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Effect of air injection on pile and pile group behavior in liquefiable soil

机译:空气喷射对液体土壤桩和桩基行为的影响

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摘要

Soil liquefaction during large earthquakes causes serious damage to structures built on foundations. In recent years, artificially injecting small amounts of air into liquefaction-susceptible soils has been proposed as a newly developed and cost-effective liquefaction mitigation method. Nevertheless, the liquefaction response of piles through this method has not been investigated so far. A series of 1gshaking table tests were conducted in this research to evaluate the liquefaction response of pile and pile group in air-injected partially saturated soils. The results have shown that air injection effectively reduces the liquefaction-induced settlements of pile and pile group. Also, this method has relatively reduced the excess pore pressure ratio. According to visual results and bending moments in piles, the depth of a liquefied soil layer decreases in air-injected partially saturated soils. Also, the deformation of soil structure is observed to decrease by injecting air into the samples. Despite these effects, larger accelerations are transmitted to the surface of the soil and consequently to the structure, and larger bending moments are applied to the piles in air-injected partially saturated samples. It was observed that at the low confining pressure, the effectiveness of this method is not a function of air injection duration.
机译:大地震期间的土壤液化会对建立基础建立的结构造成严重损害。近年来,已经提出了人工注入少量空气进入液化易感土壤,作为一种新的开发和成本效益的液化缓解方法。然而,到目前为止,均通过该方法液化反应尚未进行调查。在该研究中进行了一系列1Gshaing表测试,以评估空气注入部分饱和土中桩和桩基的液化响应。结果表明,空气喷射有效地降低了桩和桩基的液化诱导的沉降。而且,该方法具有相对降低的过量孔隙压力比。根据桩中的视觉结果和弯矩,液化土壤层的深度在空气喷射的部分饱和土壤中降低。而且,通过将空气注入样品来观察到土壤结构的变形以降低。尽管有这些效果,但是较大的加速度被传递到土壤的表面,因此施加结构,并且将较大的弯曲力矩施加到空气喷射的部分饱和样品中的桩上。观察到,在低限制压力下,该方法的有效性不是空气喷射持续时间的函数。

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