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Microbes in Beach Sands: Integrating Environment, Ecology and Public Health. [PDF]

open access: yesRev Environ Sci Biotechnol, 2014
Whitman R   +18 more
europepmc   +1 more source
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Development of a smoothed particle hydrodynamics model for porous media flows with enhanced volume conservation and the revisit of the mass conservation equation

The Physics of Fluids
Porous media exist extensively in hydraulic and coastal engineering structures, while the modeling of wave/flow interaction with porous media remains challenging.
X. Su, Chen Wang, M. Luo, Yi Zhan
semanticscholar   +1 more source

Spherical seepage model of Bingham fluid in rough and low-permeability porous media

Fluid Dynamics Research, 2023
Based on the microstructure of porous media that exhibits statistical self-similarity fractal features, this paper investigates the radial flow characteristics of non-Newtonian fluids within rough porous media. The analytical equation of permeability and
Shanshan Yang, Ke Zhao, Sheng Zheng
semanticscholar   +1 more source

Feature attention-based deep neural operator for solving seepage flow equations in porous media reservoir simulation

The Physics of Fluids
The porous media seepage problem is a key area of reservoir fluid simulation, which aims to solve multifield partial differential equations. With the increasing adoption of machine learning to solve partial differential equations, the solver for this ...
Renyao Lin, Tao Song, Jian Li
semanticscholar   +1 more source

The impact of diffusiophoresis on hydrodynamic dispersion and filtration in porous media

Journal of Fluid Mechanics
It is known that the dispersion of colloidal particles in porous media is determined by medium structure, pore-scale flow variability and diffusion. However, much less is known about how diffusiophoresis, that is, the motion of colloidal particles along ...
M. Jotkar   +3 more
semanticscholar   +1 more source

DEM modelling of unsaturated seepage flows through porous media

Computational Particle Mechanics, 2021
Khoa M. Tran, H. Bui, G. Nguyen
semanticscholar   +2 more sources

Deep Learning-Based Prediction of Seepage Flow in Soil-Like Porous Media

Fluid Dynamics & Materials Processing
: The rapid prediction of seepage mass flow in soil is essential for understanding fluid transport in porous media. This study proposes a new method for fast prediction of soil seepage mass flow by combining mesoscopic modeling with deep learning. Porous
Zhenzhen Shen   +8 more
semanticscholar   +1 more source

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