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首页> 外文期刊>Geomorphology >Seasonal changes in the hydrological and erosional response of a hillslope under dry-Mediterranean climatic conditions (Montes de Malaga, South of Spain)
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Seasonal changes in the hydrological and erosional response of a hillslope under dry-Mediterranean climatic conditions (Montes de Malaga, South of Spain)

机译:地中海干旱气候条件下山坡的水文和侵蚀响应的季节性变化(西班牙南部的马拉加山)

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摘要

The Mediterranean eco-geomorphological system was analysed at one representative hillslope of the geological unit of Montes de Malaga (Province of Malaga, Spain) under dry-Mediterranean climatic conditions. The research was divided into two stages. First, the eco-geomorphological pattern of the slope and some physical properties of the soil were analysed. Second, the hydrological and erosional response of the eco-geomorphological system was analysed by applying simulated rainfall to the main elements of the system and using closed plots with different lengths. This hydrodynamic analysis was carried out during two periods crucial for the Mediterranean environment in hydrological terms: the end of the dry season (or the beginning of the active hydrodynamic season) and the middle of the wet season. The results show that ⅰ) the hydrophobic behaviour of soil is the predominant runoff generation mechanism that accounts for sediment movement, ⅱ) once soil was moistened in the wet season, it lost its hydrophobicity and the saturation of soil became a predominant runoff generation mechanism, and ⅲ) there was high variability in hillslope runoff with evident hydrological disconnections, which made the hydrodynamic response of the eco-geomorphological system complex due to the absence of a clear predominance of abiotic or biotic factors.
机译:在干燥地中海气候条件下,在Montes de Malaga(西班牙马拉加省)的地质单位的一个代表性山坡上分析了地中海生态地貌系统。研究分为两个阶段。首先,分析了边坡的生态地貌模式和土壤的一些物理性质。其次,通过将模拟降雨应用于该系统的主要要素并使用不同长度的封闭图,分析了生态地貌系统的水文和侵蚀响应。在水文方面,在对地中海环境至关重要的两个时期内进行了这一水动力分析:旱季结束(或活跃水动力季节开始)和雨季中期。结果表明:ⅰ)土壤的疏水性是造成泥沙运动的主要径流产生机制;ⅱ)一旦土壤在潮湿季节被润湿,其疏水性就会丧失,土壤的饱和度成为径流的主要产生机制; ⅲ)山坡径流变化较大,明显的水文脱节,由于缺乏明显的非生物或生物因素,使得生态-地貌系统的水动力响应变得复杂。

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