Blood, lead and spheres: a hindered settling equation for sedimentologists based on metadata analysis

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Dangosydd eitem ddigidol (DOI)

  • Jaco H. Baas
  • Megan L. Baker
    Durham University
  • Patricia Buffon
    Delft University of Technology
  • Lorna J. Strachan
    Institute of Marine Science, The University of Auckland
  • Helen C. Bostock
    University of Queensland
  • David M. Hodgson
    School of Geography, University of Leeds, UK
  • Joris T. Eggenhuisen
    Ecology and Biodiversity Group, Utrecht University
  • Yvonne T. Spychala
    Leibniz Universitat Hannover
A revision of the popular equation of Richardson and Zaki (1954a, Transactions of the Institute of Chemical Engineering, 32, 35–53) for the hindered settling of suspensions of non-cohesive particles in fluids is proposed, based on 548 datasets from a broad range of scientific disciplines. The new hindered settling
equation enables predictions of settling velocity for a wide range of particle sizes and densities, and liquid densities and viscosities, but with a focus on sediment particles in water. The analysis of the relationship between hindered settling velocity and particle size presented here shows that the hindered settling effect
increases as the particle size decreases, e.g., a 50% reduction in settling velocity is reached for 0.025 mm silt and 4 mm pebbles at particle concentrations of 13% and 25%, respectively. Moreover, hindered settling starts to influence the settling behaviour of sediment particles at volumetric concentrations of merely a few
percent. For example, the particle settling velocity in flows that carry 5% silt is reduced by at least 22%. These observations suggest that hindered settling greatly increases the efficiency of natural flows to transport sediment particles, but also particulate carbon and pollutants, such as plastics, over large distances.

Allweddeiriau

Iaith wreiddiolSaesneg
Tudalennau (o-i)603-615
Nifer y tudalennau13
CyfnodolynThe Depositional Record
Cyfrol8
Rhif y cyfnodolyn2
Dyddiad ar-lein cynnar31 Ion 2022
Dynodwyr Gwrthrych Digidol (DOIs)
StatwsCyhoeddwyd - Meh 2022

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