Xiaoyan Wang, Dongping Li, Yang Zhang, Haifeng Wang, Shuangfeng Liu, Lingling Li, Zhanxi Pang
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引用次数: 0
摘要
在重油储层中,有利的储层性质对二氧化碳气化过程中的生产性能有积极影响。研究实际油藏中 CO2 发泡适用条件的筛选方法意义重大。为了解决这些问题,本文引入了正交设计方法,在数值模拟的基础上对主要因素进行了分析。通过技术分析和经济评价,得出 CO2 吹填时选择油层或注入井的适用条件。并引入了一种新的机器学习算法--随机森林算法,找到了适合 CO2 抽采的加权因素和评分标准。最后,建立了一套筛选合适储层条件的方法。在引入正交分析法和随机森林算法的基础上,建立了一套软件,以达到在考虑不同储层地质参数的情况下分析 CO2 充气可行性的目的。该方法提高了筛选适合二氧化碳吹填的储层条件的准确性和效率。
The reservoir screening standard of CO2 huff-n-puff based on orthogonal analysis method and random forest algorithm
In heavy oil reservoirs, favorable reservoir properties have a positive impact on the production performance during CO2 huff-n-puff. It is significant to study the screening method of applicable conditions for CO2 huff-n-puff in actual reservoirs. To solve these problems, this paper introduced the orthogonal design method to analyze the main factors based on numerical simulation. The technical analysis and the economic evaluation were both employed to obtain the applicable conditions of selecting oil layers or injection wells during CO2 huff-n-puff. And a new algorithms of machine learning, the random forest algorithm, was introduce to find the weighted factors and the scoring standards that were suitable for CO2 huff-n-puff. Finally, a set of method for screening suitable reservoir conditions was established. Based on the introduction of orthogonal analysis method and random forest algorithm, a software was established to achieve the purpose of analyzing the feasibility of CO2 huff-n-puff considering different reservoir geological parameters. This method increased the accuracy and efficiency in screening reservoir conditions that was suitable for CO2 huff-n-puff.
期刊介绍:
The Journal of Petroleum Exploration and Production Technology is an international open access journal that publishes original and review articles as well as book reviews on leading edge studies in the field of petroleum engineering, petroleum geology and exploration geophysics and the implementation of related technologies to the development and management of oil and gas reservoirs from their discovery through their entire production cycle.
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Reservoir characterization and modeling
Unconventional oil and gas reservoirs
Geophysics: Acquisition and near surface
Geophysics Modeling and Imaging
Geophysics: Interpretation
Geophysics: Processing
Production Engineering
Formation Evaluation
Reservoir Management
Petroleum Geology
Enhanced Recovery
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