We present a combined theoretical and experimental study of lock-release inertial gravity currents (GCs) propagating in a horizontal channel of circular cross-section with open-top surface in the non-Boussinesq regime. A two-layer shallow-water(SW) model is developed for a generic shape of the cross-section with open top,and then implemented in a finite difference numerical code for the solution in a circular-cross-section channel of the type used in the experiments. The model predicts propagation with (almost) constant speed for a fairly long distance, accompanied by a depression of the ambient free open-top surface behind the front of the current.Sixte...
Hydrodynamics of full depth lock exchange gravity currents is investigated by means of a numerical m...
The dynamics of unconfined gravity currents generated by a lock-exchange with different lock widths ...
The generation of a gravity current by the release of a semi-infinite region of buoyant fluid of dep...
High-Reynolds number gravity currents (GC) in a horizontal channel with circular/semicircular side w...
We present an experimental and theoretical analysis of non-Boussinesq inertial (large Reynolds numbe...
none5siWe present an experimental investigation, supported by a theoretical model, of the motion of ...
The propagation of gravity currents is analyzed in the presence of regular surface waves, both exper...
We investigate high-Reynolds number gravity currents (GC) in a horizontal channel of circular cross-...
We investigate high-Reynolds number gravity currents (GC) in a horizontal channel of circular cross-...
We present a combined theoretical-experimental investigation of particle-driven gravity currents adv...
We present an experimental study of gravity currents (GCs) with internal stratification in a semicir...
In this work, experimental and numerical results relative to gravity currents are presented. Gravity...
This paper investigates the dynamics of lock-release gravity currents propagating upslope by laborat...
A new front condition for gravity currents in a two-layer shallow water framework with a free surfac...
"\"This paper presents the investigation of gravity currents by both laboratory experiments and a ma...
Hydrodynamics of full depth lock exchange gravity currents is investigated by means of a numerical m...
The dynamics of unconfined gravity currents generated by a lock-exchange with different lock widths ...
The generation of a gravity current by the release of a semi-infinite region of buoyant fluid of dep...
High-Reynolds number gravity currents (GC) in a horizontal channel with circular/semicircular side w...
We present an experimental and theoretical analysis of non-Boussinesq inertial (large Reynolds numbe...
none5siWe present an experimental investigation, supported by a theoretical model, of the motion of ...
The propagation of gravity currents is analyzed in the presence of regular surface waves, both exper...
We investigate high-Reynolds number gravity currents (GC) in a horizontal channel of circular cross-...
We investigate high-Reynolds number gravity currents (GC) in a horizontal channel of circular cross-...
We present a combined theoretical-experimental investigation of particle-driven gravity currents adv...
We present an experimental study of gravity currents (GCs) with internal stratification in a semicir...
In this work, experimental and numerical results relative to gravity currents are presented. Gravity...
This paper investigates the dynamics of lock-release gravity currents propagating upslope by laborat...
A new front condition for gravity currents in a two-layer shallow water framework with a free surfac...
"\"This paper presents the investigation of gravity currents by both laboratory experiments and a ma...
Hydrodynamics of full depth lock exchange gravity currents is investigated by means of a numerical m...
The dynamics of unconfined gravity currents generated by a lock-exchange with different lock widths ...
The generation of a gravity current by the release of a semi-infinite region of buoyant fluid of dep...