A stochastic modification of the spherical block-and-fault model of lithosphere dynamics and seismicity

Authors

  • L.A. Melnikova N.N. Krasovskii Institute of Mathematics and Mechanics of UB RAS (IMM UB RAS)
  • V.L. Rozenberg N.N. Krasovskii Institute of Mathematics and Mechanics of UB RAS (IMM UB RAS)

DOI:

https://doi.org/10.26089/NumMet.v16r112

Keywords:

block-and-fault models of lithosphere dynamics and seismicity, synthetic earthquake catalogs, scalability of parallel algorithms, parallel computing, stochastic analysis, stochastic differential equations

Abstract

A brief description of the last version of the spherical block-and-fault model is discussed. This version takes into account random factors essentially influencing the dynamics of model parameters. Two variants of introducing stochasticity into the procedures for calculating the forces acting on a block and determining the model earthquakes are tested. This stochasticity consists in (i) adding a noise to the differential equations describing the dynamics of elastic forces and inelastic displacements and in (ii) using random quantities when specifying strength thresholds for the medium of tectonic faults. Numerical experiments demonstrate the perspectivity of introducing stochasticity into the model.

Author Biographies

L.A. Melnikova

V.L. Rozenberg

References

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Published

12-03-2015

How to Cite

Мельникова Л., Розенберг В. A Stochastic Modification of the Spherical Block-and-Fault Model of Lithosphere Dynamics and Seismicity // Numerical Methods and Programming (Vychislitel’nye Metody i Programmirovanie). 2015. 16. 112-122. doi 10.26089/NumMet.v16r112

Issue

Section

Section 1. Numerical methods and applications