...
首页> 外文期刊>KSCE journal of civil engineering >A New Probabilistic Framework for Structural System Fragility and Sensitivity Analysis of Concrete Gravity Dams
【24h】

A New Probabilistic Framework for Structural System Fragility and Sensitivity Analysis of Concrete Gravity Dams

机译:混凝土重力坝结构系统易损性和灵敏度分析的新概率框架

获取原文
获取原文并翻译 | 示例
           

摘要

Concrete gravity dams are widely constructed owing to their advantages of low maintenance cost and relatively low risk of sudden failure. However, the structural failure rate has been reported to be higher than other dam types. Although various studies have been conducted to assess the structural fragility of concrete gravity dams, not enough emphasis was placed on system-level fragility and sensitivity analyses, which provide crucial information for mitigating dam failure. This study proposes a new probabilistic framework for system fragility and sensitivity analysis by employing a finite element model for concrete gravity dams. The proposed framework consists of four steps, namely, structural analysis modeling considering the realistic loading conditions, component fragility analysis employing finite element reliability analysis, system fragility analysis employing system reliability analysis, and system sensitivity analysis using the finite difference method, which require several numerical algorithms and computational techniques. The proposed framework is applied to a numerical example of a typical concrete gravity dam in South Korea, and the analysis is completed successfully. As a result, the example dam is found to be relatively more vulnerable to sliding and concrete overstress than ground overstress. In addition, it is revealed that the dam system is more likely to fail in the overflow part than in the non-overflow part. The most critical factor in preventing these failures is the concrete mass density, followed by the silt mass density and the concrete compressive strength. Based on these analysis results, it is confirmed that the proposed framework provides valuable information for risk-informed structural design and failure mitigation of concrete gravity dams.
机译:混凝土重力坝由于其维护成本低和突然失效的风险相对较低的优点而被广泛地建造。但是,据报道结构破坏率高于其他大坝类型。尽管已经进行了各种研究来评估混凝土重力坝的结构易碎性,但是对系统级的易碎性和敏感性分析却没有给予足够的重视,这为减轻大坝的破坏提供了重要的信息。这项研究为混凝土重力坝采用了有限元模型,为系统的脆弱性和敏感性分析提出了一个新的概率框架。所提出的框架包括四个步骤,即考虑实际载荷条件的结构分析建模,使用有限元可靠性分析的组件脆弱性分析,使用系统可靠性分析的系统脆弱性分析以及使用有限差分法的系统灵敏度分析,这需要几个数值。算法和计算技术。将该框架应用于韩国某典型混凝土重力坝的数值实例,分析成功完成。结果,发现示例大坝比地面超应力相对更容易受到滑动和混凝土超应力的影响。另外,揭示出坝系统在溢流部分比非溢流部分更可能发生故障。防止这些破坏的最关键因素是混凝土质量密度,其次是淤泥质量密度和混凝土抗压强度。根据这些分析结果,可以确认所提出的框架为风险告知型结构设计和减轻混凝土重力坝的破坏提供了有价值的信息。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号