Air Filtration Quality Purification Pollution Control
Solve for rotational velocity
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radial velocity | |
particle or particulate density | |
air density | |
radial distance | |
rotational velocity | |
particulate or particle diameter | |
air viscosity |
pressure drop | |
proportionality factor | |
gas flow rate | |
absolute pressure | |
gas density | |
temperature |
separation factor | |
radial velocity | |
settling velocity |
approximate effective turns | |
inlet height | |
cylinder length | |
cone length |
cut diameter | |
gas viscosity | |
inlet width | |
effective turns | |
inlet gas velocity | |
particle density | |
gas density |
vradial | = | radial velocity |
vinlet | = | inlet velocity |
pparticle | = | particle or particulate density |
pair | = | air density |
r | = | radial distance |
w | = | rotational velocity |
d | = | particle particulate or diameter |
Pdrop | = | pressure drop |
Q | = | gas flow rate |
P | = | absolute pressure |
pgas | = | gas density |
u | = | air viscosity |
ugas | = | gas viscosity |
K | = | proportionality factor |
T | = | temperature |
v | = | settling velocity |
S | = | separation factor |
N | = | approximate effective turns |
h | = | inlet height |
Lcylinder | = | cylinder length |
Lcone | = | cone length |
dcut | = | cut diameter |
W | = | inlet width |
P. Aarne Vesilind, J. Jeffrey Peirce and Ruth F. Weiner. 1994. Environmental Engineering. Butterworth Heinemann. 3rd ed.
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