AbstractFast-start swimming is a very special and important type of locomotion of fish. Basically, fast-star motion can be classified into two types: C-type and S-type. It is generally thought that the C-type fast-start is adopted by fish for escape while the S-type fast-start is used in prey capture. Previous experimental data have shown that the maximum acceleration and maximum velocity of fish performing C-start are significantly greater than that for S-type motion. The present research investigates numerically the fluid flows generated by empirically modeled fast-start movements of fish. For simplicity, a 2-D potential flow is assumed, and the unsteady Kutta condition is applied to handle the vortex-shedding phenomenon at fish tail. The...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Ocean Engineering, 1999.Includes bib...
Fish swimming is an intriguing subject of interest in fluid mechanics at the border with other disci...
To understand the mechanics of fish swimming, we need to know the forces exerted by the fluid and ho...
The fast start of fish is a rapid event that involves fast actuation in musculature and highly unste...
Synopsis Unsteady aquatic locomotion is not an exception, but rather how animals often swim. It incl...
We have built a simple mechanical system to emulate the fast-start performance of fish. The system c...
In this work we study the hydrodynamics of a bluegill sunfish performing a C-start maneuver in unpre...
The fluid dynamics of animal locomotion, such as that of an undulating fish, are of great interest t...
Fish larvae may intercept their own wake during sharp turns, which might affect their escape perform...
Fast-starts are high acceleration manoeuvres used by fish. Fast-start escape responses can be initia...
The fluid dynamics of animal locomotion, such as that of an undulating fish, are of great interest t...
Velocity burst and quick turning are performed by fish during fast maneuvers which might be essentia...
We investigate the C-start escape response of larval fish by combining flow simulations using remesh...
Most fish species use fast starts to escape from predators. Zebrafish larvae perform effective fast ...
Fishes often exhibit stable body undulating in body and caudal fin (BCF) mode during cyclic swimming...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Ocean Engineering, 1999.Includes bib...
Fish swimming is an intriguing subject of interest in fluid mechanics at the border with other disci...
To understand the mechanics of fish swimming, we need to know the forces exerted by the fluid and ho...
The fast start of fish is a rapid event that involves fast actuation in musculature and highly unste...
Synopsis Unsteady aquatic locomotion is not an exception, but rather how animals often swim. It incl...
We have built a simple mechanical system to emulate the fast-start performance of fish. The system c...
In this work we study the hydrodynamics of a bluegill sunfish performing a C-start maneuver in unpre...
The fluid dynamics of animal locomotion, such as that of an undulating fish, are of great interest t...
Fish larvae may intercept their own wake during sharp turns, which might affect their escape perform...
Fast-starts are high acceleration manoeuvres used by fish. Fast-start escape responses can be initia...
The fluid dynamics of animal locomotion, such as that of an undulating fish, are of great interest t...
Velocity burst and quick turning are performed by fish during fast maneuvers which might be essentia...
We investigate the C-start escape response of larval fish by combining flow simulations using remesh...
Most fish species use fast starts to escape from predators. Zebrafish larvae perform effective fast ...
Fishes often exhibit stable body undulating in body and caudal fin (BCF) mode during cyclic swimming...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Ocean Engineering, 1999.Includes bib...
Fish swimming is an intriguing subject of interest in fluid mechanics at the border with other disci...
To understand the mechanics of fish swimming, we need to know the forces exerted by the fluid and ho...