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URBAN EARTHQUAKE RAPID RESPONSE AND EARLY WARNING SYSTEMS [复制链接]

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只看楼主 倒序阅读 使用道具 楼主  发表于: 2009-04-28
Technological advances in seismic instrumentation and telecommunication permit the implementation z$NLFJvy_-  
of real-time rapid response and early warning systems. During large earthquakes, such systems are uRIr,U^  
capable of providing from a few seconds to a few tens of seconds of warning before the arrival of ?m6E@.{  
strong ground shaking and enable quick reports about the damage estimates to determine where y~fy0P:T  
emergency response is most needed. An earthquake early warning and rapid response system can ;b^@o,=  
provide the critical information needed to minimize loss of lives and property, and to direct rescue __M}50^  
operations As part of the preparations for the future earthquake in Istanbul a Rapid Response and Early e_I 8Jj4  
Warning system in the metropolitan area is in operation. For the Early Warning system ten strong 7o<RvM  
motion stations were installed as close as possible to the fault zone. Continuous on-line data from these vuf|2!kh/  
stations via digital radio modem provide early warning for potentially disastrous earthquakes. ;/.ZYTD  
Considering the complexity of fault rupture and the short fault distances involved, a simple and robust P_gQ-pF.  
Early Warning algorithm, based on the exceedance of specified threshold time domain amplitude >Vvc55z  
levels is implemented. The encrypted early warning signals will be communicated to the respective 3A5" %  
end users through a “service provider” company. The users of the early warning signal will be power Evc 9k  
and gas companies, nuclear research facilities, critical chemical factories, subway system and several ;g9+*$Gw  
high-rise buildings. Depending on the location of the earthquake (initiation of fault rupture) and the sXWMXQ3  
recipient facility the alarm time can be as high as about 8s. For the rapid response system one hundred ;#due  
18 bit-resolution strong motion accelerometers were placed in quasi-free field locations (basement of qA30G~S  
small buildings) in the populated areas of the city, within an area of approximately 50x30km, to ,x/j&S9!  
constitute a network that will enable early damage assessment and rapid response information after a ~EBZlTN  
damaging earthquake. Early response information is achieved through fast acquisition and analysis of "'Q:%_;  
processed data obtained from the network. A shake map and damage distribution map (using aggregate *K;~V  
building inventories and fragility curves) will be automatically generated using the algorithm ]x|sT Kv2  
developed for this purpose. The shake and damage maps will be conveyed to the governor’s and 2+.m44>Ti  
mayor’s offices, fire, police and army headquarters within 3 minutes using radio modem and GPRS k8TMdWW  
communication
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