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首页> 外文期刊>Journal of bridge engineering >Dynamic Analysis of the Bentley Creek Bridge with FRP Deck
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Dynamic Analysis of the Bentley Creek Bridge with FRP Deck

机译:带FRP甲板的Bentley Creek桥的动力分析

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This study investigates vibration characteristics of a truss bridge that has been retrofitted with a fiber reinforced polymer (FRP) deck. The bridge is located on State Route 367 in Wellsburg, Chemung County, New York. It is a 140-ft-long (approximately 42.7-m-long) truss structure, originally built with a noncomposite concrete deck. The concrete deck was replaced with a much lighter fiber reinforced polymer deck to improve the bridge load capacity ratings. This study investigates the vibration characteristics of the bridge as a result of the deck replacement and impact of these changes on the structural behavior. The results indicate that the fundamental frequency for the current structure with the FRP deck is approximately 45% higher than that for the original structure with a concrete deck. The computed bridge fundamental frequency correlated well with field data. When compared to the concrete deck bridge, the FRP deck bridge resulted in lower dead load forces, higher live load forces, lower total forces, and higher live load stress ranges used in fatigue life estimates. Dynamic allowance was also determined for each of the selected members for both concrete and FRP decks. For the concrete deck bridge, the calculated dynamic allowance is higher than those used in bridge design specifications. Lower dynamic allowances were obtained for the FRP deck bridge.
机译:这项研究调查了已用纤维增强聚合物(FRP)甲板改造的桁架桥的振动特性。这座桥位于纽约州开姆县韦尔斯堡的367号州际公路上。它是一个140英尺长(约42.7米长)的桁架结构,最初是用非复合混凝土甲板建造的。混凝土桥面被轻得多的纤维增强聚合物桥面所代替,以提高桥梁的额定承载能力。这项研究调查了桥面更换后桥梁的振动特性以及这些变化对结构性能的影响。结果表明,带有玻璃钢甲板的当前结构的基本频率比带有混凝土甲板的原始结构的基本频率高约45%。计算出的电桥基频与现场数据很好地相关。与混凝土桥面桥梁相比,FRP桥面桥梁在疲劳寿命估算中具有较低的恒载力,较高的活载力,较低的总力和较高的活载应力范围。还为混凝土和FRP甲板的每个选定成员确定了动态津贴。对于混凝土桥面桥梁,计算出的动态余量高于桥梁设计规范中使用的那些。 FRP甲板桥的动态津贴较低。

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