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Soil Improvement to Support a Warehouse Building over Difficult Soils

机译:改良土壤以支持困难土壤上的仓库建设

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A new warehouse building was planned for Home Depot in Camarillo, California. The geotechnical investigation at the site indicated the liquefaction hazard in loose sandy soil layers under the design earthquake and static settlement problems in soft clay layers under the building loads. The specialty geotechnical contractor designed and performed soil improvement at the site. Vibro stone columns were installed to mitigate the site liquefaction by providing densification, reinforcement, and drainage in the loose sand soil layers. Deep soil mixing columns were installed to support heavy building column loads. Liquefaction analyses were performed on the CPT records before and after the vibro stone column treatment. FLAC analysis on the soil mixing treatment was performed to optimize the mixing column penetration depth. Full size static load tests on soil mixing column groups proved that the FLAC analysis correctly simulated the site condition. This paper covers design methodology, production work, and quality control and testing, with supporting figures.
机译:计划在加利福尼亚州卡马里洛的家得宝建造一座新仓库。现场岩土工程勘察表明,在设计地震下松散的砂土层液化危险,在建筑荷载下软黏土层的静态沉降问题。专业的岩土承包商在现场设计并进行了土壤改良。安装了振动石柱,通过在疏松的沙土层中提供致密化,加固和排水来减轻现场液化。安装了深层土壤搅拌柱以支撑沉重的建筑柱负载。在振动石柱处理之前和之后,对CPT记录进行液化分析。对土壤混合处理进行FLAC分析,以优化混合柱的渗透深度。在土壤搅拌柱组上进行全尺寸静载荷试验证明,FLAC分析可以正确模拟现场条件。本文涵盖设计方法论,生产工作以及质量控制和测试,并附有辅助数据。

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