Vestnik Kamchatskoy regional'noy assotsiatsii «Uchebno-nauchnyy tsentr». Seriya: Nauki o Zemle
Institute of Volcanology and Seismology FEB RAS
Morphology of the Piip submarine volcano in the Komandorsky Basin based on multibeam echosounder data
PDF (Русский)

Keywords

Bering Sea
Komandorsky Basin
Piip volcano
bathymetric survey

Section

Results of the Scientific Researches

Statistic

Views: 397
Downloads: 182

How to Cite

1. Баранов Б. В., Вернер Р. А., Рашидов В. А., Цуканов Н. В., Дозорова К. А. Morphology of the Piip submarine volcano in the Komandorsky Basin based on multibeam echosounder data // Vestnik KRAUNTs. Nauki o Zemle. 2021. № 2 (50). C. 6–21. https://doi.org/10.31431/1816-5524-2021-2-50-6-21.

Abstract

We analyzed the bathymetric data obtained during the cruises on the German research vessel “Sonne” using multibeam echosounders within the framework of the Russian-German projects KALMAR (cruise SO201-2, 2009) and BERING (cruise SO249-2, 2016) in the Komandorsky Basin of the Bering Sea. Detailed bathymetric maps of the Piip submarine volcano were constructed. New morphological features of its summit edifices and their age relations are described, hydrothermal activity confined to the edifices is localized, and all side cones and lava flows are mapped. Based on the flank cones and fissure lava flows alignments we determined the tectonic paleostress that existed at the time of their formation, presumably after the Late Miocene-Early Pliocene. It differs from the recent tectonic stress caused by right-lateral displacements along the Bering fault zone.
https://doi.org/10.31431/1816-5524-2021-2-50-6-21
PDF (Русский)

References

Bogdanova O.Yu., Gorshkov A.I., Baranov B.V. i dr. Gidrotermalnyye obrazovaniya podvodnogo vulkana Pypa (Komandorskaya kotlovina) // Vulkanologiya i seysmologiya. 1989. № 3. S. 49–62 [Bogdanova O.Yu., Gorshkov A.I., Baranov B.V., Seliverstov N.I et al. Hydrothermal deposits from Piip submarine volcano, Komandorsky Basin // Vulkanology and seismology. 1990. V. 11. P. 354–374].

Valyashko G.M., Chernyavsky G.B., Seliverstov N.I., Ivanenko A.N. Zadugovoy spreding v Komandorskoy kotlovine // DAN. 1993. T. 328. № 2. S. 212–216 [Valyashko G.M., Chernyavsky G.B., Seliverstob N.I., Ivanenko A.N. Back arc spreading in the Komandorsky basin // Doklady Earth Sciences. 1993. V. 338. № 3. P. 212–216 (in Russian)].

Volynets O.N., Koloskov A.V., Yagodzinsky G.M. i dr. Boninitovaya tendentsiya v lavakh podvodnogo vulkana Pypa i ego obramleniya (zapadnaya chast Aleutskoy dugi). 1. Geokhimiya, petrokhimiya i mineralogiya // Vulkanologiya i seysmologiya. 1992. № 1. S. 3–23 [Volynets O.N., Koloskov A.V., Yogodzinsky G.M. et al. A Boninite Trend in the Submarine Lavas of Piip volcano and Surroundings, Western Aleutian Arc. 1. Geology, Petrochemistry, Mineralogy // Vulkanology and seismology. 1992. V. 11. P. 1–22].

Galkin S.V., Ivin V.V. Biologicheskiye issledovaniya v Beringovom more s ispolzovaniyem teleupravlyayemogo apparata «Komanch» // Okeanologiya. 2019. T. 59. № 1. S. 170–172 [Galkin S.V., Ivin V.V. Biological studies in the Bering Sea with the remote underwater vehicle Comanche // Oceanology. 2019. V. 59. P. 153–154. https://doi.org/10.1134/S000143701901003X].

Galkin S.V., Mordukhovich V.V., Krylova E.M. i dr. Issledovaniye ekosistem gidrotermalnykh vykhodov i kholodnykh vysachivany v Beringovom more (82-y reys nauchno-issledovatelskogo sudna «Akademik M.A. Lavrentyev») // Okeanologiya. 2019. T. 59. № 4. S. 687–690 [Galkin S.V., Mordukhovich V.V., Krylova E.M. et al. Comprehensive research of ecosystems of hydrothermal vents and cold seeps in the Bering Sea (Cruise 82 of the R/V Akademik M.A. Lavrenyev) // Oceanology. 2019. V. 59. № 4. P. 618–621. https://doi.org/10.1134/S0001437019040052].

Melekestsev I.V. Osobennosti geomorfologii i istorii formirovaniya massiva Vulkanologov v Beringovom more (novaya versiya) // Vestnik KRAUNTs. Nauki o Zemle. 2014. № 1. Vyp. 40. S. 200–212 [Melekestsev I.V. The peculiarities of geomorphology and formation history of the Volcanologists massif in the Bering Sea (the new version) // Vestnik KRAUNTs. Nauki o Zemle. 2014. № 4.(40). P. 200–212 (in Russian)].

Polonik N.S. Izucheniye gazonasyshchennogo gidrotermalnogo flyuida podvodnogo vulkana Pypa // Materialy XXI regionalnoy nauchnoy konferentsii «Vulkanizm i svyazannyye s nim protsessy» / Glavny redaktor: akademik RAN E.I. Gordeev. Petropavlovsk-Kamchatsky: IViS DVO RAN, 2018. S. 197–199 [Polonik N.S. Study of gas-saturated hydrothermal fluid of the Piip submarine volcano // Processing of XXI regional scientific conference «Volcanic activity and associated processes» / Chief Editor: academician of the RAS Gordeev E.I. Petropavlovsk-Kamchatsky: IVS FEB RAS, 2018. P. 197–199 (in Russian)].

Sagalevich A.M., Torokhov P.V., Matveenkov V.V. i dr. Gidrotermalnaya proyavleniya podvodnogo vulkana Pypa (Beringovo more) // Izvestiya RAN. Seriya geologicheskaya. 1992. № 9. S. 104–114 [Sagalevich A.M., Torokhov P.V., Matveenkov V.V. et al. Hydrothermal occurrences of submarine Piip volcano (Bering Sea) // Proceedings Academy of Sciences. Geological series. 1992. № 9. P. 104–114 (in Russian)].

Seliverstov N.I. Stroyeniye dna prikamchatskikh akvatory i geodinamika zony sochleneniya Kurilo-Kamchatskoy i Aleutskoy ostrovnykh dug // M.: Nauchny Mir, 1998. 164 s. [Seliverstov N.I. Bottom structure offshore the Kamchatka and geodynamics of Kurile-Kamchatka and Aleutian island arcs junction // M: Nauchyi Mir, 1998 164 p. (in Russian)].

Seliverstov N.I. Geodinamika zony sochleneniya Kurilo-Kamchatskoy i Aleutskoy ostrovnykh dug // Petropavlovsk-Kamchatsky: Izd. KamGU im. Vitusa Beringa, 2009. 191 s. [Seliverstov N.I. Geodynamics of Kurile-Kamchatka and Aleutian island arcs junction // Petropavlovsk-Kamchatsky: Vitus Bering KamSU, 2009. 191 p. (in Russian)].

Seliverstov N.I. Podvodnyye morfostruktury Kurilo-Kamchatskoy i Aleutskoy ostrovnykh dug // Petropavlovsk-Kamchatsky: Izd-vo IViS DVO RAN, 2013. 162 s. [Seliverstov N.I. Submarine morphologic structures of Kurile-Kamchatka and Aleutian island arcs // Petropavlovsk-Kamchatsky: IVS FEB RAS, 2013. 162 p. (in Russian)].

Seliverstov N.I., Avdeyko G.P., Ivanenko A.N. i dr. Novy podvodny vulkan v zapadnoy chasti Aleutskoy ostrovnoy dugi // Vulkanologiya i seysmologiya. 1986. № 4. S. 3–16 [Seliverstov N.I., Avdeiko G.N., Ivanenko A.N. et al. A New submarine volcano in the West of the Aleutian Island Arc // Vulkanology and seismology. 1990. V. 8. № 4. P. 473–495 (in Russian)].

Seliverstov N.I., Baranov B.V., Egorov Yu.O., Shkira V.A. Novyye dannyye o stroyenii yuzhnoy chasti Komandorskoy kotloviny po rezultatam 26 reysa NIS «Vulkanolog» // Vulkanologiya i seysmologiya. 1988. № 4. S. 3–20 [Seliverstov N.I., Baranov B.V., Yegorov Yu.O., Shkira V.A. New Data on the Structure of the Southern Komandorsky Basin Providet by cruise 26 of RV «Vulkanolog» // Vulkanology and seismology. 1990. V. 10. № 4. P. 499–524].

Seliverstov N.I., Torokhov P.V., Baranov B.V. Podvodny vulkan Pypa: strukturno-tektonichesky kontrol, geologicheskaya struktura i gidrotermalnaya aktivnost // Vulkanologiya i seysmologiya. 1995. № 2. S. 50–71 [Seliverstov N.I. Torokhov P.V, Baranov B.V. Piip submarine volcano: Structural-Tectonic Control, Geologic Structure, and Hydrothermal Activity // Vulkanology and seismology. 1995. № 2. P. 169–191].

Torokhov P.V., Taran Yu.A., Sagalevich A.M. i dr. Izotopny sostav metana, uglekislogo gaza i karbonatov termalnykh vykhodov podvodnogo vulkana Pypa (Beringovo more) // DAN. 1991. T.318. № 3. S.728–732 [Torokhov P.V., Taran Yu.A., Sagalevich A.M. et al. Isotopic composition of methane, carbon dioxide gas and carbonates of the thermal vents of the Piip submarine volcano (Bering Sea) // Doklady Earth Sciences. 1991. V. 318. № 3. C. 728–732 (in Russian)].

Chebrov D.V., Kugayenko Yu.A., Abubakirov I.R. i dr. Blizhne-Aleutskoye zemletryaseniye 17.07.2017 g. s Mw=7.8 na granitse Komandorskoy seysmicheskoy breshi // Vestnik KRAUNTs. Nauki o Zemle. 2017. № 3. vypusk 35. S. 22–25 [Chebrov D.V., Kugaenko Yu.A., Abubakirov I.R. et al. Near-Aleutian earthquake of 17.07.2017 with Mw=7.8 on the boundary of Komandorsky seismic gap // Vestnik KRAUNTs. Nauki o Zemle. 2017. № 3(35). P. 22–25 (in Russian)].

Adiyaman O., Chorowicz J., Kose O. Relationships between volcanic patterns and neotectonics in Eastern Anatolia from analysis of satellite images and DEM // Journal of Volcanology and Geothermal Research. 1998. V. 85. Iss. 1-4. P. 17–32. https://doi.org/10.1016/S0377-0273(98)00047-X.

Baranov B.V., Seliverstov N.I., Muravev A.V., Muzurov E.L. The Komandorsky basin as a product of spreading behind a transform plate boundary // Tectonophysics. 1991. V. 199. № 2–4. P. 237–270. https://doi.org/10.1016/0040-1951(91)90174-Q.

Cormier V.F. Tectonics near the junction of the Aleutian and Kuril-Kamchatka Arcs and a mechanism for Middle Tertiary magmatism in the Kamchatka Basin // Geological Society of America Bulletin. 1975. V. 86. № 4. P. 443–453. https://doi.org/10.1130/0016-7606(1975)86<443:TNTJOT>2.0.CO;2.

FS SONNE Fahrtbericht / Cruise Report SO201-2: KALMAR (Kurile-Kamchatka and ALeutian MARginal Sea-Island Arc Systems): Geodynamic and Climate Interaction in Space and Time, Busan/Korea - Tomakomai, Japan, 30.08. - 08.10.2009, Eds.: Dullo W.-Ch., Baranov B., van den Bogaard Ch., 2009. V. 35. 91 p.

Gaedicke C., Baranov B., Seliverstov N., Alexeiev D. Tsukanov N. Freitag, R. Structure of an active arc-continent collision area: the Aleutian-Kamchatka junction // Tectonophysics. 2000. V.325. P. 63–85. https://doi.org/10.1016/S0040-1951(00)00131-1.

Geist E.L., Scholl D.W. Large-scale deformation related to the collision of the Aleutian Arc with Kamchatka // Tectonics. 1994. V.13. P. 538–560. https://doi.org/10.1029/94TC00428.

Heidbach O., Rajabi M., Reiter K., Ziegler M. WSM Team: World Stress Map Database Release / GFZ Data Services. 2016. V. 1.1. https://doi.org/10.5880/WSM.2016.001.

Glasby G.P., Cherkashov G.A., Gavrilenko G.M. et al. Submarine hydrothermal activity and mineralization on the Kurile and western Aleutian island arcs, N.W. Pacific // Marine geology. 2006. V. 231. Iss. 1–4. P. 163–180. https://doi.org/10.1016/j.margeo.2006.06.003.

Lay Th., Ye L., Bai Y. et al. Rupture Along 400 km of the Bering Fracture Zone in the Komandorsky Islands Earthquake (MW 7.8) of 17 July 2017 // Geophysical Research Letters. 2017. V. 44. Iss. 24. P. 12161–12169. https://doi.org/10.1002/2017GL076148.

Nakamura K. Volcanoes as possible indicators of tectonic stress orientation – principle and proposal // Journal of Volcanology and Geothermal Research. 1977. V. 2. Iss. 1. P. 1–16. https://doi.org/10.1007/BF01637099.

Newberry J.T., Laclair D.L., Fujita K. Seismicity and tectonics of the far western Aleutian Islands // Geodynamics. 1986. V. 6. Iss. 1–4. P. 13–32.

Paulsen T.S., Wilson T.J. Structure and age of volcanic fissures on Mount Morning: A new constraint on Neogene to contemporary stress in the West Antarctic Rift, southern Victoria Land, Antarctica // GSA Bulletin. 2009. V. 121; № 7/8. P. 1071–1088. https://doi.org/10.1130/B26333.1.

Paulsen T.S., Wilson T.J. New criteria for systematic mapping and reliability assessment of monogenetic volcanic vent alignments and elongate volcanic vents for crustal stress analyses // Tectonophysics. 2010. V. 482. Iss. 1–4. P. 16–28.

Portnyagin M., Hoernle K., Werner R., Baranov B., Hauff F., Yogodzinski G. Submarine Piip Volcano, Western Aleutian Arc: Temporal Evolution from Back-Arc Rift to Island-Arc Stratovolcano // AGU Chapman Conference. Hobart, Tasmania, Sustralia, 27 January – 3 February 2017. P. 33–34.

RV SONNE Fahrtbericht /Cruise Report SO249 BERING – Origin and Evolution of the Bering Sea:An Integrated Geochronological, Volcanological, Petrological and Geochemical Approach. Leg 1: Dutch Harbor (U.S.A.) – Petropavlovsk-Kamchatsky (Russia) 05.06.2016 – 15.07.2016 Leg 2: Petropavlovsk-Kamchatsky (Russia) – Tomakomai (Japan) 16.07.2016 – 14.08.2016. Eds.: Werner R. et al., V. 30, 2016, 89 p. https://doi.org/10.3289.

Taran Y.A., Torokhov P.V., Pokrovsky B.G., Shabayeva I.Y. Isotopic composition of mineral precipitates and free gas associated with hydrothermal vents of Piip submarine volcano, Bering Sea // Geochemical Journal. 1992. V. 26. P. 291–297. https://doi.org/10.2343/geochemj.26.291.

Torokhov P.V., Taran Y.A. Hydrothermal fields of the Piip submarine volcano, Komandorsky Back-Arc Basin: Chemistry and origin of vent mineralization and bubbling gas // Bulletin of the Geological Society of Denmark. 1994. V. 41. P. 55–64.

Yogodzinski G.M., Kelemen P.B. Slab melting in the Aleutians: implications of an ion probe study of clinopyroxene in primitive adakite and basalt // Earth and Planetary Science Letters. 1998. V. 158. Iss.1–2. P. 53–65. https://doi.org/10.1016/S0012-821X(98)00041-7.

Yogodzinski G.M., Volynets O.N., Koloskov A.V. et al. Magnesian andesites and the subduction component in a strongly calc-alkaline series at Piip volcano, Far Western Aleutians // Journal of Petrology 1994. V. 35. № 1. P. 163–204. https://doi.org/10.1093/petrology/35.1.163.

Creative Commons License
Контент доступен под лицензией Creative Commons Attribution-NonCommercial 4.0 International License.