Lead Time for Cities of Northern India by Using Multiparameter EEW Algorithm

IF 1 Q3 GEOCHEMISTRY & GEOPHYSICS
R. Bhardwaj, M. Sharma
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引用次数: 3

Abstract

Earthquake early warning (EEW) is considered one of the important real-time earthquake damage mitigation measures. The presence of seismogenic sources generating high seismicity in Himalayas and the cities of concern lying at appropriate distances makes Northern India a perfect case to be monitored using EEW systems. In the present study, an attempt has been made to estimate the lead times for Northern Indian cities for issuing early warning by using the EEW system deployed by IIT Roorkee in Central Himalayas. The instrumentation deployed at 100 locations between Uttarkashi and Chamoli has been used to estimate the lead time at six cities. The estimated lead time includes the time to reach S-wave after subtraction of the sum of P-wave arrival time at the station, time taken by EEW algorithm, transmission and processing delay. The study reveals that for Dehradun, Hardwar, Roorkee, Muzaffarnagar, Meerut, and Delhi the minimum calculated lead time is 5, 11, 20, 35, and 68 sec while the maximum lead time is 37, 36, 47, 59, and 90 sec, respectively. Such larger estimated lead times to these densely populated cities show that EEW can successfully work as one of the important real-time earthquake disaster reduction measures in Northern India.
基于多参数EEW算法的印度北部城市交付周期
地震预警被认为是一种重要的实时地震减灾措施。喜马拉雅山脉和适当距离的关注城市中产生高地震活动的发震源的存在,使印度北部成为使用EEW系统监测的完美案例。在本研究中,试图通过使用IIT Roorkee在喜马拉雅山脉中部部署的EEW系统来估计印度北部城市发布预警的准备时间。部署在Uttarkashi和Chamoli之间100个地点的仪器已用于估计六个城市的交付周期。估计的提前时间包括在减去到达站点的P波到达时间、EEW算法所花费的时间、传输和处理延迟之和之后到达S波的时间。研究表明,对于Dehradun、Hardwar、Roorkee、Muzaffarnagar、Meerut和Delhi,计算的最小提前期分别为5、11、20、35和68秒,而最大提前期则分别为37、36、47、59和90秒。这些人口稠密城市的预计交付周期如此之大,表明EEW可以成功地作为印度北部重要的实时地震减灾措施之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Geophysics
International Journal of Geophysics GEOCHEMISTRY & GEOPHYSICS-
CiteScore
1.50
自引率
0.00%
发文量
12
审稿时长
21 weeks
期刊介绍: International Journal of Geophysics is a peer-reviewed, Open Access journal that publishes original research articles as well as review articles in all areas of theoretical, observational, applied, and computational geophysics.
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