Porous Media

Porous media are materials containing interconnected voids through which fluids can move, making them central to transport and flow analysis in engineering. Their behavior depends on pore structure, permeability, porosity, and the pressure gradients that drive fluid motion; at larger scales, Darcy’s law relates flow rate to permeability and viscosity, while capillary forces and saturation influence multiphase flow. Engineers use porous-media models to design groundwater remediation systems, petroleum reservoirs, filters, fuel cells, and building materials, and to predict how heat, dissolved chemicals, or contaminants spread through soil and other permeable structures.

Porous Media - Related Videos

Research

JoVE Journal - Environment
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A Microfluidic Platform to Investigate Microbial Precipitation of Metal Oxides in Porous Media

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2026

This protocol presents a microfluidic system for studying the microbial precipitation of manganese oxide minerals. Biomineral formation is measured in situ with optical microscopy and image analysis. This approach can be adapted to investigate the precipitation of other distinctively colored biogenic minerals in porous environments.

Research

JoVE Journal - Environment

A Microfluidic Platform to Study Bioclogging in Porous Media

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Cited by 4 •

2022

The present protocol describes a microfluidic platform to study biofilm development in quasi-2D porous media by combining high-resolution microscopy imaging with simultaneous pressure difference measurements. The platform quantifies the influence of pore size and fluid flow rates in porous media on bioclogging.

Window on a Microworld: Simple Microfluidic Systems for Studying Microbial Transport in Porous Media

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Cited by 13 •

2010

Microfluidic devices can be used to visualize complex natural processes in real time and at the appropriate physical scales. We have developed a simple microfluidic device that mimics key features of natural porous media for studying growth and transport of bacteria in the subsurface.

In Situ Monitoring of Diffusion of Guest Molecules in Porous Media Using Electron Paramagnetic Resonance Imaging

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Cited by 2 •

2016

A protocol for the in situ monitoring of the diffusion of guest molecules in porous media using electron paramagnetic resonance (EPR) imaging is presented.

3D Printing Bacteria to Study Motility and Growth in Complex 3D Porous Media

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Cited by 3 •

2024

This protocol describes a procedure for three-dimensional (3D) printing of bacterial colonies to study their motility and growth in complex 3D porous hydrogel matrices that are more akin to their natural habitats than conventional liquid cultures or Petri dishes.

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