2012Unpublished venueRequires access

Comparison of Fitting Quality and Changes Trend of Moisture Curve Parameters of Mualem-Van Genuchten Model at Different compaction Treatments of Sandy Loam and Clay Loam Soils

Hassan Abbaspour, M Shorafa, Mehdi Rashtbari

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Abstract

Soil hydraulic properties including soil water characteristics curve and hydraulic conductivity are two important properties to determination of water movement in soil. The aim of this study was to evaluation of fitting quality of Mualem-Van Genuchten model on moisture curve and comparing in two soil texture classes (sandy loam and clay loam) and in different compaction treatments. Samples were collected from 0-10cm depth and Compaction created by proctor in six replication and four levels including C0 (control), C 1, C 2 and C 3 by increasing in soil bulk density with the ratio of 5, 10 and 15%, respectively. Mualem-Van Genuchten model using RETC software were fitted on moisture-suction data obtained from pressure plate. Fitting quality of considered model achieved by R 2 and RMSE calculation. RMSE in sandy loam soil had no change compared to control. But clay loam soil had increasing trend in terms of RMSE. Due to little changes of model in sandy loam in all treatments compared to clay loam, the use of this model in light textured and field compaction status was recommended.

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What this paper is about

Soil hydraulic properties including soil water characteristics curve and hydraulic conductivity are two important properties to determination of water movement in soil. The aim of this study was to evaluation of fitting quality of Mualem-Van Genuchten model on moisture curve and comparing in two soil texture classes (sandy loam and clay loam) and in different compaction treatments. Samples were collected from 0-10cm depth and Compaction created by proctor in six replication and four levels including C0 (control), C 1, C 2 and C 3 by increasing in soil bulk density with the ratio of 5, 10 and 15%, respectively. Mualem-Van Genuchten model using RETC software were fitted on moisture-suction data obtained from pressure plate. Fitting quality of considered model achieved by R 2 and RMSE calculation. RMSE in sandy loam soil had no change compared to control. But clay loam soil had increasing trend in terms of RMSE. Due to little changes of model in sandy loam in all treatments compared to clay loam, the use of this model in light textured and field compaction status was recommended.

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Available abstract

Soil hydraulic properties including soil water characteristics curve and hydraulic conductivity are two important properties to determination of water movement in soil. The aim of this study was to evaluation of fitting quality of Mualem-Van Genuchten model on moisture curve and comparing in two soil texture classes (sandy loam and clay loam) and in different compaction treatments. Samples were collected from 0-10cm depth and Compaction created by proctor in six replication and four levels including C0 (control), C 1, C 2 and C 3 by increasing in soil bulk density with the ratio of 5, 10 and 15%, respectively. Mualem-Van Genuchten model using RETC software were fitted on moisture-suction data obtained from pressure plate. Fitting quality of considered model achieved by R 2 and RMSE calculation. RMSE in sandy loam soil had no change compared to control. But clay loam soil had increasing trend in terms of RMSE. Due to little changes of model in sandy loam in all treatments compared to clay loam, the use of this model in light textured and field compaction status was recommended.

Key concepts: Loam, Water content, Soil water, Compaction, Soil science, Pedotransfer function, Soil texture, Moisture

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Comparison of Fitting Quality and Changes Trend of Moisture Curve Parameters of Mualem-Van Genuchten Model at Different compaction Treatments of Sandy Loam and Clay Loam Soils — Research Paper | ScholarLens