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Preprint Review Version 1 Preserved in Portico This version is not peer-reviewed

Computational Fluid-Structure Interaction in Microfluidics

Version 1 : Received: 31 May 2024 / Approved: 31 May 2024 / Online: 1 June 2024 (09:33:18 CEST)

A peer-reviewed article of this Preprint also exists.

Musharaf, H.M.; Roshan, U.; Mudugamuwa, A.; Trinh, Q.T.; Zhang, J.; Nguyen, N.-T. Computational Fluid–Structure Interaction in Microfluidics. Micromachines 2024, 15, 897. Musharaf, H.M.; Roshan, U.; Mudugamuwa, A.; Trinh, Q.T.; Zhang, J.; Nguyen, N.-T. Computational Fluid–Structure Interaction in Microfluidics. Micromachines 2024, 15, 897.

Abstract

Micro elastofluidics is a transformative branch of microfluidics, leveraging fluid-structure interaction (FSI) at the microscale to enhance the functionality and efficiency of various microdevices. This review paper elucidates the critical role of advanced computational FSI methods in the field of micro elastofluidics. By focusing on the interplay between fluid mechanics and structural responses, these computational methods facilitate the intricate design and optimisation of microdevices such as microvalves, micropumps, and micromixers, which rely on the precise control of fluidic and structural dynamics. In addition, these computational tools extend to the development of biomedical devices, enabling precise particle manipulation and enhancing therapeutic outcomes in cardiovascular applications. Furthermore, this paper addresses the current challenges in computational FSI and highlights the necessity for further development of tools to tackle complex, time-dependent models under microfluidic environments and varying conditions. Our review highlights the expanding potential of FSI in micro elastofluidics, offering a roadmap for future research and development in this promising area.

Keywords

Micro elastofluidics; fluid-structure interaction; computational methods; microdevices; cardiovascular modelling

Subject

Engineering, Mechanical Engineering

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