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致密砂岩气藏成藏过程的物理模拟实验
引用本文:姜福杰,庞雄奇,姜振学,田丰华.致密砂岩气藏成藏过程的物理模拟实验[J].地质论评,2007,53(6):844-849.
作者姓名:姜福杰  庞雄奇  姜振学  田丰华
作者单位:中国石油大学盆地与油藏研究中心,北京,昌平,102249;中国石油大学石油天然气成藏机理教育部重点实验室,北京,昌平,102249
基金项目:本文为国家自然科学基金资助项目(编号 40472078)的成果。
摘    要:致密砂岩气藏具有广阔的资源前景,可以有效地弥补常规天然气资源的不足。但其成藏过程和气水分布关系的研究是一个相对不足而又非常重要的领域,它的完善直接关系到勘探的成败。本文正是针对这一研究领域,采用物理模拟实验方法,通过实际资料的调研,建立了二维的实验模型,对致密砂岩气藏的成藏过程和气水分布关系进行了模拟。实验结果表明,致密砂岩气藏的成藏过程可以分为三个阶段,分别为:充注前期(能量积累阶段)、充注期(幕式充注成藏阶段)、充注后期(气藏保存阶段)。其中,幕式充注成藏阶段是致密气藏成藏的关键时期。而导致气水分布关系复杂的原因在于储层的非均质性。

关 键 词:致密气藏  物理模拟  成藏过程  气水分布关系
收稿时间:2007/5/22 0:00:00
修稿时间:2007-05-222007-09-19

Physical Simulation Experiment of Gas Charging in Tight Sandstone
JIANG Fujie,PANG Xiongqi,JIANG Zhenxue,TIAN Fenghua.Physical Simulation Experiment of Gas Charging in Tight Sandstone[J].Geological Review,2007,53(6):844-849.
Authors:JIANG Fujie  PANG Xiongqi  JIANG Zhenxue  TIAN Fenghua
Institution:1.Basin and Reservoir Research Center of China University of Petroleum, Changping District, Beijing , 102249; 2.Key Laboratory for Hydrocarbon Accumulation Mechanism of Education Ministry, Changping, Beijing,102249
Abstract:Tight sandstone gas reservoirs have a great potential of resource, which can make up the conventional natural gas. Although the accumulation process and gas--water distribution of tight sandstone gas is so important to the success of gas exploration, the study on them are insufficient. In order to cope with the above scientific challenges, after adequately reviewing and comprehending previous research findings, a serial of 2D physical experiments have been done to simulate the accumulation process and gas--water distribution of tight sandstone gas. The result of the experiment showed that the accumulation process of tight sandstone gas can be divided into three stages; they are the precharging stage of energy accumulation, the charging stage of gas episode-charging and the post-charging stage of natural gas conservation. The stage of gas episode-charging is the key for tight sandstone gas reservoirs. And the complexity of gas--water distribution is contributed to the heterogeneous reservoir.
Keywords:tight gas reservoir  physical simulation  accumulation process  gas-water distribution
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