A numerical model based on the mild-slope equation is applied to reproduce the propagation of small-amplitude transient waves. The model makes use of the Fourier Transform to convert the time-dependent hyperbolic equation into a set of elliptic equations in the frequency domain. The results of two available experimental studies on tsunamis generated by landslides are used to validate the model, which appears to be able of carefully reproducing the effects of the frequency dispersion. An example application of tsunamis propagating around the Stromboli island is also presented to show the applicability of the present approach to real life scenarios. It is finally discussed how this model could be applied as support to a tsunami early warning ...
This article focuses on the effect of dispersion in the field of tsunami modeling. Frequency dispers...
A finite difference numerical model, which can correctly consider dis-persion effect of waves over a...
By using the Hugoniot curve in detonics as a Riemann invariant of a velocity-pressure model, we get ...
A numerical model based on the mild-slope equation is applied to reproduce the propagation of small-...
A numerical model based on the mild-slope equation is applied to reproduce the propagation of small-...
A numerical model based on the mild slope equation is applied to reproduce the propagation of small ...
This paper presents a numerical model based on the mild-slope equation (MSE for short) suitable to...
A numerical model based on the mild slope equation, suitable to reproduce the propagation of small a...
A numerical model based on the mild slope equation, suitable to reproduce the propagation of small a...
We present a depth integrated numerical model for the simulation of the generation and the propagati...
We present a depth integrated numerical model for the simulation of the generation and the propagati...
The original hyperbolic mild-slope equation can effectively take into account the combined effects o...
The study focuses on the sensitivity of frequency dispersion effects to the form of initial surface ...
A finite difference numerical model, which can correctly consider dispersion effect of waves over a ...
We present a short review of the state-of-the-art numerical tools that have been used for modeling l...
This article focuses on the effect of dispersion in the field of tsunami modeling. Frequency dispers...
A finite difference numerical model, which can correctly consider dis-persion effect of waves over a...
By using the Hugoniot curve in detonics as a Riemann invariant of a velocity-pressure model, we get ...
A numerical model based on the mild-slope equation is applied to reproduce the propagation of small-...
A numerical model based on the mild-slope equation is applied to reproduce the propagation of small-...
A numerical model based on the mild slope equation is applied to reproduce the propagation of small ...
This paper presents a numerical model based on the mild-slope equation (MSE for short) suitable to...
A numerical model based on the mild slope equation, suitable to reproduce the propagation of small a...
A numerical model based on the mild slope equation, suitable to reproduce the propagation of small a...
We present a depth integrated numerical model for the simulation of the generation and the propagati...
We present a depth integrated numerical model for the simulation of the generation and the propagati...
The original hyperbolic mild-slope equation can effectively take into account the combined effects o...
The study focuses on the sensitivity of frequency dispersion effects to the form of initial surface ...
A finite difference numerical model, which can correctly consider dispersion effect of waves over a ...
We present a short review of the state-of-the-art numerical tools that have been used for modeling l...
This article focuses on the effect of dispersion in the field of tsunami modeling. Frequency dispers...
A finite difference numerical model, which can correctly consider dis-persion effect of waves over a...
By using the Hugoniot curve in detonics as a Riemann invariant of a velocity-pressure model, we get ...