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首页> 外文期刊>International journal of architectural heritage >The Roof Bracing as Minimum Intervention for the Reduction of the Seismic Vulnerability of Historical Industrial Buildings: Analytical and Numerical Simplified Strategies for the Assessment of the Performances
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The Roof Bracing as Minimum Intervention for the Reduction of the Seismic Vulnerability of Historical Industrial Buildings: Analytical and Numerical Simplified Strategies for the Assessment of the Performances

机译:屋顶支撑为减少历史工业建筑的地震脆弱性的最低干预:分析和数值简化策略,用于评估表演

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The paper deals with the reduction of the seismic vulnerability of historical masonry buildings characterized by a wide room, of significant height, provided by a multi-sloping timber roof lying on perimeter walls and, internally, on columns or pillars (e.g. industrial buildings). Typically, these structures are extremely vulnerable to earthquakes but a minimum intervention, consisting in the bracing of the timber roof through wooden-based sheathing panels, can improve the seismic performances providing an adequate restraint against the walls overturning and fostering the box-behaviour of the entire structure. The case study of an ancient industrial building is analyzed. A smart analytical design strategy for the dimensioning of the bracings and the evaluation of the resisting ground acceleration is developed. A simplified numerical modelling strategy for pushover analysis, based on the equivalent frame method for the masonry walls and on equivalent diagonal springs for the roof bracings, is also presented.
机译:本文涉及减少历史砌体建筑的地震脆弱性,其特征在于宽敞的房间,由躺在周边墙壁上的多倾斜木材屋顶提供的多层高度,并且在内部,在柱子或支柱上(例如,工业建筑)。通常,这些结构非常容易受到地震,但是最小的干预,包括通过木制的护套板的木材屋顶的支撑,可以提高地震性能,提供对墙壁的充分约束,倾覆和培养盒子行为的墙壁整个结构。分析了古代工业建筑的案例研究。开发了一种智能分析设计策略,用于支撑尺寸和抗蚀地加速器的评估。还提出了一种简化的推移分析的数值建模策略,基于砌体墙壁的等效框架方法以及用于屋顶支撑的等效对角线弹簧。

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