文章检索
首页» 过刊浏览» 2023» Vol.8» Issue(3) 347-359     DOI : 10.3969/j.issn.2096-1693.2023.03.025
最新目录| | 过刊浏览| 高级检索
水平井多级压裂高维参数智能优化方法研究
李丽哲, 周福建, 王博
1 中国石油大学(北京)非常规油气科学技术研究院,北京 102249 2 中国石油大学(北京)克拉玛依校区石油学院,克拉玛依 834000
Method investigation on intelligent optimization of high dimension HWMHF parameters
LI Lizhe, ZHOU Fujian, WANG Bo
1 Unconventional Oil and Gas Institute of Science and Technology, China University of Petroleum-Beijing, Beijing 102249, China 2 Petroleum Institute, China University of Petroleum-Beijing at Karamay, Karamay 834000, China

全文:   HTML (1 KB) 
文章导读  
摘要  通过耦合裂缝扩展、产能模拟和自动搜索算法,建立了完整的水力压 裂高维参数智能优化工作流,以获取全局范围内最佳匹配的整套压裂 参数,最大化目标函数(经济指标)。结合边界元裂缝扩展模拟器和 CMG组分模拟器,实现快速压裂仿真;训练遗传算法和贝叶斯算法 2 种智能搜索算法,经济指标提高 55%;遗传算法搜索到更优的压裂 参数组合,贝叶斯算法搜索迭代次数少,均适用于水力压裂优化“黑 盒”问题的求解。
服务
把本文推荐给朋友
加入我的书架
加入引用管理器
关键词 : 水力压裂优化,遗传算法,贝叶斯算法,智能搜索
Abstract

Horizontal well with multistage hydraulic fracturing (HWMHF) optimization is crucial for the economic and efficient development of unconventional oil and gas resources. In this paper, fracture propagation modeling, production simulation, and automatic search algorithms are coupled to establish an integrated workflow for the optimization of HWMHF. Intelligent optimization of high-dimensional parameters of HF is conducted to obtain the best matching set of HWMHF parameters, which maximizes the value of the economic index in the global range. The fracture propagation simulation employed a self-programmed boundary element fracture propagation simulator. The production simulation employed a CMG component simulator. The automatic search algorithm employed the Genetic algorithm (GA) and the Bayesian optimization algorithm. The whole optimization process is automated, i.e., the overall fracture morphology is automatically imported into CMG, the fracture model is automatically established, the oil and gas water production is predicted by the CMG HWMHF model, and the objective function value is calculated automatically. Further, the automatic search algorithm updates the next generation of input by measuring the relationship between the objective function values and the HWMHF parameter values, and re-performs fracturing simulation until the ideal fracturing parameters are obtained. The fracturing optimization process and results show that: (1) the combination of boundary element fracture propagation simulator and CMG component simulator can achieve fast fracturing simulation and satisfy the high simulation times for intelligent search; (2) the economic index has been improved 55% though the intelligent optimization; (3) the GA searches for better HWMHF parameters, while the Bayesian optimization algorithm performs a less number of iterations, while it can better embrace the domain knowledge; (4) both methods are suitable for solving the “black box” question of HWMHF optimization, and each has its advantages and obvious potential for field application promotion.

Key words: Hydraulic fracturing optimization; genetic algorithm; bayesian algorithm; intelligent search
收稿日期: 2023-06-29     
PACS:    
基金资助:中国石油科技创新基金“动态封孔下多簇裂缝竞争扩展规律研究(No.2020D-5007-0207)”、国家自然科学基金资助面上项目“极限射
孔结合动态封孔的多缝均衡起裂与均匀扩展控制方法研究” (52174045) 和中国石油大学( 北京) 克拉玛依校区科研启动基金资助(No.
XQZX20210001) 联合资助
通讯作者: zhoufj@cup.edu.cn, wangbo@cupk.edu.cn
引用本文:   
李丽哲, 周福建, 王博. 水平井多级压裂高维参数智能优化方法研究. 石油科学通报, 2023, 03: 347-359 LI Lizhe, ZHOU Fujian, WANG Bo. Method investigation on intelligent optimization of high dimension HWMHF parameters. Petroleum Science Bulletin, 2023, 03: 347-359.
链接本文:  
版权所有 2016 《石油科学通报》杂志社