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Окенический рифтогенез - Дубинин Е.П.

Дубинин Е.П., Ушаков С.А. Окенический рифтогенез — М.: ГЕОС, 2001. — 293 c.
ISBN 5-89118-198-3
Скачать (прямая ссылка): okeanicheskiyfotogenez2001.djvu
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142.Шарапов В.Н., Агапова Г.В., Бондаренко П.М. и др. Модель локальных деформаций земной коры гребневой зоны Центрального сектора Срединно-Атлантического хребта // Геология и геофизика.
1993. Т. 34. N9. С. 3-18.
ХАЪ.Шеменда А.И. Критерии подобия при механическом моделировании тектонических процессов // Там же. 1983. N 10. С. 10-19.
144.Шеменда А.И., Грохольский А.Л. Моделирование образования и развития перекрытия осей спрединга// Тихоокеан. геология. 1988. N 5. С. 97-10.
145.Шрейдер А.А. Магнетизм океанической литосферы и линейные палеомагнитные аномалии // Физика Земли. 1992. N 6. С. 59-69.
146.Abbott D.L., Stein С.А, Diachok О. Topographic relief and sediment thickness: Their effects on the thermal evolution of the oceanic crust // Geophys. Res. Lett. 1992. Vol. 19. P. 1975-1978.
Wl.Alt J.C., Lonsdale P., Haymon R. et al. Hydrothermal sulfide and oxide deposits on seamounts near 21°N, East Pacific Rise // Geol. Soc. Amer. Bull. 1987. Vol. 98. P. 157-168.
\ Anderson R.N., Noltimier H.C. A Model for the Horst and Graben Structure of Midocean Ridge, Crests based upon Spreading Velocity and Basalt Delivery to the Oceanic Crust // Geophys. J. Roy. Astron. Soc. 1973. Vol. 34, P. 137-147.
149.Apotria G., Gray N.H. The of the Bouvet triple junction: implications of its absolute motion // Tectono-physics. 1988. Vol. 148. P. 177-193.
150.Appelgate B. Modes of axial reorganization on a slow-spreading ridge: The structural evolution of
Kolbensey Ridge since 10 Ma // Geology. 1997. Vol.
25, N 5. P. 431-434.
151 .Appelgate B., Shor A.N. The northern Mid-Atlantic and Reykjanes Ridges: spreading center morphology between 55°50' N and 63°00' N // J. Geophys. Res.
1994. Vol. 99, N B9. P. 17935-17956.
152.ARCYANA. Transform Fault and Rift Valley from Bathyscaph and Diving Sancer // Science. 1975. Vol.
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153.Arkani-Hamed J. Magnetization of the Oceanic Crust beneath the Labrador Sea // J.Geoph.Res. 1990. Vol.
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154.Atwater T.M. Constraints from the Famous area concerning the structure of the oceanic section.- Deep Driling Results in the Atlantic Ocean: Ocean crust /Eds. M. Talwani, G. Harrison, D.E. Hayes. 1979. Vol. 2. P. 33-42.
155.Backer H., Lange J., Marchig Vol. Hydrothermal activity and sulphide formation in axial valleys of the East Pacific Rise crust between 18° and 22°S II Earth Planet. Sci. Lett. 1985. Vol. 72. P. 9-22.
156.Bader R.G. et al. Initial reports of the Deep Sea Drilling Project. Wash. (D.C.), 1970. Vol. 4. P. 77-
84.
157.Baker E.T., Hammond S.R. Hydrothermal venting and the Apparent Magmatic Budget of the' Juan de Fuca Ridge // J. Geophys. Res. 1992. Vol. 97, N B3. P. 3443-3456.
15Z.Ballard R. D., Francheteau J. The relationship between active sulfide deposition and the axial processes of the mid-ocean ridge // Mar. Technol. Soc. J.
1982. Vol. 16. P. 8-22.
159.Ballard R.D., Francheteau J., Juteau T. et al. East Pacific Rise at 21°N: the volcanic, tectonic and hydrothermal processes of the central axis // Earth Planet. Sci. Lett. 1981. Vol. 55. P. 1-10.
160.Ballard R.D., Van Andel Т.Н. Morphology and tectonic of the inner rift valley at lat 36°50’N on the Mid-Atlantic Ridge // Geol. Soc. Amer. Bull. 1977. Vol. 88, N4. P. 507-530.
161 .Barazangi M, Dorman J. World seismicity map of ESSA coast and geodetic survey epicenters data for 1961-1967 // Bull. Seismol. Soc. Am. 1968. Vol. 59. P. 369-379.
\62.Barnouin-Jha K., Parmentier E.M., Phipps Morgan J. The role of mantle-depletion and melt-retention buoyancy in spreading-center segmentation // Earth Planet. Sci. Lett. 1994. Vol. 125. P. 221-234.
\63.Barnouin-Jha K., Parmentier E.M., Sparks D.W. Buoyant mantle upwelling and crustal production at oceanic spreading centers: on-axis segmentation and off-axis melting // J. Geophys. Res. 1997 Vol. 102, NB6. P. 11979-11989.
164.Barth G.A., Mutter J.С. Variability in oceanic crustal thickness and structure: Multichannel seismic reflection results from the northern East Pacific Rise // Ibid. 1996. Vol. 101, N B8. P. 17951-17975.
165.Barth G.A., Klienrock M.C., Heiz R.T. The magma body at Kilauea Iki lava lake: Potential insights into
mid-ocean ridge magma chambers // Ibid. 1994. Vol. 99, N B4. P. 7199-7217.
166.Batiza R., Niu Y. Petrology and magma chamber processes at the East Pacific Rise- 9°30'N // Ibid. 1992. Vol. 97. P. 6779-6797.
167.Batiza R., Vanko D.A. Petrologic evolution of large failed rifts in the eastern Pacific: Petrology of volcanic and plutonic rocks from the Mathematician Ridge area and the Guadalupe Trough // J. Petrol.
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168.Becker K., Von Herzen R.P. Heat transfer through the sediments of the mounds hydrothermal area, Galapagos spresding center at 86°W // J. Geophys. Res.
1983. Vol. 88. P. 995-1008.
169.Bergman E„ Solomon S. Transform fault earthquakes in the north Atlantic: Source mechanisms and depth of faulting//Ibid. 1988. Vol. 93. P. 9027-9057.
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