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Application of an earthquake early warning system and a real-time strong motion monitoring system in emergency response in a high-rise building

机译:地震预警系统和实时强震动监测系统在高层建筑应急响应中的应用

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We apply a combination of earthquake early warning system (EEWS) and real-time strong motion monitoring system (RSMS) to emergency response for a high-rise building; The Kogakuin University has a 29-story high-rise building in Shinjuku Ward, Tokyo. The proposed strategy is based on the Plan, Do, Check, Action (PDCA) Cycle to brush up the systems and the users: in the "Plan" stage, we apply EEWS and RSMS to the building, where EEWS predicts not only short-period strong ground motions but also long-period ground motions [1]. The system is built into a building announcement system, an emergency elevator control system, and an email message system, which quickly send emails to the emergency response team. Meanwhile, RSMS provides information on seismic intensities at each floor of the building via the web browser in real time using the existing network in the building. In addition, the building response and structural damage can be estimated based on this information. The network system is impervious to the earthquake damage, because the network cable has extra length, there is, however, possible that a network system does not work due to power outage. Thus, we develop the network system that has uninterruptible power-supply system (UPS) and apply it to EEWS and RSMS. The high-rise building has the emergency call units to the security control center in the building on every floor. The emergency call line, however, will be busy promptly, because it is able to use only one line. Therefore, we installed IP telephone which uses the network system on main floors. UPS will work about 30 min after a major earthquake, it is supposed to be enough time for gathering the damage information about the building during initial response. In the "Do" stage, we prepare emergency response instruction manuals and educate the faculty members and students to carry out promptly emergency response. In the "Check" stage, the validity of the proposed systems are verified by carrying out an earthquake drill in an actual high-rise building. The earthquake drill confirmed that our proposed approach is valid. In the final "Action" stage, we improve these systems and emergency response manual and educate people in the building how to use effectively these systems.
机译:我们将地震预警系统(EEWS)和实时强震动监测系统(RSMS)结合用于高层建筑的应急响应;小学院大学在东京都新宿区有一栋29层的高层建筑。提议的策略基于计划,执行,检查,采取行动(PDCA)周期,以梳理系统和用户:在“计划”阶段,我们将EEWS和RSMS应用于建筑物,其中EEWS不仅预测周期强烈的地面运动,但也有长期的地面运动[1]。该系统内置于建筑物公告系统,紧急电梯控制系统和电子邮件系统中,这些系统可将电子邮件快速发送给紧急响应小组。同时,RSMS使用建筑物中的现有网络通过网络浏览器实时提供建筑物各层的地震烈度信息。另外,可以基于该信息来估计建筑物响应和结构破坏。网络系统不受地震破坏的影响,因为网络电缆具有额外的长度,但是由于断电,网络系统可能无法正常工作。因此,我们开发了具有不间断电源系统(UPS)的网络系统,并将其应用于EEWS和RSMS。高层建筑在每层楼都有紧急呼叫单元,该紧急呼叫单元通往建筑物中的安全控制中心。但是,紧急呼叫线路将迅速忙碌,因为它只能使用一条线路。因此,我们在主要楼层安装了使用网络系统的IP电话。 UPS将在发生大地震后大约30分钟工作,应该有足够的时间在初始响应期间收集有关建筑物的损坏信息。在“执行”阶段,我们准备了应急响应指导手册,并教育教职员工和学生及时进行应急响应。在“检查”阶段,通过在实际的高层建筑中进行地震演习来验证所提出系统的有效性。地震演习证实了我们提出的方法是有效的。在最后的“行动”阶段,我们将改进这些系统和应急响应手册,并教育建筑物中的人们如何有效使用这些系统。

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