Assessment the effect of homogenized soil on soil hydraulic properties and soil water transport


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Abstract

Soil hydraulic properties play a crucial role in simulating water flow and contaminant transport. Soil hydraulic properties are commonly measured using homogenized soil samples. However, soil structure has a significant effect on the soil ability to retain and to conduct water, particularly in aggregated soils. In order to determine the effect of soil homogenization on soil hydraulic properties and soil water transport, undisturbed soil samples were carefully collected. Five different soil structures were identified: Angular-blocky, Crumble, Angular-blocky (different soil texture), Granular, and subangular-blocky. The soil hydraulic properties were determined for undisturbed and homogenized soil samples for each soil structure. The soil hydraulic properties were used to model soil water transport using HYDRUS-1D.The homogenized soil samples showed a significant increase in wide pores (wCP) and a decrease in narrow pores (nCP). The wCP increased by 95.6, 141.2, 391.6, 3.9, 261.3%, and nCP decreased by 69.5, 10.5, 33.8, 72.7, and 39.3% for homogenized soil samples compared to undisturbed soil samples. The soil water retention curves exhibited a significant decrease in water holding capacity for homogenized soil samples compared with the undisturbed soil samples. The homogenized soil samples showed also a decrease in soil hydraulic conductivity. The simulated results showed that water movement and distribution were affected by soil homogenizing. Moreover, soil homogenizing affected soil hydraulic properties and soil water transport. However, field studies are being needed to find the effect of these differences on water, chemical, and pollutant transport under several scenarios.

About the authors

O. Mohawesh

Department of Plant Production, Faculty of Agriculture

Author for correspondence.
Email: osama.mohawesh@gmail.com
Jordan, Karak

M. Janssen

Institute for Land Use

Email: osama.mohawesh@gmail.com
Germany, Justus-von-Liebig-Weg 6, Rostock

O. Maaitah

Department of Civil Engieering, Faculty of Engineering

Email: osama.mohawesh@gmail.com
Jordan, Karak

B. Lennartz

Institute for Land Use

Email: osama.mohawesh@gmail.com
Germany, Justus-von-Liebig-Weg 6, Rostock


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