Stability of heavy inclusions in the Earth’s crust

Мұқаба

Дәйексөз келтіру

Толық мәтін

Ашық рұқсат Ашық рұқсат
Рұқсат жабық Рұқсат берілді
Рұқсат жабық Рұқсат ақылы немесе тек жазылушылар үшін

Аннотация

Stability of a heavy inclusion in the Earth’s upper crust is studied by the linear theory method for small perturbations. The presence of such inclusions with an increased density is associated with chemical inhomogeneity or phase transformations. The problem of the stability of a heavy elastic layer above a less dense elastic layer that represents the lower crust and mantle lithosphere is solved. It is shown that such a system is stable: small initial perturbations produce low-amplitude oscillations. The corrections to the oscillation frequency that arise due to the density jump at the boundary between the layers are calculated. The changes in the solution due to the consideration of creep, which is present even in cold geomaterials, are discussed. Creep leads to instability of heavy inclusions in the upper crust. However, because the effective viscosity of the cold upper crust is very high, this instability is of a formal nature, since it develops so slowly that heavy inclusions in the upper crust hardly change their position over a timescale comparable to the age of the Earth.

Толық мәтін

Рұқсат жабық

Авторлар туралы

B. Birger

Schmidt Institute of Physics of the Earth, Russian Academy of Sciences

Хат алмасуға жауапты Автор.
Email: birgerbor@mail.ru
Ресей, Moscow

Әдебиет тізімі

  1. Биргер Б.И. Затухание сейсмических волн и универсальная реологическая модель мантии Земли // Физика Земли. 2007. № 8. С. 17–23.
  2. Биргер Б.И. Динамика литосферы Земли. М.: Ленанд. 2016. 256 с.
  3. Биргер Б.И. Ползучесть Андраде при восстанавливающих изостазию течениях в мантии // Физика Земли. 2018. № 6. С. 48–58.
  4. Биргер Б.И. Гравитационная неустойчивость вязкоупругой земной коры // Физика Земли. 2023. № 2. С. 49–61.
  5. Теркот Д., Шуберт Дж. Геодинамика. Геологические приложения физики сплошных сред. М.: Мир. 1985. 730 с.
  6. Birger B.I. Rheology of the Earth and thermoconvective mechanism for sedimentary basins formation // Geophys. J. Inter. 1998. V. 134. P. 1–12.
  7. Birger B.I. Temperature-dependent transient creep and dynamics of cratonic lithosphere // Geophys. J. Inter. 2013. V. 195. P. 695–705.
  8. Cathles L.M. The viscosity of the Earth’s mantle. Princeton university press. 1975. 386 p.
  9. Karato S. Deformation of Earth Materials. An Introduction to the Rheology of Solid Earth. Cambridge university press. 2008. 463 p.

Қосымша файлдар

Қосымша файлдар
Әрекет
1. JATS XML
2. Fig. 1. Dependence of frequencies on wave numbers k at a density jump and with a dotted line at

Жүктеу (100KB)
3. Fig. 2. Dependence of frequencies on density jump for wave number

Жүктеу (93KB)
4. Fig. 3. Dependence of frequencies on density jump for wave number

Жүктеу (102KB)
5. Fig. 4. Dependence of the increment λ on the wave number k for the viscous Newtonian rheological model.

Жүктеу (90KB)
6. Fig. 5. Dependence of the growth rate on the wave number k for the Andrade rheological model.

Жүктеу (106KB)

© Russian Academy of Sciences, 2024