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20242026
most citedExtended one-dimensional reduced model for blood flow within a stenotic artery

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math.NA2026

Second order explicit splitting scheme for fluid-poroelastic structure interaction problems

Yifan Wang, Jeonghun Lee, Suncica Canic

Efficient and provably accurate partitioned methods for fluid-poroelastic structure interaction remain challenging because explicit treatment of the Stokes-Biot interface coupling…

math.NA2026

Error Analysis of the Explicit Splitting Scheme for Fluid-Poroelastic Structure Interaction Problems

Yifan Wang, Jeonghun Lee, Suncica Canic

We present a priori error analysis for a fully discrete, parallelizable, explicit loosely coupled scheme for the time-dependent Stokes-Biot problem. The method decouples the fluid…

math.NA2025

An Unconditionally Stable Explicit Robin-Robin Partitioned Scheme for Fluid-Structure Interaction

Shihan Guo, Ping Lin, Yifan Wang +2

We propose a parallelizable partitioned (loosely coupled) scheme for fluid structure interaction (FSI) problems, specifically designed for efficient computation in modern engineeri…

math.NA20241 cited

Extended one-dimensional reduced model for blood flow within a stenotic artery

Suncica Canic, Shihan Guo, Yifan Wang +2

In this paper, we introduce an adapted one-dimensional (1D) reduced model aimed at analyzing blood flow within stenosed arteries. Differing from the prevailing 1D model \cite{Forma…

math.NA2024

A Fully Parallelizable Loosely Coupled Scheme for Fluid-Poroelastic Structure Interaction Problems

Shihan Guo, Yizhong Sun, Yifan Wang +2

We investigate the fluid-poroelastic structure interaction problem in a moving domain, governed by Navier-Stokes-Biot (NSBiot) system. First, we propose a fully parallelizable, loo…