A cell-resolved, Lagrangian solver for modeling red blood cell dynamics in macroscale flows
When red blood cells (RBCs) experience non-physiologically high stresses, e.g., in medical devices, they can rupture in a process called hemolysis. Directly simulating this process is computationally unaffordable given that the length scales of a medical device are several orders of magnitude larger...
Veröffentlicht in: | Journal of computational physics. - 1986. - 461(2022) vom: 15. Juli |
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Format: | Online-Aufsatz |
Sprache: | English |
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2022
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Zugriff auf das übergeordnete Werk: | Journal of computational physics |
Schlagworte: | Journal Article Boundary integral method Lagrangian particle tracking Red blood cells Spherical harmonics Stokes flow |
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