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Remediation of piled foundations against lateral spreading by passive site stabilization technique

机译:被动场地稳定技术修复桩基抗侧向扩展

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Physical modeling tests were conducted on pile foundations to measure the seismic performance of a new ground improvement technology, called passive site stabilization, for use on sites susceptible to liquefaction and liquefaction-induced lateral spreading. The method involves the slow injection of a low-viscosity stabilizer in conjunction with the natural groundwater flow. The effectiveness of the treatment using dilute colloidal silica as the stabilizer was tested by two centrifuge models that simulated soil-pile interaction of a 2 x 2 end-bearing pile group embedded in a multilayer soil deposit of 10-m thickness. The models utilized a laminar box and involved gently inclined soil profiles with and without the applied soil improvement. Response of the pile groups and the lateral spreading behaviors of the treated and untreated soil under a simulated base shaking were investigated and compared. The results showed that treatment with dilute colloidal silica stabilizer minimized permanent lateral deformations and reduced the liquefaction potential of the soil. Significant reductions occurred in the measured pile bending moments and axial forces because the layer treated with dilute colloidal silica did not liquefy. Thus, the technique can be an alternative to traditional methods of ground improvement.
机译:在桩基上进行了物理模型测试,以测量一种新的地面改良技术(称为被动场地稳定)的抗震性能,该技术用于易受液化和液化引起的横向扩展的场地。该方法涉及与天然地下水流一起缓慢注入低粘度稳定剂。通过两个离心机模型测试了使用稀胶体二氧化硅作为稳定剂的处理效果,该模型模拟了埋入厚度为10 m的多层土壤沉积物中的2 x 2端承桩组的土桩相互作用。这些模型使用了一个层流箱,并在有和没有进行土壤改良的情况下,采用了缓倾斜的土壤剖面。研究并比较了在模拟的基础振动下桩基的响应以及已处理和未处理的土体的横向扩展行为。结果表明,用稀胶体二氧化硅稳定剂处理可以最大程度地减少永久性横向变形并降低土壤的液化潜力。测得的桩弯矩和轴向力显着降低,因为用稀胶体二氧化硅处理的层不液化。因此,该技术可以替代传统的地面改良方法。

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