Инд. авторы: Жуков В.П., Корсаков А.В.
Заглавие: Численное моделирование эксгумации горных пород сверхвысоких давлении
Библ. ссылка: Жуков В.П., Корсаков А.В. Численное моделирование эксгумации горных пород сверхвысоких давлении // Вычислительные технологии. - 2011. - Т.16. - № 1. - С.67-84. - ISSN 1560-7534. - EISSN 2313-691X.
Внешние системы: РИНЦ: 15596961;
Реферат: rus: Предложены термомеханическая модель сферически симметричных систем включение-минерал-хозяин, учитывающая возможность фазовых переходов и эффекты пластичности, а также конечно-разностная схема для ее исследования. Показано, что данная модель правильно описывает распределение остаточных напряжений в метаморфических породах, поднимающихся с глубин более 120 км. Исследование представленной модели имеет важное значение для изучения процессов формирования земной коры.
eng: A thermo mechanical model of spherical shape inclusion-host systems is presented that allows plastic deformation and kinetics of phase transformation. The numerical method for solution of such problems is proposed. It is shown that this model correctly describes the residual pressure distribution in ultrahigh-pressure metamorphic rocks, exhumed from the depth of 120 km. Application of this numerical model provides important information about formation of the Earth crust.
Ключевые слова: metamorphic rocks; residual pressure; inclusion-host system; plasticity; Thermomechanical model; конечно-разностная схема; метаморфические породы; остаточные напряжения; система включение-минерал-хозяин; пластичность; термомеханическая модель; finite-difference scheme;
Издано: 2011
Физ. характеристика: с.67-84
Цитирование: 1. ДОВРЕЦОВ Н. Л., КИРДЯШКИН А. Г., КИРДЯШКИН А. А. Глубинная геодинамика. 2-е изд. Дополн. и перераб. Новосибирск: Изд-во СО РАН, филиал ГЕО, 2001. 409 с. 2. SOBOLEV N. V., SHATSKY V. S. Diamond inclusions in garnets from metamorphic rocks: A new environment for diamond formation / / Nature. 1990. Vol. 343. P. 742-746. 3. SHATSKY V. S., SOBOLEV N. V., VAVILOV M. A. Diamond-bearing metamorphic rocks of the Kokchetav massif (Northern Kazakhstan) / / Ultrahigh Pressure Metamorphism / Ed. R. Coleman, X. Wang. Cambridge Univ. Press, 1995. P. 427-455. 4. MASSONNE H.-J. A new occurrence of microdiamonds in quartzfeldspathic rocks of the Saxonian Erzgebirge, Germany and their metamorphic evolution / / Proc. of 7th Internat. Kimberlite Conf. 1999. Vol. 2. P. 533-539. 5. KORSAKOV A. V . , SHATSKY V. S., SOBOLEV N. V., ZAYACHKOVSKY A. A. Garnet-biotiteclinozoisite gneisses: A new type of diamondiferous metamorphic rocks of the Kokchetav massif / / Eur. J. Mineralogy. 2002. Vol.14. P. 915-929. 6. KORSAKOV А. V., HERMANN J. Silicate and carbonate melt inclusions associated with diamonds in deeply subducted carbonate rocks / / Earth and Planetary Sci. Lett. 2006. Vol. 241. P. 104-118. 7. PERRAKI М., PROYER A., MPOSKOS E. ET AL. Raman micro-spectroscopv on diamond, graphite and other carbon polymorphs from the ultrahigh-pressure metamorphic kimi complex of the rhodope metamorphic province. NE Greece / / Ibid. 2006. Vol. 241. P. 672-685. 8. PERRAKI М., KORSAKOV A. V., SMITH D. C., MPOSKOS E. Raman spectroscopic and microscopic criteria for the distinction of microdiamonds in ultrahigh-pressure metamorphic rocks from diamond in sample preparation materials / / Amer. Mineralogist. 2009. Vol. 94. P. 546- 556. 9. PARKINSON C. D., KATAYAMA I. Present-day ultrahigh-pressure conditions of coesite inclusions in zircon and garnet: Evidence from laser Raman microspectroscopv / / Geology 1999. Vol. 27. P. 979-982. 10. PARKINSON C. D. Coesite inclusions and prograde compositional zonation of garnet in whiteschist of the HP-UHPM Kokchetav massif, Kazakhstan: A record of progressive UHP metamorphism / / Lithos. 2000. Vol. 52. P. 215-233. 11. SOBOLEV N. V., FURSENKO B. A., GORYAINOV S. V. ET AL. Fossilized high-pressure from the earths deep interior - the coesite-in-diamond barometer / / Proc. of the National Academy of Sciences of the United States of America. 2000. Vol. 97, No. 22. P. 11875-11879. 12. YE K., LIOU J. В., CONG В., MARUYAMA S. Overpressures induced by coesite-quartz transition in zircon / / Amer. Mineralogist. 2001. Vol. 86. P. 1151-1155. 13. KORSAKOV A. V., HUTSEBAUT D., THEUNISSEN K. ET AL. Raman mapping of coesite inclusions in garnet from the Kokchetav Massif (Northern Kazakhstan) / / Spectrochimica Acta. Pt A. 2007. Vol. 68. P. 1046-1052. 14. SMITH D .C. Coesite in clinopvroxene in the Caledonides and its implications for geodvnamics / / Nature. 1984. Vol. 310. P. 641-644. 15. CHOPIN C. Coesite and pure pvrope in high-grade blueschists of western alps: a first record and some consequences / / Contributions to Mineralogy and Petrology. 1984. Vol. 86. P. 107-118. 16. KORSAKOV A. V., THEUNISSEN K., SMIRNOVA L. V. Intergranular diamonds derived from partial melting of crustal rocks at ultrahigh-pressure metamorphic conditions / / Terra Nova. 2004. Vol. 16. P. 146-151. 17. GILLET P., INGRIN J., CHOPIN C. Coesite in subducted continental crust: P - T history deduced from an elastic model / / Earth and Planetary Sci. Lett. 1984. Vol. 70. P. 426-436. 18. VAN DER MOLEN I., VAN ROERMUND H. L. The pressure path of solid inclusions in minerals: The retention of coesite inclusions during uplift / / Lithos. 1986. Vol. 19. P. 317-324. 19. NISHIYAMA T. Kinetic modeling of the coesite-quartz transition in an elastic field and its implication for the exhumation of ultrahigh-pressure metamorphic rocks / / The Island Arc. 1998. Vol. 7. P. 70-81. 20. ZHANG Y. Mechanical and phase equilibria in inclusion-host systems / / Earth and Planetary Sci. Lett. 1998. Vol. 157. P. 209-222. 21. KORSAKOV A. V., ZHUKOV V. P., VANDENABEELE P. Raman-based geobarometrv of ultrahigh pressure metamorphic rocks: An application, problems and perspective / / Analvt. and Bioanalvt. Chem. 2010. P. 397:2739-2752. 22. KORSAKOV A. V., DE GUSSEM К., ZHUKOV V. P. ET AL. Aragonite-calcite-dolomite relationships in UHPM polvcrvstalline carbonate inclusions from the Kokchetav Massif (Northern Kazakhstan) / / Eur. J.'Mineralogy. 2009. Vol. 21. P. 1301-1311. 23. KORSAKOV A. V., PERRAKI M., ZHUKOV V. P. ET AL. IS quartz a potential indicator of ultrahigh-pressure metamorphism? Laser Raman spectroscopy of quartz inclusions in ultrahigh-pressure garnets / / Ibid. 2009. Vol. 21. P. 1313-1323. 24. CAYZER N. J., ODAKE S., HARTE В., KAGI H. Plastic deformation of lower mantle diamonds by inclusion phase transformations / / Ibid. 2008. Vol. 20. P. 333-339. 25. YAMAMOTO J., ANDO J., KAGI H. ET AL. In situ strength measurements on natural uppermantle minerals / / Phvs. Chem. Minerals. 2008. Vol. 35. P. 249-257. 26. АСТАРИТА Д., МАРУЧЧИ Д. Основы гидромеханики неньютоновских жидкостей. М.: Мир, 1978. 309 с. 27. KATAYAMA I., KARATO S.-I. Effects of water and iron content on the rheological contrast between garnet and olivine / / Phvs. Earth and Planetary Interiors. 2008. Vol. 166. P. 57-66. 28. PERRILLAT J. P., DANIEL I., LARDEUX J. M., CARDON H. Kinetics of the coesite - quartz transition: Application to the exhumation of ultrahigh-pressure rocks / / J . Petrology. 2003. Vol. 44. P. 773-788. 29. ЛЕЩУК А. А., НОВИКОВ H. B., ЛЕВИТАС В. И. Термомеханическая модель фазового превращения графита в алмаз / / Сверхтвердые материаллы. 2002. № 1. С. 49-57. 30. MARSCHALL H. R., KORSAKOV A. V., LUVIZOTTO G. L. ET AL. On the occurrence and boron isotopic composition of tourmaline in (ultra)high-pressure metamorphic rocks / / J . Geolog. Soc. London. 2009. Vol. 166. P. 811-823. 31. Xu J., MAO H., HEMLEY R. J. The gem anvil cell: High-pressure behaviour of diamond and related materials / / J. Phvs.: Condensed Matter. 2002. Vol. 14. P. 11549-11552. 32. BARRON L. M., MERNAGH T. P., BARRON B. J. Using strain birefringence in diamond to estimate the remnant pressure on an inclusion / / Australian J. Earth Sci. 2008. Vol. 55. P. 159-165. 33. HOLLAND Т., POWELL R. An enlarged and updated internally consistent thermodynamic dataset with uncertainties and correlations: The system K2О-Na2O-CaO-MgO-MnO-FeO-Fe2O3-Al2O3-TiO2-SiO2-C-H2-O2 / / j. Metamorphic Geology. 1990. Vol.8. P. 89-124.