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Pre-loading effect on site response: Site amplification and soil properties mismatch

机译:预载对场地响应的影响:场地放大和土壤性质不匹配

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摘要

A field experiment with a temporary embankment loading gave the opportunity to evaluate changes of both soil properties and site response, due to a low stiffness shallow soil model. The Quarter Wave-Length approximation is mainly used to quantitatively indicate the expected changes. The original V_s models derived by seismic prospecting methods (Raptakis. Soil Dynamics and Earthquake Engineering 2012;34: 69-77), similarly performed prior to and after preloading, were used for site amplification estimates as a function of frequency. The quantitative comparisons of either results derived by field techniques combined to each other or those of each technique separately before and after preloading, reveal changes in site response showing a clear de-amplification after preloading but of lower order than stiffness increase. This fact may have beneficial manpower and cost consequences on the acquisition of the most "detailed" and "reliable" V_s input model for site response studies. Among others, the fact that a significant disparity between amplifications is observed only after preloading indicates that changes in the soil properties refer to the ground hypotheses for which the exploration tools present by principle limitations and drawbacks.
机译:由于刚度较低的浅土模型,采用临时路堤荷载的野外试验提供了评估土壤性质和场地响应变化的机会。四分之一波长度近似值主要用于定量表示预期的变化。通过地震勘探方法得出的原始V_s模型(Raptakis.Soil Dynamics and Earthquake Engineering 2012; 34:69-77)在预加载之前和之后类似​​地执行,用于场地放大估计作为频率的函数。现场技术相互结合的结果的定量比较,或者在预压之前和之后分别对每种技术的结果进行的定量比较,揭示了现场响应的变化,显示了预压后明显的去放大,但比刚度增加低。这一事实可能对购置用于现场响应研究的最“详细”和“可靠”的V_s输入模型产生有益的人力和成本影响。除其他外,仅在预加载后才观察到扩增之间的显着差异这一事实表明,土壤性质的变化是指地面假设,勘探工具因其原理上的局限和缺点而提出了这一假设。

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