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September 10, 202550th U.S. Rock Mechanics/Geomechanics Symposium

Comprehensive Sensitivity Analysis of Hydraulic Fracture Parameters in Deep Shale Gas Reservoirs of the Sichuan Basin

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Authors

XSXuewen ShiJLJun LiuNHNan Hu

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Overview

Comprehensive modeling reveals enhanced production in deep shale gas reservoirs, suggesting critical parameters to optimize hydraulic fracturing designs.

Key Points

  • Increasing fracture length can enhance production by up to 63%, emphasizing its significance.
  • Higher matrix permeability can boost production by up to 146%, highlighting its critical role.
  • Sensitivity analyses indicate that fracture height also significantly impacts production, improving it by up to 53%.
  • Production simulation using EDFM estimates a EUR of 1.25 x 108 m3 over 20 years in the Sichuan Basin.

Cite This Study

Shi et al. (2025) studied this question.

synapsesocial.com/papers/68c1b60d54b1d3bfb60eb403https://doi.org/10.56952/arma-2025-0295
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Also Consider

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  1. 1Investigation into the Quantitative Assessment of Reserve Mobilization in Horizontal Well Groups Within the Southern Sichuan Shale Gas Reservoir2025 · 1 citations
  2. 2Understanding Shale Gas Hydraulic Fracturing: AI-Powered Automatic Calibration for Fracture Geometries Quantification2025
  3. 3Integrated Completion Optimization for Horizontal Shale Gas Wells in the Sichuan Basin2025
  4. 4A Frac‐Hit Quantitative Identification Method Integrated With Numerical Simulation and Field Wellbore Pressure Response: A Case Study of Deep Shale Gas, Southern Sichuan Basin, China2026
  5. 5Tailored Hydraulic Fracture Optimization for Deep Shale Gas Reservoirs with Complex Natural Fracture Networks2025