Implementation of a unified system for control and management of frac production during the planning-production stages, as a factor in improving the quality of field development

IF 1.7 0 ENGINEERING, PETROLEUM SOCAR Proceedings Pub Date : 2022-12-30 DOI:10.5510/ogp2022si200759
M. R. Sitdikov, A. Sharifullin
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Abstract

Currently, various innovative technological approaches are used to develop deposits of hard-to-recover oil and gas reserves. To increase the efficiency of these activities, software products for the design of remedial operations can help. Hydraulic Fracturing Simulator (HFS) is an essential tool for developing hard-to-recover reserves and shale reservoirs. The hydraulic fracturing simulator makes the process of oil production in complex geological conditions safer and more efficient. There is a human factor in decision making in the endless iterative process at all stages of hydraulic fracturing application, which should be taken into account in software development. Foreign IT-solutions for modeling of geological and engineering operations (GEO) are considered to be the benchmark in the Russian market. However, there are promising domestic import-substituting developments, and one of such solutions is modeling software «Fractal», created in Ufa by «Tetaсom». Keywords: hydraulic fracturing (fracking); frac design; mini-fracturing; fracture conductivity; proppant; modeling.
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在计划-生产阶段实施统一的压裂生产控制和管理系统,作为提高油田开发质量的一个因素
目前,各种创新技术被用于开发难以开采的油气储量。为了提高这些活动的效率,为补救操作设计的软件产品可以提供帮助。水力压裂模拟器(HFS)是开发难采储量和页岩储层的重要工具。水力压裂模拟器使复杂地质条件下的采油过程更加安全、高效。在水力压裂应用的各个阶段,在无穷无尽的迭代过程中,决策过程中存在人为因素,在软件开发中应予以考虑。国外用于地质和工程操作(GEO)建模的it解决方案被认为是俄罗斯市场的基准。然而,国内有希望的进口替代发展,其中一种解决方案是建模软件«Fractal»,由«teta»在乌法创建。关键词:水力压裂;压裂设计;mini-fracturing;骨折电导率;支撑剂;建模。
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来源期刊
SOCAR Proceedings
SOCAR Proceedings ENGINEERING, PETROLEUM-
CiteScore
3.00
自引率
82.40%
发文量
0
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