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Viaduct of Archidona: A 3150 m long continuous composite deck on a High Speed Railway Bridge

机译:阿奇多纳高架桥:高速铁路桥上3150 m长的连续复合甲板

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The Viaduct of Archidona is included in the High Speed Railway Line between Antequera andGranada, in the province of Málaga (South of Spain). This Railway Bridge [1] [2] has a deck with atotal length of 3.150 m, having expansion joints just at the abutments. It’s, as far as we know, thecontinuous deck with the highest length between joints built up to this moment. It’s also placed inan area of relevant seismic actions and difficult geotechnical conditions.The deck has been designed with a composite cross section (twin-girder solution), with constantdepth and typical span length of 50 m, with a similar typology to “Arroyo de las Piedras” Viaduct,the first composite High Speed Railway Bridge in Spain. This typology has been chosen to reducelongitudinal movements of the structure due to thermal-rheological actions, and to minimizeseismic support forces, as the composite deck has less mass than a concrete one.The design of the substructure has been conditioned by the seismic resistant strategy and the needof allowing the important relative longitudinal displacements of the deck due to thermal andrheological actions on piers and at abutments. During design and construction, special care wastaken to ease and speed up construction of repetitive elements, which is a key factor in a very longstructure. It was made full use of precast construction and high quality steel fabrication.Some interesting issues regarding construction (control of geometry for the placing of bearings;follow-up control measures during assembling of the steel segments; not very usual precastsolutions; etc.) are also explained in the presentation.
机译:阿基多纳高架桥包含在马拉加省(西班牙南部)的安特克拉和格拉纳达之间的高速铁路线上。该铁路桥梁[1] [2]的甲板总长为3.150 m,在桥台处有伸缩缝。据我们所知,这是连续的甲板,到目前为止,节点之间的长度最大。它也放置在相关地震作用和困难的岩土条件区域。甲板设计为具有复合截面(双箱梁解决方案),深度恒定,典型跨度为50 m,与“ Arroyo de las”相似Piedras高架桥,西班牙的第一座复合高速铁路桥。选择这种类型的类型是为了减少结构由于热流变作用而产生的纵向移动,并最大程度地减小地震支撑力,因为复合材料甲板的质量小于混凝土甲板。下部结构的设计受抗震策略和由于码头和桥台上的热流变作用,需要允许甲板重要的相对纵向位移。在设计和施工过程中,采取了特殊措施来减轻和加快重复元件的施工,这是非常长的结构中的关键因素。它充分利用了预制结构和高质量的钢结构,在结构上存在一些有趣的问题(控制轴承放置的几何形状;在组装钢段时采取后续控制措施;不是很常见的预制解决方案等)。在演示中也进行了解释。

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