[HTML][HTML] Particle methods in ocean and coastal engineering

M Luo, A Khayyer, P Lin - Applied Ocean Research, 2021 - Elsevier
This paper aims at providing a state-of-the-art review on the applications of particle methods
in hydrodynamics-related problems in ocean and coastal engineering. The problems are …

Prediction of wave-induced loads on ships: Progress and challenges

P Temarel, W Bai, A Bruns, Q Derbanne, D Dessi… - Ocean …, 2016 - Elsevier
The aim of this paper is to critically assess the methods used for the evaluation of wave-
induced loads on ships examining analytical, numerical and experimental approaches. The …

Experimental study on vertical baffles of different configurations in suppressing sloshing pressure

MA Xue, J Zheng, P Lin, X Yuan - Ocean Engineering, 2017 - Elsevier
The effectiveness of four types of the baffles in suppressing pressure is experimentally
investigated under a wide range of forcing frequencies. The dynamic impact pressure …

Multiphase lattice Boltzmann flux solver for incompressible multiphase flows with large density ratio

Y Wang, C Shu, HB Huang, CJ Teo - Journal of Computational Physics, 2015 - Elsevier
A multiphase lattice Boltzmann flux solver (MLBFS) is proposed in this paper for
incompressible multiphase flows with low-and large-density-ratios. In the solver, the flow …

Fluid dynamics analysis of sloshing pressure distribution in storage vessels of different shapes

MA Xue, Y Chen, J Zheng, L Qian, X Yuan - Ocean Engineering, 2019 - Elsevier
A series of numerical simulations were performed to investigate the influences of storage
vessels shapes on sloshing dynamics under horizontal excitation by employing the open …

Numerical modeling of sloshing flow interaction with an elastic baffle using SPHinXsys

Y Ren, A Khayyer, P Lin, X Hu - Ocean Engineering, 2023 - Elsevier
Sloshing is a complex fluid motion with high non-linearity. Violent sloshing results in large
impact pressure on the tank that may lead to structural damage. Sloshing suppression using …

Improved element-particle coupling strategy with δ-SPH and particle shifting for modeling sloshing with rigid or deformable structures

ZL Zhang, MSU Khalid, T Long, MB Liu, C Shu - Applied Ocean Research, 2021 - Elsevier
Liquid sloshing flows interacting with deformable structures are difficult to be numerically
simulated due to the co-existence of moving fluid-structure interfaces and breaking free …

Investigations on sloshing mitigation using elastic baffles by coupling smoothed finite element method and decoupled finite particle method

ZL Zhang, MSU Khalid, T Long, JZ Chang… - Journal of Fluids and …, 2020 - Elsevier
Liquid sloshing in partially filled containers is widely observed in various engineering
systems where the forces exerted by the liquid on tank walls may result in the instability of …

Liquid sloshing in a two-dimensional rectangular tank: A numerical investigation with a T-shaped baffle

UO Ünal, G Bilici, H Akyıldız - Ocean Engineering, 2019 - Elsevier
In this study, the liquid sloshing in a closed, partially filled, T-shaped baffled and unbaffled
two-dimensional rectangular tank was numerically investigated. The tank was rotated with …

A three-dimensional ISPH-FVM coupling method for simulation of bubble rising in viscous stagnant liquid

Y Xu, G Yang, D Hu - Ocean Engineering, 2023 - Elsevier
The bubble rising problem has always been one of the research hotpots in the field of
multiphase flow simulation due to the complex topological evolution of the phase interface …