Wing in-ground effect (WIG) crafts are becoming promising transportation over the last decade. However, stability and control problems faced by the WIG in earlier development are still unresolved. This paper objectively investigates the lateral stability of wing in ground effect craft. The wing encompasses a winglet at the end of the wingtip. Lift, drag and pressure were measured with the respect of the heeling angle of 100, 150 and 200, respectively, with the h/c of 0.3. Initial results from the computational studies show that the ground effect pressure distributions provide a natural righting moment when the WIG craft heels near ground. This initial result provides an insight to understand the current state of knowledge of stability for W...
In this paper we present our research about a particular ultralight WIG. WIG is the acronym of Wing...
It has long been recognised that flight close to a boundary surface is more aerodynamically efficien...
The issue of the longitudinal stability of a WIG vehicle has been a very critical design factor sinc...
AbstractA Wing-In-Ground (WIG) craft is a marine craft equipped with wings which enables it to remai...
AbstractA Wing-In-Ground (WIG) craft is a marine craft equipped with wings which enables it to remai...
A wing-in-ground effect craft (WIG) that has NACA6409 wing section has been numerically simulated fo...
Wing-in-ground effect (WIG) crafts fly efficiently by exploiting the ground effect i.e. generating a...
Copyright © 2014 M. Mobassher Tofa et al. This is an open access article distributed under the Creat...
Wing in ground crafts development have been rapidly advancing in recent years. The current...
Numerical analysis for the aerodynamic characteristics of the WIG (wing-in ground effect) craft with...
Flow structure is a crucial point for the conceptual design of Wing-in-Ground effect (WIG) crafts. I...
The aerodynamic characteristics of the wing-in-ground effect (WIG) craft model that has a noble conf...
Flow structure is a crucial point for the conceptual design of Wing-in-Ground effect (WIG) crafts. I...
The main purpose of this article was to select airfoil, which generates the biggest lift coefficient...
Flow structure is a crucial point for the conceptual design of Wing-in-Ground effect (WIG) crafts. I...
In this paper we present our research about a particular ultralight WIG. WIG is the acronym of Wing...
It has long been recognised that flight close to a boundary surface is more aerodynamically efficien...
The issue of the longitudinal stability of a WIG vehicle has been a very critical design factor sinc...
AbstractA Wing-In-Ground (WIG) craft is a marine craft equipped with wings which enables it to remai...
AbstractA Wing-In-Ground (WIG) craft is a marine craft equipped with wings which enables it to remai...
A wing-in-ground effect craft (WIG) that has NACA6409 wing section has been numerically simulated fo...
Wing-in-ground effect (WIG) crafts fly efficiently by exploiting the ground effect i.e. generating a...
Copyright © 2014 M. Mobassher Tofa et al. This is an open access article distributed under the Creat...
Wing in ground crafts development have been rapidly advancing in recent years. The current...
Numerical analysis for the aerodynamic characteristics of the WIG (wing-in ground effect) craft with...
Flow structure is a crucial point for the conceptual design of Wing-in-Ground effect (WIG) crafts. I...
The aerodynamic characteristics of the wing-in-ground effect (WIG) craft model that has a noble conf...
Flow structure is a crucial point for the conceptual design of Wing-in-Ground effect (WIG) crafts. I...
The main purpose of this article was to select airfoil, which generates the biggest lift coefficient...
Flow structure is a crucial point for the conceptual design of Wing-in-Ground effect (WIG) crafts. I...
In this paper we present our research about a particular ultralight WIG. WIG is the acronym of Wing...
It has long been recognised that flight close to a boundary surface is more aerodynamically efficien...
The issue of the longitudinal stability of a WIG vehicle has been a very critical design factor sinc...