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Effects of Thinning Intensities on Soil Infiltration and Water Storage Capacity in a Chinese Pine-Oak Mixed Forest

机译:间伐强度对松栎混交林土壤入渗和储水能力的影响

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摘要

Thinning is a crucial practice in the forest ecosystem management. The soil infiltration rate and water storage capacity of pine-oak mixed forest under three different thinning intensity treatments (15%, 30%, and 60%) were studied in Qinling Mountains of China. The thinning operations had a significant influence on soil infiltration rate and water storage capacity. The soil infiltration rate and water storage capacity in different thinning treatments followed the order of control (nonthinning): <60%, <15%, and <30%. It demonstrated that thinning operation with 30% intensity can substantially improve soil infiltration rate and water storage capacity of pine-oak mixed forest in Qinling Mountains. The soil initial infiltration rate, stable infiltration rate, and average infiltration rate in thinning 30% treatment were significantly increased by 21.1%, 104.6%, and 60.9%, compared with the control. The soil maximal water storage capacity and noncapillary water storage capacity in thinning 30% treatment were significantly improved by 20.1% and 34.3% in contrast to the control. The soil infiltration rate and water storage capacity were significantly higher in the surface layer (0~20 cm) than in the deep layers (20~40 cm and 40~60 cm). We found that the soil property was closely related to soil infiltration rate and water storage capacity.
机译:细化是森林生态系统管理中的关键实践。研究了秦岭山区三种不同间伐强度(15%,30%和60%)的松栎混交林的土壤入渗率和储水量。间伐操作对土壤入渗率和储水量有重要影响。不同间伐处理的土壤入渗率和储水量遵循控制顺序(不稀疏):<60%,<15%和<30%。结果表明,以30%的强度进行细化作业可以显着提高秦岭松橡混交林的土壤入渗率和储水能力。与对照相比,间苗30%处理的土壤初始入渗率,稳定入渗率和平均入渗率分别增加了21.1%,104.6%和60.9%。与对照相比,稀疏30%处理的土壤最大贮水量和非毛细管贮水量分别提高了20.1%和34.3%。表层(0〜20 cm)的土壤入渗率和储水量明显高于深层(20〜40 cm和40〜60 cm)。我们发现土壤性质与土壤入渗率和储水量密切相关。

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