Computer-Controlled Hydrocyclone Battery with Maximum Solids Recovery (ABSTRACT PAGE)

International Mineral Processing Congress
Th. Neesse M. Schneider J. Dueck F. Donhauser J. Regler AKW A. + V GmbH & Co.
Organization:
International Mineral Processing Congress
Pages:
1
File Size:
135 KB
Publication Date:
Jan 1, 2003

Abstract

"In practice the advantages of high-quality hydrocyclone separation are often reduced due to varying feed suspension properties, solids concentrations and particle size distributions. Therefore, a new control system for a battery of hydrocyclones with a nominal diameter of 150 mm was developed for bentonite slurry regeneration associated with tunnel excavation using bentonite slurry as a transport aid and lubricant.As can be seen from Fig. 1, the hydrocyclone battery has been modified for regulation purpose. The battery was manufactured with an overflow collector as a closed pressure chamber (1) with a discharge pipe (2) where the throttling valve (3) was installed.With increased stepwise throttling of the overflow, the volume split is changed with the effect that the solids discharge in the underflow is increased. To stabilize the total throughput, the feed pump speed is simultaneously increased so that the pressure drop ?p across the hydrocyclones (9) remains approximately constant. However, this causes the increasing pressure inside the hydrocyclones, which results in a further intensification of the underflow discharge. After the detection of the break through of the air core (transition state) by the capacitive sensor (4), the throttle valve is shortly opened, and a new regulation interval can start again. The control concept is focused on maintaining the optimum operating state, characterized by the underflow discharge shape at the transition state between rope and umbrella discharge."
Citation

APA: Th. Neesse M. Schneider J. Dueck F. Donhauser J. Regler AKW A. + V GmbH & Co.  (2003)  Computer-Controlled Hydrocyclone Battery with Maximum Solids Recovery (ABSTRACT PAGE)

MLA: Th. Neesse M. Schneider J. Dueck F. Donhauser J. Regler AKW A. + V GmbH & Co. Computer-Controlled Hydrocyclone Battery with Maximum Solids Recovery (ABSTRACT PAGE). International Mineral Processing Congress, 2003.

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