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An Experimental and Numerical Study of Long Wave Run-Up on a Plane Beach

TLDR
In this paper, a pump-driven wave generator was used to simulate the run-up elevation and velocities of a long wave at a shallow water model with a one-dimensional discontinuous Galerkin nonlinear water model.
Abstract
This research is to facilitate the current understanding of long wave dynamics at coasts and during on-land propagation; experimental and numerical approaches are compared against existing analytical expressions for the long wave run-up. Leading depression sinusoidal waves are chosen to model these dynamics. The experimental study was conducted using a new pump-driven wave generator and the numerical experiments were carried out with a one-dimensional discontinuous Galerkin non-linear shallow water model. The numerical model is able to accurately reproduce the run-up elevation and velocities predicted by the theoretical expressions. Depending on the surf similarity of the generated waves and due to imperfections of the experimental wave generation, riding waves are observed in the experimental results. These artifacts can also be confirmed in the numerical study when the data from the physical experiments is assimilated. Qualitatively, scale effects associated with the experimental setting are discussed. Finally, shoreline velocities, run-up and run-down are determined and shown to largely agree with analytical predictions.

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Corporate behaviour and ecological disaster: Dow Chemical and the Great Lakes mercury crisis, 1970–1972

TL;DR: The discovery of dangerously high levels of mercury in the Great Lakes from industrial wastewater discharge severely shook the United States and Canada in 1970, and emergency actions covered industrial shutdowns, fishing bans and accelerated monitoring programmes as discussed by the authors.
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Full-scale CFD simulation of tsunamis. Part 1: Model validation and run-up

TL;DR: In this article, numerical simulations of the propagation, shoaling and run-up of full-scale tsunami waves are performed with a model solving Reynolds-averaged Navier-Stokes equations with k-ω turbulence closure, and is one of very few studies involving CFD simulations at full tsunami scale, involving full resolution of small scale dispersive effects as well as wave breaking.
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Entrainment and Transport Dynamics of Shipping Containers in Extreme Hydrodynamic Conditions

TL;DR: In this article, an experimental study was performed to examine multiple debris entrainment and transport in tsunami-like flow conditions at Waseda University in Tokyo, Japan, in order to examine the effect of tsunami wave conditions on multiple types of materials.
References
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Journal ArticleDOI

Efficient implementation of essentially non-oscillatory shock-capturing schemes,II

TL;DR: Two methods of sharpening contact discontinuities-the subcell resolution idea of Harten and the artificial compression idea of Yang, which those authors originally used in the cell average framework-are applied to the current ENO schemes using numerical fluxes and TVD Runge-Kutta time discretizations.
Journal ArticleDOI

Efficient implementation of essentially non-oscillatory shock-capturing schemes, II

TL;DR: This work extends earlier work on the efficient implementation of ENO (essentially non-oscillatory) shock-capturing schemes by providing a new simplified expression for the ENO constructio...
Journal ArticleDOI

Über die partiellen Differenzengleichungen der mathematischen Physik

TL;DR: In this paper, the authors present a Gebrauch bestimmt ausschließlich für den persönlichen, nicht kommerziellen Gebrauchs, which is a rechtschutzbestimmter gebrauch, and gilt vorbehaltlich der folgenden Einschränkungen.
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Strong Stability-Preserving High-Order Time Discretization Methods

TL;DR: This paper reviews and further develops a class of strong stability-preserving high-order time discretizations for semidiscrete method of lines approximations of partial differential equations, and builds on the study of the SSP property of implicit Runge--Kutta and multistep methods.
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