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基于最小應變能密度因子斷裂準則的巖石裂紋水力壓裂研究

Hydraulic fracture prediction theory based on the minimumstrain energy density criterion

  • 摘要: 建立了考慮裂紋尖端非奇異項T應力的最小應變能密度因子斷裂準則, 研究了不同裂紋類型條件下T應力和泊松比對起裂角的影響, 結果表明裂紋起裂角不僅與奇異項應力強度因子有關, 而且還需要考慮非奇異項T應力和泊松比的影響作用.同時計算了含井筒對稱雙裂紋水力壓裂模型的起裂角和臨界水壓, 表明依據本文斷裂準則計算得到理論解與實驗結果吻合良好.在此基礎上, 利用該準則從理論上分析了臨界裂紋區尺寸、T應力、比奧系數、側壓系數、泊松比等因素對水力壓裂裂紋起裂特性的影響.參數分析表明: 臨界裂紋區尺寸、T應力和側壓系數對臨界水壓和臨界起裂角有顯著影響.臨界水壓隨著泊松比增大而減小, 而臨界起裂角呈現相反變化趨勢.比奧系數對臨界起裂角沒有影響, 但是在高水壓條件下對起裂角具有顯著影響.

     

    Abstract: Hydraulic fracturing is a promising technique used in oil and gas reservoirs, enhanced geothermal systems, and coal gas production.Although its use is widespread, many aspects of hydraulic fracturing are still not well understood and need to be further investigated to achieve increases in oil and gas production while mitigating the adverse aspects of hydraulic fracturing.Understanding how hydraulic pressure extends preexisting fractures and forms a complex fracture network is essential for the design and treatment of hydraulic fracturing.Critical water pressure and fracture initiation angle are two important parameters involved in the hydraulic fracture propagation process and production from a well.In the present study, a minimum strain energy density criterion, which considers the effects of T-stress and Poisson's ratio, was proposed to analyze fracture initiation during hydraulic fracturing.The fracture initiation angle for different crack types was investigated using the proposed theoretical method, and the results indicate that the fracture initiation angle is not only related to the stress intensity factor but also affected by the T-stress and Poisson's ratio.The critical water pressure and critical initiation angle for two symmetric radial cracks emanating from a pressurized borehole were investigated, and the theoretical results were consistent with the experimental results.Through the proposed theoretical method, the influence of T-stress, radius of the fracture process zone, Biot's coefficient, lateral pressure coefficient and Poisson's ratio on the hydraulic fracturing behavior was analyzed.Parameter analysis indicates that the radius of the fracture process zone, T-stress, and lateral pressure coefficient play an important role in the critical initiation angle and critical water pressure.The critical water pressure increases with the decrement of Poisson's ratio, whereas the critical initiation angle shows the opposite trend.Biot's coefficient has no effect on the critical initiation angle but has a significant influence on the fracture initiation angle under high water pressure.The theoretical model enables a comprehensive understanding of the characteristics of hydraulic fracturing under complex loading conditions.The results also provided a basis for quantitative investigations of the engineering design of hydraulic fracturing treatments.

     

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