首页> 外文会议>Geoshanghai international congress >Full-Scale Field Investigations and Numerical Analyses of Innovative Seismic Composite Fiber Reinforced Polymer and Reinforced Grouted Helical Screw Instrumented Piles Under Axial and Lateral Monotonic and Cyclic Loadings
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Full-Scale Field Investigations and Numerical Analyses of Innovative Seismic Composite Fiber Reinforced Polymer and Reinforced Grouted Helical Screw Instrumented Piles Under Axial and Lateral Monotonic and Cyclic Loadings

机译:轴向和横向单调和循环荷载作用下创新型抗震复合纤维增强聚合物和灌浆螺旋螺旋桩的全尺寸现场调查和数值分析

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The axial and lateral monotonic and cyclic behavior of helical pile foundations was investigated and new innovative helical screw systems suitable for seismic loadings were developed and patented. More than one hundred full scale field load tests were conducted on instrumented helical screw piles installed in cohesive soil. The piles included: plain helical screw piles (P-HSP); grouted (G-HSPs); fiber reinforced polymer FRP-G-HSPs; and reinforced grouted RG-HSPs. The RG-HSP piles axial capacity was more than twice that for P-HSP, with minimal reduction after cyclic loading, and their lateral capacity was more than 3 times the P-HSPs capacity. A 3-D finite element model was established. The results of 3-D finite element modeling were used to establish the load transfer mechanism and a design methodology for the considered piles.
机译:研究了螺旋桩基础的轴向和横向单调和循环特性,并开发了适用于地震载荷的新型创新螺旋螺钉系统并申请了专利。在安装于粘性土壤中的仪器化螺旋桩上进行了一百次以上的满场试验。桩包括:普通螺旋螺旋桩(P-HSP);灌浆(G-HSP);纤维增强聚合物FRP-G-HSPs;以及加固的灌浆RG-HSP。 RG-HSP桩的轴向承载能力是P-HSP的两倍以上,在循环荷载作用下,桩的轴向承载力几乎没有减少,而其横向承载力是P-HSPs承载能力的3倍以上。建立了3-D有限元模型。使用3-D有限元建模的结果来建立考虑桩的荷载传递机制和设计方法。

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