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Geotechnical approaches on the seismic risk assessment for architectural heritages at historical sites using field and centrifuge tests

机译:使用现场测试和离心测试对历史遗址的建筑遗产进行地震风险评估的岩土方法

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摘要

This paper describes a research methodology for the seismic risk assessment of architectural heritages at historical sites from a geotechnical engineering viewpoint. Field seismic tests, site-specific ground response analysis, and geotechnical centrifuge model tests with an earthquake simulator were used to determine the geotechnical characteristics of Cheomseongdae, which is a representative of Korean architectural heritage. This artifact is known to be the oldest astronomical observatory in Asia. According to historical records, the Gyeongju area where Cheomseongdae is located has suffered from numerous medium-scale earthquakes. Based on site investigation and ground response analysis of scenario earthquakes, the ground around Cheomseongdae is highly susceptible to site amplification. In addition, Cheomseongdae is a masonry structure that is apparently vulnerable to horizontal dynamic loads such as earthquakes. However, features such as the filler of the lower half, irregularly shaped inner stones that can induce high frictional resistance, eight long horizontal tie stones inside the artifact, and a grid of interlocking headstones are recognized to increase the structure's resistance to horizontal dynamic loads despite its appearance. Through field and centrifuge tests, a geotechnical approach to the seismic risk assessment of architectural heritages at historic sites is established. The test results verify our ancestors' "seismic design" technology.
机译:本文从岩土工程的角度描述了一种用于历史遗址建筑遗产地震风险评估的研究方法。现场地震测试,特定地点的地面响应分析以及使用地震模拟器的岩土离心模型测试被用来确定天城台的岩土特性,天城台是韩国建筑遗产的代表。该文物是亚洲最古老的天文台。根据历史记录,庆城台所在的庆州地区遭受了多次中等规模的地震。根据现场调查和情景地震的地面响应分析,天城台附近的地面极易发生现场放大。此外,天城台是一种砌体结构,显然容易受到地震等水平动载荷的影响。但是,人们认识到诸如下半部分的填充物,不规则形状的内部石块(可引起高摩擦阻力),工件内部有八个长的水平连接石块以及互锁的墓石网格等特征,尽管增加了结构对水平动态载荷的抵抗力它的外观。通过现场和离心测试,建立了一种岩土工程方法来评估历史遗迹中建筑遗产的地震风险。测试结果验证了我们祖先的“抗震设计”技术。

著录项

  • 来源
  • 会议地点 Astana(DE)
  • 作者

    Heon-Joon Park; Dong-Soo Kim;

  • 作者单位

    Department of Civil and Environmental Engineering, KAIST, Daejeon, Korea;

    Department of Civil and Environmental Engineering, KAIST, Daejeon, Korea;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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