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Elk Hills Monterey Formation - Challenge of Incorporating Complex Natural Fractures to Improve Production Understanding.

机译:麋鹿山蒙特雷形成 - 挑战复杂的自然骨折,提高生产理解。

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Elk Hills, initially designated as Naval Petroleum Reserve No. 1, is a large anticlinal field discovered in 1911 in the southern San Joaquin Valley of California. Elk Hills is a complex structure with multiple reservoir horizons including a highly fractured bio-siliceous unit. Focus of this paper will be on the Antelope Shale (Antelope) member of the Monterey Formation which has variability in production due to variations in net pay and degree of natural fracturing. The goal of this project was to understand the natural fracture complexity of the Antelope interval, influence on production variability and provide insight for development.? We focus on the scope of work and workflows used to provide information obtained in a study involving 188 image logs over the Elk Hills structure. The study was designed to identify variability in fracture type, orientation, aperture and relationship to bedding over the field. We will also outline the systematic approach from Scope of Work, project Quality Control and final results including the benefit of a field wide approach compared to prior small area studies. The approach involved selection of high quality data sets that provided geographic coverage vertically, laterally and by tool type. Data sets came from different vendors and showed that each tool type gave consistent response that could be used for comparable evaluation of fracture type, orientation and aperture. Although, OBM imagers provided lower resolution image data and made it more difficult to identify resistive vs. open fractures, the knowledge obtained from WBM image analysis in nearby wells aided in identifying low resistive fractures. The fractures in the target section were picked in considerable detail focusing not so much on one particular fracture type, but providing a spatially well populated and distributed data set that allowed for the mapping of orientation, fracture type, aperture and frequency by zone. The results provided insights into the nature and extent of the fracture distribution by zone within the Antelope interval. Due to the complexity of the structure and geology, we will show through examples that the majority of fractures identified are perpendicular to bedding and fall into two orientations. The approach used allowed the bedding perpendicular fractures to be distinguished from stress related fractures. A positive comparison to production was achieved by integrating weighted fracture intensity and reservoir quality from the petrophysical model. We present an approach for handling large borehole image data sets and presenting the information in a way that is beneficial to selection of production intervals and understanding the character of different fracture sets across a field or an exploration area. The techniques presented are applicable across a wide range of environments provided there is the data available.?
机译:最初被指定为海军石油储备的麋鹿山是1911年在加利福尼亚州的圣Joaquin山谷中发现的一个大型抗逆线。 Elk Hills是一种复杂的结构,具有多种水库视野,包括高度骨折的生物硅状单位。本文的重点将在蒙特雷形成的羚羊页岩(羚羊)成员上,由于净工资的变化和自然压裂程度的变化,在生产方面具有可变性。该项目的目标是了解羚羊间隔的自然骨折复杂性,对生产变异性的影响并提供洞察力的洞察力。我们专注于用于提供在涉及188个图像上获得的学习中获得的信息的工作和工作流程的范围。该研究旨在识别骨折类型,方向,光圈和与床上用品的关系的可变性。我们还将概述从工作范围,项目质量控制和最终结果的系统方法,包括与现有的小区域研究相比广场广泛方法的利益。该方法涉及选择高质量的数据集,其提供地理覆盖垂直,横向和刀具类型。数据集来自不同的供应商,并显示每个工具类型给出了一致的响应,该响应可用于裂缝类型,方向和孔的可比性评估。尽管OBM成像器提供了较低的分辨率图像数据,并且使其更难以识别电阻与开口裂缝,从附近的WBM图像分析获得的知识辅助识别低电阻骨折。目标部分中的裂缝以相当大的细节挑选,对一个特定的断裂型没有太大挑选,而是提供空间良好的填充和分布式数据集,其允许通过区域的取向,断裂型,光圈和频率映射。结果为羚羊间隔内的区域的骨折分布的性质和程度提供了见解。由于结构和地质的复杂性,我们将通过示例展示鉴定的大多数骨折垂直于床上用品并落入两个方向。使用的方法使床上用品垂直骨折与应力相关的骨折。通过将加权断裂强度和储层质量与岩石物理模型相结合来实现与生产的正面比较。我们提出了一种处理大型钻孔图像数据集的方法,并以有利于选择生产间隔的方式以及理解跨场或勘探区域的不同骨折组特征的方式呈现信息。提供的技术适用于各种环境,提供有可用数据。?

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