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101.
泥石流、滑坡等自然灾害的发生往往都造成人民生命财产和社会经济的巨大损失,严重危害着人类的生活,影响到社会、经济以及自然环境的持续发展。如何预防和降低这类灾害的损失,是人类社会,尤其是发展中国家面临的巨大问题。中国也是深受泥石流、滑坡等灾害影响严重的国家之一。2008年5月12日的汶川地震引发滑坡、崩塌众多,凸现了对这类灾害进行治理的紧迫性和必要性。文中通过介绍日本Sabo works的发展和目前应用情况,为中国泥石流、滑坡等灾害的防治工作提供有益借鉴 相似文献
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应急避难场所建设适宜与否,能否在灾时和灾后及时发挥应急避难功能,将直接决定居民的生命安全和财产损失情况。基于抗震防灾规划标准,本文以石家庄为例,从有效性、可达性、安全性三个层面构建了石家庄市应急避难场所适宜性评价指标体系。以GIS软件为数据处理平台,运用熵值权重法结合灰色关联分析的评价模型,对石家庄市应急避难场所进行适宜性评价。结果表明:石家庄市应急避难场所中有3处达到适宜等级,2处达到一般适宜等级,4处是不适宜等级。最后依据评价结果提出建设性建议。结果可检验石家庄已建成应急避难场所的布局合理性,为石家庄市新增避难场所的规划建设提供建议。 相似文献
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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 总被引:1,自引:0,他引:1
Tomohiro Kubo Yoshiaki Hisada Masahiro Murakami Fusako Kosuge Kohei Hamano 《Soil Dynamics and Earthquake Engineering》2011
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. 相似文献
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The coseismic surface rupture zone of the seismogenic fault of the MS7.1 Yushu earthquake includes three left-stepping main ruptures, striking 300°~320°, in general. An approximately 2km-long en echelon tension fissure zone was found at Longbao town. The main rupture in the northern part is about 16km long, about 9km long in the middle part, and about 7km long in the southern part, with a total length of 34km. Each of the main ruptures consists of a series of en echelon sub-ruptures represented by a series of compression bulges alternating with tension fissures or by en echelon fissures. The rupture at Changusi, the southernmost of the ruptures, is characterized by vertical displacement, with a value of 50cm. The rupture zone shows left-lateral strike-slip characteristics. The maximal horizontal slip is on the northern main rupture, with a value of 1.8m. 相似文献
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