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首页> 外文期刊>Theoretical and applied climatology >Influence of raindrop size on rainfall intensity, kinetic energy, and erosivity in a sub-humid tropical area: a case study in the northern highlands of Ethiopia
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Influence of raindrop size on rainfall intensity, kinetic energy, and erosivity in a sub-humid tropical area: a case study in the northern highlands of Ethiopia

机译:雨滴大小对亚湿热带地区降雨强度,动能和侵蚀力的影响:以埃塞俄比亚北部高地为例

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摘要

Rainfall kinetic energy (KE) is an important factor in soil erosion models. Particle detachment from the soil surface depends on raindrop KE. Therefore, it is essential to evaluate the drop-size distribution (DSD) and KE of rainfall to understand soil erosion and runoff generation. In this study, we used an optical disdrometer to investigate the influence of DSD on the intensity (I), KE, and erosivity of rainfall at Bahir Dar, in northwestern Ethiopia. We recorded 1-min rainfall observations during 42 events, with I ranging from 0.82 to 46.27mmh(-1). The median raindrop diameter (D-50), which ranged between 1.14 and 4.33mm, was significantly correlated with I (R-2=0.96; P0.001). We developed indices of rainfall KE as a function of time (KEtime) and of the KE content (KEcon). The best-fit relationships between KEtime and I were equally strong: R-2=0.96 (P0.001) for both a linear function and a polynomial function. KEcon and I were most strongly related for a logarithmic function (R-2=0.98; P0.001), followed by power (R-2=0.95; P0.001) and polynomial (R-2=0.93; P0.001) functions. The KEcon measured at Bahir Dar ranged from 7.4 to 32.43Jm (-2)mm(-1), whereas KEtime ranged from 38.34 to 1992.64Jm(-2)h(-1) for the observed range of I. The potential erosivity of rainfall events was found to be well correlated to smaller rainfalls depths (R-2=0.60, P0.05). Our results suggest that, though empirical models are easy to use since they require readily available rainfall data, KE rather than rainfall depth should be used to estimate erosivity in the study area and regions of northwestern Ethiopia with similar characteristics. Moreover, the reasons why different measuring methods in the same area and similar methods in different areas provide different kinetic energy results are analyzed and discussed.
机译:降雨动能是土壤侵蚀模型的重要因素。土壤表面的颗粒脱落取决于雨滴KE。因此,有必要评估雨滴的大小分布(DSD)和降雨的KE,以了解土壤侵蚀和径流的产生。在这项研究中,我们使用光学测速仪研究了DSD对埃塞俄比亚西北部Bahir Dar的强度(I),KE和降雨侵蚀力的影响。我们记录了42次事件中1分钟的降雨量观测值,I的范围为0.82至46.27mmh(-1)。中值雨滴直径(D-50)在1.14和4.33mm之间,与I显着相关(R-2 = 0.96; P <0.001)。我们开发了降雨KE随时间(KEtime)和KE含量(KEcon)的函数。 KEtime和I之间的最佳拟合关系同样强:对于线性函数和多项式函数,R-2 = 0.96(P <0.001)。 KEcon和I与对数函数(R-2 = 0.98; P <0.001)的相关性最强,其次是幂(R-2 = 0.95; P <0.001)和多项式(R-2 = 0.93; P <0.001)功能。在观察到的I范围内,在Bahir Dar测得的KEcon范围为7.4至32.43Jm(-2)mm(-1),而KEtime的范围为38.34至1992.64Jm(-2)h(-1)。发现降雨事件与较小的降雨深度高度相关(R-2 = 0.60,P <0.05)。我们的结果表明,尽管经验模型易于使用,因为它们需要随时可用的降雨数据,但应使用KE而不是降雨深度来估算研究区域和埃塞俄比亚西北部具有相似特征的侵蚀力。此外,分析并讨论了相同区域的不同测量方法和不同区域的相似方法提供不同动能结果的原因。

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  • 来源
    《Theoretical and applied climatology》 |2019年第4期|1221-1231|共11页
  • 作者单位

    Tottori Univ, Arid Land Res Ctr, 1390 Hamasaka, Tottori 6800001, Japan|Bahir Dar Univ, Coll Agr & Environm Sci, Geospatial Data & Technol Ctr, POB 79, Bahir Dar, Ethiopia;

    Tottori Univ, Arid Land Res Ctr, 1390 Hamasaka, Tottori 6800001, Japan;

    Tottori Univ, Arid Land Res Ctr, 1390 Hamasaka, Tottori 6800001, Japan|Tottori Univ, Int Platform Dryland Res & Educ, 1390 Hamasaka, Tottori 6800001, Japan;

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