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      基于透明土的覆盖层灌浆扩散试验研究进展

      Research progress of overburden grouting diffusion test based on transparent soil

      • 摘要: 为系统梳理透明土技术在覆盖层灌浆扩散研究中的应用现状,并探讨其未来发展趋势,对透明土覆盖层灌浆试验及理论相关的文献开展研究。归纳了适用于岩土工程的透明土骨架材料与孔隙流体体系,明确了透明土覆盖层灌浆模型试验的相似比确定原则;总结了透明土浆液流动显示技术的光学原理、信息记录方法及数字图像处理技术的进展,阐述了该技术在覆盖层灌浆研究中的独特优势;基于透明土试验在灌浆理论探索中的应用,系统梳理了其在灌浆关键控制因素分析、浆液扩散机理研究、灌浆工艺优化及加固效果评价4个方面的贡献。结果表明,当前覆盖层灌浆研究中的透明土技术应用存在4个关键问题:①透明土与天然覆盖层材料的物理力学相似性不足;②浆液材料相似性不足,难以真实反映水泥浆液的流变特性;③尺度效应与边界效应显著,界面条件与工程实际存在偏差;④现有透明土灌浆效果研究仍以定性分析为主,缺乏系统的定量研究。提出未来可从以下方面进一步发展:①研发力学特性与天然地层高度相似的透明土覆盖层材料;②开发流变特性与工程浆液一致的透明浆液;③构建大尺度透明土试验系统;④推动透明土试验与数值模拟的耦合分析,实现透明土技术从定性观测向定量预测工具的转变。研究成果有助于深入探究覆盖层灌浆机理和揭示灌浆对覆盖层介质的复杂影响规律,可以为灌浆工程设计优化、推动灌浆理论与技术进步提供参考。

         

        Abstract: To systematically review the current application status of transparent soil technology in the study of grout diffusion within overburden layers and to explore its future development directions, papers related to grouting experiments and theories involving transparent soil cover layers were reviewed.Through a synthesis of research on transparent soil skeleton materials and pore fluid systems applicable to geotechnical engineering, the principles for determining similarity ratios in transparent soil grouting model tests for overburden layers were clarified.The optical fundamentals, information acquisition approaches, and recent advancements in digital image processing techniques for visualizing grout flow in transparent soil were summarized, highlighting the distinctive advantages of this technology in overburden grouting research.Building upon the application of transparent soil testing in theoretical investigations of grouting, the contributions of this technology were systematically reviewed in four major aspects: identification of key controlling factors in grouting, elucidation of grout diffusion mechanisms, optimization of grouting processes, and evaluation of reinforcement effectiveness.The results showed that: there were four critical issues in the application of transparent soil in current overburden grouting research: insufficient physical and mechanical similarity between transparent soil materials and natural overburden strata; inadequate similarity of grout materials and limiting the accurate representation of cement grout rheological behavior; pronounced scale and boundary effects as well as discrepancies between experimental interface conditions and actual engineering environments; predominance of qualitative analysis in existing studies with a lack of systematic quantitative investigations.The findings contribute to a deeper understanding of grouting mechanisms in overburden layers and reveal the complex interaction patterns between grout diffusion and overburden media.These insights can provide a reference for optimizing grouting engineering design and advancing theoretical and technological developments in grouting practice.It is proposed that future research should focus on: developing transparent overburden materials with mechanical properties highly consistent with natural strata; designing transparent grout systems with rheology characteristics comparable to engineering cement grout; establishing large-scale transparent soil experimental platforms to mitigate scale effects; and promoting coupled analyses integrating transparent soil experiments with numerical simulations, thereby facilitating the transition of transparent soil technology from a qualitative visualization tool to a quantitative predictive approach.The research results were conducive to in-depth exploration of the grouting mechanism of the covering layer and revealed the complex influence laws of grouting on the covering layer medium.The results can provide references for optimizing the design of grouting projects and promoting the advancement of grouting theory and technology.

         

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