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In this paper, we study how streamer discharges are influenced by a previous voltage pulse using an axisymmetric fluid model. We simulate double-pulse positive streamers in N2-O2 mixtures containing 20% and 10% O2 at 1 bar. By varying the…

Plasma Physics · Physics 2023-11-14 H. Malla , A. Martinez , U. Ebert , J. Teunissen

In this paper we present the complete derivation of the effective contour model for electrical discharges which appears as the asymptotic limit of the minimal streamer model for the propagation of electric discharges, when the electron…

Plasma Physics · Physics 2011-09-06 M. Arrayás , M. A. Fontelos

We study the energy efficiency of species production by streamer discharges with a single voltage pulse in atmospheric dry air, using a 2D axisymmetric fluid model. Sixty different positive streamers are simulated by varying the electrode…

Plasma Physics · Physics 2023-06-30 Baohong Guo , Jannis Teunissen

A major obstacle for the understanding of long electrical discharges is the complex dynamics of streamer coronas, formed by many thin conducting filaments. Building macroscopic models for these filaments is one approach to attain a deeper…

Plasma Physics · Physics 2017-05-10 A. Luque , M. González , F. J. Gordillo-Vázquez

Positive streamer discharges have been studied and modelled extensively in air. Here we study positive streamers in CO$_2$ with and without oxygen admixtures; they are relevant for current high voltage technology as well as for discharges…

Plasma Physics · Physics 2021-02-03 Behnaz Bagheri , Jannis Teunissen , Ute Ebert

We simulate and characterize positive streamers in ambient air in homogeneous background electric fields from 4.5 to 26 kV/cm in a 4 cm gap. They can accelerate or decelerate depending on the background electric field. Many experiments have…

Plasma Physics · Physics 2023-06-14 Hani Francisco , Jannis Teunissen , Behnaz Bagheri , Ute Ebert

In this paper, we address two main topics: steady propagation fields for positive streamers in air and streamer deceleration in fields below the steady propagation field. We generate constant-velocity positive streamers in air with an…

Plasma Physics · Physics 2022-07-13 Xiaoran Li , Baohong Guo , Anbang Sun , Ute Ebert , Jannis Teunissen

A streamer coupling theory is developed to describe the formation of homogenous emission, and the high moving speed of emission patterns in high pressure discharges. By considering the effects of both electron diffusion and electronic drift…

Plasma Physics · Physics 2013-05-29 Qing Li , Demetre J. Economou , Yi-Kang Pu

Plasma accelerators utilize strong electric fields in plasma waves to accelerate charged particles, making them a compact alternative to radiofrequency technologies. Discharge capillaries are plasma sources used in plasma accelerator…

We simulate short positive and negative streamers in air at standard temperature and pressure. They evolve in homogeneous electric fields or emerge from needle electrodes with voltages of 10 to 20 kV. The streamer velocity at given streamer…

Plasma Physics · Physics 2008-11-21 Alejandro Luque , Valeria Ratushnaya , Ute Ebert

Previous studies of streamer discharge branching mechanisms have mainly been generative other than predictive. To predict or even control branching, a reliable connection between experimental conditions and streamer branching needs to be…

Plasma Physics · Physics 2019-03-27 Yujie Zhu , Xuewei Zhang , Chijie Zhuang , Rong Zeng , Jinliang He

The high order fluid model developed in the preceding paper is employed here to study the propagation of negative planar streamer fronts in pure nitrogen. The model consists of the balance equations for electron density, average electron…

Plasma Physics · Physics 2013-11-13 A. H. Markosyan , S. Dujko , U. Ebert

We investigate the dynamics of negative surface discharges in air through numerical simulations with a 2D fluid model. A geometry consisting of a flat dielectric embedded between parallel-plate electrodes is used. Compared to negative…

Plasma Physics · Physics 2021-06-02 Xiaoran Li , Anbang Sun , Jannis Teunissen

We study radio emissions from positive streamers in air using 3D simulations, from which the radiated electric field is computed by solving Jefimenko's equations. The simulations are performed at 0.5 bar using two photoionization methods:…

We study the effect of an inhomogeneous gas density on positive streamer discharges in air using a 3D fluid model with stochastic photoionization, generalizing earlier work with a 2D axisymmetric model by Starikovskiy and Aleksandrov (2019…

Plasma Physics · Physics 2023-10-05 Baohong Guo , Ute Ebert , Jannis Teunissen

The growth of streamer discharges is determined at their heads, for individual streamers as well as in collective phenomena, such as streamer trees or coronas or streamer bursts ahead of lightning leaders. Some properties of the streamer…

Plasma Physics · Physics 2025-03-05 Dennis Bouwman , Jannis Teunissen , Ute Ebert

Assumed having axial symmetry, the streamer discharge is often described by a fluid model in cylindrical coordinate system, which consists of convection dominated (diffusion) equations with source terms, coupled with a Poisson's equation.…

Computational Physics · Physics 2014-03-27 Chijie Zhuang , Rong Zeng

We simulate streamers in air at standard temperature and pressure in a short overvolted gap. The simulation is performed with a 3D hybrid model that traces the single electrons and photons in the low density region, while modeling the…

Plasma Physics · Physics 2011-12-01 Chao Li , Ute Ebert , Willem Hundsdorfer

We introduce the generic structure of a growth model for branched discharge trees that consistently combines a finite channel conductivity with the physical law of charge conservation. It is applicable, e.g., to streamer coronas near tip or…

Plasma Physics · Physics 2014-01-23 Alejandro Luque , Ute Ebert

We introduce a 3D hybrid model for streamer discharges that follows the dynamics of single electrons in the region with strong field enhancement at the streamer tip while approximating the many electrons in the streamer interior as…

Plasma Physics · Physics 2009-09-23 Chao Li , Ute Ebert , Willem Hundsdorfer