Tabulated data of electron properties in acetylene (C2H2) at 293.15 K obtained by solving the electron Boltzmann equation (BE) in density gradient (DG) representation (method BE DG) using the recommended electron collision cross section data of M.-Y. Song et al., https://doi.org/10.1063/1.4976569. The data table includes the reduced electric field, E/N [Td], and the electron properties flux drift velocity, w [m/s], bulk drift velocity, W [m/s], gas number density times flux mobility, N mu_w [m^{-1}V^{-1}s^{-1}], gas number density times bulk mobility, N mu_W [m^{-1}V^{-1}s^{-1}], bulk longitudinal component of diffusion tensor times gas density, D_L N [m^{-1}s^{-1}], bulk transverse component of diffusion tensor times gas density, D_T N [m^{-1}s^{-1}], flux longitudinal component of diffusion tensor times gas density, D_Lf N [m^{-1}s^{-1}], flux transverse component of diffusion tensor times gas density, D_Tf N [m^{-1}s^{-1}], reduced effective ionization frequency, nu_eff/N [m^{3}/s], and reduced effective steady-state Townsend ionization coefficient, alpha_eff/N [m^{2}].
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Electron swarm parameters in C2H2 - electron Boltzmann calculation results using BE DG method
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- Electron swarm parameters in C2H2 - measured bulk drift velocity
- Electron swarm parameters in C2H2 - measured longitudinal diffusion coefficient
- Electron swarm parameters in C2H2 - measured ionization frequency
- Electron swarm parameters in C2H2 - measured SST ionization coefficient
- Electron swarm parameters in C2H2 - Monte Carlo simulation results
- Electron swarm parameters in C2H2 - electron Boltzmann calculation results using BE DG method
- Electron swarm parameters in C2H2 - electron Boltzmann calculation results using BE 0D method
- Electron swarm parameters in C2H2 - electron Boltzmann calculation results using BE SST method
Additional Information
Field | Value |
---|---|
mimetype | text/csv |
filesize | 9.53 KB |
resource type | file upload |
timestamp | Jan 30, 2020 |
Resource filetype | csv |
Resource datatype | data table |
Resource range | 0.1 Td <= E/N <= 2000 Td at 293.15 K |
Resource quality | published |