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Junliang Gao

Researcher at Jiangsu University

Publications -  56
Citations -  1052

Junliang Gao is an academic researcher from Jiangsu University. The author has contributed to research in topics: Computer science & Wave height. The author has an hindex of 14, co-authored 44 publications receiving 484 citations. Previous affiliations of Junliang Gao include Dalian University of Technology & University of Bath.

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Investigation on the effects of Bragg reflection on harbor oscillations

TL;DR: In this paper, the effects of Bragg reflection on harbors have been investigated using a fully nonlinear Boussinesq model, and the influence of the number and the amplitude of sinusoidal bars on the mitigation effect of harbor resonance and on the optimal wavelength of the bars was investigated.
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Numerical investigation of harbor oscillations induced by focused transient wave groups

TL;DR: In this paper, the influence of focused wave groups on harbors has been studied using a fully nonlinear Boussinesq model, FUNWAVE 2.0, based on the Morlet wavelet transform and discrete Fourier transform techniques, and the capability of focused transient wave groups to trigger the harbor resonance phenomenon is revealed.
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Numerical investigation on effects of fringing reefs on low-frequency oscillations within a harbor

TL;DR: In this paper, the effects of reef-face slope and reef ridge on the maximum LF wave amplitude, the free and the bound LF waves and their relative components inside the harbor are investigated systematically under the conditions of the 2nd to the 5th modes and wave breaking occurring over the reef.
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Numerical investigation of transient harbor oscillations induced by N-waves

TL;DR: In this article, the effects of the incident wave amplitude and its type on the relative wave energy distribution inside the harbor are investigated. And the maximum runup and rundown of various incident waves are also discussed.
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On hydrodynamic characteristics of gap resonance between two fixed bodies in close proximity

TL;DR: In this article, the effects of the incident wave height on the higher-order harmonic components of different physical quantities are discussed, and two different methods are proposed and verified for the first time on gap resonance.