Geomechanical Behavior of Bio-Cemented Sand for Foundation Works

Y. Duraisamy, D. Airey
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引用次数: 2

Abstract

Bio-cementation is an innovative green technology that complements existing ground improvement techniques, but it is yet to be proven for large-scale foundation works. Previously attention has been focused on strategies to inject the bacteria and nutrients to produce the cement in the ground. This study looks at the performance of geomechanical response when the bacteria and nutrients are mixed in sand, an approach that is used in producing cemented soil columns. To explore the mechanical response of bio-cemented soil, results from unconfined compressive strength (UCS) tests and triaxial tests have been analyzed to understand the effects of bio-cementation for sand in contrast to alternative cement, gypsum. The stiffness has also been monitored using bender element techniques in triaxial cell. Both the shear wave signals during the cementation phase and the shearing phase were recorded using this technique. The results show that for a given amount of cement, higher resistances are measured for the bio-cemented samples compared to gypsum. The mixing process is shown to produce homogeneous bio-cemented samples with higher strength and stiffness than the technique of flushing or injection commonly used, provided the amount of calcite is less than 4%. The results show that the bio-cement produces similar mechanical behavior to other artificially cemented sands.
生物胶结砂在基础工程中的地质力学行为
生物胶结是一项创新的绿色技术,是现有地基改善技术的补充,但它尚未被证明适用于大型地基工程。以前的注意力一直集中在向地下注入细菌和营养物质以产生水泥的策略上。该研究着眼于将细菌和营养物混合在沙子中的地质力学响应性能,这是一种用于生产胶结土柱的方法。为了探索生物胶结土的力学响应,对无侧限抗压强度(UCS)试验和三轴试验的结果进行了分析,以了解生物胶结对砂的影响,并与替代水泥、石膏进行了对比。在三轴单元中,采用弯曲单元技术对其刚度进行了监测。利用该技术记录了胶结阶段和剪切阶段的剪切波信号。结果表明,对于给定量的水泥,与石膏相比,生物胶结样品测量到更高的阻力。在方解石含量低于4%的情况下,混合工艺可以产生比常用的冲洗或注射技术具有更高强度和刚度的均匀生物胶结样品。结果表明,生物水泥与其他人工胶结砂具有相似的力学性能。
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