A systematic multi-parameter and multi-platform approach to study the slow process of earthquake preparation is fundamental to gain some insights on this complex phenomenon. In particular, an important contribution is the integrated analysis between ground geophysical data and satellite data. In this paper we review some of the more recent results and suggest the next directions of this kind of research. Our intention is not to detect a particular precursor but to understand the physics underlying the various observations and to establish a reliable physical model of the preparation phase before an impending earthquake. In this way, future investigation will search for suitable fore-patterns, which the physical model of multi-layers coupling predicts and characterizes by quasi-synchronism in time and geo-consistency in space. We also present alternative explanations for some anomalies which are not actually related to earthquakes, rather to other natural or anthropic processes. © 2015 Elsevier Ltd.

Geospace perturbations induced by the Earth: The state of the art and future trends

Conti, L.;
2015-01-01

Abstract

A systematic multi-parameter and multi-platform approach to study the slow process of earthquake preparation is fundamental to gain some insights on this complex phenomenon. In particular, an important contribution is the integrated analysis between ground geophysical data and satellite data. In this paper we review some of the more recent results and suggest the next directions of this kind of research. Our intention is not to detect a particular precursor but to understand the physics underlying the various observations and to establish a reliable physical model of the preparation phase before an impending earthquake. In this way, future investigation will search for suitable fore-patterns, which the physical model of multi-layers coupling predicts and characterizes by quasi-synchronism in time and geo-consistency in space. We also present alternative explanations for some anomalies which are not actually related to earthquakes, rather to other natural or anthropic processes. © 2015 Elsevier Ltd.
2015
Ionosphere
Structural geology, Anthropic process
Atmosphere-ionosphere couplings
Earthquake physics
Geophysical data
Integrated analysis
Integrated earthquake study
Seismic precursors
State of the art, Earthquakes, earthquake mechanism
earthquake precursor
future prospect
ionosphere
lithospheric structure
seismology
trend analysis
Earthquake physics
Integrated earthquake study
Lithosphere-atmosphere-ionosphere coupling
Seismic precursors
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14086/4816
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