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不稳定试井技术研究进展及发展趋势

王玮淇 管英柱 张金发 汪沪亮 纪国法

特种油气藏2024,Vol.31Issue(4):19-26,8.
特种油气藏2024,Vol.31Issue(4):19-26,8.DOI:10.3969/j.issn.1006-6535.2024.04.003

不稳定试井技术研究进展及发展趋势

Research Progress and Development Tendency of Transient Well Testing Technology

王玮淇 1管英柱 1张金发 2汪沪亮 3纪国法1

作者信息

  • 1. 长江大学,湖北 武汉 430100||油气钻采工程湖北省重点实验室,湖北 武汉 430100
  • 2. 中国石油大学(北京),北京 102249
  • 3. 中国石油新疆油田分公司,新疆 克拉玛依 834000
  • 折叠

摘要

Abstract

In order to better monitor the production performance of oil and gas reservoirs and improve the production capacity of oil and gas fields,this paper reviews the principles,interpretation methods,and application effects of four commonly used transient well testing technologies.It analyzes the problems existing in transient well testing technology and proposes future key research directions.The results show that the currently commonly used transient well testing technologies mainly suffer from serious inter-well interference,complex characteristics of testing curves,low accuracy of testing interpretation,and low efficiency and high losses in conventional testing of complex fault block reservoirs.While new types of testing technologies such as numerical well testing,vertical interference testing,and low-frequency pulse testing can address these issues.The future development trends of transient well testing technology lie in deep and ultra-deep testing processes,evaluation of low-permeability tight reservoir testing data,assessment of fracturing effects,and integrated application of data.Emphasis can be placed on technical breakthroughs in numerical well testing and multi-layer testing.Through a comprehensive analysis of transient well testing technology,this study can provide technical references for on-site testing and offer new perspectives for sub-sequent technological developments.

关键词

不稳定试井/压力恢复试井/压力降落试井/干扰试井/脉冲试井

Key words

transient well testing/pressure buildup testing/pressure drawdown testing/interference testing/pulse testing

分类

能源科技

引用本文复制引用

王玮淇,管英柱,张金发,汪沪亮,纪国法..不稳定试井技术研究进展及发展趋势[J].特种油气藏,2024,31(4):19-26,8.

基金项目

国家自然科学基金"基于分形理论及多尺度方法的页岩体积改造压裂液滤失机理研究"(51804042) (51804042)

特种油气藏

OA北大核心CSTPCD

1006-6535

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