水平井动态评价中储层岩石物性空间分布规律分析——以X油藏为例

Aidoo Borsah Abraham, A. Evans, Brantson Eric Thompson
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引用次数: 4

摘要

在油藏开发规划中,建立大量的静态模型来分析油藏动态是至关重要的。为了最大限度地提高采收率,必须对储层行为进行适当的建模,以预测其动态。这就需要研究储层岩石物性随空间位置的变化。近年来,油藏动态分析常用的方法是油藏模拟。因此,本研究旨在分析储层孔隙度、渗透率、厚度、饱和度等岩石物性的空间分布规律,并确定其对累积产油量的影响。利用地质统计学技术对岩石物性进行分布,建立了储层二维静态模型,建立了储层动态模型,分析了储层动态。垂直渗透率与水平渗透率的各向异性比影响着在二维静态油藏中钻井的水平井。随着kv/kh的增加,水平井的生产性能呈现出稳定增长的趋势。当kv/kh值为0.55时,与kv/kh值为0.4、0.2和0.1时相比,累积产油量更高。此外,水平井长度对油藏的累计产油量也有显著影响。在kv/kh为0.55时,分析结果表明,随着水平井长度的减小,累积产油量迅速下降。考虑到水平井长度为3000英尺、2000英尺和1500英尺,从1500英尺的水平井中获得了最小累积产油量。本研究中采用的地质统计学和油藏模拟方法将有助于分析水平井的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Spatial Distribution Pattern of Reservoir Petrophysical Properties for Horizontal Well Performance Evaluation-A Case Study of Reservoir X
Building a large number of static models to analyze reservoir performance is vital in reservoir development planning. For the purpose of maximizing oil recovery, reservoir behavior must be modelled properly to predict its performance. This requires the study of the variation of the reservoir petrophysical properties as a function of spatial location. In recent times, the method used to analyze reservoir behavior is the use of reservoir simulation. Hence, this study seeks to analyze the spatial distribution pattern of reservoir petrophysical properties such as porosity, permeability, thickness, saturation and ascertain its effect on cumulative oil production. Geostatistical techniques were used to distribute the petrophysical properties in building a 2D static model of the reservoir and construction of dynamic model to analyze reservoir performance. Vertical to horizontal permeability anisotropy ratio affects horizontal wells drilled in the 2D static reservoir. The performance of the horizontal wells appeared to be increasing steadily as kv/kh increases. At kv/kh value of 0.55, a higher cumulative oil production was observed compared to a kv/kh ratio of 0.4, 0.2, and 0.1. In addition, horizontal well length significantly affects cumulative oil production of the petroleum reservoir studied. At kv/kh of 0.55, the results of the analysis showed a rapid decrement in cumulative oil production as the horizontal well length decreases. Considering horizontal well length of 3000 ft, 2000 ft, and 1500 ft, a minimum cumulative oil production was obtained from a horizontal well length of 1500 ft. The geostatistical and reservoir simulation methods employed in this study will serve as an insight in analyzing horizontal well performance.
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