Geological and Geochemical Modelling of the Kudryashovskoye Field

G. R. Ganieva, Rustam Igorevich Sonin
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引用次数: 0

Abstract

The practice of using chemical thermodynamics, chemical kinetics, or both to analyze chemical reactions affecting geological systems, usually with the aid of a computer, is geochemical modeling. In high-temperature geochemistry, it is used to simulate reactions occurring deep inside the Earth, in magma, for example, or to model low-temperature reactions near the Earth's surface aqueous solutions. According to the geological structure, the Kudryashovskoye field is multilayer. The placement system is selective in this field. The development of all facilities takes place using a reservoir pressure system. The well stock for drilling (throughout the field) is 42, including 28 producing wells and 14 injection wells. In 2015, 12 wells were planned to be drilled. The paper considers and analyses two options for the development approach. The first option: drilling, is planned in 2019 according to the approved layout of wells. The density of good grids is 10.6 ha/well. The second option: drilling is carried out according to the areal system with a distance of 200-250 m between the wells. The density of the wells is 8.1 ha/well. It is planned to use the technology for simultaneous-separate operation in 19 wells Modelling is carried out using the Petrel software package. After the work is done and comparative analysis, development options are proposed. The second development option is most suitable from the economic point of view and approach.
库德里亚绍夫斯科耶油田地质地球化学模拟
通常借助计算机,利用化学热力学、化学动力学或两者来分析影响地质系统的化学反应,这就是地球化学建模。在高温地球化学中,它被用来模拟发生在地球深处的反应,例如岩浆,或者模拟地球表面水溶液附近的低温反应。从地质构造上看,库德里亚绍夫斯科耶油田是多层的。在这个领域,安置制度是有选择性的。所有设施的开发都是使用油藏压力系统进行的。整个油田的钻井井数量为42口,包括28口生产井和14口注水井。2015年,计划钻12口井。本文考虑并分析了两种发展路径的选择。第一种选择:钻探,计划在2019年根据批准的井布局进行。良好网格的密度为10.6公顷/井。第二种方案:按区域系统进行钻井,井间距离为200-250 m。井密度为8.1 ha/井。计划将该技术用于19口井的同时分离作业,使用Petrel软件包进行建模。在完成工作并进行比较分析后,提出了发展方案。从经济角度和方法来看,第二个发展方案是最合适的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
1.80
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