Testing a Mechanistic Soil Erosion Model for Three Selected Soil Types from Iran

سال انتشار: 1386
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 43

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شناسه ملی سند علمی:

JR_JASTMO-10-1_008

تاریخ نمایه سازی: 23 آبان 1402

چکیده مقاله:

Hairsine and Rose (۱۹۹۱) developed a process-based soil erosion model which described the erosion transport of multiparticle sizes in sediment for rain-impacted flow in the absence of entrainment in overland flow. In order to test this model laboratory experiments were carried out in a detachment tray using simulated rainfall. Three contrasting soil types were subjected to simulated rainfall at different rates (۲۵-۱۱۰ mm h-۱) in a ۳۵۳۰ ۱۰ cm detachment tray. Rainfall was applied using a rainfall simulator with a single scanning nozzle located four meters above the soil surface that emitted drops with a mean diameter (volumetric D۵۰) of ۱.۵ mm. Results showed that the Hairsine and Rose model can clearly describe the sensitivity of different soils to erosion by introducing three terms of detachability, re-detachability and settling velocity, though the model is unable to describe aggregate breakdown which takes place in one of the soil at higher rainfall rates. The experimentally observed relationship between ponding water depth and soil detachability parameters did not agree with previously proposed theories. In addition, the results showed that the Hairsine and Rose model tends to over-predict values at the lower end of the scale, and under-predict values at the upper end, although the average sediment concentration predicted for the entire data set is not greatly different from the average measured values.

نویسندگان

H. Asadi

Faculty of Agriculture, University of Guilan, Rasht, P. O. Box: ۴۱۶۳۵-۱۳۱۴, Islamic Republic of Iran.

H. Rouhipour

Research Institute of Forests and Rangelands, P. O. Box: ۱۳۱۸۵-۱۱۶, Tehran, Islamic Republic of Iran.

H. Gh. Rafahi

Faculty of Agriculture, Tehran University, Karaj, P. O. Box: ۳۱۵۷۸۷-۱۱۱۶۷, Islamic Republic of Iran.

H. Ghadiri

Center for Riverine Landscapes, Faculty of Environmental Sciences, Griffith University, Nathan, ۴۱۱۱, Australia.