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Performance monitoring of timber structures in underground construction using wireless SmartPlank

机译:使用无线SmartPlank的地下建筑木材结构性能监控

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Although timber structures have been extensively used in underground temporary supporting system, their actual performance is poorly understood, resulting in potentially conservative and over-engineered design. In this paper, a novel wireless sensor technology, SmartPlank, is introduced to monitor the field performance of timber structures during underground construction. It consists of a wooden beam equipped with a streamlined wireless sensor node, two thin foil strain gauges and two temperature sensors, which enables to measure the strain and temperature at two sides of the beam, and to transmit this information in real-time over an IPv6 (6LowPan) multi-hop wireless mesh network and Internet. Four SmartPlanks were deployed at the London Underground's Tottenham Court Road (TCR) station redevelopment site during the Stair 14 excavation, together with seven relay nodes and a gateway. The monitoring started from August 2013, and will last for one and a half years until the Central Line possession in 2015. This paper reports both the short-term and long-term performances of the monitored timber structures. The grouting effect on the short-term performance of timber structures is highlighted; the grout injection process creates a large downward pressure on the top surface of the SmartPlank. The short and long term earth pressures applied to the monitored structures are estimated from the measured strains, and the estimated values are compared to the design loads.
机译:尽管木结构已广泛用于地下临时支撑系统中,但对它们的实际性能了解甚少,从而导致设计可能过于保守和过度设计。在本文中,介绍了一种新颖的无线传感器技术SmartPlank,用于监视地下建筑过程中木材结构的现场性能。它由一个装有精简无线传感器节点的木梁,两个薄箔应变仪和两个温度传感器组成,可以测量梁两侧的应变和温度,并通过IPv6(6LowPan)多跳无线网状网络和Internet。在“楼梯14”的挖掘过程中,在伦敦地铁的托特纳姆法院路(TCR)站重建现场部署了四个SmartPlanks,以及七个中继节点和一个网关。监测从2013年8月开始,持续一年半,直到2015年拥有中线为止。本文报告了被监测木材结构的短期和长期性能。突出了灌浆对木材结构短期性能的影响;注浆过程会在SmartPlank的顶表面上产生很大的向下压力。根据测得的应变估算施加到受监控结构上的短期和长期土压力,并将估算值与设计载荷进行比较。

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