Feedback flow information is of significance to enable underwater locomotion controllers with higher adaptability and efficiency within varying environments. Inspired from fish sensing their external flow via near-body pressure, a computational scheme is proposed and developed in this paper. In conjunction with the scheme, Computational Fluid Dynamics (CFD) is employed to study the bio-inspired fish swimming hydrodynamics. The spatial distribution and temporal variation of the near-body pressure of fish are studied over the whole computational domain. Furthermore, a filtering algorithm is designed and implemented to fuse near-body pressure of one or multiple points for the estimation on the external flow. The simulation results demonstrate ...
International audienceThe social interaction of fish has been mainly studied in 2D without hydrodyna...
Fish have evolved diverse and robust locomotive strategies to swim efficiently in complex fluid envi...
International audienceThe social interaction of fish has been mainly studied in 2D without hydrodyna...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Abstract—This paper presents ongoing work toward the design and use of an artificial lateral-line sy...
The lateral line sense organ in fish detects fluid flow around its body, and is used to perform a wi...
To understand the mechanics of fish swimming, we need to know the forces exerted by the fluid and ho...
To understand the mechanics of fish swimming, we need to know the forces exerted by the fluid and ho...
To understand the mechanics of fish swimming, we need to know the forces exerted by the fluid and ho...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Ocean Engineering, 1999.Includes bib...
Bio-inspired solutions have been deeply investigated in the last two decades as a source of propulsi...
Bio-inspired solutions have been deeply investigated in the last two decades as a source of propulsi...
In this paper, a versatile Multi-Body Dynamic (MBD) algorithm is developed to integrate an incompres...
International audienceThe social interaction of fish has been mainly studied in 2D without hydrodyna...
International audienceThe social interaction of fish has been mainly studied in 2D without hydrodyna...
International audienceThe social interaction of fish has been mainly studied in 2D without hydrodyna...
Fish have evolved diverse and robust locomotive strategies to swim efficiently in complex fluid envi...
International audienceThe social interaction of fish has been mainly studied in 2D without hydrodyna...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Abstract—This paper presents ongoing work toward the design and use of an artificial lateral-line sy...
The lateral line sense organ in fish detects fluid flow around its body, and is used to perform a wi...
To understand the mechanics of fish swimming, we need to know the forces exerted by the fluid and ho...
To understand the mechanics of fish swimming, we need to know the forces exerted by the fluid and ho...
To understand the mechanics of fish swimming, we need to know the forces exerted by the fluid and ho...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Ocean Engineering, 1999.Includes bib...
Bio-inspired solutions have been deeply investigated in the last two decades as a source of propulsi...
Bio-inspired solutions have been deeply investigated in the last two decades as a source of propulsi...
In this paper, a versatile Multi-Body Dynamic (MBD) algorithm is developed to integrate an incompres...
International audienceThe social interaction of fish has been mainly studied in 2D without hydrodyna...
International audienceThe social interaction of fish has been mainly studied in 2D without hydrodyna...
International audienceThe social interaction of fish has been mainly studied in 2D without hydrodyna...
Fish have evolved diverse and robust locomotive strategies to swim efficiently in complex fluid envi...
International audienceThe social interaction of fish has been mainly studied in 2D without hydrodyna...