most citedAn integrated approach to soil structure, shrinkage, and cracking in samples and layers

33 citations · 114 across the 7 of their papers we have counts for

collaborators

7 papers

physics.geo-ph201411 cited

Shrinkage anisotropy characteristics from soil structure and initial sample/layer size

V. Y. Chertkov

The objective of this work is a physical prediction of such soil shrinkage anisotropy characteristics as variation with drying of (i) different sample/layer sizes and (ii) the shri…

physics.geo-ph20142 cited

Water retention of rigid soils from a two-factor model for clay

V. Y. Chertkov

Water retention is one of the key soil characteristics. Available models of soil water retention relate to the curve-fitting type. The objective of this work is to suggest a physic…

physics.geo-ph201422 cited

Physical modeling of the soil swelling curve vs. the shrinkage curve

V. Y. Chertkov

Physical understanding of the links between soil swelling, texture, structure, cracking, and sample size is of great interest for the physical understanding of many processes in th…

physics.geo-ph201433 cited

An integrated approach to soil structure, shrinkage, and cracking in samples and layers

V. Y. Chertkov

A recent model showed how a clay shrinkage curve is step-by-step transformed into the shrinkage curve of an aggregated soil at any clay content if it is measured on samples so smal…

physics.geo-ph201426 cited

The physical effects of an intra-aggregate structure on soil shrinkage

V. Y. Chertkov

Clay and soil containing it have shrinkage curves that are qualitatively different in shape. The objective of this work is to qualitatively show with maximum simplicity, how a clay…

physics.geo-ph2014

Physical modeling of shrink-swell cycles and cracking in a clayey vadose zone

V. Y. Chertkov

Physical understanding of the crack origin and quantitative physical prediction of the crack volume variation far from the clay soil surface are necessary to protect the underlying…