We implement a simple hydrodynamical model to study the behavioural swimming tilt angle of open swimbladder fish. For this purpose we analysed the force stability which act upon a fish swimming horizontally at a constant velocity. Furthermore, the open swimbladder compression at depth is modelled by Boyle's law. With these, our model gives us an analytical solution relating depth with body tilt angle and velocity. An interesting result that surges from steady horizontal swimming is that the body tilt decreases with velocity almost like v−1. Moreover, we provide an expression for the tilting as function of depth that asymptotically yields the maximum tilt angle. Additionally, by introducing the assumption of constant swimming power we can re...
Fish orientation is consistently identified as a major influence on fish target strength (TS). Gener...
The flexibility of fish propulsors plays critical roles in biological propulsion in nature. It is wi...
This paper deals with the hydrodynamics and internal dynamics of fish swimming. Our analysis starts ...
The influence of the swimming movement on fish target strength is investigated through a modelling ...
<p>Prolate-spheroid-modal-series (PSMS), Kirchhoff-approximation (KA), Kirchhoff-ray-mode (KRM), and...
Numerical simulations and empirical measurements of swimming Atlantic salmon (Salmo salar) were used...
Abstract submitted to EE250 Swimming in fish is characterised by a travelling wave passing down the ...
Engraulis anchoita is a physostomous fish with a dual chambered swimbladder (sb). In situ target str...
This paper provides analytical insights into the hypothesis that fish exploit resonance to reduce th...
Many species of elongate fishes use Anguilliform swimming to propel themselves through the water (G...
This paper deals with the hydrodynamics and internal dynamics of fish swimming. Our analysis starts ...
A fish swims by stimulating its muscles and causing its body to "wiggle", which in turn generates t...
SYNOPSIS. Perturbations vary in period and amplitude, and responses to unavoidable perturbations dep...
Our goal is to reproduce the key features of carangiform swimming by modeling muscle functioning usi...
We examine the stability of the “coast ” motion of fish, that is to say, the motion of a neutrally b...
Fish orientation is consistently identified as a major influence on fish target strength (TS). Gener...
The flexibility of fish propulsors plays critical roles in biological propulsion in nature. It is wi...
This paper deals with the hydrodynamics and internal dynamics of fish swimming. Our analysis starts ...
The influence of the swimming movement on fish target strength is investigated through a modelling ...
<p>Prolate-spheroid-modal-series (PSMS), Kirchhoff-approximation (KA), Kirchhoff-ray-mode (KRM), and...
Numerical simulations and empirical measurements of swimming Atlantic salmon (Salmo salar) were used...
Abstract submitted to EE250 Swimming in fish is characterised by a travelling wave passing down the ...
Engraulis anchoita is a physostomous fish with a dual chambered swimbladder (sb). In situ target str...
This paper provides analytical insights into the hypothesis that fish exploit resonance to reduce th...
Many species of elongate fishes use Anguilliform swimming to propel themselves through the water (G...
This paper deals with the hydrodynamics and internal dynamics of fish swimming. Our analysis starts ...
A fish swims by stimulating its muscles and causing its body to "wiggle", which in turn generates t...
SYNOPSIS. Perturbations vary in period and amplitude, and responses to unavoidable perturbations dep...
Our goal is to reproduce the key features of carangiform swimming by modeling muscle functioning usi...
We examine the stability of the “coast ” motion of fish, that is to say, the motion of a neutrally b...
Fish orientation is consistently identified as a major influence on fish target strength (TS). Gener...
The flexibility of fish propulsors plays critical roles in biological propulsion in nature. It is wi...
This paper deals with the hydrodynamics and internal dynamics of fish swimming. Our analysis starts ...