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Hydrotest Performance of Storage Tanks Supported on Deep Soil Mix Columns and Aggregate Column Ground Improvement Systems

机译:深层土壤混合柱和骨料柱地面改良系统支撑的储罐水压试验性能

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Property owners along the Houston ship channel have been developing dredge spoil disposal sites for use as tank farms and industrial facilities. The undocumented dredge spoils, obtained during channel maintenance operations, are not compacted and highly variable materials which are not suitable for foundation support. Ground improvement systems, such as deep soil mix columns and stone columns, have been successfully used throughout the Gulf Coast Region to improve unsuitable dredge spoils and weak soils for tank and foundation support. The following paper presents a case history review of the hydrotest performance of fourteen new storage tanks constructed on a dredge spoil disposal site located near the inlet of the ship channel. Both stone column and deep soil mix ground improvement systems were utilized at the site due to the highly variable subsurface conditions encountered at each tank location. Field verification testing, data acquisition monitoring, and modulus testing (stone columns only) were utilized prior to and during construction to confirm design assumptions and settlement predictions. Perimeter settlements were also recorded during the tank hydrotests to compare with the predicted tank settlements, and allowed a direct comparison of the performance of the stone column and deep soil mix column ground improvement systems.
机译:休斯敦船舶航道上的财产所有人一直在开发挖泥机弃土场,以用作油罐场和工业设施。在通道维护操作期间获得的未记录的挖泥机残渣未经压实,且高度可变的材料不适合用于基础支撑。地面改良系统,例如深层土壤混合柱和石柱,已在整个墨西哥湾沿岸地区成功使用,以改善不合适的挖泥和薄弱的土壤,以作为储罐和地基的支撑。以下文件介绍了一个案例历史回顾,介绍了在靠近船舶航道进口处的挖泥机弃土场上建造的14个新储罐的水压试验性能。由于在每个储罐位置遇到的地下条件高度变化,因此现场均使用了石柱和深层土壤混合地面改良系统。在施工之前和施工过程中使用了现场验证测试,数据采集监视和模量测试(仅用于石柱),以确认设计假设和沉降预测。储罐水力试验期间还记录了周边沉降,以便与预测的储罐沉降进行比较,并可以直接比较石柱和深层土壤混合柱地面改良系统的性能。

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