HR: 0800h
AN: AE41A-0142 [Abstracts]
TI: Soliton Solutions for Conventional Breakdown in Air: Implications for Stepped Leaders
AU: Colestock, P
EM: colestoc@lanl.gov
AF: Space and Remote Sensing Sciences (ISR-2), LANL, Los Alamos, NM 87545
United States
AU: * Jeffery, C
EM: cjeffery@lanl.gov
AF: Space and Remote Sensing Sciences (ISR-2), LANL, Los Alamos, NM 87545
United States
AU: Zinn, J
EM: jzinn@lanl.gov
AF: Space and Remote Sensing Sciences (ISR-2), LANL, Los Alamos, NM 87545
United States
AU: Shao, X
EM: xshao@lanl.gov
AF: Space and Remote Sensing Sciences (ISR-2), LANL, Los Alamos, NM 87545
United States
AB:
Numerous studies have been carried out over the past several decades regarding the physics of electrical breakdown and
discharge that involve various degrees of approximation. Many of these studies employ numerical solutions of the relevant
dynamical equations. Recent results point to the existence of well localized cloud of charge that propagates as a
self-similar ensemble until its initial stored energy
has been dissipated through ionization, attachment, recombination and radiation (e.g. Lowke [IEEE TPS, 2004]). In this work
we present an analytic treatment of electrical breakdown and charge propagation using the ionization kinetics of Lowke [J
Phys D, 1992] and a simple approximation for the drift velocity of electrons. We find explicit soliton solutions for simple
geometries of the fully nonlinear set of
dynamical equations. Our results are compared to previous studies in detail and the implications of this work for leader
propagation and ball lightning will be assessed.
DE: 3324 Lightning
DE: 4455 Nonlinear waves, shock waves, solitons (0689, 2487, 3280, 3285, 4275, 6934, 7851,
DE: 6984 Waves in plasma (7867)
DE: 7852 Solitons and solitary waves (4455)
SC: Atmospheric and Space Electricity [AE]
MN: Fall Meeting 2005