Multi-level magma storage zones feeding the 2023–2024 eruption sequence at Shiveluch volcano (Kamchatka): petrologic and seismic
constraints (2026)
Gorbach Natalia, Shakirova Alexandra, Chemarev Andrey Multi-level magma storage zones feeding the 2023–2024 eruption sequence at Shiveluch volcano (Kamchatka): petrologic and seismic
constraints // Copernicus Meetings, EGU26-14864. Copernicus Meetings, EGU General Assembly. 2026. https://doi.org/10.5194/egusphere-egu26-14684
Multiparametric Monitoring of the Avachinsky Volcano to Ensure the Safety of Densely Populated Areas of Kamchatka (2025)
Ozerov A.Yu., Bakhmatova Ya.A., Melnikov D.V., Nuzhdaev I.A., Frolov V.I. Multiparametric Monitoring of the Avachinsky Volcano to Ensure the Safety of Densely Populated Areas of Kamchatka // Journal of Volcanology and Seismology. 2025. Vol. 19. № S1. P. S72-S74. https://doi.org/10.1134/S0742046325700551
Аннотация
Avachinsky volcano (Kamchatka, Russia) is an active andesite volcano that poses a significant threat to nearby settlements. There is a high probability of it erupting in the near future. A project to create a pilot volcanological research ground for monitoring the state of the volcano and forecasting eruption scenarios is presented.
Multiple edifice failures, debris avalanches and associated eruptions in the Holocene history of Shiveluch volcano, Kamchatka, Russia (1999)
Belousov Alexander, Belousova Marina, Voight Barry Multiple edifice failures, debris avalanches and associated eruptions in the Holocene history of Shiveluch volcano, Kamchatka, Russia // Bulletin of Volcanology. 1999. Vol. 61. № 5. P. 324-342. doi:10.1007/s004450050300
Multipurpose Studies of the Karymsky Volcano during the Inter-Eruptive Period from August 14–28, 2024 (2025)
Bakhmatova Ya.A., Melnikov D.V., Kalacheva E.G., Chebrov D.V. Multipurpose Studies of the Karymsky Volcano during the Inter-Eruptive Period from August 14–28, 2024 // Journal of Volcanology and Seismology. 2025. Vol. 19. № S1. P. S17-S25. https://doi.org/10.1134/S0742046325700617
Аннотация
From August 14 to 26, 2024, a comprehensive expedition of the Institute of Volcanology and Seismology of the Far Eastern Branch of the Russian Academy of Sciences worked at the Karymsky Volcanic Center (KVC). Research was conducted to restore the hydrochemistry of Karymsky Lake after the catastrophic underwater eruption that occurred in the Academy of Sciences caldera in early January 1996, and a detailed geochemical survey was made of all thermal manifestations in the center. Seismic observations and assessment of the emission of volcanic gas SO2 were carried out, as carried out by the Karymsky volcano, the volume of above-ground CO2 degassing was measured at the thermal sites of the Karymskaya and Academy of Sciences calderas, and samples of spring water were taken to determine the chemical composition and analyze trace elements. Infrared survey and aerial photography of the southern sector of the KVC were carried out.
This publication presents the first results of seismic observations in conjunction with an assessment of the emission of the SO2 volcanic gas, information on the chemical and mineral composition of the springs of the Karymskaya caldera, and aerial photography data of the volcano.
Multipurpose Studies of the Karymsky Volcano during the Inter-Eruptive Period from August 14–28, 2024 ()
Bakhmatova Ya.A., Melnikov D.V., Kalacheva E.G., Chebrov D.V. Multipurpose Studies of the Karymsky Volcano during the Inter-Eruptive Period from August 14–28, 2024 // Journal of Volcanology and Seismology. Vol. 19. № S1. P. S17-S25. https://doi.org/10.1134/S0742046325700617
Аннотация
From August 14 to 26, 2024, a comprehensive expedition of the Institute of Volcanology and Seismology of the Far Eastern Branch of the Russian Academy of Sciences worked at the Karymsky Volcanic Center (KVC). Research was conducted to restore the hydrochemistry of Karymsky Lake after the catastrophic underwater eruption that occurred in the Academy of Sciences caldera in early January 1996, and a detailed geochemical survey was made of all thermal manifestations in the center. Seismic observations and assessment of the emission of volcanic gas SO2 were carried out, as carried out by the Karymsky volcano, the volume of above-ground CO2 degassing was measured at the thermal sites of the Karymskaya and Academy of Sciences calderas, and samples of spring water were taken to determine the chemical composition and analyze trace elements. Infrared survey and aerial photography of the southern sector of the KVC were carried out.
This publication presents the first results of seismic observations in conjunction with an assessment of the emission of the SO2 volcanic gas, information on the chemical and mineral composition of the springs of the Karymskaya caldera, and aerial photography data of the volcano.