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Models for guiding and ranking well-to-well correlations of channel bodies in fluvial reservoirs

机译:用于指导和排列河流储层中河道相关井与井相关性的模型

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摘要

A probabilistic method has been devised to assess the geologic realism of subsurface well-to-well correlations that entail the lateral tracing of geologic bodies across well arrays with constant spacing. Models of geo-body correlability (based on the ratio between correlatable and penetrated geo-bodies) are obtained from total probabilities of penetration and correlation, which are themselves dependent on the distribution of lateral extent of the geo-body type. Employing outcrop-analog data to constrain the width distribution of the geo-bodies, it is possible to generate a model that describes realistic well-to-well correlation patterns for given types of depositional systems. This type of correlability model can be applied for checking the quality of correlation-based subsurface interpretations by assessing their geologic realism as compared with one or more suitable outcrop analogs. The approach is illustrated by generating total-probability curves that refer to fluvial channel complexes and that are categorized on the basis of outcrop-analog classifications (e.g., braided system, system with 20% net-to-gross), employing information from a large fluvial geo-body database, Fluvial Architecture Knowledge Transfer System (FAKTS), which stores information relating to fluvial architecture. From these total-probability functions, values can be drawn to adapt the correlability models to any well-array spacing. The method has been specifically applied to rank three published alternative interpretations of a stratigraphic interval of the Travis Peak Formation (Texas), previously interpreted as a braided fluvial depositional system, in terms of realism of correlation patterns as compared to (1) all analogs recorded in FAKTS and considered suitable for large-scale architectural characterization, and (2) a subset of them including only systems interpreted as braided.
机译:已经设计了一种概率方法来评估地下井与井之间的相关关系的地质现实性,这需要对地质体进行横向跟踪,并以恒定的间距跨井阵列。地质体相关性模型(基于相关的地质体和被穿透的地质体之间的比率)是从渗透和相关性的总概率中获得的,它们的总和取决于地质体类型的横向范围的分布。利用露头模拟数据来约束地质体的宽度分布,可以生成一个模型,该模型描述给定类型的沉积系统的现实的井对井相关模式。这种类型的相关性模型可以通过评估与一种或多种合适的露头类似物相比的地质真实性,来检查基于相关性的地下解释的质量。通过生成总概率曲线来说明该方法,该总概率曲线引用河流通道复合体,并根据露头-模拟类目(例如,编织系统,净值与总值之比为20%的系统)分类河流地质体数据库,河流建筑知识转移系统(FAKTS),用于存储与河流建筑有关的信息。从这些总概率函数中,可以得出值以使相关性模型适合任何井阵列间距。根据相关模式的真实性,与(1)记录的所有类似物相比,该方法已专门用于对特拉维斯峰形成(Texas)地层间隔的三个已发表的替代解释进行排名,该解释以前被解释为辫状河流沉积系统。在FAKTS中,它被认为适合于大规模的建筑表征,并且(2)其中的一个子集仅包括解释为编织的系统。

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