Dynamic processes in the system of interacting geospheres at the Earth’s crust-atmosphere boundary

В. В. Адушкин1, А. А. Спивак1, С. Б. Кишкина1, Д. Н. Локтев1, S.P. Solov'ev1
1Institute of Geosphere Dynamics (IGD), Russian Academy of Sciences (RAS), Moscow, Russia

Tóm tắt

Từ khóa


Tài liệu tham khảo

V. V. Adushkin, A. A. Spivak, and D. N. Loktev, “Diagnostics of Rock Masses in the Mayak Production Association Territory Using Results of Monitoring of Relaxation Processes,” Vopr. Radiats. Bezopasn., No. 1, 18–30 (1997).

V. V. Adushkin, S. P. Solov’ev, and A. A. Spivak, “Electrical and Radiative Characteristics of the Near-Surface Atmosphere on the Mayak Production Association Territory,” Vopr. Radiats. Bezopasn., No. 3, 3–9 (1998).

V. V. Adushkin and A. A. Spivak, “The Role of Tectonic Disturbances in Geosphere Interactions at the Crust-Atmosphere Boundary”, Dokl. Akad. Nauk 402(1), 92–97 (2005).

V. K. Alekseev, A. S. Batugin, I. M. Batugina, et al., Geodynamic Regionalization of the Moscow Region (SMT, Stupino, 2003).

Atlas of Temporal Variations in Natural Processes, Vol. 1: Order and Chaos in the Lithosphere and Other Spheres (OIFZ RAN, Moscow, 1994) [in Russian].

Yu. N. Avsyuk, Tidal Forces and Natural Processes (OIFZ RAN, Moscow, 1996) [in Russian].

Yu. N. Avsyuk, L. L. Khudzinskii, and I. I. Suvorova, “Earth’s Seismicity in Relation to Tidal Effects of the Moon and the Sun,” in Computational Seismology, Vol. 33, 311–336 (2002).

V. T. Belikov and A. F. Shestakov, “Determination of Fracture Source Characteristics from Temporal Variations in Radon Concentration,” Ural. Geofiz. Vestn., No. 1, 27–31 (2000).

J. Brikar, “The Effect of Radioactivity and Contamination on the Atmospheric Electricity,” in Problems of Atmospheric Electricity (Gidrometeoizdat, Leningrad, 1969) [in Russian].

O. Yu. Dinariev and V. N. Nikolaevskii, “Electromagnetic Signals Excited by Deformation Waves in Media with a Microstructure,” Dokl. Akad. Nauk 358(5), 627–629 (1998).

F. F. Emanov, Yu. I. Kolesnikov, V. S. Seleznev, et al., “The Altai Seismological Research Area: The Initial Organization Stage and Preliminary Results,” in Seismological Problems in the 3rd Millennium: Proc. Int. Geophys. Conf. September 15–19, 2003, Novosibirsk (SO RAN, Novosibirsk, 2003), pp. 138–144 [in Russian].

F. Freund, “Time-Resolved Study of Charge Generation and Propagation in Igneous Rocks,” J. Geophys. Res. 105(B5), 11 001–11 019 (2000).

I. A. Garagash, “Modeling the Shear-Induced Tectonomagnetic Effect in a Fault Zone,” Ross. Zh. Nauk o Zemle 1(3), 1–11 (1999).

S. V. Gol’din, V. S. Seleznev, A. F. Emanov, et al., “The Chuya Earthquake and Its Aftershocks,” Dokl. Akad. Nauk 395(4), 534–536 (2004).

E. M. Gorbunova, “Hydrogeological Conditions of the Oka Area in the Nelidovo-Ryazan Suture Zone (the IDG RAN Mikhnevo Research Area),” in Geophysical Processes in Lower and Upper Shells of the Earth (IDG RAN, Moscow, 2003), Vol. 1, pp. 129–141 [in Russian].

E. M. Gorbunova, G. N. Ivanchenko, and A. A. Spivak, “Choice of an Object of Multidisciplinary Studies of Geodynamic and Geophysical Anomalies in Influence Zones of Tectonic Structures,” in Unsteady-State Processes in Upper and Lower Shells of the Earth (IDG RAN, Moscow, 2002), pp. 114–127 [in Russian].

G. N. Ivanchenko, “Geomorphological Indicators of Neotectonic Activity in the Oka Area of the Nelidovo-Ryazan Suture Zone,” in Geophysical Processes in Lower and Upper Shells of the Earth (IDG RAN, Moscow, 2003), Vol. 1, pp. 119–128 [in Russian].

G. M. Jenkins and D. G. Watts, Spectral Analysis and Its Applications (Holden-Day, Merrifield, 1968; Mir, Moscow, 1971).

V. A. Kharlamov, “Signal Detection Using the Analysis of Spectral Matrices from Data of Multichannel Recording of Geophysical Fields,” in Dynamics of Interacting Geospheres (IDG RAN, Moscow, 2004), pp. 374–381 [in Russian].

S. B. Kishkina and A. A. Spivak, “Determination of Resonance Properties of the Crust from Microseismic Vibrations,” Dokl. Fiz. Nauk 392(4), 543–545 (2003).

S. B. Kishkina, D. N. Loktev, and A. A. Spivak, “Processing of Microseismic Data in Geodynamic Diagnostics of Local Crustal Zones,” in Dynamics of Interacting Geospheres (IDG RAN, Moscow, 2004), pp. 34–47 [in Russian].

G. G. Kocharyan and A. A. Spivak, “Hierarchy of Structural and Geodynamic Characteristics of the Crust,” Geoekologiya, No. 6, 537–550 (2002).

G. G. Kocharyan and A. A. Spivak, Deformation Dynamics of Block-Structured Rock Masses (IKTs “Akademkniga”, Moscow, 2003) [in Russian].

N. S. Kozlova, V. P. Rudakov, V. N. Shuleikin, et al., “Emanation and Electric Effects in the Subsurface Atmosphere above the Kaluga Impact Structure,” Ross. Zh. Nauk o Zemle 1(6), 1–13 (1999).

V. I. Larkina, V. V. Migulin, N. G. Sergeeva, and B. V. Senin, “Comparative Analysis of Electromagnetic Effects above Tectonic Fault Zones,” Dokl. Akad. Nauk 376(4), 532–538 (2001).

A. A. Lyubushin, “Multivariate Analysis of Time Series of Geophysical Monitoring Systems,” Fiz. Zemli, No. 3, 103–108 (1993).

A. A. Lyubushin, V. F. Pisarenko, V. V. Ruzhich, and V. Yu. Buddo, “Extraction of Periodicities in the Seismic Regime,” Vulkanol. Seismol., No. 1, 62–76 (1998).

P. Melchior, The Earth Tides (Oxford, 1966; Mir, Moscow, 1968).

M. V. Mints, I. B. Fillipova, A. K. Suleimanov, et al., “The East European Craton: A Late Proterozoic Accretionary-Collisional Orogen,” in Tectonics of the Crust and Mantle: Main Occurrence Patterns of Mi Deposits (GEOS, Moscow, 2005), pp. 452–458 [in Russian].

O. B. Novik, Electromagnetic and Thermal Signals from the Earth’s Interiors (Kruglyi God, Moscow, 2001) [in Russian].

N. K. Pleskach, “Quasi-Harmonic Vibrations of Microseismic Background in the Range 1–6 Hz,” Dokl. Akad. Nauk SSSR 232(3), 558–561 (1977).

I. A. Rezanov, The Earth’s Crust: Evolution of Ideas (Nauka, Moscow, 2002) [in Russian].

V. P. Rudakov, “Evidence for Geodeformational Processes of the Seasonal (Annual) Periodicity from Variations in the Subsoil Radon Field,” Dokl. Akad. Nauk 324(3), 558–561 (1992).

V. V. Ruzhich, V. A. Truskov, E. N. Chernykh, and O. P. Smekalin, “Recent Movements in Fault Zones of the Baikal Region and Their Driving Mechanisms,” Geol. Geofiz. 40(3), 360–372 (1999).

M. A. Sadovsky, “On the Significance and Meaning of Discreteness in Geophysics,” in Discrete Properties of the Geophysical Medium (Nauka, Moscow, 1989) [in Russian].

V. N. Shuleikin and A. M. Polikarpov, “On the Relation of Global Microoscillations of the Earth to Local Hydrogeological and Atmospheric-Electric Processes,” in Physical Foundations of the Seismic Method: Nontraditional Geophysics (Nauka, Moscow, 1991), pp. 178–190 [in Russian].

A. A. Spivak, “Relaxation Control and Diagnostics of Rock Masses,” Fiz.-Tekh. Probl. Razrabotki Polezn. Iskop., No. 5, 8–26 (1994).

A. A. Spivak, “Formation of an Inhomogeneous Stress State in the Geological Medium as a Result of Forced Interaction of Natural Structures,” in Physical Processes in Geospheres: Their Manifestations and Interaction (IDG RAN, Moscow, 1999), pp. 38–44 [in Russian].

A. A. Spivak, A. V. Adushkin, V. M. Ovchinnikov, et al., “Geophysical Fields under the Megalopolis Conditions,” Dokl. Akad. Nauk 332(5), 641–643 (1993).

A. A. Spivak, V. G. Spungin, E. G. Bugaev, and E. M. Gorbunova, “Diagnostics of Tectonic Structures in the Territory of the Novo-Voronezhskaya Nuclear Power Station,” Geoekologiya, No. 3, 268–276 (1999).

A. A. Spivak, G. N. Ivanchenko, S. B. Kishkina, et al., “The Geodynamic State of the Oka Area of the Nelidovo-Ryazan Tectonic Structure: Preliminary Results,” in Geophysical Processes in Lower and Upper Shells of the Earth (IDG RAN, Moscow, 2003a), Vol. 1, pp. 108–118 [in Russian].

A. A. Spivak, S. A. Kozhukhov, D. N. Loktev, et al., “Integrated System of Observations of Intergeospheric Interactions at the Crust-Surface Atmosphere Boundary,” in Geophysical Processes in Lower and Upper Shells of the Earth (IDG RAN, Moscow, 2003b), Vol. 2, pp. 323–333 [in Russian].

A. A. Spivak and S. B. Kishkina, “The Use of Microseismic Background for the Identification of Active Geotectonic Structures and Determination of Geodynamic Characteristics,” Fiz. Zemli, No. 7, 35–49 (2004) [Izvestiya, Phys. Solid Earth 40, 573–586 (2004)].

A. A. Spivak and S. A. Kozhukhov, “Spatiotemporal Variations in Natural Radon of the Subsoil Atmosphere,” Dokl. Akad. Nauk 394(5), 686–688 (2004).

A. A. Spivak, S. B. Kishkina, D. N. Loktev, et al., “Results of Multidisciplinary Instrumental Observations in the IDG RAN Mikhnevo Geophysical Research Area,” in Dynamics of Interacting Geospheres (IDG RAN, Moscow, 2004), pp. 13–25 [in Russian].

B. S. Svetov, “Theoretical Substantiation of the Seismoelectric Method in Geophysical Exploration,” Geofizika, No. 1, 28–39 (2000).

G. I. Voitov, “Monitoring of Atmospheric Radon in the Subsoils of Seismically Active Regions of Central Asia,” Fiz. Zemli, No. 1, 27–38 (1998) [Izvestiya, Phys. Solid Earth 34, 23–32 (1998)].

C. R. Wilson, “Earth Rotation and Global Change,” Rev. Geophys. Space Phys. 33, 225 (1995).

L. V. Yavorovich, R. M. Gol’d, and V. V. Lasukov, “Electromagnetic Signal Amplitudes in Shocked Rock Samples of Various Porosities,” Fiz.-Tekh. Probl. Razrabotki Polezn. Iskop., No. 6, 33–39 (1999).