default search action
Journal of Computational Physics, Volume 494
Volume 494, December 2023
- Yongcun Song, Xiaoming Yuan, Hangrui Yue:
A numerical approach to the optimal control of thermally convective flows. 112458
- Duan Chen:
A hybrid stochastic interpolation and compression method for kernel matrices. 112491 - Daniil Bochkov, Tresa Pollock, Frédéric Gibou:
A numerical method for sharp-interface simulations of multicomponent alloy solidification. 112494 - Marco David, Florian Méhats:
Symplectic learning for Hamiltonian neural networks. 112495
- Suncica Canic, Luka Grubisic, Matko Ljulj, Marcel Maretic, Josip Tambaca:
Geometric optimization of vascular stents modeled as networks of 1D rods. 112497
- Apoorv Srivastava, Wei Kang, Daniel M. Tartakovsky:
Feature-informed data assimilation. 112499 - James Ludlam, Katherine Tant, Victorita Dolean, Andrew Curtis:
Travel times and ray paths for acoustic and elastic waves in generally anisotropic media. 112500 - Mikhail Shashkov:
An adaptive moments-based interface reconstruction using intersection of the cell with one half-plane, two half-planes and a circle. 112504 - Weifan Liu, Minghao W. Rostami:
A multigrid method for kernel functions acting on interacting structures with applications to biofluids. 112506 - Ngoc Cuong Nguyen, Jordi Vila-Pérez, Jaime Peraire:
An adaptive viscosity regularization approach for the numerical solution of conservation laws: Application to finite element methods. 112507 - Shuai Li, A-Man Zhang, Rui Han:
3D model for inertial cavitation bubble dynamics in binary immiscible fluids. 112508 - Xinwei Cai, Zhen Li, Xin Bian:
Arbitrary slip length for fluid-solid interface of arbitrary geometry in smoothed particle dynamics. 112509 - Yu Cheng, Yuhui Wang, Hanhong Liu, Lilin Li, Xiang-Hua Wang, Xingqi Zhang, Zhizhang Chen, Shunchuan Yang:
A stable FDTD subgridding scheme with SBP-SAT for transient TM analysis. 112510 - Thomas Norddine, M. Ferrand, S. Benhamadouche:
Realizability-preserving time-stepping for the differential Reynolds stress turbulence models. 112511 - Ngoc Cuong Nguyen, Jaime Peraire:
Efficient and accurate nonlinear model reduction via first-order empirical interpolation. 112512 - Xinjie Ji, James Gabbard, Wim M. van Rees:
A sharp immersed method for 2D flow-body interactions using the vorticity-velocity Navier-Stokes equations. 112513 - Michele Pütz, Michael Oevermann:
Performance and accuracy of the basic closure algorithm of quadrature-based moment methods. 112514 - Tianpei Cheng, Haijian Yang, Jizu Huang, Chao Yang:
Nonlinear parallel-in-time simulations of multiphase flow in porous media. 112515 - Saem Han, Selim Esedoglu, Krishna C. Garikipati:
High order schemes for gradient flow with respect to a metric. 112516 - Min Sue Park, Cheolhyeong Kim, Hwijae Son, Hyung Ju Hwang:
The deep minimizing movement scheme. 112518 - Iain Henderson, Pascal Noble, Olivier Roustant:
Covariance models and Gaussian process regression for the wave equation. Application to related inverse problems. 112519 - Yuichi Kuya, Wataru Okumura, Keisuke Sawada:
A kinetic energy and entropy preserving (KEEP) finite volume scheme on unstructured meshes for compressible flows. 112521 - Timon S. Gutleb, José A. Carrillo:
A static memory sparse spectral method for time-fractional PDEs. 112522 - Gauthier Wissocq, Said Taileb, Song Zhao, Pierre Boivin:
A hybrid lattice Boltzmann method for gaseous detonations. 112525 - Yuchen He, Sung Ha Kang, Wenjing Liao, Hao Liu, Yingjie Liu:
Group Projected subspace pursuit for IDENTification of variable coefficient differential equations (GP-IDENT). 112526 - Alexandru Fikl, Daniel J. Bodony:
Adjoint-based control of three dimensional Stokes droplets. 112532 - Andrey Petrushov, Boris I. Krasnopolsky:
Automated tuning for the parameters of linear solvers. 112533 - Gábor Tóth:
Total of time variation diminishing principle for conservation laws. 112534
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.