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Авдейко Г.П., Гавриленко Г.М., Черткова Л.В., Сазонов А.П. О природе "факелов" аномальной воды // Геология Тихого океана. 1987. № Ч.3. С. 13-15.
Авдейко Г.П., Мархинин Е.К. Современный вулканизм океанов / Геология океанов. Осадконакопление и магматизм океана. М.: Наука. 1979. С. 88-103.
Авдейко Г.П., Палуева А.А., Кувикас О.В. Адакиты в зонах субдукции Тихоокеанского кольца: обзор и анализ геодинамических условий образования // Вестник КРАУНЦ. Серия: Науки о Земле. 2011. Вып. 17. № 1. С. 45-60.
Review and analysis of genesis conditions for adakites and magnesian andesites with adakite properties showed that there are various tectonic and geodynamic settings within subduction zones of the Pacific Ring. These settings provide additional heating sufficient for slab melting in subduction zones. As a rule, on the initial stage of subduction process a front part of a new slab suffered melting caused by heat from hot asthenosphere. In this case, their association with NEB type can be traced. A large number of adakite location depend on additional heating and slab melting in slab windows regardless geodynamic conditions. Moreover, formation of adakites may probably be caused by subduction of hot spreding centers. Oblique subduction and transform interactions between plates may generate additional heating sufficient for adakite volcanism.
Авдейко Г.П., Палуева А.А., Хлебородова О.А. Внутриплитные базальты и адакиты Восточной Камчатки: условия образования // Вестник КРАУНЦ. Серия: Науки о Земле. 2010. Вып. 16. № 2. С. 55-65.
Geodynamic model of alkaline basaltoids with intraplate geochemical characteristics was developed on the base of systematization and analysis their space and time data in the East Kamchatka volcanic arc. The alkaline «intraplate» rocks in the East Kamchatka were formed as a result of partial melting at low degree of an «andersonian» type mantle plume. This mantle plume was generated in the astenosphere beneath the Pacific plate about 400-500 km from the deep sea trench similarly Hirano et al. (2006) flexure model and then was moved to the new forming East Kamchatka subduction zone by mantle convection. Adakites were produced by partial melting of the frontal part of the subducting Pacific plate in the initial stage of subduction. The model explains a short time of the formation of alkaline rocks, and their change by transitional rocks and adakites, and then by typical calk-alkaline rocks, and their position only in the subduction zone jump to the present-day position.
Авдейко Г.П., Пилипенко Г.Ф., Палуева А.А., Напылова О.А. Геотектонические позиции современных гидротермальных проявлений Камчатки // Вулканология и сейсмология. 1998. № 6. С. 85-99.
Most of the hot .springs and all high-temperature hydrothermal systems are located within the three volcanic belts: East Kamchatka, South Kamchatka and Srcdinny Ridge connected with the zones of subduction. At the present time subduction beneath the Sredinny Ridge has stopped and the Central Kamchatka depression is now a relict of the continental slope of deep-sea trench. This is supported not only by the geological data but also by the fact that heat release by hot springs in the Sredinny Ridge is an order of magnitude lower then within East and South Kamchatka. Distribution of the hot springs is similar in all three belts. At 90-100 km width of the volcanic belts and of zones of the hydrothermal activity over 95% of heat is released by the sources located within the 45-km wide near-frontal zones. Voicanic fronts of the arcs are the clear boundaries beyond which heat release discontinues sharply. The descreate heat release is observed along the volcanic belts at the typical distances of 70-100 km between the maxim of heat release. Quantitative estimation of the probable heat and water contribution into the hydrothermal system formation showed that the only real heal source are the near surface magmatic chambers. Scenario of the probable heat and mass transfer leading to the formation of the hydrothermal systems and connected with them ore deposits has been considered.
Авдейко Г.П., Пилипенко Г.Ф., Хворостов В.П. Тектонические позиции и условия образования современных гидротермальных систем и Au-Ag рудопроявлений Камчатки // Минерало-рудообразование в вулканогидротермальных системах островных дуг (Камчатка-Курильские острова-Японские острова): Материалы Российско-японского полевого семинара, г. Петропавловск-Камчатский, Россия, 25 июля-2 августа 1998 г. 1998. С. 15-17.
Авдейко Г.П., Токарев П.И., Меняйлов И.А., Хренов А.П., Флеров Г.Б., Широков В.А. Извержение побочного прорыва Олимпийского на вулкане Алаид в 1972 г. / Вулканизм островных дуг. М.: Наука. 1977. С. 55-64.
Авдейко Г.П., Хренов А.П., Флеров Г.Б., Токарев П.И., Широков В.А., Меняйлов И.А., Чирков А.М., Волынец О.Н., Дубик Ю.М., Вергасова Л.П., Пономарев Г.П. Извержение вулкана Алаид в 1972 г. // Бюллетень вулканологических станций. 1974. № 50. С. 64-80.
Авдейко Г.П., Черткова Л.В., Гавриленко Г.М., Надежный А.М., Рашидов В.А., Сергеев В.А. Подводное термальное поле у о. Парамушир в Курильской островной дуге // Геология морей и океанов. 1986. Т. 3. С. 6-7.
Авдейко Г.П., Черткова Л.В., Гусева В.И. Непрерывное гидрогазопрофилирование вулканической зоны шельфа Вьетнама (К методике поиска подводных вулканов) // Вулканология и сейсмология. 1984. № 5. С. 30-39.