首页> 外文期刊>Acta Agriculturae Scandinavica. Section B, Soil and Plant Science >Simulation of rill erosion in black soil and albic soil during the snowmelt period
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Simulation of rill erosion in black soil and albic soil during the snowmelt period

机译:融雪期黑土和白土侵蚀模拟

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摘要

Snowmelt-induced rill erosion could bring serious harm for soil quality and agricultural productive conditions of slope farmland in the black soil zone of Northeast China. In this study, we conducted laboratory experiments to investigate the effects of the freeze-thaw (FT) temperature, number of FT cycles, water content, flow rate, and thaw depth on rill morphology and erosion amount in two common soil (black soil and albic soil). The thaw depth obtained the maximum range, which was the primary factor for the width-to-depth ratio of rills in the black soil; whereas, the flow rate obtained the maximum range as the primary factor for rill erosion in black soil and albic soil. The number of FT cycles had a minor effect on rill erosion in the two soils. Under the same conditions, the rill morphology showed a large difference between the two soils, and higher rill erosion occurred in albic soil than black soil. Rill erosion was relatively high in black soil and albic soil when the FT temperature fluctuated around 0 degrees C during freezing-thawing. The water content exhibited a greater effect on rill erosion in black soil than in albic soil. The unthawed frozen layer could promote rill erosion during snowmelt period to some extent. The results could provide some reference for future study snowmelt-induced rill erosion mechanism and preventive measures.
机译:融雪引起的沟壑侵蚀可能对东北黑土带边坡农田的土壤质量和农业生产条件造成严重危害。本研究通过室内实验,研究了冻融温度、冻融循环次数、含水量、流速、解冻深度对两种常见土(黑土和白土)冻融形态和侵蚀量的影响。解冻深度获得最大范围,这是黑土中沟壑宽深比的主要因素;而流速获得最大范围是黑土和白化土中里尔侵蚀的主要因素。FT循环次数对两种土壤的侵蚀影响较小。在相同条件下,两种土壤的里尔形态差异较大,白土中里尔侵蚀程度高于黑土。冻融过程中,FT温度波动在0°C左右时,黑土和白土的Rill 侵蚀程度相对较高。与白土相比,含水量对黑土侵蚀的影响更大。未解冻的冻层在一定程度上促进了融雪期的侵蚀。研究结果可为今后融雪诱发的沟壑侵蚀机理及预防措施提供参考。

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