A velocity space hybridization-based Boltzmann equation solver
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Publication:2123362
DOI10.1016/j.jcp.2020.109302OpenAlexW3003934183MaRDI QIDQ2123362
Publication date: 8 April 2022
Published in: Journal of Computational Physics (Search for Journal in Brave)
Full work available at URL: https://www.osti.gov/biblio/1601261
Related Items (3)
Hedging direct simulation Monte Carlo bets via event splitting ⋮ Accelerating the solution of the Boltzmann equation by controlling contributions to the collision integral ⋮ A variance-reduced direct Monte Carlo simulation method for solving the Boltzmann equation over a wide range of rarefaction
Uses Software
Cites Work
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- Controlling the weights of simulation particles: adaptive particle management using \(k\)-d trees
- Variance reduction for Fokker-Planck based particle Monte Carlo schemes
- Towards adaptive kinetic-fluid simulations of weakly ionized plasmas
- Monte Carlo solution of the Boltzmann equation via a discrete velocity model
- A comparative study of the DSBGK and DVM methods for low-speed rarefied gas flows
- Fokker-Planck-DSMC algorithm for simulations of rarefied gas flows
- Reduction of the number of particles in the stochastic weighted particle method for the Boltzmann equation
- The \(\Delta\)-\(\epsilon\) method for the Boltzmann equation
- Dynamic and selective control of the number of particles in kinetic plasma simulations
- Fragmentation, merging, and internal dynamics for PIC simulation with finite size particles.
- A new droplet collision algorithm
- A GPU-CUDA based direct simulation Monte Carlo algorithm for real gas flows
- Assessment of the cubic Fokker-Planck-DSMC hybrid method for hypersonic rarefied flows past a cylinder
- Octree particle management for DSMC and PIC simulations
- Importance sampling variance reduction for the Fokker-Planck rarefied gas particle method
- A hybrid kinetic/fluid model for solving the gas dynamics Boltzmann-BGK equation
- A stochastic weighted particle method for the Boltzmann equation
- Adaptive particle management in a particle-in-cell code
- On DSMC Calculations of Rarefied Gas Flows with Small Number of Particles in Cells
- Hybrid Multiscale Methods II. Kinetic Equations
- Variance reduction for Monte Carlo solutions of the Boltzmann equation
- Solution of the Boltzmann Kinetic Equation for Low Speed Flows
- Exact solutions of the Boltzmann equation
- DISCRETE VELOCITY MODEL AND IMPLICIT SCHEME FOR THE BGK EQUATION OF RAREFIED GAS DYNAMICS
- A Model for Collision Processes in Gases. I. Small Amplitude Processes in Charged and Neutral One-Component Systems
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