场地效应对阿尔及利亚中低地震城市地区无筋砌体建筑地震易损性的影响

IF 1.7 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Multidiscipline Modeling in Materials and Structures Pub Date : 2023-08-15 DOI:10.1108/mmms-03-2023-0095
A. Athmani, Naida Ademović
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引用次数: 0

摘要

目的本文旨在为阿尔及利亚中低地震危险区的无筋砌体建筑制定初步的破坏方案,并考虑到具体的场地影响。设计/方法/方法根据阿尔及利亚地震规范(RPA99/2003)的定义,本分析考虑了三种土壤类型。根据概率地震危险性分析(PSHA),将峰值地面加速度值分配给每种土壤类型。为了突出土壤条件对砌体建筑地震易损性分析的影响,进行了场地易损性增量,并采用并应用了宏观地震风险UE方法,分别根据PSHA的两个重现期(100年和475年)开发了两个主要的地震场景。发现根据岩石场地条件的初步结果,可以概括地说,在不同的地震场景下获得的重大破坏对研究区域的建筑存量发现了巨大的全球地震风险。一旦将场地效应纳入分析,就会获得更高的脆弱性指数和预期损害值。此外,可以得出结论,与(S1)相比,软土(S3)对最终脆弱性指数的影响略大于硬土(S2)。然而,土壤效应S2和S3对脆弱性指数的影响可以忽略不计。研究局限性/含义鼓励研究人员测试机械方法,以获得特定建筑分析的更详细结果。实际意义这项研究向阿尔及利亚决策者证明,由于场地影响和砖石建筑的脆弱性,即使是位于中低地震危险区的现有建筑,也需要紧急干预计划。原创性/价值阿尔及利亚对中高地震区的无筋砌体建筑进行了几种地震易损性类型的研究,其中通常忽略了土壤效应。在此背景下,本文证明,由于场地效应和砌体建筑的脆弱性,即使是位于中低地震危险区的现有建筑也需要特别注意。有了这一结论,在高震区考虑soli效应的要求就更加明显了,应该予以执行。
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Site effect influence on the seismic vulnerability of unreinforced masonry buildings in low to moderate seismic urban areas in Algeria
PurposeThis paper aims to develop preliminary damage scenarios for unreinforced masonry buildings located in low to moderate seismic hazard areas in Algeria, taking into account the specific site effects.Design/methodology/approachThree soil types were considered in this analysis according to the definition of the Algerian seismic code (RPA99/2003). Peak ground acceleration values were assigned to each soil type issued from a probabilistic seismic hazard analysis (PSHA). To highlight the effect of soil conditions on the seismic vulnerability analysis of masonry buildings, a site vulnerability increment is carried out, and the macroseismic Risk-UE method has been adopted and applied by developing two main seismic scenarios according to both return periods of the PSHA, 100 and 475 years, respectively.FindingsBased on the preliminary results of rock site condition, it can be outlined that the significant damage obtained for different earthquake scenarios discovered a substantial worldwide seismic risk to the building stock of the study area. Once the site effect is integrated into the analysis, more high values of vulnerability indexes and expected damages are obtained. Moreover, it can be concluded that soft soil (S3) is a little bit more influential than stiff soil (S2) on the final vulnerability index compared to (S1). However, the difference between the soil effect S2 and S3 on the vulnerability index can be neglected.Research limitations/implicationsResearchers are encouraged to test the mechanical approaches for more detailed outcomes of a specific building analysis.Practical implicationsThis research proves to the Algerian decision-makers that due to the site effects and the vulnerability of the masonry buildings, an urgent intervention program is required even for existing buildings located in low to moderate seismic hazard areas.Originality/valueSeveral seismic vulnerability types of research have been conducted in Algeria for the unreinforced masonry buildings in moderate to high seismic areas in which generally the soil effect is neglected. In this context, this research paper proves that due to the site effects and the vulnerability of the masonry buildings, special attention is required even for existing buildings located in low to moderate seismic hazard areas. With this conclusion, the requirement of taking into account the soli effect in the high seismic areas is even more pronounced and should be conducted.
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来源期刊
CiteScore
3.70
自引率
5.00%
发文量
60
期刊介绍: Multidiscipline Modeling in Materials and Structures is published by Emerald Group Publishing Limited from 2010
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