A Generalized mathematical representation of the shape of the Wheatley heart valve and the associated static stress fields upon opening and closing

Author:

Oliveira H L1,McKee S2,Buscaglia G C1,Cuminato J A1,Stewart I W2,Wheatley D J3

Affiliation:

1. Instituto de Ciências Matemáticas e de Computação - ICMC , Universidade de São Paulo - Campus de São Carlos, Caixa Postal 668, 13560-970 São Carlos-SP, Brasil

2. Department of Mathematics and Statistics , University of Strathclyde, Glasgow G1 1XH, UK

3. School of Science and Engineering , University of Dundee, Dundee DD1 4HN, UK

Abstract

Abstract This note extends previous work of the authors modelling the Wheatley valve by using six intersecting and contiguous ellipses to obtain a generalized mathematical representation of the Wheatley valve: this provides a number of free parameters that could be employed to obtain an optimal design. Since optimality is multi-objective with many of the objectives conflicting we focus on the stresses imposed on the valve by a constant force field. Three distinctly different designs are chosen and an analysis of the stresses is undertaken, conclusions are drawn and results are discussed.

Funder

São Paulo Research Foundation

Publisher

Oxford University Press (OUP)

Subject

Applied Mathematics

Reference25 articles.

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3. Optimal shape design as a material distribution problem;Bendsøe;Struct. Optim.,1989

4. Porcine versus pericardial bioprostheses: eleven-year follow up of a prospective randomized trial;Chaudhry;J. Heart Valve Dis.,2000

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1. Three‐dimensional fluid–structure interaction simulation of the Wheatley aortic valve;International Journal for Numerical Methods in Biomedical Engineering;2023-11-27

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