In the present paper, we show, by means of numerical simulations, that electromagnetic field data obtained from the radiation of a return-stroke lightning discharge and measured over a short-duration time-window can be exploited to reconstruct the attenuation function of the lightning channel. To this end, we discretize the current-field equations derived in the first part of this work and then formulate an inversion algorithm whose output is the attenuation function to be computed. Next, as a numerical application, this algorithm is tested under different conditions, i.e., by considering a variety of time windows and underlying models for the attenuation function. As a result, the possibility of obtaining satisfactory reconstructions, even for short-duration time-windows, is highlighted.

Computation of the attenuation function of the lightning return-stroke current from electromagnetic fields measured in a short-duration time-window — Part II: Numerical implementation

Aramini, Riccardo;Brignone, Massimo;Mestriner, Daniele;Pastorino, Matteo;Procopio, Renato;Randazzo, Andrea;
2023-01-01

Abstract

In the present paper, we show, by means of numerical simulations, that electromagnetic field data obtained from the radiation of a return-stroke lightning discharge and measured over a short-duration time-window can be exploited to reconstruct the attenuation function of the lightning channel. To this end, we discretize the current-field equations derived in the first part of this work and then formulate an inversion algorithm whose output is the attenuation function to be computed. Next, as a numerical application, this algorithm is tested under different conditions, i.e., by considering a variety of time windows and underlying models for the attenuation function. As a result, the possibility of obtaining satisfactory reconstructions, even for short-duration time-windows, is highlighted.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11567/1117805
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