Zhang Shengtang, Zhang Jingzhou, Liu Yin, Liu Yuanchen, Li Guibao
Shandong University of Science and Technology, Qingdao 266590, China E-mail:
Water Sci Technol. 2018 Dec;78(11):2383-2391. doi: 10.2166/wst.2018.524.
Vegetation is an important part of the natural environment and has resistance effects on overland runoff, which can effectively reduce hydraulic erosion. The effect of vegetation stem diameter and slope gradient on flow resistance is thus worthy of further study. The influence of three different slope gradients (s), three vegetation stem diameters (d) and 12 levels of unit discharge (q) on the flow resistance of a slope was simulated to systematically study the effect of vegetation stem diameter and slope gradient on overland runoff. The diameter of the vegetation stem and the slope gradient were found to have a significant resistance effect on overland runoff. Under the same slope gradient, the Darcy-Weisbach resistance factor (f) increased with an increase in the vegetation stem diameter. Under experimental conditions, the rate of change of f was analysed by linear regression, and as d increased by 1 mm, f increased by an average of 49.9%. For a given vegetation stem diameter and vegetation distribution pattern, the greater the slope gradient, the smaller the value of f, and as S increased by 1.0%, f decreased by an average of 24.5%. These results are important to optimize the slope vegetation distribution in farmland conservation.
植被是自然环境的重要组成部分,对坡面径流具有阻控作用,能有效减少水力侵蚀。因此,植被茎干直径和坡度对水流阻力的影响值得进一步研究。模拟了三种不同坡度(s)、三种植被茎干直径(d)和12个单宽流量(q)水平对坡面水流阻力的影响,以系统研究植被茎干直径和坡度对坡面径流的作用。结果表明,植被茎干直径和坡度对坡面径流具有显著的阻控作用。在相同坡度下,达西 - 魏斯巴赫阻力系数(f)随植被茎干直径的增大而增大。在试验条件下,通过线性回归分析f的变化率,当d增加1mm时,f平均增加49.9%。对于给定的植被茎干直径和植被分布模式,坡度越大,f值越小,当S增加1.0%时,f平均减小24.5%。这些结果对于优化农田防护中的坡面植被分布具有重要意义。