Computational Fluid Dynamics Analysis in Biomimetics Applications: A Review from Aerospace Engineering Perspective

Author:

Basri Ernnie Illyani1,Basri Adi Azriff1ORCID,Ahmad Kamarul Arifin1

Affiliation:

1. Department of Aerospace Engineering, Universiti Putra Malaysia, Serdang 43400, Selangor Darul Ehsan, Malaysia

Abstract

In many modern engineering fields, computational fluid dynamics (CFD) has been adopted as a methodology to solve complex problems. CFD is becoming a key component in developing updated designs and optimization through computational simulations, resulting in lower operating costs and enhanced efficiency. Even though the biomimetics application is complex in adapting nature to inspire new capabilities for exciting future technologies, the recent CFD in biomimetics is more accessible and practicable due to the availability of high-performance hardware and software with advances in computer sciences. Many simulations and experimental results have been used to study the analyses in biomimetics applications, particularly those related to aerospace engineering. There are numerous examples of biomimetic successes that involve making simple copies, such as the use of fins for swimming or the mastery of flying, which became possible only after the principles of aerodynamics were better understood. Therefore, this review discusses the essential methodology of CFD as a reliable tool for researchers in understanding the technology inspired by nature and an outlook for potential development through simulations. CFD plays a major role as decision support prior to undertaking a real commitment to execute any design inspired by nature and providing the direction to develop new capabilities of technologies.

Funder

UPM

Publisher

MDPI AG

Subject

Molecular Medicine,Biomedical Engineering,Biochemistry,Biomaterials,Bioengineering,Biotechnology

Reference62 articles.

1. Soares, C.M. (2005). II Eccomas Thematic Conference on Smart Structures and Materials, CRC Press.

2. Biomimetics—Using Nature to Inspire Human Innovation;Bioinspir. Biomim.,2006

3. Schmitt, O.H. (September, January 29). Some Interesting and Useful Biomimetic Transforms. Proceedings of the 3rd International Biophysics Congress, Boston, MA, USA.

4. Biomimetics: Forecasting the Future of Science, Engineering, and Medicine;Hwang;Int. J. Nanomed.,2015

5. Sayma, A. (2009). Computational Fluid Dynamics, BookBooN.

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