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微生物固化联合根系加固花岗岩残积土水力特性研究
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Study on hydraulic properties of granite residual soil reinforced by biocementation combined with root
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    花岗岩残积土的强渗透性、高孔隙比、遇水易崩解等特性,致使边坡表层水土流失严重,微生物固化与植物根系均可用于边坡浅层防护.通过开展单微生物加固、单根系加固和联合加固试验,研究了根系掺量与微生物固化次数对渗透性、保水性、崩解性和剪切特性的影响规律,进而系统分析微生物联合根系加固花岗岩残积土的水力特性.研究结果表明:单根系加固主要改善花岗岩残积土的剪切特性,但也会增加其渗透性.单微生物加固可显著改善花岗岩残积土的渗透性、保水性、崩解性和剪切特性,但过高的固化次数可能会减弱其抗剪切性能.联合加固方式下,根系的掺入会增加花岗岩残积土的渗透性,而大幅提升崩解性和剪切特性,根系掺量越大越明显.联合加固下试样的崩解过程主要分为3个阶段,且黏聚力的改善效果远高于内摩擦角.微生物与根系联合加固存在较好的协同作用,微生物固化对改善花岗岩残积土的水力特性起关键作用,而根系可辅助调节水分的运移.

    Abstract:

    The strong permeability, high porosity, and easy disintegration of granite residual soil cause serious erosion in the surface layer of the slope. Both biocementation and plant roots can be used for shallow slope protection. This study conducted single biocementing, single root, and joint combined reinforcement tests to investigate the effects of root content and the biocementing time on permeability, water retention, disintegration, and shear properties. Then, the hydraulic properties of granite residual soil reinforced by biocementation joint root systems were systematically analyzed. The results showed that single root reinforcement primarily improved the shear characteristics of granite residual soil, but also increased its permeability. Single biocementation significantly improved the permeability, water retention, disintegration, and shear properties of granite residual soil; however, too many cementing times may weaken its shear resistance properties. The incorporation of roots under co-reinforcement increased the permeability of granite residual soil, while substantially improving the disintegration and shear properties, which was more pronounced with higher root incorporation. The disintegration process of the specimens under joint reinforcement was mainly divided into three stages, and the improvement effect of cohesion was much higher than the internal friction angle. The combined reinforcement of biocementation and root exhibits a significant synergistic effect, with biocementation playing a critical role in enhancing the hydraulic properties of granite residual soil, while root systems assist in regulating water movement.

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张永杰 ,范海 ,欧阳健 ?,邓锦 ,杨彦桢 ,刘小凡.微生物固化联合根系加固花岗岩残积土水力特性研究[J].湖南大学学报:自然科学版,2026,(1):139~148

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  • 在线发布日期: 2026-02-06
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