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Lithofacies module methodology for characterizing and modeling clastic hydrocarbon reservoirs.

机译:岩相模块方法学用于对碎屑碳氢化合物储层进行特征化和建模。

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摘要

A lithofacies module concept and methodology for the purpose of interdisciplinary studies of reservoir characterization are proposed in this research. Accurate reservoir models derived from the application of this concept and methodology will render significant improvements of oil recovery from reservoir simulation studies.; A lithofacies module is a package of sediments restricted within a chronostratigraphic sequence and distinguished by a similar depositional environment and similar petrophysical properties that have similar effects on fluid flow within the unit. Genetically, a lithofacies module is identical with a unique position within a chronostratigraphic sequence. This makes reservoir heterogeneity predictable. Within an individual channel sequence of the Gypsy fluvial reservoir, four lithofacies modules can be systematically recognized from the bottom to the top of a channel sequence: mudclast low permeability unit, cross-bedded and plane-bedded high permeability unit, ripple low permeability unit, and overbank flow barrier unit.; Four reservoir modeling scales are classified here: stratigraphic sequence scale, reservoir scale, lithofacies module scale, and sample scale. The lithofacies module scale is the most important for reservoir characterization applied in petroleum exploitation. At this scale, a highly heterogeneous reservoir with a wide variation of properties can be subdivided into compartments with much narrower variations of reservoir properties. Geostatistical techniques can be useful tools for the prediction of reservoir heterogeneity if they are used properly in combination with geological knowledge. The lithofacies module concept provides a detailed reservoir framework suitable for geostatistical prediction.; The geological framework and concept used in building the reservoir model determine the distribution of reservoir properties that control fluid flow. Reservoir simulation studies at the Gypsy outcrop site show different concepts for defining a reservoir model can result as much as a 30% difference in hydrocarbon recovery. The selection of vertical resolution is a critical parameter of the reservoir model. The concept of lithofacies modules provides a reasonable and accurate guideline for a geologically controlled method of reservoir upscaling. Simulation based on an accurate reservoir model provides an economic and quick method for evaluating various development strategies to select the scenario that provide the optimum economical return.
机译:本研究提出了以岩相模块概念和方法学为目的的跨学科研究。应用该概念和方法得出的准确油藏模型将大大改善油藏模拟研究中的采油率。岩相模块是一组沉积物,它们被限制在一个年代地层序列中,并以相似的沉积环境和相似的岩石物理特性(对单元内的流体流动具有相似的影响)为特征。从基因上讲,岩相模块与年代地层序列中的唯一位置相同。这使得储层非均质性是可预测的。在吉普赛河流域储层的单个通道序列中,可以从通道序列的底部到顶部系统地识别四个岩相模块:碎屑低渗透率单元,交叉层和平面层高渗透率单元,波纹低渗透率单元,以及堤岸阻流单元。这里分为四个储层建模尺度:地层层序尺度,储层尺度,岩相模块尺度和样本尺度。岩相模块规模对于石油开采中应用的储层表征而言是最重要的。在这种规模下,具有广泛变化特性的高度非均质储层可以细分为具有较窄变化储层特性的隔层。如果将地统计学技术与地质知识结合使用得当,它们将是预测储层非均质性的有用工具。岩相模块概念提供了适用于地统计预测的详细储层框架。用于建立储层模型的地质框架和概念决定了控制流体流动的储层性质的分布。在吉普赛露头现场进行的储层模拟研究表明,定义储层模型的不同概念可能会导致多达30%的烃采收率差异。垂直分辨率的选择是储层模型的关键参数。岩相模块的概念为地质控制储层放大方法提供了合理而准确的指导。基于精确储层模型的模拟为评估各种开发策略以选择能够提供最佳经济回报的方案提供了一种经济快捷的方法。

著录项

  • 作者

    Jiang, Renqi.;

  • 作者单位

    The University of Oklahoma.;

  • 授予单位 The University of Oklahoma.;
  • 学科 Geology.; Engineering Petroleum.; Geotechnology.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 138 p.
  • 总页数 138
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;石油、天然气工业;地质学;
  • 关键词

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