Birds and gliders exploit warm, rising atmospheric currents (thermals) to reach heights comparable to low-lying clouds with a reduced expenditure of energy. This strategy of flight (thermal soaring) is frequently used by migratory birds. Soaring provides a remarkable instance of complex decision making in biology and requires a long-term strategy to effectively use the ascending thermals. Furthermore, the problem is technologically relevant to extend the flying range of autonomous gliders. Thermal soaring is commonly observed in the atmospheric convective boundary layer on warm, sunny days. The formation of thermals unavoidably generates strong turbulent fluctuations, which constitute an essential element of soaring. Here, we approach soari...
The energy exchange between the Earth's surface and atmosphere results in a highly dynamic habitat t...
The aerial environment is heterogeneous in space and time and directly influences the costs of anima...
Atmospheric currents influence the choice of migratory routes and flight characteristics of birds as...
International audienceSoaring birds often rely on ascending thermal plumes (thermals) in the atmosph...
Soaring birds often rely on ascending thermal plumes (thermals) in the atmosphere as they search for...
Thermal soaring saves much energy, but flying large distances in this form represents a great challe...
Thermal soaring birds reduce flight-energy costs by alternatingly gaining altitude in thermals and g...
The use of flying robots (drones) is increasing rapidly, but their utility is limited by high power ...
The aerial environment is heterogeneous in space and time and directly influences the costs of anima...
(1) Thermal soaring birds reduce flight-energy costs by alternatingly gaining altitude in thermals a...
Autonomous soaring is a concept in which the endurance of unmanned aircraft can be increased by expl...
All animals that operate within the atmospheric boundary layer need to respond to aerial turbulence....
Dynamic soaring in the atmospheric boundary layer of a vertical variation of horizontal winds over a...
Albatrosses can travel a thousand kilometres daily over the oceans. They extract their propulsive en...
Here we analyse the energetics, performance, and optimization of flight in a moving atmosphere. We b...
The energy exchange between the Earth's surface and atmosphere results in a highly dynamic habitat t...
The aerial environment is heterogeneous in space and time and directly influences the costs of anima...
Atmospheric currents influence the choice of migratory routes and flight characteristics of birds as...
International audienceSoaring birds often rely on ascending thermal plumes (thermals) in the atmosph...
Soaring birds often rely on ascending thermal plumes (thermals) in the atmosphere as they search for...
Thermal soaring saves much energy, but flying large distances in this form represents a great challe...
Thermal soaring birds reduce flight-energy costs by alternatingly gaining altitude in thermals and g...
The use of flying robots (drones) is increasing rapidly, but their utility is limited by high power ...
The aerial environment is heterogeneous in space and time and directly influences the costs of anima...
(1) Thermal soaring birds reduce flight-energy costs by alternatingly gaining altitude in thermals a...
Autonomous soaring is a concept in which the endurance of unmanned aircraft can be increased by expl...
All animals that operate within the atmospheric boundary layer need to respond to aerial turbulence....
Dynamic soaring in the atmospheric boundary layer of a vertical variation of horizontal winds over a...
Albatrosses can travel a thousand kilometres daily over the oceans. They extract their propulsive en...
Here we analyse the energetics, performance, and optimization of flight in a moving atmosphere. We b...
The energy exchange between the Earth's surface and atmosphere results in a highly dynamic habitat t...
The aerial environment is heterogeneous in space and time and directly influences the costs of anima...
Atmospheric currents influence the choice of migratory routes and flight characteristics of birds as...