Cory Hauck - Approximate entropy-based moment closures - IPAM at UCLA @IPAMUCLA
Cory Hauck - Approximate entropy-based moment closures - IPAM at UCLA  @IPAMUCLA
Uploaded May 2026 | Updated September 2026, 3 weeks ago
Recorded 19 May 2026. Cory Hauck of Oak Ridge National Laboratory presents "Approximate entropy-based moment closures" at IPAM's Multi-Fidelity Methods to Enable Robust Optimization and Real-Time Control of Fusion Processes Workshop.
Abstract: Despite their elegant mathematical structure, entropy-based moment closures face severe implementation challenges that have limited their wide-spread use. In this talk, I will present two approximations that attempt to address some of these challenges. The first approximation relies on a regularization of the optimization problem that defines the original entropy-based closure. The main advantage of the regularization is that moment vectors need not take on traditional realizable values. However, the resulting equations still retain many important structural features, such as hyperbolicity and an entropy dissipation law. These results reveal the moment entropy as a key tool in constructing approximate closures and motivate a second approximation of the entropy-based closure that is constructed via a convex fit of the moment entropy. The two approaches can be combined, yielding an efficient strategy for implementing moment systems of moderate order.
Learn more online at: https://www.ipam.ucla.edu/programs/workshops/workshop-iv-multi-fidelity-methods-to-enable-robust-optimization-and-real-time-control-of-fusion-processes/?tab=overview
Cory Hauck - Approximate entropy-based moment closures - IPAM at UCLASmita Krishnaswamy - Cellular Trajectories & Regulatory Networks w/ Neural & Graph ODE Models, 1/2James Cook - Parametric Tokamak Design in BLUEMIRA - IPAM at UCLAPaul Christiano - Mechanistic Estimation - IPAM at UCLATakeo Hoshi - General data-analysis framework ODAT-SE and its applications - IPAM at UCLAKaren Willcox - The Important Role of Mathematics in the Digital Twin RevolutionAdam Holmes - From NISQ to Fault Tolerance: Architecting the Accelerated Quantum SupercomputerAthena Caesura - Deeper Compilation in the Active Volume Architecture - IPAM at UCLATamara Kohler - Classical topology and quantum complexity - IPAM at UCLAMichael Winer - Mechanistic Understanding of Multilayer Perceptrons - IPAM at UCLABryan Reuter - Enhancing Particle-Based Kinetic Methods Through Multifidelity DiscretizationsYunan Yang - Adjoint Direct Simulation Monte Carlo for Optimization and Control of Rarefied Flows
Institute for Pure & Applied Mathematics (IPAM) |

Cory Hauck - Approximate entropy-based moment closures - IPAM at UCLA

SHARE TO X SHARE TO REDDIT SHARE TO FACEBOOK WALLPAPER