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A direct forcing immersed boundary method for biofluid simulations using a non-linear rotation free shell model on unstructured grids

2026-05-19

Abstract excerpt

Thin structures such as heart valves and aortic dissection flaps interact dynamically with blood flow in human vessels. Their flexibility and capacity for large deformations generate complex, highly transient hemodynamic patterns over the cardiac cycle. Accurately resolving these interactions remains challenging for conventional boundary-fitted fluid–structure interaction approaches. We present an immersed boundar...

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Literature Corpus work
a83688d1-df5d-579b-9e8b-52e639dcaa73
DOI
10.64898/2026.05.16.725689
Open publication

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A direct forcing immersed boundary method for biofluid simulations using a non-linear rotation free shell model on unstructured gridsDOI 10.64898/2026.05.16.725689
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