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Selection of suitable engineering modes for CBM development in zones with multiple coalbeds: A case study in western Guizhou Province, Southwest China

机译:多煤层煤层气开发合适的工程模式选择-以黔西南地区为例

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摘要

Recently, many types of coalbed methane (CBM) engineering practices have been applied in western Guizhou. However, most of these CBM practices (e.g., vertical well, horizontal well, cluster well.) have failed due to the complex geological conditions. To improve the success rate of CBM development projects, this paper proposes a CBM engineering mode selection method based on the geological conditions of the CBM resources found in western Guizhou. By analyzing the geology and considering the Upper Permian coal seams in western Guizhou as a case study, the geological conditions associated with CBM development were examined using measured data. In addition, the selective matching of existing CBM engineering methods to the geological conditions was examined and preliminarily demonstrated. The results indicated that the evolution of the geological conditions was primarily controlled by the vertical distribution of the coal strata, the hydrogeological conditions, and the tectonic stresses. The classification of the geological conditions into different types of CBM development geology was conducted according to the regional configuration of the geological parameters. A basic relationship exists between the type of geology and the engineering method for CBM development. To optimize the development engineering method and obtain high CBM production, the engineering methods of thin layer staged fracturing of multiple coal seams, supplementary fracturing of sandstone reservoirs in coal deposits, and reservoir stimulation via protected coal seams during mining were preliminarily established. These methods represent a new direction for the CBM development of thin to moderate coal seams in western Guizhou. The technical feasibilities of the selected CBM development methods were verified by engineering practices, and certain CBM wells reported good production. This study describes the engineering effectiveness and adaptability of CBM engineering practices from the perspective of the development methods in the study area. In addition, this study emphasizes that the relationships between the geological conditions and the engineering methods might be broadly applicable when choosing the best CBM development engineering method for zones with multiple coalbeds in China. (C) 2016 Elsevier B.V. All rights reserved.
机译:最近,贵州西部已采用了多种类型的煤层气(CBM)工程实践。然而,由于复杂的地质条件,大多数这些煤层气实践(例如,垂直井,水平井,集束井)都失败了。为了提高煤层气开发项目的成功率,根据贵州西部发现的煤层气资源的地质条件,提出了一种煤层气工程模式选择方法。通过地质分析,并以贵州西部上二叠统煤层为例,利用实测资料研究了与煤层气发育有关的地质条件。此外,对现有的煤层气工程方法与地质条件的选择性匹配进行了检查和初步证明。结果表明,地质条件的演化主要受煤层垂直分布,水文地质条件和构造应力的控制。根据地质参数的区域配置,将地质条件分为不同类型的煤层气开发地质。地质类型和煤层气开发的工程方法之间存在基本关系。为了优化开发工程方法,获得较高的煤层气产量,初步建立了多煤层薄层分段压裂,煤层砂岩储层补充压裂,采矿过程中受保护煤层增产的工程方法。这些方法为贵州西部薄至中煤层煤层气的开发提供了新的方向。通过工程实践验证了所选煤层气开发方法的技术可行性,并且某些煤层气井的产量良好。这项研究从研究区域的开发方法的角度描述了煤层气工程实践的工程有效性和适应性。此外,本研究强调,在为中国多煤层地区选择最佳煤层气开发工程方法时,地质条件与工程方法之间的关系可能会广泛适用。 (C)2016 Elsevier B.V.保留所有权利。

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