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Numerical evaluation of tsunami debris impact loading on wooden structural walls

机译:海啸碎片撞击木质结构墙的数值评估

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摘要

Water-based disasters such as tsunami, hurricane, and flood can cause significant structural damage to coastal areas and ultimately result in human and socioeconomic losses. Recent studies have highlighted the difficulties associated with estimating tsunami impact loads on residential structures with greater challenges pertaining to estimating the debris impact loads. The main challenges are associated with large variations in debris mass, shape, velocity, and impact angle. According to FEMA P-646 [1], although impact of floating debris is required to be considered by the codes, the added mass of water behind the debris and/or the potential for damming when debris is blocked by structural elements are ignored. Additionally, there is a lack of 3D numerical models that can accurately predict debris impact loads. Due to the three-dimensional dynamic nature of the problem, coupled with highly variable factors affecting debris loads, a 3D finite element (FE) analysis is necessary to determine the debris impact on structures as accurately as possible. To date, one of the major obstacles in modeling tsunami impact on structures is the intense computational demand linked with such models. This paper presents the formulation of an efficient 3D FE model with computational fluid dynamic (CFD) capabilities to study debris impact on interior and exterior wood structural panels. Several important parameters such as initial water volume, water velocity, debris shape, and debris density are varied throughout the analysis in order to determine the individual effect of each parameter as well as the overall effect on wood structural walls. The results for an interior wall panels showed that contribution from water height and velocity is more significant the debris mass in the impact force as water height and velocity increase. Additionally, as the water height increases, the impact force due to debris decreases for an interior panel when debris mass is constant. An exterior panel is significantly closer to a rigid structure, therefore, an increase in impact force due to debris is observed with the increase in water height and debris mass. The results can be used by engineers to estimate debris impact load on wood panels with similar dimension and material properties.
机译:海啸,飓风和洪水等水灾可对沿海地区造成重大的结构破坏,并最终导致人员和社会经济损失。最近的研究突出了与估计海啸对住宅结构的冲击载荷相关的困难,而与估计碎片冲击载荷有关的挑战更大。主要挑战与碎片质量,形状,速度和撞击角度的巨大差异有关。根据FEMA P-646 [1],尽管规范要求考虑浮动碎屑的影响,但是忽略了碎屑后面增加的水量和/或当碎屑被结构元件阻塞时可能造成的筑坝可能性。此外,缺少可以准确预测碎屑冲击载荷的3D数值模型。由于问题的三维动态性质,再加上影响碎屑载荷的高度可变因素,必须进行3D有限元(FE)分析,以尽可能准确地确定碎屑对结构的影响。迄今为止,对海啸对结构的影响进行建模的主要障碍之一是与此类模型相关的大量计算需求。本文介绍了具有计算流体动力学(CFD)功能的高效3D FE模型的公式,以研究碎屑对内部和外部木质结构板的影响。在整个分析过程中,会更改几个重要参数,例如初始水量,水速,碎屑形状和碎屑密度,以便确定每个参数的单独影响以及对木质结构墙的整体影响。内墙板的结果表明,随着水高度和速度的增加,水的高度和速度的贡献对冲击力中的碎片质量更为显着。另外,随着水位的增加,当碎屑质量恒定时,由于碎屑导致的冲击力对于内部面板减小。外面板明显更接近于刚性结构,因此,随着水高度和碎屑质量的增加,观察到由于碎屑引起的冲击力的增加。工程师可以使用该结果来估计碎屑在具有相似尺寸和材料特性的木板上的冲击负荷。

著录项

  • 来源
    《Engineering Structures》 |2013年第11期|1249-1261|共13页
  • 作者

    Anisa Como; Hussam Mahmoud;

  • 作者单位

    Department of Civil and Environmental Engineering, Colorado State University, Fort Collins, CO, USA;

    Department of Civil and Environmental Engineering, Colorado State University, Fort Collins, CO, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Debris impact; Tsunami load; Wood panel; ABAQUS; 3D FEM; Dynamic load;

    机译:杂物冲击;海啸负荷;木板ABAQUS;3D FEM;动态负载;

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