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Enhancement of surface-atmosphere fluxes by desert-fringe vegetation through reduction of surface albedo and of soil heat flux

机译:通过减少地表反照率和土壤热通量来增加沙漠边缘植被的表面大气通量

摘要

Under the arid conditions prevailing at the end of the dry season in the western Negev/northern Sinai region, vegetation causes a sharp increase relative to bare soil in the daytime sensible heat flux from the surface to the atmosphere. Two mechanisms are involved: the increase in the surface absorptivity and a decrease in the surface heat flux. By increasing the sensible heat flux to the atmosphere through the albedo and the soil heat flux reductions, the desert-fringe vegetation increases the daytime convection and the growth of the planetary boundary layer. Removal of vegetation by overgrazing, by reducing the sensible heat flux, tends to reduce daytime convective precipitation, producing higher probabilities of drought conditions. This assessment of overgrazing is based on observations in the Sinai/Negev, where the soil albedo is high and where overgrazing produces an essential bare soil. Even if the assessment for the Sinai/Negev does not quantitatively apply throughout Africa, the current practice in many African countries of maintaining a large population of grazing animals, can contribute through the mesoscale mechanisms described to reduce daytime convective precipitation, perpetuating higher probabilities of drought. Time-of-day analysis of precipitation in Africa appears worthwhile, to better assess the role of the surface conditions in contributing to drought.
机译:在内盖夫/西奈北部干旱季节末期的干旱条件下,相对于裸露的土壤,白天从地面到大气的显热通量,植被引起急剧增加。涉及两个机制:表面吸收率的增加和表面热通量的减少。通过增加通过反照率传给大气的显热通量和土壤热通量的减少,沙漠边缘的植被增加了白天的对流和行星边界层的生长。通过减少放牧,减少显热通量来去除植被,往往会减少白天的对流降水,从而产生更高的干旱条件。对过度放牧的评估基于西奈/内盖夫的观测,那里的土壤反照率很高,而过度放牧会产生基本的裸露土壤。即使对西奈/内盖夫的评估并未在整个非洲定量应用,许多非洲国家目前维持大量放牧动物的做法仍可通过所述的中尺度机制做出贡献,以减少白天的对流降水,从而使干旱的可能性更高。对非洲降水进行每日时间分析似乎是值得的,以便更好地评估地表条件在促进干旱中的作用。

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    Otterman J.;

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  • 年度 1987
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