Numerical Study on the Effects of a Boundary on the Chaotic Behavior of a Small Cluster of Microbubbles in an Ultrasonic Field

The potential of microbubbles in biomedical applications such as drug and gene delivery may redraw the boundaries of the biomedical field thus inspiring numerous studies on the dynamics of microbubbles. This study will investigate the dynamical behaviour of a small cluster of microbubbles subjected...

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Main Authors: Fatimah, Dzaharudin, Ummu Kulthum, Jamaludin, Mohd Nazri, Kasuan
Format: Conference or Workshop Item
Published: 2016
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Online Access:http://umpir.ump.edu.my/id/eprint/16473/
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spelling my.ump.umpir.164732018-11-30T01:54:16Z http://umpir.ump.edu.my/id/eprint/16473/ Numerical Study on the Effects of a Boundary on the Chaotic Behavior of a Small Cluster of Microbubbles in an Ultrasonic Field Fatimah, Dzaharudin Ummu Kulthum, Jamaludin Mohd Nazri, Kasuan TJ Mechanical engineering and machinery The potential of microbubbles in biomedical applications such as drug and gene delivery may redraw the boundaries of the biomedical field thus inspiring numerous studies on the dynamics of microbubbles. This study will investigate the dynamical behaviour of a small cluster of microbubbles subjected to ultrasound near a solid boundary in order to elucidate the effects of microbubble oscillation near endothelial cells in real clinical scenarios. A mathematical model that governs the radial oscillation for bubbles near a plane rigid wall is derived using method of images and solved numerically for a given set of ultrasound parameters. In this paper, it is assumed that all bubbles in the system have the same equilibrium radius and are equidistant from one another and from the solid boundary. With the current mathematical model, it is demonstrated that the presence of a solid wall has a significant effect on the bifurcation structure and the route to chaos of the bubble system. As separation distance between microbubbles and solid boundary is decreased, the chaotic regions shift to occur at different ultrasound frequencies. Furthermore, the chaotic behaviour of the microbubbles influences the amplitude oscillation associated with the bubble response. 2016 Conference or Workshop Item PeerReviewed Fatimah, Dzaharudin and Ummu Kulthum, Jamaludin and Mohd Nazri, Kasuan (2016) Numerical Study on the Effects of a Boundary on the Chaotic Behavior of a Small Cluster of Microbubbles in an Ultrasonic Field. In: 4th International Conference on Mathematical Sciences, 15-17 November 2016 , Putrajaya, Malaysia. . (Unpublished)
institution Universiti Malaysia Pahang
building UMP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Pahang
content_source UMP Institutional Repository
url_provider http://umpir.ump.edu.my/
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Fatimah, Dzaharudin
Ummu Kulthum, Jamaludin
Mohd Nazri, Kasuan
Numerical Study on the Effects of a Boundary on the Chaotic Behavior of a Small Cluster of Microbubbles in an Ultrasonic Field
description The potential of microbubbles in biomedical applications such as drug and gene delivery may redraw the boundaries of the biomedical field thus inspiring numerous studies on the dynamics of microbubbles. This study will investigate the dynamical behaviour of a small cluster of microbubbles subjected to ultrasound near a solid boundary in order to elucidate the effects of microbubble oscillation near endothelial cells in real clinical scenarios. A mathematical model that governs the radial oscillation for bubbles near a plane rigid wall is derived using method of images and solved numerically for a given set of ultrasound parameters. In this paper, it is assumed that all bubbles in the system have the same equilibrium radius and are equidistant from one another and from the solid boundary. With the current mathematical model, it is demonstrated that the presence of a solid wall has a significant effect on the bifurcation structure and the route to chaos of the bubble system. As separation distance between microbubbles and solid boundary is decreased, the chaotic regions shift to occur at different ultrasound frequencies. Furthermore, the chaotic behaviour of the microbubbles influences the amplitude oscillation associated with the bubble response.
format Conference or Workshop Item
author Fatimah, Dzaharudin
Ummu Kulthum, Jamaludin
Mohd Nazri, Kasuan
author_facet Fatimah, Dzaharudin
Ummu Kulthum, Jamaludin
Mohd Nazri, Kasuan
author_sort Fatimah, Dzaharudin
title Numerical Study on the Effects of a Boundary on the Chaotic Behavior of a Small Cluster of Microbubbles in an Ultrasonic Field
title_short Numerical Study on the Effects of a Boundary on the Chaotic Behavior of a Small Cluster of Microbubbles in an Ultrasonic Field
title_full Numerical Study on the Effects of a Boundary on the Chaotic Behavior of a Small Cluster of Microbubbles in an Ultrasonic Field
title_fullStr Numerical Study on the Effects of a Boundary on the Chaotic Behavior of a Small Cluster of Microbubbles in an Ultrasonic Field
title_full_unstemmed Numerical Study on the Effects of a Boundary on the Chaotic Behavior of a Small Cluster of Microbubbles in an Ultrasonic Field
title_sort numerical study on the effects of a boundary on the chaotic behavior of a small cluster of microbubbles in an ultrasonic field
publishDate 2016
url http://umpir.ump.edu.my/id/eprint/16473/
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