We simulate short positive and negative streamers in air at standard temperature and pressure. First, double-headed streamers in homogeneous electric fields of 50 kV cm^(−1) are briefly studied, and then we analyse streamers that emerge from needle electrodes with voltages of 10–20 kV in more detail. The streamer velocity at a given streamer length depends only weakly on the initial ionization seed, except in the case of negative streamers in homogeneous fields. We characterize the streamer evolution by length, velocity, head radius, head charge and maximal field enhancement. We show that the velocity of positive streamers is determined mainly by their radius and in quantitative agreement with recent experimental results both for radi...
We simulate and characterize positive streamers in ambient air in homogeneous background electric fi...
We simulate and characterize positive streamers in ambient air in homogeneous background electric fi...
We simulate and characterize positive streamers in ambient air in homogeneous background electric fi...
We simulate short positive and negative streamers in air at standard temperature and pressure. First...
We simulate short positive and negative streamers in air at standard temperature and pressure. First...
We simulate short positive and negative streamers in air at standard temperature and pressure. First...
We simulate short positive and negative streamers in air at standard temperature and pressure. First...
We simulate short positive and negative streamers in air at standard temperature and pressure. First...
We simulate short positive and negative streamers in air at standard temperature and pressure. First...
We simulate short positive and negative streamers in air at standard temperature and pressure. First...
We simulate short positive and negative streamers in air at standard temperature and pressure. First...
We study negative streamers in ambient air using a 2D axisymmetric fluid model. Depending on the bac...
We study negative streamers in ambient air using a 2D axisymmetric fluid model. Depending on the bac...
We study negative streamers in ambient air using a 2D axisymmetric fluid model. Depending on the bac...
We simulate and characterize positive streamers in ambient air in homogeneous background electric fi...
We simulate and characterize positive streamers in ambient air in homogeneous background electric fi...
We simulate and characterize positive streamers in ambient air in homogeneous background electric fi...
We simulate and characterize positive streamers in ambient air in homogeneous background electric fi...
We simulate short positive and negative streamers in air at standard temperature and pressure. First...
We simulate short positive and negative streamers in air at standard temperature and pressure. First...
We simulate short positive and negative streamers in air at standard temperature and pressure. First...
We simulate short positive and negative streamers in air at standard temperature and pressure. First...
We simulate short positive and negative streamers in air at standard temperature and pressure. First...
We simulate short positive and negative streamers in air at standard temperature and pressure. First...
We simulate short positive and negative streamers in air at standard temperature and pressure. First...
We simulate short positive and negative streamers in air at standard temperature and pressure. First...
We study negative streamers in ambient air using a 2D axisymmetric fluid model. Depending on the bac...
We study negative streamers in ambient air using a 2D axisymmetric fluid model. Depending on the bac...
We study negative streamers in ambient air using a 2D axisymmetric fluid model. Depending on the bac...
We simulate and characterize positive streamers in ambient air in homogeneous background electric fi...
We simulate and characterize positive streamers in ambient air in homogeneous background electric fi...
We simulate and characterize positive streamers in ambient air in homogeneous background electric fi...
We simulate and characterize positive streamers in ambient air in homogeneous background electric fi...