Quantification of traffic-induced compaction based on soil and agricultural implement parameters
Abstract
Keywords: soil traffic-induced compaction, agricultural implement, soil bulk density, no-tillage, soil structure, quantification
DOI: 10.25165/j.ijabe.20201305.5480
Citation: Wang X L, Zhang X C, Lin X N, Sha L M, Yang H Y, Guo Z Y, et al. Quantification of traffic-induced compaction based on soil and agricultural implement parameters. Int J Agric & Biol Eng, 2020; 13(5): 134–140.
Keywords
Full Text:
PDFReferences
Abdel-Moghny T, Mohamed R S A, El-Sayed E, Shoukry M, Moustafa G. Effect of soil texture on remediation of hydrocarbons-contaminated soil at El-Minia District, Upper Egypt. ISRN Chemical Engineering, 2012; 2012(2): 1–13.
Zhao Z J, Zou M, Xue L, Wei C G, Li J Q. Simulation analysis of the effect of compaction on soil stress distribution. Transactions of the CSAM, 2012; 43(S1): 13–16. (in Chinese)
Zhang J L, Han W T, Shi S B, Gao F, Zhang Y Z. Experimental study on soil compaction by agricultural machinery. Tractors and farm transporters, 2011; 38(3): 6–7. (in Chinese)
Hamza M A, Anderson W K. Soil compaction in cropping systems a review of the nature, causes and possible solutions. Soil and Tillage Research, 2005; 82(2): 121–145.
Batey T. Soil compaction and soil management a review. Soil Use and Management, 2009; 25(4): 335–345.
Raper R L. Agricultural traffic impacts on soil. Journal of Terra mechanics, 2005; 42(3): 259–280.
Soane B D, van Ouwerkerk C. Soil compaction problems in world agriculture. Developments in Agricultural Engineering, 1994; 11: 1–21.
Zhang L. Response and adaptation mechanism of Festuca Arundinacea to soil compaction on coal waste piles with spontaneous combustion. PhD dissertation. Beijing: China University of Mining and Technology, 2012; 149p. (in Chinese)
Keller T, Lamandé M. Challenges in the development of analytical soil compaction models. Soil and Tillage Research, 2010; 111(1): 54–64.
Wu Y B, Liu S. Effects of soil compaction on soil properties and plant growth. China Forestry Science and Technology, 2010; 24(1): 15–17. (in Chinese)
Niziolomski J C, Simmons R W, Rickson R J, Hann M J. Tine options for alleviating compaction in wheelings. Soil and Tillage Research, 2016; 161: 47–52.
Schjønning P, Lamandé M, Tøgersen F A, Johan A, Thomas K. Modelling effects of tyre inflation pressure on the stress distribution near the soil-tyre interface. Biosystems Engineering, 2008; 99(1): 119–133.
Hemmat A, Adamchuk V I. Sensor systems for measuring soil compaction: Review and analysis. Computers and Electronics in Agriculture, 2008; 63(2): 89–103.
Boussinesq J. Application of potentials to the study of the balance and motion of elastic solids. Paris: Gautiher-Villars, 1885; 721p.
Omar G C, Ciro E, Carlos A. Recarey M, Guillermo U. Three dimensional finite element model of soil compaction caused by agricultural tire traffic.Computers and Electronics in Agriculture, 2013; 99: 146–152.
Peter B O, Dorothee K, Mathieu L, Trond B, Gareth E. Compaction and sowing date change soil physical properties and crop yield in a loamy temperate soil. Soil and Tillage Research, 2018; 184: 153–163.
Jan R, Hofmann B, Deumelandt P, Frank R, Jana B, Kurt J H. Indicator based assessment of the soil compaction risk at arable sites using the model REPRO. Ecological Indicators, 2015; 52: 341–352.
Newell J P, Whittingham M J, Chambers B J. Visual soil evaluation in relation to measured soil physical properties in a survey of grassland soil compaction in England and Wales. Soil and Tillage Research, 2013; 127: 65–73.
Donohue S, Forristal D, Donohue L A. Detection of soil compaction using seismic surface waves. Soil and Tillage Research, 2013; 128: 54–60.
Obour P B, Schjønning P, Peng Y, Lars J. Subsoil compaction assessed by visual evaluation and laboratory methods. Soil and Tillage Research, 2017; 173: 4–14.
Ball B C, Batey T, Munkholm L J, Guimarães R, Boizard H, McKenzie D. The numeric visual evaluation of subsoil structure (subvess) under agricultural production. Soil and Tillage Research, 2015; 148: 85–96.
Peigné J, Vian J, Cannavacciuolo M, Vincent L, Yvan G, Hubert B. Assessment of soil structure in the transition layer between topsoil and subsoil using the profile cultural method. Soil and Tillage Research, 2013; 127: 13–25.
Wang X L, Wang Q J, Li H W, He J, Zhang Y F. Research on contact properties of soil-tire based on FRIDA Model. Transactions of the CSAM, 2016; 47(9): 121–127. (in Chinese)
Söhne W. Stress distribution in soil and soil deformation under tractor tyres. Grdlgn. d. Landtechn, 1953; 5: 49–63.
Lestariningsih I D, Hairiah Widianto K. Assessing soil compaction with two different methods of soil bulk density measurement in oil palm plantation soil. Procedia Environmental Sciences, 2013; 17: 172–178.
Saffih-Hdadia K, De´fosseza P, Richard G. A method for predicting soil susceptibility to the compaction of surface layers as a function of water content and bulk density, Soil and Tillage Research, 2009; 105: 96–103.
Huang Z X, Chen J, Zhu X F. Study on the problem of stress bulk density under different soil moisture content. Modernizing Agriculture, 2016; 1: 19–20. (in Chinese)
Zhang Q Z. Soil press roller with bionically geometrically structured surfaces. PhD dissertation. Changchun: Jilin University, 2014; 162p. (in Chinese)
Copyright (c) 2020 International Journal of Agricultural and Biological Engineering
This work is licensed under a Creative Commons Attribution 4.0 International License.