油田开发中的不确定性分析及综合建模应用

V. Dmitruk, E. P. Mironov, A. Mulkamanov, A. Kharkovskiy, R. Bayguzov, Maxim Komin, O. Timakova, V. Chernyak, Dmitry Shakhov, M. Krivokorytova
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引用次数: 1

摘要

Severneftegazprom OJSC是Yuzhno-Russkoye油田的运营商。根据油田开发战略,2018年开始了Turonian地层的商业开发,设想在异常高压、低渗透的地层中钻100多口井,并与现有的天然气收集网络相连接。公司面临的任务是在现有油田开发概念和地面设施配置的基础上评估计划目标的可达性。另一个重点是对Turonian地层的地质不确定性分析及其对天然气生产剖面的影响。为了进行不确定性分析,建立了一个扇形流体动力学模型并进行了历史匹配,其中包括u型井和多级水力压裂井(MSHF)的第一批发射簇。评估了地质不确定性、备选井位、水力压裂段数和压裂参数对累积产气量的影响。为了研究新井与现有网络的干扰,建立了一个集成模型,该模型将Cenoman和Turonian油藏的全尺寸黑油流体动力学模型与250多口井的统一组成聚集网络相结合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Uncertainty Analysis and Integrated Modeling Application During Field Development
Severneftegazprom OJSC is the operator of the Yuzhno-Russkoye field. In accordance with the field development strategy, in 2018 the commercial development of the Turonian formation began, envisaging the drilling of more than 100 wells to a formation with abnormally high pressure and low permeability and their tie-in to the existing gas gathering network. The task that faces the company is to assess the attainability of the planned targets on the basis of the existing field development concept and surface facilities configuration. A separate focus is on the geological uncertainties analysis of the Turonian formation and their impact on the gas production profile. For the uncertainty analysis, a sector hydrodynamic model was built and history matched, which included the first launch clusters with the U-shaped wells and the multistage hydraulically fractured wells (MSHF). The assessment was made for the impact of geological uncertainties, the alternative well locations, as well as the number of hydraulic fracture stages and fracture parameters on the cumulative gas production. To study the interference of new wells with the existing network, an integrated model was created, which combined the full-scale Black Oil hydrodynamic models of the Cenoman and Turonian reservoirs with the unified compositional gathering network with more than 250 wells.
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