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The grading entropy-based criteria for structural stability of granular materials and filters

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posted on 2025-05-11, 11:15 authored by Janos Lőrincz, Emöke Imre, Stephen Fityus, Phong Q. Trang, Tibor Tarnai, István Talata, Vijay P. Singh
This paper deals with three grading entropy-based rules that describe different soil structure stability phenomena: an internal stability rule, a filtering rule and a segregation rule. These rules are elaborated on the basis of a large amount of laboratory testing and from existing knowledge in the field. Use is made of the theory of grading entropy to derive parameters which incorporate all of the information of the grading curve into a pair of entropy-based parameters that allow soils with common behaviours to be grouped into domains on an entropy diagram. Applications of the derived entropy-based rules are presented by examining the reason of a dam failure, by testing against the existing filter rules from the literature, and by giving some examples for the design of non-segregating grading curves (discrete particle size distributions by dry weight). A physical basis for the internal stability rule is established, wherein the higher values of base entropy required for granular stability are shown to reflect the closeness between the mean and maximum grain diameters, which explains how there are sufficient coarser grains to achieve a stable grain skeleton.

History

Journal title

Entropy

Volume

17

Issue

5

Pagination

2781-2811

Publisher

MDPI AG

Language

  • en, English

College/Research Centre

Faculty of Engineering and Built Environment

School

School of Engineering

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