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Temperature effects on the vertical movements of the Severn Suspension Bridge’s suspension cables measured by GNSS

机译:GNSS测量的温度对Severn悬索桥悬索垂直运动的影响

摘要

The use of GNSS for the deflection monitoring of large bridges has been an ongoing field of research for 20 years. The Severn Suspension Bridge, in the UK, has a main span length of 988 metres. Datasets were gathered in both March 2010 and July 2015 by placing GNSS antennas on the tops of the support towers, as well as on the suspension cables. The data were gathered over four days and three days respectively during these surveys. In addition to the GNSS data, weigh in motion data of the traffic loading, the temperature of the bridge’s steel work, and the air temperature and wind speed and direction at a number of locations were collected. In 2010, the temperature during the survey varied between 0.335ºC to 13.750ºC for the air temperature, and between 0.886ºC to 12.390ºC for the steel temperature. During the survey in 2015, the temperature for the air varied between 10.800ºC to 22.160ºC, and the steel temperature varied between 13.820ºC to 20.410ºC.udThis paper analyses the vertical movements at the mid span of the bridge’s suspension cable using the data from 2010 and also 2015. The vertical movements are due to a number of reasons. Firstly, the traffic flow will cause rapid changes in the height of the cable, of the order ofdecimetres due to changes in traffic loading over a time period of seconds or minutes. Secondly, the wind will also cause movements in the cable, but mainly in the horizontal direction. Vertical movements due to the vibrating nature of the cable will also be present, at a rate of 0.1Hz or so. Finally, the cable will expand and contract due to the change in temperature. This will take place over a period of tens of minutes. The relation between the antenna location in 2010 and 2015 are calculated against changes in temperature, and correlation between the movements are shown. The overall movements due to the change in temperature during the survey in 2010 can be shown to be of the order of decimetres, and similarly in 2015.udThe change in a bridge’s height, due to a change in temperature is an important parameter to be known. A bridge in the UK could experience changes in temperature from almost 30ºC to -10ºC in a period of a year during its lifetime. In other parts of the world, this differential could be even more. This could result in a very significant vertical movement of the bridge, which in turn could affect the clearance space under the bridge for passing ships. This type of movement tied with changing tides could result in large ships colliding with such bridges if the clearance is not fully understood.
机译:GNSS在大型桥梁挠度监测中的应用一直是20年来一直在进行的研究领域。英国的塞文吊桥的主跨长度为988米。通过将GNSS天线放置在支撑塔顶以及悬挂电缆上,在2010年3月和2015年7月收集了数据集。在这些调查期间,分别在四天和三天内收集了数据。除了GNSS数据外,还收集了交通负荷,桥梁钢结构的温度以及许多位置的气温,风速和风向的运动数据。在2010年,调查期间的温度在空气温度范围内介于0.335ºC至13.750ºC之间,在钢温度范围内介于0.886ºC至12.390ºC之间。在2015年的调查中,空气温度在10.800ºC至22.160ºC之间变化,钢的温度在13.820ºC至20.410ºC之间变化。 ud本文使用数据分析了桥梁悬索中跨的垂直运动从2010年到2015年。垂直运动有多种原因。首先,由于在几秒钟或几分钟的时间内流量负载的变化,流量将导致电缆高度的快速变化,达到数十米。其次,风也会引起电缆的运动,但主要是在水平方向上。由于电缆振动的原因,垂直运动也将以0.1Hz左右的速率出现。最后,电缆会由于温度变化而膨胀和收缩。这将持续数十分钟。根据温度变化计算出2010年和2015年天线位置之间的关系,并显示运动之间的相关性。可以看出,在2010年的调查中,温度变化引起的整体运动大约为十分之一,在2015年也是如此。 ud由于温度变化而引起的桥梁高度变化是一个重要的参数。众所周知。在英国的一座桥梁在其使用寿命期间,可能会在一年内经历从近30ºC到-10ºC的温度变化。在世界其他地区,这种差异可能更大。这可能会导致桥的非常显着的垂直运动,进而可能影响桥下的过船空间。如果对间隙没有完全了解,这种与潮汐变化有关的运动可能导致大型船舶与此类桥梁相撞。

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