Svoboda | Graniru | BBC Russia | Golosameriki | Facebook

To install click the Add extension button. That's it.

The source code for the WIKI 2 extension is being checked by specialists of the Mozilla Foundation, Google, and Apple. You could also do it yourself at any point in time.

4,5
Kelly Slayton
Congratulations on this excellent venture… what a great idea!
Alexander Grigorievskiy
I use WIKI 2 every day and almost forgot how the original Wikipedia looks like.
Live Statistics
English Articles
Improved in 24 Hours
Added in 24 Hours
What we do. Every page goes through several hundred of perfecting techniques; in live mode. Quite the same Wikipedia. Just better.
.
Leo
Newton
Brights
Milds

From Wikipedia, the free encyclopedia

The void ratio () of a mixture of solids and fluids (gases and liquids), or of a porous composite material such as concrete, is the ratio of the volume of the voids () filled by the fluids to the volume of all the solids (). It is a dimensionless quantity in materials science and in soil science, and is closely related to the porosity (often noted as , or , depending on the convention), the ratio of the volume of voids () to the total (or bulk) volume (), as follows:

in which, for idealized porous media with a rigid and undeformable skeleton structure (i.e., without variation of total volume () when the water content of the sample changes (no expansion or swelling with the wetting of the sample); nor contraction or shrinking effect after drying of the sample), the total (or bulk) volume () of an ideal porous material is the sum of the volume of the solids () and the volume of voids ():

(in a rock, or in a soil, this also assumes that the solid grains and the pore fluid are clearly separated, so swelling clay minerals such as smectite, montmorillonite, or bentonite containing bound water in their interlayer space are not considered here.)

and

where is the void ratio, is the porosity, VV is the volume of void-space (gases and liquids), VS is the volume of solids, and VT is the total (or bulk) volume. This figure is relevant in composites, in mining (particular with regard to the properties of tailings), and in soil science. In geotechnical engineering, it is considered one of the state variables of soils and represented by the symbol .[1][2]

Note that in geotechnical engineering, the symbol usually represents the angle of shearing resistance, a shear strength (soil) parameter. Because of this, in soil science and geotechnics, these two equations are usually presented using for porosity:[3][4]

and

where is the void ratio, is the porosity, VV is the volume of void-space (air and water), VS is the volume of solids, and VT is the total (or bulk) volume.[5]

YouTube Encyclopedic

  • 1/5
    Views:
    7 845
    26 544
    6 378
    38 520
    33 055
  • what is Void ratio || Soil mechanics
  • How to calculate soil properties
  • Void ratio || Example solved
  • Bulk Density, Water Content, Void Ratio, Porosity, Degree of Saturation
  • Calculation of void ratio, degree of saturation and moisture content part 1

Transcription

Applications in soil sciences and geomechanics

  • Control of the volume change tendency. If the void ratio is high (loose soils), under loading, voids in the soil skeleton tend to decrease (shrinkage) – increasing the contact between adjacent particles and modifying the soil effective stress. The opposite situation, i. e. when the void ratio is relatively small (dense soils), indicates that the volume of the soil is vulnerable to increase (swelling) under unloading – the smectite (montmorillonite, bentonite) partially dry clay particles present in an unsaturated soil can swell due to their hydration after contact with water (when the saturated/unsaturated conditions fluctuate in a soil).
  • Control of the fluid hydraulic conductivity (ability of water movement through the soil). Loose soils show an high hydraulic conductivity, while dense soils are less permeable.
  • Particles movement. In a loose soil small unbound particles can move quite easily through the larger open voids, whereas in a dense soil finer particles cannot freely pass the smaller pores, which leads to the clogging of the porosity.

See also

References

  1. ^ Lambe, T. William & Robert V. Whitman. Soil Mechanics. Wiley, 1991; p. 29. ISBN 978-0-471-51192-2
  2. ^ Santamarina, J. Carlos, Katherine A. Klein, & Moheb A. Fam. Soils and Waves: Particulate Materials Behavior, Characterization and Process Monitoring. Wiley, 2001; pp. 35-36 & 51-53. ISBN 978-0-471-49058-6
  3. ^ Pearson, F. J. (1999). "What is the porosity of a mudrock? In: Aplin, A.C., Fleet, A.J. & Macquaker, J.H.S. (Ed.). Muds and mudstones: Physical and fluid flow properties". Geological Society, London, Special Publications. 158 (1): 9–21. doi:10.1144/GSL.SP.1999.158.01.02. ISSN 0305-8719.
  4. ^ Pearson, F. J.; Fernández, A. M.; Gaboriau, H.; Waber, H. N.; Bath, A. (2003). "Annex 10: Porosity and Water Content of Mont Terri Claystones. In: Mont Terri Project – Geochemistry of Water in the Opalinus Clay Formation at the Mont Terri Rock Laboratory" (PDF). Retrieved 2024-06-09.
  5. ^ Craig, R. F. Craig's Soil Mechanics. London: Spon, 2004, p.18. ISBN 0-203-49410-5.

Further reading

External links

This page was last edited on 9 June 2024, at 23:47
Basis of this page is in Wikipedia. Text is available under the CC BY-SA 3.0 Unported License. Non-text media are available under their specified licenses. Wikipedia® is a registered trademark of the Wikimedia Foundation, Inc. WIKI 2 is an independent company and has no affiliation with Wikimedia Foundation.