## This is the fourth part of a series of papers on hydrocyclones. In Part I general considerations were presented, in Part II a pressure drop correlation was given, while in Part III a cyclone separation number was derived whose. value was determined experimentally. An optimal cyclone shape was
Performance and design of hydrocyclones—I: General considerations
✍ Scribed by K. Rietema
- Publisher
- Elsevier Science
- Year
- 1961
- Tongue
- English
- Weight
- 334 KB
- Volume
- 15
- Category
- Article
- ISSN
- 0009-2509
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✦ Synopsis
In a series of papers correlations are developed for the pressure drop and the separating power of hydrocyclones and rules for establishing the optimum design of hydrocyclones are derived.
In the llrst two parts general considerations are given and a pressure drop correlation is ,derived. It is obtained as the product of two independent functions, one of which describes the dependence on the Reynolds number based on inlet conditions, and the other the dependence on the shape of the cyclone.
R6snm&-Uans
une drie d'articles l'auteur developpe des systemes de correlations pour la chute de pression et le pouvoir de separation d'hydrocyclones, ainsi que des r&gles pour calculer la forme optimale de ces appareils.
Uans les premieres deux parties l'auteur developpe des considerations g&r&ales et deduit une relation pour la chute de pression dans l'hydrocyclone.
Elle s'obtient comme le produit de deux fonctions independantes, l'une desquelles d&it la d+nlance de la chute de pression du nombre de Reynolds qui est determinb par les conditions r&nant dans l'arrivee, et l'autre sa dependance de la forme du cyclone.
Zusammenfassung-In einigen aufeinanderfolgenden Artikeln werden Beziehungen fur das Druckgefiille und das Trennungsvermogen von Hydrozyklonen, sowie Regeln fiir die Berechnung der optimalen Form solcher Zyklone ausgearbeitet.
In den ersten zwei Teilen werden einige allgemeine Betrachtungen iiber Hydroxyklone gegeben und wird eine Beziehung fiir das Druckgefille im Hydrozyklon abgeleitet. Sie ist das Prod&t zweier unabhiingigen Funktionen, von denen eine die Abhiingigkeit von der Reynolds-Zahl, deren Griisse von den im Einlass herrschenden Bedingungen bestimmt wird, die andere die Abhangigkeit von der Form des Zyklons heschreibt.
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