首页> 外文期刊>Scientific reports. >Rich observations of local and regional infrasound phases made by the AlpArray seismic network after refinery explosion
【24h】

Rich observations of local and regional infrasound phases made by the AlpArray seismic network after refinery explosion

机译:在炼油厂爆炸后,Alparray地震网络制作的地方和区域基础阶段的丰富观察

获取原文
           

摘要

On September 1st, 2018 a devastating explosion occurred on the facility of an oil refinery near Ingolstadt, Germany. We analyzed data of 400 permanent and temporary seismic stations and find strong seismo-acoustic signals on more than 80 seismic stations. The infrasound signal is detectable on seismic stations within 10-350 km from the source, with 40 km spatial resolution. We confirm the explosion site both by the seismic and seismo-acoustic arrivals. Apart from seismic P- and S-waves, we identified three separate acoustic phases with celerities of 332, 292, and 250 m/s, respectively, each of which has a particular spatial pattern of positive detections at the ground. Seismo-acoustic amplitudes are strongly affected by the type of seismic installation but still allow insight into regional infrasound attenuation. Our observations likely represent tropospheric, stratospheric, and thermospheric phases. We performed 3D acoustic ray tracing to validate our findings. Tropospheric and thermospheric arrivals are to some extent reproduced by the atmospheric model. However, ray tracing does not predict the observed acoustic stratospheric ducts. Our findings suggest that small-scale variations had considerable impact on the propagation of infrasound generated by the explosion.
机译:2018年9月1日,Ingolstadt,德国Ingolstadt附近的石油炼油厂的设施发生了毁灭性的爆炸。我们分析了400个永久性和临时地震站的数据,并在80多个地震车站上找到强大的地震声信号。距离源10-350千米内的地震站的射击信号可检测到40公里的空间分辨率。我们通过地震和地震声学抵达确认爆炸部位。除了地震p和S波之外,我们将三个单独的声学相分别鉴定为332,292和250m / s的三个单独的声学阶段,每个各自的均具有特定的地面阳性检测空间模式。 Seismo - 声学振幅受到地震装置类型的强烈影响,但仍然允许深入了解区域基础衰减。我们的观察可能代表了对流层,平流和热散之间阶段。我们执行了3D声学射线跟踪以验证我们的研究结果。对流层和热散,在某种程度上是由大气模型转换的。然而,射线跟踪不能预测观察到的声学平流层管道。我们的研究结果表明,小规模的变化对爆炸产生的基础繁殖具有相当大的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号