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Scale-Up of Decanter Centrifuges for The Particle Separation and Mechanical Dewatering in The Minerals Processing Industry by Means of A Numerical Process Model

Philipp Menesklou, Tabea Sinn

2021Englishmineral processingbeneficiationcomminutionflotationphysical separationminerals processing

Abstract

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Decanter centrifuges are frequently used for thickening, dewatering, classification, or degritting in the mining industry and various other sectors. Their use in an industrial process chain requires a sufficiently accurate prediction of the product and the machine behaviour. For this purpose, experiments on a smaller pilot-scale are carried out for scale-up of a decanter centrifuge, which is usually a major challenge. Predicting the process behaviour of decanter centrifuges from laboratory tests is rather difficult. Basically, there are two common ways of scale-up: First, via analytical methods and the law of similarity, which often requires an enormous experimental effort. Second, using numerical models, which demands a mathematically and physically precise description of the multiple processes running simultaneously in such machines. This article provides an overview of both methods for scale-up of a decanter centrifuge. The concept of a previously developed numerical approach is detailed.

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Cite This Work

@article{553c24b2-9cf7-497c-be2c-802d06d32967,
  title={Scale-Up of Decanter Centrifuges for The Particle Separation and Mechanical Dewatering in The Minerals Processing Industry by Means of A Numerical Process Model},
  author={Philipp Menesklou and Tabea Sinn},
  year={2021},
  language={English}
}
TY  - JOUR
TI  - Scale-Up of Decanter Centrifuges for The Particle Separation and Mechanical Dewatering in The Minerals Processing Industry by Means of A Numerical Process Model
AU  - Philipp Menesklou
AU  - Tabea Sinn
PY  - 2021
LA  - English
ER  -

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