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Experimental studies on rain splash erosion of forest soils after clearing in Okinawa using an artificial rainfall apparatus

机译:冲绳人工降雨装置清除森林土壤雨滴侵蚀的试验研究

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The main island of Okinawa, in southwestern Japan, is characterized by a subtropical climate, coral reefs, and reddish soils, which contain Acrisols and Cambisols (FAO/UNESCO classifications). Recently, due to soil erosion on hilly lands, the coral reefs have been damaged by an inflow of reddish soil. Forest clearing is thought to one of the factors increasing rain splash erosion rates on hilly lands, because it is believed that clearing disturbs the forest floor and causes the supply of litter to stop. After clearing, A0, A and B horizons will be denuded, one after the other, by rain splash. In this study, we measured rain splash erosion rates of undisturbed samples of A0, A and B horizons using an artificial rainfall apparatus. The results of experiments on rain splash erosion clarified several aspects of the erosion process in a clearing site. First, it was found that the rain splash erosion rates were higher in fresh litter than in decomposed litter, in decomposed litter than in the A horizon, and in the A horizon than in the B horizon. Thus, the erosion rate increases with soil depth. Secondly, surface-gleyed red and yellow soils are mostly vulnerable to rain splash erosion. The erosion rates of these soils are two to three times higher than those of the red soil and the yellow soils. Thirdly, the erosion rates are affected mainly by bulk density and saturated hydraulic conductivity, not by clay ratio and dispersion ratio. Lastly, the difference between erosion rates of surface-gleyed red and yellow soils and other soils will be even greater if a soil crust has formed, because the formation of a soil crust increases the rain splash erosion rate.
机译:日本西南部的冲绳岛主岛以亚热带气候,珊瑚礁和带红色的土壤为特征,​​这些土壤含有尖锐的和浅蓝色的(FAO / UNESCO分类)。近来,由于丘陵土地上的土壤侵蚀,珊瑚礁已因微红的土壤流入而受到破坏。森林砍伐被认为是增加丘陵地区雨水飞溅侵蚀率的因素之一,因为人们认为砍伐森林会扰乱森林地面并导致枯枝落叶的供应停止。清除后,雨水飞溅会逐层剥落A0,A和B层。在这项研究中,我们使用人工降雨设备测量了A0,A和B层的不受干扰样品的雨水飞溅侵蚀率。雨水飞溅侵蚀的实验结果阐明了清理场地侵蚀过程的几个方面。首先,发现新鲜垫料中的雨水飞溅侵蚀率高于分解垫料,分解垫料中的雨水飞溅率高于A层,而A层的雨水侵蚀速率高于B层。因此,侵蚀速率随土壤深度而增加。其次,表面呈灰色的红色和黄色土壤最容易受到雨水喷溅的侵蚀。这些土壤的侵蚀速率比红色和黄色土壤的侵蚀速率高两到三倍。第三,侵蚀速率主要受堆积密度和饱和水力传导率的影响,而不受粘土比和分散比的影响。最后,如果形成了土壤结皮,则表面变灰的红色和黄色土壤与其他土壤的腐蚀速率之间的差异会更大,因为土壤结皮的形成会增加雨水飞溅的侵蚀速率。

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