Open Access Journal

ISSN : 2456-1304 (Online)

International Journal of Engineering Research in Electronics and Communication Engineering(IJERECE)

Monthly Journal for Electronics and Communication Engineering

Open Access Journal

International Journal of Science Engineering and Management (IJSEM)

Monthly Journal for Science Engineering and Management

ISSN : 2456-1304 (Online)

Discharge Characteristics of Bucket Elevator under varying Parameters

Author : Subham A. Giri 1 Jatan N. Rana 2 Mukesh A. Bulsara 3 Hemal Patel 4

Date of Publication :11th May 2021

Abstract: Bucket elevators are widely used to lift material at various heights. Granular material is one of the common types of material handled by the bucket elevators. One of the major criteria for design of elevator is the discharge from the elevator. It has been observed that discharge from bucket elevators depends on factors like linear speed of bucket, shape of bucket, radius for the discharge side sprocket and more. [14] The mathematical equation is developed by equating the forces acting on a particle at the tip of bucket and determining the parameters values at which the particle will fly off. It was observed that while using maize as material handled, bucket linear speed 2 m/sec and bucket wheel radius 0.12m whereas material is placed at 0.162 m then discharge of material begins at 42.84 ⁰. [21] The results of presented model give the angle at which discharge starts, using measurable angle of bucket and position of grain with respect to center of sprocket; and angle where the friction force component acts using position of grain and selected angle to determine discharge. Hence, this paper incorporates the method to calculate the angle at which discharge will begin by using the fixed characteristics of the Elevator.

Reference :

    1. Keni‟iti MINAMIODI , Makoto KIKUKAWA, Yoshihisa SATO, Yoshitoshi YOKOYAMA and Hiromitsu FUKUDA , “ On the discharge from the bucket of the Bucket Elevator , Bulletin of JSME ,Vol. 3, No. 9 , 1960 , 621.86.063:631.364 “
    2. Koster, H.K.: Hochleistungsbecherwerke für den Bergbau, Glückauf-forschungshefte. “Discrete Element Method in the Design of Transport Systems”, 41/1980, 181-186.
    3.  F. J_ C. RADEMACHER University of Twente (The Netherlands) (Received April 13,1978; in revised form October X6,1978), “Non-Spill Discharge Characteristics of Bucket Elevators”, Powder Technology. 22 (1979) 215 – 241, Elsevier Sequoia S.A., Lausanne -Printed in the Netherlands.
    4.  Dražan, F.: “Theory and Design of Conveyors, 1st edn, p. 290”. Czech Technical University Prague, Prague (1983)
    5. Hauffstengel, G.J.: “Kraftverbrauch von Fördermitteln. Mitteilung über Forschungsarbeiten aufdem Gebiet des Ingenieurwesens”, Berlin (1913)
    6. A. Katterfeld; T. Donohue, “Application of the Discrete Element Method in Mechanical Conveying of Bulk Materials”, 07th International Conference for Conveying and Handling of Particulate Solids 10.09.2012 – 13.09.2012, Friedrichshafen/Germany
    7.  Helmut, T.: “Einfluß des Entleerungsverhaltens auf Becherform und Becherteilung zurErhöhung der Leistungsfähigkeit von Becherförderern”. Dissertation, Otto-von-Guericke-Universität, Magdeburg (1993)
    8. Krause, F., Katterfeld, A.: “Usage of the Discrete Element Method in Conveyor Technologies. Institute for Conveyor Technologies (IFSL)”, The Otto-vonGuericke-University of Magdeburg, P.O.Box 4120, D39016 Magdeburg.
    9.  Beumer, B., Wehmeier.: “Zur Frage des Schopfwiederstandes und Auswurfverhaltnisse bei Becherwerken, Fordern und heben”. 1960, 1061
    10. Zegzulka, J.: “Mechanics of Bulk Materials”, 1st edn, p. 186. VŠB - Technical University of Ostrava, Ostrava (2004). ISBN 80-248-0699-1

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