An analytical model is used to investigate the resonant behavior in a semi-closed channel. The main integral quantities of the tidal wave are obtained by means of a linearized one-dimensional model as a function of three dimensionless parameters, representing cross-section convergence, friction and distance to the closed boundary. Arbitrary along-channel variations of width and depth are accounted for by using a multi-reach approach, whereby the main tidal dynamics are reconstructed by solving a set of linear equations satisfying the continuity conditions of water level and discharge at the junctions of the sub-reaches. We highlight the importance of depth variation in the momentum equation, which is not considered in the classical tidal th...
This paper explores different analytical solutions of the tidal hydraulic equations in convergent es...
Understanding tidal dynamics is important for coastal safety, navigation and marine ecology. Many ti...
In this paper we extend the validity of the classical linear solution for tidal hydrodynamics includ...
An analytical model is used to investigate the resonant behavior in a semi-closed channel. The main ...
Resonance characteristics of tidal waves in a network are investigated with the linearized, one-dime...
The ultimate aim of this thesis is to enhance our understanding of tidal wave propagation in converg...
A horizontal hydrodynamic model was applied to predict the response characteristics of the Severn Es...
We present an idealised model of the tidal response in a main channel with multiple secondary basins...
ABSTRACT: In this paper we study the propagation of a tidal wave in convergent estuaries. In the las...
Abstract. Simple first- and second-order analytic solutions, which diverge markedly from classical v...
The Bristol Channel has one of the largest tidal ranges in the world. A key cause for this is the re...
Non-linear tidal dynamics are investigated in a network that consists of a semi-enclosed main channe...
Analytical solutions of the one-dimensional hydrodynamic equations for tidal wave propagation are no...
Intricate networks of tidal channels such as are found in fjordic, barrier island and branching estu...
The energy resource in the Bristol Channel is of national strategic significance to meet the future ...
This paper explores different analytical solutions of the tidal hydraulic equations in convergent es...
Understanding tidal dynamics is important for coastal safety, navigation and marine ecology. Many ti...
In this paper we extend the validity of the classical linear solution for tidal hydrodynamics includ...
An analytical model is used to investigate the resonant behavior in a semi-closed channel. The main ...
Resonance characteristics of tidal waves in a network are investigated with the linearized, one-dime...
The ultimate aim of this thesis is to enhance our understanding of tidal wave propagation in converg...
A horizontal hydrodynamic model was applied to predict the response characteristics of the Severn Es...
We present an idealised model of the tidal response in a main channel with multiple secondary basins...
ABSTRACT: In this paper we study the propagation of a tidal wave in convergent estuaries. In the las...
Abstract. Simple first- and second-order analytic solutions, which diverge markedly from classical v...
The Bristol Channel has one of the largest tidal ranges in the world. A key cause for this is the re...
Non-linear tidal dynamics are investigated in a network that consists of a semi-enclosed main channe...
Analytical solutions of the one-dimensional hydrodynamic equations for tidal wave propagation are no...
Intricate networks of tidal channels such as are found in fjordic, barrier island and branching estu...
The energy resource in the Bristol Channel is of national strategic significance to meet the future ...
This paper explores different analytical solutions of the tidal hydraulic equations in convergent es...
Understanding tidal dynamics is important for coastal safety, navigation and marine ecology. Many ti...
In this paper we extend the validity of the classical linear solution for tidal hydrodynamics includ...