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Earthquakes and global electrical circuit
Russian Journal of Physical Chemistry B, 2013Based on recent experimental and theoretical model results, the role of earthquakes and processes of their preparation as electricity sources in the global electric circuit (GEC) is discussed. In addition to the traditional elements of the GEC, such as thunderstorm currents, ionosphere currents, fair weather currents, and telluric currents ...
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1984
In the following five chapters, we deal with electric fields and currents generated in thunderstorms. Thunderstorms behave like batteries which are connected with the highly conducting ionosphere and earth via the barely conducting lower and middle atmosphere (Fig. 3.1).
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In the following five chapters, we deal with electric fields and currents generated in thunderstorms. Thunderstorms behave like batteries which are connected with the highly conducting ionosphere and earth via the barely conducting lower and middle atmosphere (Fig. 3.1).
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On the existence of a global electric circuit in the atmosphere of Mars
Moscow University Physics Bulletin, 2015The principal criteria for the formation and preservation of a global electric circuit (GEC) in the atmospheres of planets of the Solar System are analyzed. The conductivity profile of the Martian atmosphere is estimated from first principles and the possibility of existence of a GEC on Mars is considered. The proposed model suggests that no stationary
A. A. Evtushenko +2 more
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Global linearization of non-linear electrical circuits
SPIE Proceedings, 2005In the presented article a multivariable non-linear state equation system x=f(x,u,t), x(0)=x 0 was solved and a general form of the global linearization method was introduced. The above method was used for the analysis of the dynamics of a DC drive system supplied by a solar generator with a non-linear characteristics.
Andrzej Jordan +2 more
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Stratospheric Electricity and the Global Circuit
1976The purpose of this paper is to relate our present knowledge of stratospheric electrification to concepts of the global circuit. The crudest feature of this circuit – a sharply bounded perfectly conducting upper layer – only emerged in 1929. The earlier ideas of Wilson and Appleton were far more sophisticated and have much in common with modern ...
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Preservation of the Solvability of a Semilinear Global Electric Circuit Equation
Computational Mathematics and Mathematical Physics, 2018zbMATH Open Web Interface contents unavailable due to conflicting licenses.
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Forbush Decreases and the Global Electric Circuit
Solar wind is the driving force of the dynamics of Earth’s magnetosphere and ionosphere. When sudden changes of Interplanetary magnetic field (IMF) and pressure pulses in the solar wind impact the magnetosphere, the magnetosphere is compressed and/or temporarily weakened through magnetic reconnection.Gang Li, Jose Tacza
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The ionosphere as a load on the global atmospheric electrical circuit
Radiophysics and Quantum Electronics, 1994Low-frequency electric-mode excitation in the earth-ionosphere cavity is considered with the aid of Maxwellequation vector mode transformation with allowance for field penetration into the ionosphere and magnetosphere. It is shown that for atmospheric current generators, the ionosphere can exhibit the properties of a conductor or an insulator ...
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A Computer Aided Global Linearization of a Non-Linear Electric circuit
International Symposium on Parallel Computing in Electrical Engineering (PARELEC'06), 2006The paper describes a computer programme that assists in a process of a global linearization of a system of non-linear state equations. A library for performing symbolic computations has been created, which also is briefly presented. An example of application of the software has also been provided.
Robert Piotr Bycul, Pawel B. Myszkowski
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An Overview of Earth’s Global Electric Circuit and Atmospheric Conductivity
Space Science Reviews, 2008The Earth’s global atmospheric electric circuit depends on the upper and lower atmospheric boundaries formed by the ionosphere and the planetary surface. Thunderstorms and electrified rain clouds drive a DC current (∼1 kA) around the circuit, with the current carried by molecular cluster ions; lightning phenomena drive the AC global circuit.
Michael J. Rycroft +3 more
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