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Real-time earthquake monitoring for tsunami warning in the Indian Ocean and beyond

机译:海啸及以外海啸警报的实时地震监测

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The Mw = 9.3 Sumatra earthquake of 26 December 2004 generated a tsunami that affected the entire Indian Ocean region and caused approximately 230 000 fatalities. In the response to this tragedy the German government funded the German Indonesian Tsunami Early Warning System (GITEWS) Project. The task of the GEOFON group of GFZ Potsdam was to develop and implement the seismological component. In this paper we describe the concept of the GITEWS earthquake monitoring system and report on its present status. The major challenge for earthquake monitoring within a tsunami warning system is to deliver rapid information about location, depth, size and possibly other source parameters. This is particularly true for coast lines adjacent to the potential source areas such as the Sunda trench where these parameters are required within a few minutes after the event in order to be able to warn the population before the potential tsunami hits the neighbouring coastal areas. Therefore, the key for a seismic monitoring system with short warning times adequate for Indonesia is a dense real-time seismic network across Indonesia with densifications close to the Sunda trench. A substantial number of supplementary stations in other Indian Ocean rim countries are added to strengthen the teleseismic monitoring capabilities. The installation of the new GITEWS seismic network – consisting of 31 combined broadband and strong motion stations – out of these 21 stations in Indonesia – is almost completed. The real-time data collection is using a private VSAT communication system with hubs in Jakarta and Vienna. In addition, all available seismic real-time data from the other seismic networks in Indonesia and other Indian Ocean rim countries are acquired also directly by VSAT or by Internet at the Indonesian Tsunami Warning Centre in Jakarta and the resulting "virtual" network of more than 230 stations can jointly be used for seismic data processing. The seismological processing software as part of the GITEWS tsunami control centre is an enhanced version of the widely used SeisComP software and the well established GEOFON earthquake information system operated at GFZ in Potsdam (http://geofon.gfz-potsdam.de/db/eqinfo.php). This recently developed software package (SeisComP3) is reliable, fast and can provide fully automatic earthquake location and magnitude estimates. It uses innovative visualization tools, offers the possibility for manual correction and re-calculation, flexible configuration, support for distributed processing and data and parameter exchange with external monitoring systems. SeisComP3 is not only used for tsunami warning in Indonesia but also in most other Tsunami Warning Centres in the Indian Ocean and Euro-Med regions and in many seismic services worldwide.
机译:2004年12月26日的MW = 9.3苏门答腊地震产生了影响整个印度洋地区的海啸,并造成了大约230 000人死亡。在对这场悲剧的回应中,德国政府资助了德国印度尼西亚海啸预警系统(Gitews)项目。 GFZ Potsdam的Geofon集团的任务是发展和实施地震组分。在本文中,我们描述了Gitews地震监测系统的概念和关于其现状的报告。在海啸预警系统内发生地震监测的主要挑战是提供有关位置,深度,大小和可能其他源参数的快速信息。对于诸如Sunda沟槽的潜在源区域附近的海岸线尤其如此,其中在事件之后几分钟内需要这些参数,以便能够在潜在的海啸击中邻近的沿海地区之前。因此,对印度尼西亚充足的警告时间的地震监测系统的关键是印度尼西亚的密集实时地震网络,靠近Sunda沟槽的致密化。添加了其他印度洋境外领域的大量补充车站,以加强Telesismic监测能力。在印度尼西亚的这21个站点中,由31个组合的宽带和强大运动站组成的新Gityws地震网络 - 差不多完成。实时数据收集正在使用雅加达和维也纳的集线器私有VSAT通信系统。此外,来自印度尼西亚和其他印度海洋边缘国家的其他地震网络的所有可用地震实时数据也是由VSAT或互联网在雅加达的印度尼西亚海啸警示中心获得的,由此产生的“虚拟”网络超过230个站可以共同用于地震数据处理。作为Gitews海啸控制中心的一部分的地震处理软件是广泛使用的SEISCOMP软件的增强版本,并在Potsdam的GFZ运营的良好的地理区域信息系统(http://geofon.gfz-potsdam.de/db/ eqinfo.php)。这最近开发的软件包(SEISCOMP3)可靠,快速,可提供全自动地震定位和幅度估计。它采用创新可视化工具,提供了手动校正和重新计算,灵活配置,对分布式处理和数据和参数交换以及外部监控系统的可能性。 Seiscomp3不仅用于印度尼西亚的海啸警告,而且在印度洋和欧洲医学区的大多数其他海啸警告中心以及全球许多地震服务中。

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