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Innovative Soil Reinforcement Method to Control Static and Seismic Settlements

机译:创新的土壤加固方法来控制静震和地震沉降

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With increasing levels of seismic awareness and design-level earthquake accelerations, Geotechnical Engineers are challenged to find cost effective solutions to address both static and seismicaUy induced settlement in high seismic areas. In Salinas, California a relatively heavy, one and two-story structure was recently constructed in an area of relatively deep, intermittent, layers of liquefiable soil resulting in the potential for excessive total and differential settlements.A traditional foundation system of driven piles with structural slab similar to the new surrounding buildings was initially considered. Although this option addressed static settlement control and the potential for excessive seismically induced differential settlements, the solution was not considered economically viable and posed a risk to adjacent historic, unreinforced masonry structures. Alternatively, an innovative soil reinforcement method consisting of a stiffened geo-grid reinforced engineered fill over reinforced soil utilizing an evenly spaced Rammed Aggregate Pier? system was used to support the building. The reinforced soil mat was designed to control static settlement from the building loads and reduce seismically induced differential settlements to within allowable project tolerances.
机译:随着地震意识的提高和设计水平的地震加速度的提高,岩土工程师面临着寻找具有成本效益的解决方案的挑战,以解决高地震地区的静态和地震诱发的沉降问题。在加利福尼亚州的萨利纳斯市,最近在相对较深的,间歇性的可液化土壤层中建造了一个相对较重的一层和两层结构,这可能导致过多的总体和差异性沉降。 最初考虑了传统的带有结构板的打桩的基础系统,该结构类似于新的周围建筑物。尽管此选项解决了静态沉降控制问题,并提出了可能导致过多地震引起的差异性沉降的问题,但该解决方案在经济上并不可行,并给相邻的历史悠久,未加固的砖石结构带来了风险。或者,一种创新的土壤加固方法,包括利用均匀间隔的夯实集料墩在加固的土壤上加硬的土工格栅加固的工程填料?系统被用来支持建筑物。加筋土垫设计用于控制建筑物荷载产生的静态沉降,并将地震引起的差异沉降减少到允许的项目公差范围内。

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