Research on Production Prediction Method of Multi-stage Fractured Shale Gas Horizontal Well

被引:0
|
作者
Yin R. [1 ]
Zhang S. [2 ]
机构
[1] School of Artificial Intelligence and Big Data, Hefei University, Hefei
[2] School of Computer Engineering, AnHui WenDa University of Information Engineering, Hefei
关键词
Least Squares Support Vector Machine; Multi-stage Fractured Horizontal Well; Particle Swarm Optimization; Shale Gas; Traditional Production Prediction;
D O I
10.2478/amns-2024-1054
中图分类号
学科分类号
摘要
Shale gas is a crucial component of unconventional energy. Productivity evaluation of gas wells is essential to ensure efficient and stable production. However, predicting productivity has been challenging due to the complex characteristics of shale gas reservoirs and the use of multi-stage fractured horizontal wells (MFHW) technology in the development process. This study compares traditional production prediction methods with an optimized least squares support vector machine model (LSSVM). The traditional productivity prediction method involves establishing a mathematical model of the MFHW in a fully enclosed rectangular shale formation. The model considers the effects of shale gas adsorption, diffusion, and pressure sensitivity. The model's analytical solution is obtained using Duhamel's principle, Laplace transform, and inverse transform. An independent production data analysis software is developed based on the analytical solution of bottom-hole pressure to predict production. To implement the LSSVM model, the model's input parameters must be determined first. The LSSVM model's regularization parameters and kernel parameters are obtained through the particle swarm optimization (PSO) algorithm, and the prediction model is established. The model's matching is evaluated by calculating the coefficient of determination (R2) and the normalized root mean square error (NRMSE). The results indicate that the traditional production capacity prediction method is suitable for stable production in terms of applicability. However, the LSSVM model does not have this limitation and generally provides more accurate predictions throughout the entire production process. For complex shale gas reservoirs that frequently switch wells and use multi-stage fracturing technology, the LSSVM model is more suitable for predicting shale gas well productivity. © 2024 Rongwang Yin and Shaowei Zhang, published by Sciendo.
引用
收藏
相关论文
共 50 条
  • [21] Seepage flow behaviors of multi-stage fractured horizontal wells in arbitrary shaped shale gas reservoirs
    Zhao, Yu-Long
    Shan, Bao-Chao
    Zhang, Lie-Hui
    Liu, Qi-Guo
    JOURNAL OF GEOPHYSICS AND ENGINEERING, 2016, 13 (05) : 674 - 689
  • [22] RETRACTED ARTICLE: Pressure Transient Analysis for Multi-stage Fractured Horizontal Wells in Shale Gas Reservoirs
    Jingjing Guo
    Liehui Zhang
    Haitao Wang
    Guoqing Feng
    Transport in Porous Media, 2012, 93 : 635 - 653
  • [23] Seepage behavior and well testing in horizontal shale gas wells under multi-stage fracking
    Liu, Xiaoxu
    Yang, Xuefeng
    Chen, Yuanlin
    Wu, Jianfa
    Feng, Xi
    Natural Gas Industry, 2013, 33 (12) : 77 - 81
  • [24] A novel method for prediction of flowing pressure of multi-stage fracturing horizontal well
    Yin, Rongwang
    Zhang, Shaowei
    AIP ADVANCES, 2021, 11 (07)
  • [25] Pressure performance of multi-stage fractured horizontal well considering stress sensitivity and dual permeability in fractured gas reservoirs
    Xu, Youjie
    Li, Xiaoping
    Liu, Qiguo
    Tan, Xiaohua
    JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2021, 201
  • [26] Study on Productivity Prediction of Multi-Stage Fractured Horizontal Well in Low-Permeability Reservoir Based on Finite Element Method
    Xie, Yaxi
    He, Yongming
    Hu, Yixiao
    Jiang, Yancong
    TRANSPORT IN POROUS MEDIA, 2022, 141 (03) : 629 - 648
  • [27] Study on Productivity Prediction of Multi-Stage Fractured Horizontal Well in Low-Permeability Reservoir Based on Finite Element Method
    Yaxi Xie
    Yongming He
    Yixiao Hu
    Yancong Jiang
    Transport in Porous Media, 2022, 141 : 629 - 648
  • [28] Study of gas production from shale reservoirs with multi-stage hydraulic fracturing horizontal well considering multiple transport mechanisms
    Guo, Chaohua
    Wei, Mingzhen
    Liu, Hong
    PLOS ONE, 2018, 13 (01):
  • [29] Fracture Spacing Optimization Method for Multi-Stage Fractured Horizontal Wells in Shale Oil Reservoir Based on Dynamic Production Data Analysis
    Liu, Wenchao
    Liu, Chen
    Duan, Yaoyao
    Yan, Xuemei
    Sun, Yuping
    Sun, Hedong
    ENERGIES, 2023, 16 (24)
  • [30] Flow Mechanism and Transient Pressure Analysis of Multi-Stage Fractured Horizontal Well
    Ziwei Wang
    Liehui Zhang
    Ruihan Zhang
    Ruihe Wang
    Rui Huang
    Chemistry and Technology of Fuels and Oils, 2022, 57 : 941 - 954