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首页> 外文期刊>Bulletin of earthquake engineering >Hazard-dependent soil factors for site-specific elastic acceleration response spectra of Italian and European seismic building codes
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Hazard-dependent soil factors for site-specific elastic acceleration response spectra of Italian and European seismic building codes

机译:意大利和欧洲地震建筑规范的现场特异性弹性加速度响应光谱危害依赖性土壤因素

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摘要

To define the seismic input in non-liquefiable soils, current seismic standards give the possibility to treat local site effects using a simplified approach. This method is generally based on the introduction of an appropriate number of soil categories with associated soil factors that allow modifying the shape of the elastic acceleration response spectrum computed at rocky (i.e. stiff) sites. Although this approach is highly debated among researchers, it is extensively used in practice due to its easiness. As a matter of fact, for standard projects, this method represents the driving approach for the definition of the seismic input. Nevertheless, recent empirical and numerical studies have risen doubts about the reliability and safety of the simplified approach in view of the tendency of the current soil factors of Italian and European building codes to underestimate the acceleration at the free surface of the soil deposit. On the other hand, for certain soil classes, the current soil factors seem to overestimate ground amplification. Furthermore, the occurrence of soil nonlinearity, whose magnitude is linked to both soil type and level of seismic intensity, highlights the fallacy of using constant soil factors for sites with a different seismic hazard. The objective of this article is to propose a methodology for the definition of hazard-dependent soil factors and simultaneously quantify the reliability of the coefficients specified in the current versions of Eurocode 8 (CEN 2005) and Italian Building Code (NTC8 2008 and revision NTC18 2018). One of the most important outcome of this study is the quantification of the relevance of soil nonlinearity through the definition of empirical relationships between soil factors and peak ground acceleration at outcropping rock sites with flat topological surface (reference condition).
机译:为了定义非液化土壤中的地震输入,目前的地震标准可以使用简化的方法治疗局部现场效果。该方法通常基于引入具有相关土壤类别的适当数量的土壤类别,其允许改变在岩石(即刚性)位点计算的弹性加速度响应谱的形状。虽然这种方法在研究人员之间进行了高度辩论,但由于其容易性,它在实践中广泛使用。事实上,对于标准项目,该方法代表了地震输入定义的驾驶方法。然而,近期的实证和数值研究对简化方法的可靠性和安全性进行了疑虑,鉴于意大利和欧洲建筑规范的当前土壤因素的趋势,以低估了土壤沉积物自由表面的加速度。另一方面,对于某些土壤课程,目前的土壤因素似乎高估了地面扩增。此外,土壤非线性的发生,其幅度与土壤类型和地震强度水平相关,突出了使用不同地震危害的景点恒定土壤因素的谬误。本文的目的是提出危害依赖性土壤因素的定义方法,并同时量化欧式码8(CEN 2005)和意大利建筑码(NTC8 2008和RECISION NTC18 2018的NTC8 2008和Revirise NTC18)中规定的系数的可靠性)。本研究中最重要的结果之一是通过定义土壤非线性与扁平拓扑表面(参考条件)的岩石地区的岩石地面加速度之间的经验关系定义定义土壤非线性的相关性。

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