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Wireless Network for Assessing Temperature Load of Large-Scale Structures Under Fire Hazards

机译:评估火灾隐患下大型结构温度负荷的无线网络

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摘要

While the construction of high-rise buildings has become popular in big cities, an average of over 15,000 structure fires in those buildings are being reported in the United States. Especially because the fire in a building can result in a failure or even the collapse of the structure, assessing its integrity during and after the fire is of importance. Thus, in this paper, a framework with temperature sensors using wireless communication technology has been proposed. Associated hardware and software are carefully chosen and developed to provide an easy and effective solution for measuring fire load on large-scale structures during a fire. With an autonomous measurement system enabled, the key functions of the framework have been validated in a fire testing laboratory, using a real-scale steel column subject to standard fire. Unlike existing solutions of wireless temperature networks, the proposed solution can provide the user definable sampling frequencies based on the surface temperature and the means to assess the load redistribution of the structure due to fire loading in real-time. The results of the study show the great potential of using the developed framework for monitoring fire in a structure, allowing more accurate estimations of fire load in the design criteria, and advancing fire safety engineering.
机译:尽管高层建筑的建造在大城市中已变得很流行,但据报道,在美国,这些建筑物中平均发生了超过15,000起建筑火灾。尤其是因为建筑物中的火灾可能会导致结构故障甚至倒塌,因此在火灾期间和之后评估其完整性非常重要。因此,在本文中,提出了使用无线通信技术的具有温度传感器的框架。精心选择和开发了相关的硬件和软件,以提供一种简单有效的解决方案,用于在火灾期间测量大型结构上的火灾负荷。启用自动测量系统后,框架的关键功能已在火灾测试实验室中进行了验证,使用的是经受标准火灾的实型钢柱。与现有的无线温度网络解决方案不同,所提出的解决方案可以基于表面温度和实时评估火荷载引起的结构荷载再分配的方法,为用户提供可定义的采样频率。研究结果表明,使用开发的框架来监视建筑物中的火灾,允许在设计标准中更准确地估算火灾负荷并推进消防安全工程方面,具有巨大的潜力。

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