Estimate the removal efficiencies for particles of 0.030mm and 0.015mm, respectively, in the sedimentation tank with an overflow of 2m/m²-h. Discrete settling is assumed for the particles. Furthermore, Stokes' law is assumed to be valid in the determination of the settling velocity (to simplify the calculation). It is known the specific gravity of the particle is 2.65. The gravity accelerate rate is 9.8m/s and the water kinematic viscosity is 1×10m?/s. [Stokes' law v = d²(s=1)º1 18y If the weight fractions of the 0.030mm and 0.015mm particles in the waster are 30% and 70%, respectively, calculate the total removal efficiency (TRE) of these particles by this tank.

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Estimate the removal efficiencies for particles of 0.030mm and 0.015mm, respectively, in the
sedimentation tank with an overflow of 2m/m²-h. Discrete settling is assumed for the particles.
Furthermore, Stokes' law is assumed to be valid in the determination of the settling velocity (to
simplify the calculation). It is known the specific gravity of the particle is 2.65. The gravity
accelerate rate is 9.8m/s and the water kinematic viscosity is 1×10m?/s. [Stokes' law v =
d²(s=1)º1
18y
If the weight fractions of the 0.030mm and 0.015mm particles in the waster are 30% and 70%,
respectively, calculate the total removal efficiency (TRE) of these particles by this tank.
Transcribed Image Text:Estimate the removal efficiencies for particles of 0.030mm and 0.015mm, respectively, in the sedimentation tank with an overflow of 2m/m²-h. Discrete settling is assumed for the particles. Furthermore, Stokes' law is assumed to be valid in the determination of the settling velocity (to simplify the calculation). It is known the specific gravity of the particle is 2.65. The gravity accelerate rate is 9.8m/s and the water kinematic viscosity is 1×10m?/s. [Stokes' law v = d²(s=1)º1 18y If the weight fractions of the 0.030mm and 0.015mm particles in the waster are 30% and 70%, respectively, calculate the total removal efficiency (TRE) of these particles by this tank.
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