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Engineered Wood in Cold Climate - Application to Monitoring of a new Swedish Suspension Bridge

机译:冷气候中的工程木材 - 用于监控新的瑞典悬架桥

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Engineered wood is increasingly used in large structures in Europe, though little is known of its behavior in cold climate. This paper presents the structural health monitoring (SHM) system of a newly built suspension bridge with a deck of glulam timber as well as a bond stability study regarding cold climate performance of engineered wood. The bridge is located in Skelleftea in northern Sweden, and it connects two parts of the city situated on opposite shores of the Skelleftea river. In this ongoing study of the timber-bridge, a structural health monitoring system is employed to verify structural design and long-term performance. This 130 m-span bridge is monitored using GNSS receivers, MEMS accelerometers, laser positioning systems, wireless moisture content sensors, strain gauges and weather stations. Data from the monitoring systems is analyzed regarding accuracy, complexity, costs and reliability for long time use. Engineered wood application in bridges, sports centers and timber buildings are discussed. Bond stability of glulam structures in cold climate is also examined in a range of experiments ranging from small glued wood joints to full size glulam bridge performance over time. From an engineered wood material point of view, the study is relevant to cold regions such as Scandinavia, Canada, Alaska, Russia, and the northern parts of China and Japan etc. The engineered wood constructions in these areas will be exposed to low temperature in a quite long period each year. The goal is to determine how engineered wood behaves when exposed to temperatures between 20°C to -60°C.
机译:工程木材越来越多地用于欧洲的大型结构,但很少众所周知其在寒冷气候中的行为。本文介绍了一种新建悬挂桥的结构健康监测(SHM)系统,具有胶石木材甲板,以及关于工程木材冷气候性能的粘合稳定性研究。这座桥位于瑞典北部的Skelleftea,它连接了位于Skelleftea River的对岸海岸的城市。在对木材桥的这种持续研究中,采用了结构健康监测系统来验证结构设计和长期性能。使用GNSS接收器,MEMS加速度计,激光定位系统,无线湿度含量传感器,应变计和气象站监测该130个M跨度桥。分析来自监控系统的数据,了解了很长一段时间的准确性,复杂性,成本和可靠性。讨论了桥梁,体育中心和木材建筑的工程木材应用。在一系列实验中还检查了冷气候中胶蛋白结构的粘结稳定性,该实验范围从小胶合木接头到全尺寸的胶水桥接性能随着时间的推移。从工程化的木质材料的角度来看,该研究与斯堪的纳维亚,加拿大,阿拉斯加,俄罗斯等寒冷地区有关,中国和日本的北部地区等。这些区域的工程木材结构将暴露在低温下每年很长一段时间。目标是确定工程木材在暴露于20°C至-60°C之间的温度时如何表现。

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