Robust low-rank learning multi-output regression for incipient sediment motion in sewer pipes
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Date
2023
Authors
Mir Jafar Sadegh Safari
Shervin Rahimzadeh Arashloo
Journal Title
Journal ISSN
Volume Title
Publisher
IRTCES
Open Access Color
Green Open Access
No
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Publicly Funded
No
Abstract
The existing incipient sediment motion models typically apply conventional regression methods considering either velocity or shear stress. In the current study incipient sediment motion is analyzed through a simultaneous and joint analysis of velocity and shear stress using the robust low-rank learning (RLRL) multi-output regression technique. Moreover the experimental data compiled from five different channels are utilized to develop a generic incipient sediment motion model valid for a channel of any cross-sectional shape. The efficiency of the developed method is examined and compared against the available conventional regression models. The experimental results indicate that the RLRL model yields better results than its counterparts. In particular while cross-section specific models fail to provide accurate estimates for shear stress or velocity for other cross sections the proposed model provides satisfactory results for all channel shapes. The better performance of the recommended approach can be attributed to the joint modeling of the shear stress and the velocity which is realized by capturing the correlation between these parameters in terms of a low rank output mixing matrix which enhances the prediction performance of the approach.(c) 2023 International Research and Training Centre on Erosion and Sedimentation/the World Association for Sedimentation and Erosion Research. Published by Elsevier B.V. All rights reserved.
Description
Keywords
Low-rank learning, Multi-output regression, Sediment transport, Sewer flow, Shear stress approach, Velocity approach, DEPOSIT
Fields of Science
Citation
WoS Q
Scopus Q

OpenCitations Citation Count
1
Source
International Journal of Sediment Research
Volume
38
Issue
Start Page
859
End Page
870
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Scopus : 2
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Mendeley Readers : 3
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