Structure-Preserving and Data-Driven Methods for Subsurface Multiphysics

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Structure-Preserving and Data-Driven Methods for Subsurface Multiphysics

홍영준 0 2644
구분 응용수학
일정 2026-07-13(월) 14:00~15:30
세미나실 129동 301호
강연자 이상현 (Florida State University)
담당교수 홍영준
기타
Subsurface multiphysics simulations are challenging because they involve coupled flow, transport, mechanics, heat transfer, heterogeneous permeability (uncertain parameters), fracture evolution, and long-time dynamics. Reliable computation for these systems requires more than accuracy alone: numerical methods must preserve local conservation, respect physical bounds, handle uncertainty, and remain efficient for nonlinear high-dimensional models. This talk presents a unified research program on structure-preserving and data-driven methods for subsurface applications. I will discuss enriched Galerkin finite element methods for thermo-poro-elasticity systems with local mass conservation; flux-corrected transport methods for maximum-principle preservation; data assimilation methods for Biot and two-phase Darcy flow; and scientific machine learning approaches for inverse permeability reconstruction. I will also describe recent work on heterogeneous permeability modeling, phase-field fracture, and neural-network extrapolation of long-time dynamics. The central theme is that robust subsurface computation benefits from combining partial differential equations structure, numerical analysis, and data-driven modeling. Thus,  the unifying message is not ‘classical numerics versus SciML’; it is how to combine them so that each compensates for the other’s weaknesses.

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