,the method used is correct, and can accurately represent the practical performances of the oilfield.

Key words: bottom-water reservoir, water coning, performance, sweep efficiency, high water cut stage

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