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Development and Evaluation of a Seismic Monitoring System for Building Interiors—Part I: Experiment Design and Results

机译:建筑物内部地震监测系统的开发和评估-第一部分:实验设计和结果

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The advent of high-speed, lightweight, and durable sensor technologies opens new possibilities for field monitoring applications. In particular, under natural or man-made loading conditions, applying these new technologies to the monitoring of building interiors may substantially help rescue and reconnaissance crews during postevent evaluations. To test such a methodology, in this paper, we develop a specialized network of conventional analog and digital (camera) sensors and use them in monitoring nonstructural components subjected to vibration loading within a demonstration building structure. A full-scale vibration experiment is conducted with a research team from the University of California, Los Angeles, on a vacant structure damaged during the 1994 Northridge Earthquake. The building of interest is a four-story office building located in Sherman Oaks, CA. The investigation has two primary objectives: 1) to characterize the seismic response of an important class of equipment and building contents and 2) to study the applicability of tracking the response of these equipment and contents using arrays of image-based monitoring systems. In this paper, we describe the experimental field setup, including the analog and camera sensor systems and the networking hardware used to collect data, present the testing matrix, and sample the processed analog data results. We summarize the difficulties encountered in the field implementation of these types of monitoring systems while highlighting their potential benefits. In a companion paper, we present the analysis methodology applied to the image sequences collected and summarize needs for future work if such systems are to be robustly employed in the field.
机译:高速,轻便和耐用的传感器技术的出现为现场监控应用提供了新的可能性。特别是在自然或人为的负载条件下,将这些新技术应用于建筑物内部监控可能会在事后评估过程中极大地帮助救援人员和侦察人员。为了测试这种方法,在本文中,我们开发了一个由传统的模拟和数字(相机)传感器组成的专用网络,并将其用于监视示范建筑结构中承受振动载荷的非结构组件。加利福尼亚大学洛杉矶分校的一个研究小组对1994年Northridge地震中受损的空置结构进行了全面的振动实验。感兴趣的建筑物是位于加州谢尔曼奥克斯(Sherman Oaks)的四层办公楼。该调查有两个主要目标:1)表征一类重要设备和建筑物内容物的地震响应,以及2)研究使用基于图像的监视系统阵列跟踪这些设备和内容物的响应的适用性。在本文中,我们描述了实验现场设置,包括模拟和摄像机传感器系统以及用于收集数据,提供测试矩阵以及对处理后的模拟数据结果进行采样的网络硬件。我们总结了在实地实施这些类型的监视系统时遇到的困难,同时重点介绍了它们的潜在好处。在随附的论文中,我们介绍了适用于所收集图像序列的分析方法,并总结了如果要在野外稳固地使用此类系统,则需要对将来的工作进行总结。

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