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Characteristics of Blood Vessel Wall Deformation with Porous Wall Conditions in an Aortic Arch
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Taqi Ahmad Cheema
Taqi Ahmad CheemaSchool of Mechanical Engineering, Kyungpook National University, 1370 Sankyuk-dong, Buk-gu, Deagu 702-701, South KoreaSearch for this author in:Gyu Man KimSchool of Mechanical Engineering, Kyungpook National University, 1370 Sankyuk-dong, Buk-gu, Deagu 702-701, South KoreaSearch for this author in:Choon Young LeeSchool of Mechanical Engineering, Kyungpook National University, 1370 Sankyuk-dong, Buk-gu, Deagu 702-701, South KoreaSearch for this author in:Jung Goo HongSchool of Mechanical Engineering, Kyungpook National University, 1370 Sankyuk-dong, Buk-gu, Deagu 702-701, South KoreaSearch for this author in:Moon Kyu KwakSchool of Mechanical Engineering, Kyungpook National University, 1370 Sankyuk-dong, Buk-gu, Deagu 702-701, South KoreaSearch for this author in:Cheol Woo ParkSchool of Mechanical Engineering, Kyungpook National University, 1370 Sankyuk-dong, Buk-gu, Deagu 702-701, South KoreaSearch for this author in:
Published/Copyright:
June 7, 2019
Received: 2013-09-09
Accepted: 2013-12-20
Published Online: 2019-06-07
Published in Print: 2014-04-01
© 2019 Taqi Ahmad Cheema, et al., published by Sciendo
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- On The Modeling of The Rheological Behavior of Bentonite Dispersions in Polymer Solutions
- Characteristics of Blood Vessel Wall Deformation with Porous Wall Conditions in an Aortic Arch
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Keywords for this article
aortic arch;
fluid structure interaction (FSI);
one-way coupling;
wall deformation;
physiological conditions;
porous media
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Articles in the same Issue
- A Vane Rheometer for Fresh Mortar: Development and Validation
- On The Modeling of The Rheological Behavior of Bentonite Dispersions in Polymer Solutions
- Characteristics of Blood Vessel Wall Deformation with Porous Wall Conditions in an Aortic Arch
- Comparison of Viscoelastic Properties of Chestnut and Acorn Starch by Means of Mechanical Models with an In-Built Springpot