Three dimensional finite element model of soil compaction caused by agricultural tire traffic
González Cueto, O; Iglesias Coronel, C E.; Recarey Morfa, C A.; Urriolagoitia Sosa, G; Hernández Gómez, Lís H.; Urriolagoitia Calderón, G; Herrera Suárez, M
Computers and Electronics in Agriculture 99: 146-152
2013
ISSN/ISBN: 0168-1699
DOI: 10.1016/j.compag.2013.08.026
Accession: 064407923
PDF emailed within 0-6 h: $19.90
Related References
Kaiming Xia 2011: Finite element modeling of tire/terrain interaction: Application to predicting soil compaction and tire mobility Journal of Terramechanics 48(2): 113-123Molnar, A.; Akker, J.J.H. van den; Ros, V.; Stanila, S.; Ranta, O. 2004: Finite element method based analyses of soil compaction by agricultural traffic Buletinul Universitatii de Stiinte Agricole si Medicina Veterinara Cluj Napoca Seria Agricultura 60: 192-196
Eldin, A.; Watts, K. 1993: Development of a three dimensional finite element model for low speed soil compaction Paper er 1993 (93-1531 93-1560)
Eldin, A.; Shaibon, M.; Watts, K. 1993: Experimental evaluation of a three dimensional finite element model for low speed soil compaction Paper er 1993 (93-1531 93-1560)
Nakashima, H.; Wong, J.Y. 1993: A three-dimensional tire model by the finite element method Journal of Terramechanics 30(1): 21-34
Amanjot Singh; Herrmann, A.; Kaushal, M.P. 2001: PAU-REMO: a two dimensional finite element runoff and soil erosion model for agricultural lands Soil erosion research for the 21st century Proceedings of the International Symposium, Honolulu, Hawaii, USA, 3-5 January 2001: 334-337
Rubinstein, D.; Shmulevich, I.; Frenckel, N. 2018: Use of explicit finite-element formulation to predict the rolling radius and slip of an agricultural tire during travel over loose soil Journal of Terramechanics 80: 1-9
Keller, T.; Defossez, P.; Weisskopf, P.; Arvidsson, J.; Richard, G. 2007: Soil Flex: A model for prediction of soil stresses and soil compaction due to agricultural field traffic including a synthesis of analytical approaches Soil and Tillage Research 93(2): 391-411
Ishii, K.; Tokunaga, Y. 1968: Soil compaction caused by tractor traffic. 2. Relationship between the results of field and laboratory investigations. 3. Relationships between soil-moisture content and compaction for several soil types Soil Sci. Pl. Nutr 15(95): 462-468
Xia, K 2012: A large deformation finite element model for soil compaction Geomechanics and Geoengineering 7(2): 123-137
Huang, L.; Puri, V.M. 2000: A three-dimensional finite element model for powder compaction-time-dependent formulation and validation Particulate Science and Technology 18(4): 257-274
Rohlf, R.; Wells, L.; Xing, Z. 1994: Analysis of wheel compaction using a soil stress-strain finite element model Paper er 1994 (94-1542 94-1563)
Goutal, N.; Keller, T.; Défossez, P.; Ranger, J. 2013: Soil compaction due to heavy forest traffic measurements and simulations using an analytical soil compaction model Annals of Forest Science 70(5): 545-556
Ziegelhoeffer A.; De Jong J.W.; Ferrari R.; Turi Nagy L. 1994: Agricultural tire deformation in the 2D case by finite element methods Journal of Terramechanics 31(6): 353-370
Anil Bhardwaj; M.P.K.ushal 2009: Two-dimensional physically based finite element runoff model for small agricultural watersheds I Model development Hydrological Processes 23(3): 397-407