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Numerical Modeling of the Pulse Wave Propagation
in Human Thoracic Aorta

Publication date: 26.08.2016

Technical Transactions, 2016, Mechanics Issue 1-M (1) 2016, pp. 195 - 204

https://doi.org/10.4467/2353737XCT.16.019.4983

Authors

,
Kazimierz Rup
Institute of Thermal and Process Engineering, Faculty of Mechanical Engineering, Cracow University of Technology
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Agata Dróżdż
Jagiellonian Centre for Experimental Therapeutics, Jagiellonian University
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Titles

Numerical Modeling of the Pulse Wave Propagation
in Human Thoracic Aorta

Abstract

In this paper, a solution to the numerical simulation of blood flow in the human thoracic aorta is presented. In vivo measurements of pulsewave waveforms were performed and used as the initial condition for numerical calculations. Equations resulting from the analysis of the general mass and momentum balance for blood flow were used for the description of aortal haemodynamics. The system of differential equations has been solved with the method of characteristics, which is often used in hydrodynamic problems. Numerical simulations were employed for the cases of three people of differing ages. As a result, time-dependent profiles of blood pressure and velocity as well as deformation of the arterial wall were determined.

References


Information

Information: Technical Transactions, 2016, Mechanics Issue 1-M (1) 2016, pp. 195 - 204

Article type: Original article

Titles:

Polish:

Numerical Modeling of the Pulse Wave Propagation
in Human Thoracic Aorta

English:

Numerical Modeling of the Pulse Wave Propagation
in Human Thoracic Aorta

Authors

Institute of Thermal and Process Engineering, Faculty of Mechanical Engineering, Cracow University of Technology

Jagiellonian Centre for Experimental Therapeutics, Jagiellonian University

Published at: 26.08.2016

Article status: Open

Licence: None

Percentage share of authors:

Kazimierz Rup (Author) - 50%
Agata Dróżdż (Author) - 50%

Article corrections:

-

Publication languages:

English