The fluid dynamics of cephalopods has so far received little attention in the literature, due to their complexity in structure and locomotion. The flow around octopuses, in particular, can be complicated due to their agile and dexterous arms, which frequently display some of the most diverse mechanisms of motion. The study of this flow amounts to a specific instance of the hydrodynamics problem for rough tapered cylinder geometries. The outstanding manipulative and locomotor skills of octopuses could inspire the development of advanced robotic arms, able to operate in fluid environments. Our primary aim was to study the hydrodynamic characteristics of such bio-inspired robotic models and to derive the hydrodynamic force coefficients as a co...
A soft robot is presented which replicates the ability of cephalopods to travel in the aquatic envir...
Increasing the functionality and efficiency of small underwater marine robotic systems has been a si...
This paper studies underwater legged locomotion (ULL) by means of a robotic octopus-inspired prototy...
The fluid dynamics of cephalopods has so far received little attention in the literature, due to the...
The fluid dynamics of cephalopods has so far received little attention in the literature, due to the...
The complexity in structure and locomotion of cephalopods, such as the octopus, poses difficulties i...
The complexity in structure and locomotion of cephalopods, such as the octopus, poses difficulties i...
Increasing the functionality and efficiency of small underwater marine robotic systems has been a si...
This paper connects the investigation of the biome-chanics and behavior of an octopus in the perform...
Octopuses are an example of dexterous animals found in nature. Their arms are flexible, can vary in ...
The octopus is an invertebrate sea animal, considered as an interesting model of inspiration in robo...
The octopus is a marine animal whose body has no rigid structures. It has eight arms mainly composed...
A soft robot is presented which replicates the ability of cephalopods to travel in the aquatic envir...
Increasing the functionality and efficiency of small underwater marine robotic systems has been a si...
This paper studies underwater legged locomotion (ULL) by means of a robotic octopus-inspired prototy...
The fluid dynamics of cephalopods has so far received little attention in the literature, due to the...
The fluid dynamics of cephalopods has so far received little attention in the literature, due to the...
The complexity in structure and locomotion of cephalopods, such as the octopus, poses difficulties i...
The complexity in structure and locomotion of cephalopods, such as the octopus, poses difficulties i...
Increasing the functionality and efficiency of small underwater marine robotic systems has been a si...
This paper connects the investigation of the biome-chanics and behavior of an octopus in the perform...
Octopuses are an example of dexterous animals found in nature. Their arms are flexible, can vary in ...
The octopus is an invertebrate sea animal, considered as an interesting model of inspiration in robo...
The octopus is a marine animal whose body has no rigid structures. It has eight arms mainly composed...
A soft robot is presented which replicates the ability of cephalopods to travel in the aquatic envir...
Increasing the functionality and efficiency of small underwater marine robotic systems has been a si...
This paper studies underwater legged locomotion (ULL) by means of a robotic octopus-inspired prototy...