Permeability of bone scaffold with different pore geometries based on CFD simulation

Scaffold plays a significant role in promoting cells proliferation and differentiation in bone regeneration. Permeability is one of the factors that affect the function as it is able to extract waste and supply nutrients or oxygen. The aim of this study was to design different pore shapes and to sim...

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Main Authors: Jusoh, Norhana, Kamal Arifin, Muhammad Aqil Mustafa, Sulaiman, Muhammad Hamizan Hilmi, Mohd. Zaki, Muhammad Aiman, Mohd. Noh, Nurul Ammira, Ahmad Nahran, Nur Afiqah, Selvaganeson, Koshelya, Ali Akbar, Amy Nurain Syamimi
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Published: Penerbit UTM Press 2022
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Online Access:http://eprints.utm.my/104716/
http://dx.doi.org/10.11113/jmeditec.v1n1.16
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Institution: Universiti Teknologi Malaysia
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spelling my.utm.1047162024-02-25T03:47:43Z http://eprints.utm.my/104716/ Permeability of bone scaffold with different pore geometries based on CFD simulation Jusoh, Norhana Kamal Arifin, Muhammad Aqil Mustafa Sulaiman, Muhammad Hamizan Hilmi Mohd. Zaki, Muhammad Aiman Mohd. Noh, Nurul Ammira Ahmad Nahran, Nur Afiqah Selvaganeson, Koshelya Ali Akbar, Amy Nurain Syamimi TK Electrical engineering. Electronics Nuclear engineering Scaffold plays a significant role in promoting cells proliferation and differentiation in bone regeneration. Permeability is one of the factors that affect the function as it is able to extract waste and supply nutrients or oxygen. The aim of this study was to design different pore shapes and to simulate its fluid model in order to predict permeability value of the scaffold. There were few steps in this project which were scaffold design, fluid simulation analysis and permeability calculation. Three different pore shapes were designed, which were circle, triangle, and hexagon by using the Solidworks software. Each scaffold was designed by the combination of three unit cells. Then, Computational Fluid Dynamics (CFD) simulation in the Ansys Fluent software was conducted to obtain the pressure drop from the pressure distribution within the pores. The permeability of scaffold was obtained by applying Darcy's permeability formula at inlet velocity of 0.001 m/s, 0.01 m/s and 0.1 m/s. Based on the calculation, the permeability for hexagon pore shape were 3.96691x10-07 m2, 3.52 x10- 07 and 1.92 x10-07 for 0.001 m/s, 0.01 m/s and 0.1 m/s inlet velocity, respectively. Therefore, by increasing the inlet velocities, permeability decreased for all types of scaffolds. Furthermore. hexagon pore shape showed the highest permeability value when compared with triangle and circle’s pore shape. Nevertheless, all pore shapes demonstrated permeability values that within the range of natural bone permeability. Penerbit UTM Press 2022 Article PeerReviewed Jusoh, Norhana and Kamal Arifin, Muhammad Aqil Mustafa and Sulaiman, Muhammad Hamizan Hilmi and Mohd. Zaki, Muhammad Aiman and Mohd. Noh, Nurul Ammira and Ahmad Nahran, Nur Afiqah and Selvaganeson, Koshelya and Ali Akbar, Amy Nurain Syamimi (2022) Permeability of bone scaffold with different pore geometries based on CFD simulation. Journal of Medical Devices Technology, 1 (1). pp. 45-49. ISSN 2948-5436 http://dx.doi.org/10.11113/jmeditec.v1n1.16 DOI : 10.11113/jmeditec.v1n1.16
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Jusoh, Norhana
Kamal Arifin, Muhammad Aqil Mustafa
Sulaiman, Muhammad Hamizan Hilmi
Mohd. Zaki, Muhammad Aiman
Mohd. Noh, Nurul Ammira
Ahmad Nahran, Nur Afiqah
Selvaganeson, Koshelya
Ali Akbar, Amy Nurain Syamimi
Permeability of bone scaffold with different pore geometries based on CFD simulation
description Scaffold plays a significant role in promoting cells proliferation and differentiation in bone regeneration. Permeability is one of the factors that affect the function as it is able to extract waste and supply nutrients or oxygen. The aim of this study was to design different pore shapes and to simulate its fluid model in order to predict permeability value of the scaffold. There were few steps in this project which were scaffold design, fluid simulation analysis and permeability calculation. Three different pore shapes were designed, which were circle, triangle, and hexagon by using the Solidworks software. Each scaffold was designed by the combination of three unit cells. Then, Computational Fluid Dynamics (CFD) simulation in the Ansys Fluent software was conducted to obtain the pressure drop from the pressure distribution within the pores. The permeability of scaffold was obtained by applying Darcy's permeability formula at inlet velocity of 0.001 m/s, 0.01 m/s and 0.1 m/s. Based on the calculation, the permeability for hexagon pore shape were 3.96691x10-07 m2, 3.52 x10- 07 and 1.92 x10-07 for 0.001 m/s, 0.01 m/s and 0.1 m/s inlet velocity, respectively. Therefore, by increasing the inlet velocities, permeability decreased for all types of scaffolds. Furthermore. hexagon pore shape showed the highest permeability value when compared with triangle and circle’s pore shape. Nevertheless, all pore shapes demonstrated permeability values that within the range of natural bone permeability.
format Article
author Jusoh, Norhana
Kamal Arifin, Muhammad Aqil Mustafa
Sulaiman, Muhammad Hamizan Hilmi
Mohd. Zaki, Muhammad Aiman
Mohd. Noh, Nurul Ammira
Ahmad Nahran, Nur Afiqah
Selvaganeson, Koshelya
Ali Akbar, Amy Nurain Syamimi
author_facet Jusoh, Norhana
Kamal Arifin, Muhammad Aqil Mustafa
Sulaiman, Muhammad Hamizan Hilmi
Mohd. Zaki, Muhammad Aiman
Mohd. Noh, Nurul Ammira
Ahmad Nahran, Nur Afiqah
Selvaganeson, Koshelya
Ali Akbar, Amy Nurain Syamimi
author_sort Jusoh, Norhana
title Permeability of bone scaffold with different pore geometries based on CFD simulation
title_short Permeability of bone scaffold with different pore geometries based on CFD simulation
title_full Permeability of bone scaffold with different pore geometries based on CFD simulation
title_fullStr Permeability of bone scaffold with different pore geometries based on CFD simulation
title_full_unstemmed Permeability of bone scaffold with different pore geometries based on CFD simulation
title_sort permeability of bone scaffold with different pore geometries based on cfd simulation
publisher Penerbit UTM Press
publishDate 2022
url http://eprints.utm.my/104716/
http://dx.doi.org/10.11113/jmeditec.v1n1.16
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