Use of GMDH-type neural network to model the mechanical behavior of a cement-treated sand
Author:
Publisher
Springer Science and Business Media LLC
Subject
Artificial Intelligence,Software
Link
https://link.springer.com/content/pdf/10.1007/s00521-021-06157-6.pdf
Reference38 articles.
1. Onishi K, Tsukamoto Y, Saito R, Chiyoda T (2010) Strength and small-strain modulus of lightweight geomaterials: cement-stabilised sand mixed with compressible expanded polystyrene beads. Geosynth Int 17:380–388
2. MolaAbasi H, Kordtabar B, Kordnaeij A (2017) Parameters controlling strength of zeolite–cement–sand mixture. Int J Geotech Eng 11:72–79
3. Yilmaz E, Belem T, Benzaazoua M (2015) Specimen size effect on strength behavior of cemented paste backfills subjected to different placement conditions. Eng Geol 185:52–62
4. Ismael NF, Mollah MA (1998) Leaching effects on properties of cemented sands in Kuwait. J Geotech geoenvironmental Eng 124:997–1004
5. MolaAbasi H, Semsani SN, Saberian M et al (2020) Evaluation of the long-term performance of stabilized sandy soil using binary mixtures: a micro-and macro-level approach. J Clean Prod 267:122209
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