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  4. Modeling of Different Charge Transfer Modes in Upward Flashes Constrained by Simultaneously Measured Currents and Fields
 
conference paper

Modeling of Different Charge Transfer Modes in Upward Flashes Constrained by Simultaneously Measured Currents and Fields

He, Lixia  
•
Azadifar, Mohammad  
•
Li, Quanxin  
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2018
2018 IEEE International Symposium on Electromagnetic Compatibility and 2018 IEEE Asia-Pacific Symposium on Electromagnetic Compatibility (EMC/APEMC)
2018 Joint IEEE EMC and Asia Pacific EMC Symposium

The purpose of the paper is to investigate charge transfer modes in upward lightning flashes by means of numerical simulation constrained by concurrent observations of electromagnetic fields and currents. In particular, we focus on different types of pulses occurring in upward negative flashes. The MTLE return stroke model is used to compute the electric fields associated with return strokes and mixed-mode pulses, while the M-component model of Rakov et al. (1995) is used to compute electric fields associated with M-components and M-component-type ICC pulses. The simulation results are constrained by experimental data consisting of simultaneous records of lightning currents and electric fields associated with upward flashes at the Santis tower. The inferred velocities for M-component and M-component-type ICC pulses range from 2.0x10(7) m/s to 9.0x10(7) m/s, and the corresponding junction point heights range from 1.0 km to 2.0 km. The inferred pulse velocities for return strokes and mixed-mode pulses range from 1.3x10(8) m/s to 1.65x10(8) m/s. The inferred current attenuation constants of the MTLE model obtained in this study range from 0.3 km to 0.8 km, lower than the value of 2.0 km suggested in previous studies. The obtained results confirm the similarity of mixed-mode charge transfer to ground with return strokes on the one hand, and of the M-component-type ICC with classical M-components mode of charge transfer on the other hand.

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Type
conference paper
DOI
10.1109/ISEMC.2018.8393809
Author(s)
He, Lixia  
Azadifar, Mohammad  
Li, Quanxin  
Rubinstein, Marcos
Rakov, Vladimir A.
Mediano, Arturo
Pavanello, Davide  
Paolone, Mario  
Xing, H.
Rachidi, Farhad  
Date Issued

2018

Published in
2018 IEEE International Symposium on Electromagnetic Compatibility and 2018 IEEE Asia-Pacific Symposium on Electromagnetic Compatibility (EMC/APEMC)
Start page

403

End page

407

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
SCI-STI-FR  
DESL  
Event nameEvent placeEvent date
2018 Joint IEEE EMC and Asia Pacific EMC Symposium

Singapore

May 14-17, 2018

Available on Infoscience
May 22, 2018
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/146549
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