A modeling framework to quantify the effects of compaction on soil water retention and infiltration

Author:

Ngo‐Cong Duc1ORCID,Antille Diogenes L.12ORCID,Th. van Genuchten Martinus34ORCID,Nguyen Hung Q.1ORCID,Tekeste Mehari Z.5ORCID,Baillie Craig P.1ORCID,Godwin Richard J.6

Affiliation:

1. Univ. of Southern Queensland, Centre for Agricultural Engineering Toowoomba QLD 4350 Australia

2. CSIRO Agriculture and Food Black Mountain Science and Innovation Precinct Canberra ACT 2601 Australia

3. Dep. of Earth Sciences Utrecht Univ. Utrecht 3584 Netherlands

4. Center for Environmental Studies São Paulo State Univ. Rio Claro SP 13.506‐900 Brazil

5. Dep. of Agricultural and Biosystems Engineering Iowa State Univ. Ames IA 50011‐3270 USA

6. Engineering Dep. Harper Adams Univ. Newport Shropshire TF10 8NB UK

Publisher

Wiley

Subject

Soil Science

Reference83 articles.

1. A review of the changes in the soil pore system due to soil deformation: A hydrodynamic perspective;Alaoui A.;Soil and Tillage Research,2011

2. The effect of tyres and a rubber track at high axle loads on soil compaction, Part 1: Single axle-studies

3. Soil displacement and soil bulk density changes as affected by tire size;Antille D. L.;Transactions of the ASABE,2013

4. The potential of controlled traffic farming to mitigate greenhouse gas emissions and enhance carbon sequestration in arable land: A critical review;Antille D. L.;Transactions of the ASABE,2015

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