Experiments on the application of the infrasound method of remote monitoring of snow avalanches in the Khibiny Mountains

Visual slope observations are still the main method of avalanche detection. As a result, avalanche statistics, especially in remote mountain areas, remain incomplete. Like earthquake forecasting, the avalanche prognosis is a complex task that requires a complete set of data on avalanche activity in...

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Main Authors: A. V. Fedorov, I. S. Fedorov, V. E. Asming, A. Yu. Motorin
Format: Article
Language:Russian
Published: Nauka 2025-05-01
Series:Лëд и снег
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Online Access:https://ice-snow.igras.ru/jour/article/view/1511
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author A. V. Fedorov
I. S. Fedorov
V. E. Asming
A. Yu. Motorin
author_facet A. V. Fedorov
I. S. Fedorov
V. E. Asming
A. Yu. Motorin
author_sort A. V. Fedorov
collection DOAJ
description Visual slope observations are still the main method of avalanche detection. As a result, avalanche statistics, especially in remote mountain areas, remain incomplete. Like earthquake forecasting, the avalanche prognosis is a complex task that requires a complete set of data on avalanche activity in the region and meteorologicalobservations. To begin this process, it is necessary to create a remote all-weather automated avalanche monitoring system. The Kola Branch of the Geophysical Service of the Russian Academy of Sciences initiateddeveloping a hardware and software package for the avalanche monitoring. The main function of this complex is the registration of seismic and infrasound signals. Over the last five years, a series of experiments have been conducted in the Khibiny Mountains aimed at registration of forced avalanche releases carried out by the avalanche safety service. During the experiments, signals produced by avalanches were recorded using a broadband seismometer and an array of three low-frequency microphones installed at varying distances from an avalanche source. The results obtained demonstrated the high recording capability of the infrasound method, but also revealed problems associated with the use of the seismic method. Technical solutions have been found and prototypes of software for automated detection of target signals have been created. Thus, the experimental complex to monitor avalanche activity in the Khibiny Mountains has been established. The operation of the complex has shown that infrasound signals generated by the movement of snow mass on the mountain slope allow detecting avalanches with a volume of about 5 thousand m3 at a distance of 7 km. The smallest recorded avalanche had a volume of 0.5 thousand m3 and was located in 2.5 km away from the station.
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spelling doaj-art-01abdf8d5b8b4f77ad87121f46db1f702025-08-20T04:00:25ZrusNaukaЛëд и снег2076-67342412-37652025-05-01651819210.31857/S2076673425010064915Experiments on the application of the infrasound method of remote monitoring of snow avalanches in the Khibiny MountainsA. V. Fedorov0I. S. Fedorov1V. E. Asming2A. Yu. Motorin3Kola Branch of Geophysical Survey of RASKola Branch of Geophysical Survey of RASKola Branch of Geophysical Survey of RASKola Branch of Geophysical Survey of RASVisual slope observations are still the main method of avalanche detection. As a result, avalanche statistics, especially in remote mountain areas, remain incomplete. Like earthquake forecasting, the avalanche prognosis is a complex task that requires a complete set of data on avalanche activity in the region and meteorologicalobservations. To begin this process, it is necessary to create a remote all-weather automated avalanche monitoring system. The Kola Branch of the Geophysical Service of the Russian Academy of Sciences initiateddeveloping a hardware and software package for the avalanche monitoring. The main function of this complex is the registration of seismic and infrasound signals. Over the last five years, a series of experiments have been conducted in the Khibiny Mountains aimed at registration of forced avalanche releases carried out by the avalanche safety service. During the experiments, signals produced by avalanches were recorded using a broadband seismometer and an array of three low-frequency microphones installed at varying distances from an avalanche source. The results obtained demonstrated the high recording capability of the infrasound method, but also revealed problems associated with the use of the seismic method. Technical solutions have been found and prototypes of software for automated detection of target signals have been created. Thus, the experimental complex to monitor avalanche activity in the Khibiny Mountains has been established. The operation of the complex has shown that infrasound signals generated by the movement of snow mass on the mountain slope allow detecting avalanches with a volume of about 5 thousand m3 at a distance of 7 km. The smallest recorded avalanche had a volume of 0.5 thousand m3 and was located in 2.5 km away from the station.https://ice-snow.igras.ru/jour/article/view/1511snow avalanchesinfrasoundmonitoringkhibiny mountains
spellingShingle A. V. Fedorov
I. S. Fedorov
V. E. Asming
A. Yu. Motorin
Experiments on the application of the infrasound method of remote monitoring of snow avalanches in the Khibiny Mountains
Лëд и снег
snow avalanches
infrasound
monitoring
khibiny mountains
title Experiments on the application of the infrasound method of remote monitoring of snow avalanches in the Khibiny Mountains
title_full Experiments on the application of the infrasound method of remote monitoring of snow avalanches in the Khibiny Mountains
title_fullStr Experiments on the application of the infrasound method of remote monitoring of snow avalanches in the Khibiny Mountains
title_full_unstemmed Experiments on the application of the infrasound method of remote monitoring of snow avalanches in the Khibiny Mountains
title_short Experiments on the application of the infrasound method of remote monitoring of snow avalanches in the Khibiny Mountains
title_sort experiments on the application of the infrasound method of remote monitoring of snow avalanches in the khibiny mountains
topic snow avalanches
infrasound
monitoring
khibiny mountains
url https://ice-snow.igras.ru/jour/article/view/1511
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