force centrifuge
Reading time:A solid-liquid suspension is spun in a cylindrical chamber (figure 43) at an angular velocity w (rad · s–1). The average distance separating the particle from the rotation axis is radius R (in m).
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A particle having a mass m will be subjected to centrifugal acceleration g which is provided by :
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The acceleration generated will always be expressed as a g number with reference to the Earth’s gravitational field :
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![Formula: centrifugal acceleration - Earth’s gravitational field](https://www.suezwaterhandbook.com/var/degremont/storage/images/eau-et-generalites/processus-elementaires-du-genie-physico-chimique-en-traitement-de-l-eau/centrifugation/force-centrifuge/dossier-media/formule-acceleration-centrifuge-champ-de-gravitation-terrestre/53758-4-eng-GB/Formula-centrifugal-acceleration-Earth-s-gravitational-field_articlewidth.png)
where P = the weight of the particle,
g = 9.81 m · s–2.
In practice, it is easier to use revolutions per minute-1 as the unit of rotation speed N.
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Industrial machines will generate centrifugal fields of 2,000 to 4,000 g in water treatment applications.
Note: force Fs separating the particle from the water (liquid ring) is :
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![Formula: force Fs separating the particle from the water](https://www.suezwaterhandbook.com/var/degremont/storage/images/eau-et-generalites/processus-elementaires-du-genie-physico-chimique-en-traitement-de-l-eau/centrifugation/force-centrifuge/dossier-media/formule-force-de-separation-fs-de-la-particule-par-rapport-a-l-eau/53778-4-eng-GB/Formula-force-Fs-separating-the-particle-from-the-water_articlewidth.png)
where dS = the particle’s density,
dL = the interstitial liquid’s density.
It is therefore clear that if the particle is subjected to a centrifugal force outside the liquid ring, the forces applied to the particles will be higher.
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