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Unified analytical model and theoretical revision of the Hjulstrom diagram

delete2026-04-01
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PRE
AI
W
Wang, Renyi *
Z
Zhu, Jianghang
H
He, Yong
L
Li, Jiangtao
Y
Yan, Jian
C
Chen, Zhilong
Y
Yin, Dandan
DOI:10.3389/feart.2026.1791125delete
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Abstract

Abstract

En 中文
The classical Hjulstrom diagram is an empirical rule that qualitatively describes the relationship between flow velocity, particle size, and erosion-transport-deposition. It has long lacked a unified theoretical foundation, which limits the quantitative interpretation of nonlinear variations in these processes. To address this, we establish a unified analytical model for the critical mean flow velocities that govern erosion, transport, and deposition. The model is based on Yang Meiqing's formula for critical bed shear stress, applicable to the full range of particle sizes, and the Ferguson-Church unified settling velocity formula. It incorporates the logarithmic velocity distribution law and uses the Rouse number as the critical deposition criterion. Theoretically, it demonstrates the U-shaped characteristic of the erosion zone, the wide for fine and narrow for coarse feature of the transport zone, and the convex curve of the deposition zone in double-logarithmic coordinates, thereby theoretically revising the traditional understanding in the classical Hjulstrom diagram that approximates the deposition boundary as a straight line. The correspondence between the unified analytical model and the classical Shields and Rouse theory, which can be regarded as a special case of this unified model under certain conditions, is further analyzed. By explicitly introducing the factors of riverbed inclination angle and water depth, the application scope of the Hjulstrom diagram is expanded, providing a reliable theoretical basis for quantitatively studying the erosion-transport-deposition relationship of river particles.
Keywords:
erosion-transport-deposition
Ferguson-Church formula
Hjulstr & ouml
m diagram
Rouse number
unified analytical model
Yang Meiqing's formula

Journal

F
Frontiers in Earth Science
IF:
2
Papers:
404
Citations:
1.7W

Organization

Z
zhejiang ocean university
Scholars:
875
Papers: 318
Citations: 0
Z
zhejiang university of technology
Scholars:
3.1W
Papers: 1.9W
Citations: 22
C
china national petroleum corporation
Scholars:
1.6K
Papers: 581
Citations: 0
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