Temperature rise by viscous dissipation effect on synovial fluid induced by oscillating motion in artificial hip joint

A distinctive case study on the temperature rise, induced exclusively by viscous dissipation effect, due to the oscillating motion on a specific composition of synovial fluid within a clearance alike to an artificial hip joint, is investigated numerically for the first time, using the Ansys Fluent s...

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Published in:Case studies in thermal engineering Vol. 24; p. 100845
Main Authors: Hor, C.H., Tso, C.P., Chen, G.M.
Format: Journal Article
Language:English
Published: Elsevier Ltd 01-04-2021
Elsevier
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Abstract A distinctive case study on the temperature rise, induced exclusively by viscous dissipation effect, due to the oscillating motion on a specific composition of synovial fluid within a clearance alike to an artificial hip joint, is investigated numerically for the first time, using the Ansys Fluent software. The joint clearance is modelled as concentric quarter hemispheres filled with a specific synovial fluid. The oscillating frequency considers the normal human walking speed and insulated thermal boundary conditions applied to surfaces that signifies the maximum viscous dissipation effect. Second order implicit time scheme is selected to achieve better result accuracy and ensure the unconditionally stable condition. The result shows that the viscous dissipation effect contributes to a maximum rise of 2.8° Celsius in temperature at the 1-h time mark, which is seen to lie within the in-vivo and in-vitro experiments reported in the literature. It is advocated that the viscous dissipation effect in the synovial fluid should be included in artificial hip joint model studies.
AbstractList A distinctive case study on the temperature rise, induced exclusively by viscous dissipation effect, due to the oscillating motion on a specific composition of synovial fluid within a clearance alike to an artificial hip joint, is investigated numerically for the first time, using the Ansys Fluent software. The joint clearance is modelled as concentric quarter hemispheres filled with a specific synovial fluid. The oscillating frequency considers the normal human walking speed and insulated thermal boundary conditions applied to surfaces that signifies the maximum viscous dissipation effect. Second order implicit time scheme is selected to achieve better result accuracy and ensure the unconditionally stable condition. The result shows that the viscous dissipation effect contributes to a maximum rise of 2.8° Celsius in temperature at the 1-h time mark, which is seen to lie within the in-vivo and in-vitro experiments reported in the literature. It is advocated that the viscous dissipation effect in the synovial fluid should be included in artificial hip joint model studies.
ArticleNumber 100845
Author Chen, G.M.
Tso, C.P.
Hor, C.H.
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  email: gmchen@mmu.edu.my
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CitedBy_id crossref_primary_10_1016_j_csite_2022_102291
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Keywords Synovial fluid
Viscous dissipation
Oscillating motion
Artificial hip joint
Language English
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Snippet A distinctive case study on the temperature rise, induced exclusively by viscous dissipation effect, due to the oscillating motion on a specific composition of...
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SubjectTerms Artificial hip joint
Oscillating motion
Synovial fluid
Viscous dissipation
Title Temperature rise by viscous dissipation effect on synovial fluid induced by oscillating motion in artificial hip joint
URI https://dx.doi.org/10.1016/j.csite.2021.100845
https://doaj.org/article/219b6a61379840fd8df7f012093dfd7f
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