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Forests and water: silviculture, afforestation and the control of forest water use

机译:森林与水:造林,造林和控制森林用水

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Forests cover over one third of Italy; forest evapo-transpiration has therefore a primary role in the water cycle and in determining the availability of water for alternative uses. The possibility of modulating carefully the water balance of forest ecosystem would pave the way for the management of water resources at the local and landscape level. In the present work, we review available evidence on the effects on the water cycle of both afforestation and the silvicultural management of existing forests. Afforestation is known to have a dramatic effect on site evapotranspiration and runoff, but the magnitude of the effect largely depends on local environmental conditions. The management of existing forests has more modest local effects, but their extent suggests a greater role in the regulation of the water cycle. Forest thinnings result in an increase in runoff, albeit of short duration. Ecosystem evapo- transpiration is more strongly reduced by forest utilisation, to an extent which varies with management type. An increase in rotation length could result the most effective and long-lasting measure for the sustainable increase in water availability for alternative uses; contrasting evidence is provided in the literature, however, as the age-related decline in tree transpiration could be counter-balanced by negative feed-backs at the ecosystem level. New studies are required for the assessment of the effects of age on ecosystem water yield.
机译:森林覆盖了意大利的三分之一以上;因此,森林蒸发蒸腾在水循环以及确定替代用途的水供应方面具有主要作用。仔细调节森林生态系统水平衡的可能性将为地方和景观一级的水资源管理铺平道路。在目前的工作中,我们回顾了有关造林和现有森林的造林管理对水循环的影响的现有证据。众所周知,绿化对场地的蒸散和径流有很大的影响,但是影响的程度在很大程度上取决于当地的环境条件。现有森林的管理对当地的影响较小,但其范围表明在调节水循环方面发挥了更大的作用。尽管持续时间短,森林间伐导致径流增加。通过森林利用,生态蒸发蒸腾量会大大降低,其程度随经营方式的不同而不同。旋转长度的增加可能导致最有效和持久的措施,以可持续增加替代用途的水供应;文献中提供了相反的证据,但是与树木相关的蒸腾作用与年龄相关的下降可能会被生态系统水平的负面反馈所抵消。需要新的研究来评估年龄对生态系统水产量的影响。

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