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A Complementary Engineering-Based Building Damage Estimation for Earthquakes in Catastrophe Modeling

机译:突变建模中基于工程的补充建筑损伤估计

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Abstract Catastrophe modeling for earthquakes is conventionally designed as a probabilistic model to estimate the losses based on risk and vulnerability of a portfolio of exposures for a foreseeable set of events. This approach lacks a physical science of building damage that is linked to ground-shaking characteristics. A proposed engineering-based building damage estimation model based on established theories of seismic wave propagation and structural resonance is presented to address some of these shortcomings. A damage factor is introduced to provide an indication of the relative extent of damage to buildings. Analysis based on the proposed methodology is carried out using data derived from four case studies: the 2011 Tohoku earthquake; the 2007 Bengkulu earthquake; the 2011 Christchurch earthquake; and the 1999 Chi-Chi earthquake. Results show that the computed damage factors reasonably reflect the extent of actual damage to buildings that was observed in post-earthquake reconnaissance surveys. This indicates that the proposed damage simulation model has a promising future as a complementary assessment tool in building damage estimation in catastrophe modeling.
机译:摘要地震的巨灾建模通常被设计为一种概率模型,用于根据可预见的一组事件的风险组合的风险和脆弱性来估计损失。这种方法缺乏与震动特性相关的建筑破坏的物理科学。提出了一种基于已建立的基于地震波传播和结构共振理论的基于工程的建筑破坏估计模型,以解决其中的一些不足。引入损坏因子以指示对建筑物的相对损坏程度。基于所提出方法的分析是使用来自四个案例研究的数据进行的:2011年东北地震; 2007年的Bengkulu地震; 2011年克赖斯特彻奇地震;以及1999年的集集地震。结果表明,计算得出的破坏因素合理地反映了地震后侦察调查中观察到的对建筑物的实际破坏程度。这表明,所提出的破坏模拟模型作为在巨灾建模中建立破坏估计的补充评估工具,具有广阔的发展前景。

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