The purpose of this paper is to employ a CFD (Computational Fluid Dynamics) procedure to optimize a biomimetic marine propulsor. This propulsor is based on an undulating panel which emulates the movement of a fin fish. The numerical model has been employed to analyze the hydrodynamics and improve the efficiency. Particularly, the fin shape has been studied as measure to improve the efficiency. Three fin shapes have been analyzed, rectangular, elliptic and lunate. The results have indicated that, for the same area, the lunate shape is the most efficient
Experimental investigations on biomimetic mechanical fins have been carried out by researchers to st...
Biomimetics takes nature as a model for inspiration to immensely help abstract new principles and id...
A biologically inspired underwater vehicle (BIUV) was built using multiple lightweight bio-inspired ...
The purpose of this paper is to employ a CFD (Computational Fluid Dynamics) procedure to optimize a ...
El propósito de este artículo es emplear un procedimiento de CFD (Mecánica de Fluidos Computacional)...
In the present work, the design and testing of two propulsion mechanisms which emulate fish swimming...
[Abstract] The aim of the present paper is to provide the state of the works in the field of hydrody...
This paper presents an experimental study on the structural and motion parameters of a biomimetic me...
The paper presents the dynamic optimization of a biomimetic thruster for autonomuos underwater vehic...
Recently a new type of autonomous underwater vehicle uses artificial fins to imitate the movements o...
A computational methodology, which combines a computational fluid dynamics (CFD) technique and a com...
In this paper, the CFD technology widely used in biomimetic applications is firstly reviewed in a br...
Bio-inspired solutions devised for Autonomous Underwater Robots are currently investigated by resear...
Ionic polymer metal composites (IPMC) are a new class of smart materials that have attractive charac...
Summary. This paper describes the design, construction, and testing of a biomimetic pectoral (side) ...
Experimental investigations on biomimetic mechanical fins have been carried out by researchers to st...
Biomimetics takes nature as a model for inspiration to immensely help abstract new principles and id...
A biologically inspired underwater vehicle (BIUV) was built using multiple lightweight bio-inspired ...
The purpose of this paper is to employ a CFD (Computational Fluid Dynamics) procedure to optimize a ...
El propósito de este artículo es emplear un procedimiento de CFD (Mecánica de Fluidos Computacional)...
In the present work, the design and testing of two propulsion mechanisms which emulate fish swimming...
[Abstract] The aim of the present paper is to provide the state of the works in the field of hydrody...
This paper presents an experimental study on the structural and motion parameters of a biomimetic me...
The paper presents the dynamic optimization of a biomimetic thruster for autonomuos underwater vehic...
Recently a new type of autonomous underwater vehicle uses artificial fins to imitate the movements o...
A computational methodology, which combines a computational fluid dynamics (CFD) technique and a com...
In this paper, the CFD technology widely used in biomimetic applications is firstly reviewed in a br...
Bio-inspired solutions devised for Autonomous Underwater Robots are currently investigated by resear...
Ionic polymer metal composites (IPMC) are a new class of smart materials that have attractive charac...
Summary. This paper describes the design, construction, and testing of a biomimetic pectoral (side) ...
Experimental investigations on biomimetic mechanical fins have been carried out by researchers to st...
Biomimetics takes nature as a model for inspiration to immensely help abstract new principles and id...
A biologically inspired underwater vehicle (BIUV) was built using multiple lightweight bio-inspired ...