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首页> 外文期刊>Journal of JSCE >STATIC AND DYNAMIC STRUCTURAL PERFORMANCE OF MODERN TIMBER BRIDGES
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STATIC AND DYNAMIC STRUCTURAL PERFORMANCE OF MODERN TIMBER BRIDGES

机译:现代木材桥梁的静态和动态结构性能

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Author Hideyuki Honda has experimented on actual modern timber bridges using glulam timber to investigate their structural rigidity as well as the static and dynamic characteristics of their structural performance for over 24 years. He has also evaluated the structural performance of modern timber bridges based on accumulated field test data and three-dimensional static and eigenvalue analyses. Atsushi Toyoda examined the structural performance of the static and dynamic characteristics based on those data. This study investigated the structural characteristics measured by field tests on 23 modern timber bridges immediately after completion, and then evaluated actual structural performance of those bridges based on the static and dynamic characteristics, such as static deflection, static rigidity, natural frequency, damping coefficient, dynamic increment factor (impact factor), vibration serviceability, and so on. The results clearly showed that the static flexural rigidity of modern timber bridges under actual service conditions was bigger than the rigidity in the design, and that the fundamental vertical natural frequency was almost equivalent to general highway bridges, such as steel and concrete bridges. New tables and figure have been added to the ones released in the past and an estimated equation of curve of the decrease of structural rigidity stiffness over time is proposed.
机译:作者Hideyuki Honda使用Glulam木材进行了实际的现代木材桥,以研究其结构刚性,以及24多年来的结构性能的静态和动态特性。他还根据累积的现场测试数据和三维静态和特征值分析评估了现代木材桥梁的结构性。 Atsushi Toyoda根据这些数据检查了静态和动态特性的结构性能。本研究调查了在完成后的23台现代木材桥梁上测量的结构特征,然后根据静态和动态特性评估这些桥梁的实际结构性能,例如静态偏转,静态刚度,固有频率,阻尼系数,动态增量因子(影响因子),振动可用性等。结果清楚地表明,在实际服务条件下,现代木材桥梁的静态弯曲刚度大于设计中的刚性,并且基本垂直的固有频率几乎相当于钢和混凝土桥梁等通用公路桥梁。提出了新的表格和数字,提出了过去释放的桌子和估计结构刚度刚度随时间减小的曲线的估计方程。

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