Determination of reservoir drainage area for constant pressure systems using well test data

IF 0.5 4区 工程技术 Q4 ENERGY & FUELS Ct&f-Ciencia Tecnologia Y Futuro Pub Date : 2010-06-30 DOI:10.29047/01225383.440
F. Escobar, Y. Hernández, D. Tiab
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引用次数: 10

Abstract

In this work, the conventional cartesian straight-line pseudosteady-state solution and the Total Dissolved Solids (TDS) solution to estimate reservoir drainage area is applied to constant-pressure reservoirs to observe its accuracy. It was found that it performs very poorly in such systems, especially in those having rectangular shape. On the other hand, the pseudosteady-state solution of the TDS technique performs better in constant-pressure systems and may be applied only to regular square- or circular-shaped reservoirs with a resulting small deviation error. Therefore, new solutions for steady-state systems in circular, square and rectangular reservoir geometries having one or two constant-pressure boundaries are developed, compared and successfully verified with synthetic and real field cases. Automatic matching performed by commercial software sometimes are so time consuming and tedious which leads to another reason to use the proposed equations.
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用试井数据确定定压系统的储层排水面积
将传统的笛卡儿直线拟稳态解和总溶解固形物(TDS)解用于储层排水面积估算,并应用于恒压储层,观察其精度。研究发现,在这种系统中,特别是在矩形系统中,它的性能非常差。另一方面,TDS技术的伪稳态解决方案在恒压系统中表现更好,并且只能应用于规则的方形或圆形油藏,因此偏差很小。因此,对于具有一个或两个定压边界的圆形、方形和矩形油藏,开发了新的稳态系统解决方案,并与综合和实际现场案例进行了比较和成功验证。商业软件执行的自动匹配有时非常耗时和繁琐,这是使用所提出方程的另一个原因。
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来源期刊
Ct&f-Ciencia Tecnologia Y Futuro
Ct&f-Ciencia Tecnologia Y Futuro Energy-General Energy
CiteScore
1.50
自引率
0.00%
发文量
7
审稿时长
>12 weeks
期刊介绍: The objective of CT&F is to publish the achievements of scientific research and technological developments of Ecopetrol S.A. and the research of other institutions in the field of oil, gas and alternative energy sources. CT&F welcomes original, novel and high-impact contributions from all the fields in the oil and gas industry like: Acquisition and Exploration technologies, Basins characterization and modeling, Petroleum geology, Reservoir modeling, Enhanced Oil Recovery Technologies, Unconventional resources, Petroleum refining, Petrochemistry, Upgrading technologies, Technologies for fuels quality, Process modeling, and optimization, Supply chain optimization, Biofuels, Renewable energies.
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