Vertical and Horizontal Water Penetration Velocity Modeling in Nonhomogenous Soil Using Fast Multi-Output Relevance Vector Regression
Author:
Affiliation:
1. Department of Civil Engineering, Bursa Technical University, Bursa, Turkey.
2. Department of Computer Engineering, Bilkent University, Ankara, Turkey.
3. Department of Civil Engineering, Yasar University, Izmir, Turkey.
Publisher
Mary Ann Liebert Inc
Subject
Information Systems and Management,Computer Science Applications,Information Systems
Link
https://www.liebertpub.com/doi/pdf/10.1089/big.2022.0125
Reference42 articles.
1. 1. Vaheddoost B, Kaymaz A, Ozteber S, et al. Experimental and theoretical evaluation of the flow-net in non-homogenous Soil. In: 5th Mediterranean International Congress on Natural Sciences, Health Sciences and Engineering (MENSEC V), September 10–12 (2019), Danubius Hotel Flamenco, Budapest, Hungry, 2019.
2. Rill flow velocity affected by the subsurface water flow depth of purple soil in Southwest China
3. 3. Darcy H. The Public Fountains of the City of Dijon [in French]. Cf. M. Muskat, The Flow of Homogeneous Fluids Through Porous Media. McGraw-Hill: New York; 1856.
4. CAPILLARY CONDUCTION OF LIQUIDS THROUGH POROUS MEDIUMS
5. 5. Dupuit J. Theoretical and Practical Studies on the Movement of Waters in Open Channels and Through Permeable Ground (Second ed.). [in French]. Dunod: Paris; 1863.
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