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Grant Rydquist

Showing results (1-10 of 6) with videos related to

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Physical Review Fluids|February 28, 2025
Investigating the effect of turbulence on hemolysis through cell-resolved fluid-structure interaction simulations of individual red blood cellsGrant Rydquist, Mahdi Esmaily
Journal of Biomechanical Engineering|December 10, 2023
Analysis of the Suitability of an Effective Viscosity to Represent Interactions Between Red Blood Cells in Shear FlowGrant Rydquist, Mahdi Esmaily
Journal of Computational Physics|October 24, 2022
A cell-resolved, Lagrangian solver for modeling red blood cell dynamics in macroscale flowsGrant Rydquist, Mahdi Esmaily
Journal of Computational Physics|April 10, 2024
An optimal <math></math> scheme for simulations of colliding, particle-laden flows on unstructured gridsGrant Rydquist, Mahdi Esmaily
Computer Methods and Programs in Biomedicine|February 23, 2024
A homogenized two-phase computational framework for meso- and macroscale blood flow simulationsAbhishek Karmakar, Greg W Burgreen, Grant Rydquist, et al.
Nature Communications|July 13, 2022
A SOX17-PDGFB signaling axis regulates aortic root developmentPengfei Lu, Ping Wang, Bingruo Wu, et al.
Pageof 1

Showing results (1-10 of 6) with videos related to

Sort By:
Pageof 1
Physical Review Fluids|February 28, 2025
Investigating the effect of turbulence on hemolysis through cell-resolved fluid-structure interaction simulations of individual red blood cellsGrant Rydquist, Mahdi Esmaily
Journal of Biomechanical Engineering|December 10, 2023
Analysis of the Suitability of an Effective Viscosity to Represent Interactions Between Red Blood Cells in Shear FlowGrant Rydquist, Mahdi Esmaily
Journal of Computational Physics|October 24, 2022
A cell-resolved, Lagrangian solver for modeling red blood cell dynamics in macroscale flowsGrant Rydquist, Mahdi Esmaily
Journal of Computational Physics|April 10, 2024
An optimal <math></math> scheme for simulations of colliding, particle-laden flows on unstructured gridsGrant Rydquist, Mahdi Esmaily
Computer Methods and Programs in Biomedicine|February 23, 2024
A homogenized two-phase computational framework for meso- and macroscale blood flow simulationsAbhishek Karmakar, Greg W Burgreen, Grant Rydquist, et al.
Nature Communications|July 13, 2022
A SOX17-PDGFB signaling axis regulates aortic root developmentPengfei Lu, Ping Wang, Bingruo Wu, et al.
Pageof 1