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Status of structural health monitoring of long-span bridges in the United States

机译:美国大跨度桥梁结构健康监测的状况

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This paper gives an overview of ongoing research and development in the field of structural health monitoring technologies in the US, with application to long-span bridges. Specifically, this paper attempts to review various key structural health monitoring technologies, including sensor development, data processing, damage detection algorithms, data analysis and information processing. Several examples are cited from the aerospace, civil and mechanical communities. Monitoring of constructed systems are of considerable interest since the consequences of failure can have a significant effect on the society at large. For instance, consider the 1 100 major long-span bridges in the USA (those with spans of 100 m or longer), many are over 50 years old, and several notable ones are over 100 years old. These bridges fall outside the Standard Specifications issued by AASHTO (1998), and there is little generic experience related to maintaining their performance, especially after they age and/or following any damage. More than 800 of the long-span bridges in the National Bridge Inventory are classified as fracture-critical. It follows that structural health monitoring techniques may prove to be useful for maintaining and preserving this population of aging civil infrastructure. It is hoped that the following will stimulate additional discussion regarding the importance of structural health monitoring as an emerging research area for a variety of aerospace, civil and mechanical applications.
机译:本文概述了美国在结构健康监测技术领域中正在进行的研究和开发,并将其应用于大跨度桥梁。具体而言,本文试图回顾各种关键的结构健康监测技术,包括传感器开发,数据处理,损坏检测算法,数据分析和信息处理。航空航天,民用和机械界列举了几个例子。监视构建的系统非常重要,因为故障的后果会对整个社会产生重大影响。例如,以美国的1100座大型大跨度桥梁(跨度为100 m或更长)为例,许多桥梁已有50多年的历史,而一些著名桥梁已有100多年的历史。这些桥不属于AASHTO(1998)发布的标准规范,并且几乎没有与维护其性能有关的通用经验,尤其是在它们老化和/或遭受任何损坏之后。 《国家桥梁清单》中的800多座大跨度桥梁被列为严重断裂。随之而来的是,结构健康监测技术可能被证明对于维护和维护人口老化的民用基础设施非常有用。希望以下内容能激发有关结构健康监测作为各种航空,民用和机械应用的新兴研究领域的重要性的更多讨论。

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