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首页> 外文期刊>Hydrology and Earth System Sciences >The blue water footprint of electricity from hydropower
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The blue water footprint of electricity from hydropower

机译:水力发电的蓝色足迹

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Hydropower accounts for about 16% of the world's electricity supply. It has been debated whether hydroelectric generation is merely an in-stream water user or whether it also consumes water. In this paper we provide scientific support for the argument that hydroelectric generation is in most cases a significant water consumer. The study assesses the blue water footprint of hydroelectricity – the water evaporated from manmade reservoirs to produce electric energy – for 35 selected sites. The aggregated blue water footprint of the selected hydropower plants is 90 Gmsup3/sup yrsup?1/sup, which is equivalent to 10% of the blue water footprint of global crop production in the year 2000. The total blue water footprint of hydroelectric generation in the world must be considerably larger if one considers the fact that this study covers only 8% of the global installed hydroelectric capacity. Hydroelectric generation is thus a significant water consumer. The average water footprint of the selected hydropower plants is 68 msup3/sup GJsup?1/sup. Great differences in water footprint among hydropower plants exist, due to differences in climate in the places where the plants are situated, but more importantly as a result of large differences in the area flooded per unit of installed hydroelectric capacity. We recommend that water footprint assessment is added as a component in evaluations of newly proposed hydropower plants as well as in the evaluation of existing hydroelectric dams, so that the consequences of the water footprint of hydroelectric generation on downstream environmental flows and other water users can be evaluated.
机译:水电约占世界电力供应的16%。人们一直在争论水力发电是否仅仅是溪流中的用水户,还是它也消耗水。在本文中,我们为水力发电在大多数情况下是重要的用水户这一论点提供了科学依据。这项研究评估了35个选定地点的水力发电的蓝色足迹-从人造水库蒸发产生的水以产生电能。所选水电站的蓝色水足迹总计为90 Gm 3 yr ?1 ,相当于当年全球农作物产量的10% 2000年。如果人们认为这项研究仅涵盖了全球已安装水电装机容量的8%,那么世界上水力发电的总蓝水足迹必须更大。因此,水力发电是大量的水消耗者。所选水电站的平均水足迹为68 m 3 GJ ?1 。由于电厂所在地的气候差异,水力发电厂之间的水足迹存在很大差异,但更重要的是,由于每单位已安装水电容量的淹没面积差异很大。我们建议在新提议的水力发电站评估和现有水电大坝评估中添加水足迹评估作为组成部分,以便可以将水力发电的水足迹对下游环境流量和其他用水户的影响评估。

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