Enhancing Reservoir Characterization by Calibrating 3D Reservoir Model with Inter-Well Data in 2D Space

Shubham Mishra, C. Shrivastava, Aditya Ojha, F. Miotti
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引用次数: 2

Abstract

Until recently, reservoir characterization methods in the industry were limited to use of seismic technologies in exploration of oil and gas and had a very constrained role in production and development. In the past, using characterization for development fields was considered a very perilous task. Technological advancements and the risk-averse mindset have significantly expanded the application of reservoir characterization. Today, reservoir characterization is the basis of any development plans made for a commercial field. Development of 3D reservoir modeling techniques to generate field development plans (FDPs) marked a step-change in reservoir characterization methods. Introduction of geostatistics and numerical simulation made it possible to build precise models to generate realistic field development scenarios. This is the state-of-the-art seismic-to-simulation method of reservoir characterization used in FDPs today. However, the struggle to estimate reservoir properties spatially away from the well continues. Surface seismic data provide excellent areal coverage but do not provide the vertical resolution required for a fine-scale reservoir model. Geostatistical methods reduce the uncertainty in spatial distribution of petrophysical properties from pseudo-point supports (wells) but are not calibrated spatially between the wells. Correspondingly, the fluid saturation distribution and the parameters used in dynamically calculating the same during numerical simulation are not calibrated in the interwell space. This paper details necessary data acquisitions and methods of calibration of 3D reservoir model to reduce uncertainty in the interwell space. The data acquisition methods have been available for some time, but have rarely been electronically incorporated in the 3D reservoir model and have been largely used to analytically guide the modeling and its inferences. A logical way of interpreting the results of acquisitions and calibrating the 3D reservoir model cell-by-cell is detailed in this paper.
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利用井间数据在二维空间标定三维储层模型,增强储层表征
直到最近,油气行业的储层描述方法还局限于在油气勘探中使用地震技术,在生产和开发中发挥的作用非常有限。过去,对开发领域进行特征描述被认为是一项非常危险的任务。技术进步和规避风险的心态极大地扩展了储层表征的应用。如今,储层特征是制定商业油田开发计划的基础。用于生成油田开发计划(fdp)的3D油藏建模技术的发展标志着油藏表征方法的一个阶段性变化。地质统计学和数值模拟的引入使得建立精确的模型来生成真实的油田开发场景成为可能。这是目前fdp中使用的最先进的地震模拟油藏表征方法。然而,在远离井的地方,估计储层性质的工作仍在继续。地面地震数据提供了很好的区域覆盖,但不能提供精细油藏模型所需的垂直分辨率。地质统计学方法减少了伪点支撑(井)岩石物性空间分布的不确定性,但没有在井之间进行空间校准。相应地,数值模拟中流体饱和度分布和动态计算流体饱和度的参数没有在井间空间进行标定。本文详细介绍了为减少井间空间的不确定性,三维储层模型的必要数据采集和标定方法。数据采集方法已经有一段时间了,但很少被电子地整合到三维油藏模型中,并且主要用于分析指导建模及其推论。本文详细介绍了一种解释采集结果和逐单元校准三维储层模型的逻辑方法。
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