globalchange  > 影响、适应和脆弱性
DOI: 10.1016/j.epsl.2018.08.034
Scopus记录号: 2-s2.0-85053396519
论文题名:
Seismo-acoustic signals of the Baumgarten (Austria) gas explosion detected by the AlpArray seismic network
作者: Schneider F.M.; Fuchs F.; Kolínský P.; Caffagni E.; Serafin S.; Dorninger M.; Bokelmann G.; AlpArray Working Group
刊名: Earth and Planetary Science Letters
ISSN: 0012821X
出版年: 2018
卷: 502
起始页码: 104
结束页码: 114
语种: 英语
英文关键词: accident ; AlpArray ; explosion ; infrasound ; seismo-acoustic coupling
Scopus关键词: Accidents ; Acoustic waves ; Explosions ; Gases ; Seismology ; Troposphere ; Waveguides ; Weather forecasting ; Acoustic coupling ; AlpArray ; Anthropogenic sources ; Broad-band seismic stations ; European center for medium-range weather forecasts ; Forensic investigation ; Infrasound ; Temperature inversions ; Signal detection ; accident ; acoustic wave ; detection method ; explosion ; natural gas ; seismic data ; seismic wave ; spatial distribution ; Austria
英文摘要: On December 12, 2017 a devastating release and combustion of gas occurred at the Baumgarten gas hub in Eastern Austria, which is a major European distribution node for natural gas. We have detected the resulting seismo-acoustic signal on permanent and temporary broadband seismic stations at distances between 30 and 175 km from the gas hub, most prominently in the 2–4 Hz range. Two distinct phase arrivals correspond to acoustic waves traveling through the troposphere and stratosphere. The passing of a cold front shortly before the explosion led to several temperature inversions at low altitude, and acoustic waveguides within the troposphere that facilitated our infrasound detections at distances as close as 50 km from the source, in addition to the commonly observed stratospheric reflections. 3D acoustic raytracing using temperature and wind velocities from the HRES (high-resolution) forecast model of the European Center for Medium Range Weather Forecast (ECMWF) has allowed to precisely relate the spatial distribution of our detections with calculated surface bounce points of infrasound rays. This has provided a precise and independent estimate of the time of the accident, to be used in forensic investigations. In addition to the acoustic signal we find evidence for weak seismic phases on the stations closest to the gas hub, yet the sudden release of gas above the surface generated acoustic waves more effectively than seismic waves. After the first explosion signal, we also detect a prolonged coda of elevated noise, which is probably due to ongoing gas release and/or the fire from the escaping gas. Systematic analyses like the one conducted here are of great value to detect, locate, and characterize anthropogenic sources at a regional scale. © 2018 The Author(s)
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/109641
Appears in Collections:影响、适应和脆弱性
气候变化事实与影响

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作者单位: Department of Meteorology and Geophysics, University of Vienna, Austria; Helmholtz Centre Potsdam – GFZ German Research Centre for Geosciences, Potsdam, Germany; Department of Atmospheric and Cryospheric Sciences, University of Innsbruck, Innsbruck, Austria

Recommended Citation:
Schneider F.M.,Fuchs F.,Kolínský P.,et al. Seismo-acoustic signals of the Baumgarten (Austria) gas explosion detected by the AlpArray seismic network[J]. Earth and Planetary Science Letters,2018-01-01,502
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