接触面积影响粗糙岩石节理MICP阻渗效果试验研究

    EXPERIMENTAL STUDY ON THE INFLUENCE OF CONTACT AREA ON PERMEABILITY REDUCTION EFFECT OF MICP METHOD FOR ROUGH ROCK JOINT

    • 摘要: 微生物诱导碳酸钙沉积技术(Microbially Induced Carbonate Precipitation,简称MICP)在土体加固防渗领域已有广泛应用,但其在岩体加固封堵领域的研究还处在初步探索阶段,考虑天然岩石节理接触面积影响的MICP技术阻渗效果研究鲜见报道。为此,本文以经历反复直剪试验的非偶合花岗岩节理为原型,结合节理三维表面形貌激光扫描和3D打印技术制备具有不同初始接触面积的人工模拟粗糙岩石节理试件,在此基础上开展3D打印粗糙岩石节理MICP封堵试验,研究初始接触面积对岩石节理MICP封堵阻渗效果的影响。试验结果表明:节理初始接触面积通过影响MICP灌注过程中碳酸钙初期沉积区的形成,进而影响MICP封堵完成后试件中碳酸钙三维分布,试件封堵完成后在节理初始接触面积区域将形成明显的碳酸钙未沉积区;具有不同接触面积的非偶合粗糙岩石节理试件在MICP封堵过程中导水系数随灌注轮次变化均呈先快速减小而后缓慢减小的两阶段变化趋势,最终达到零值。在此基础上建立了MICP完全封堵岩石节理导水系数和碳酸钙最终扩散面积比与初始接触面积比之间的经验线性变化关系,利用该定量关系可以初步预估岩石节理MICP封堵过程中的导水系数和碳酸钙最终分布情况。

       

      Abstract: Although microbially induced carbonate precipitation(MICP)technology has been widely applied in soil reinforcement and seepage control,only limited research has explored its use in rock mass reinforcement and sealing projects. In particular,few studies have considered how the contact area within rock joints influences the permeability reduction achieved through MICP treatment. To address this gap,unmated granite rock joint specimens obtained from repeated direct shear tests were used as prototypes. Artificial rock joint specimens with varying initial contact area ratios were fabricated by combining laser scanning of surface morphology with 3D printing technology. Laboratory MICP experiments were then conducted on these specimens to examine the effect of contact area on permeability reduction. The experimental results reveal that the initial contact area governs the formation of the initial calcium carbonate deposition zone during the MICP sealing process,thereby influencing the final distribution of calcium carbonate. Notably,a distinct zone devoid of carbonate deposition was observed. Furthermore,the transmissivity of the rock joints exhibited a two-stage decline with MICP injection cycles: a rapid reduction after the first cycle,followed by a gradual decrease in subsequent cycles,eventually approaching zero. Based on the experimental data,an empirical linear relationship was established among transmissivity,final calcium carbonate diffusion area ratio,and initial contact area ratio. This expression can be used to preliminarily predict transmissivity and the final distribution of calcium carbonate during MICP-based sealing of rock joints.

       

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