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首页> 外文期刊>Journal of Hydrology >Characterizing effects of hydropower plants on sub-daily flow regimes
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Characterizing effects of hydropower plants on sub-daily flow regimes

机译:水电站水电站对亚日流动制度的特征

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A characterization of short-term changes in river flow is essential for understanding the ecological effects of hydropower plants, which operate by turning the turbines on or off to generate electricity following variations in the market demand (i.e., hydropeaking). The goal of our study was to develop an approach for characterizing the effects of hydropower plant operations on within-day flow regimes across multiple dams and rivers. For this aim we first defined ecologically meaningful metrics that provide a full representation of the flow regime at short time scales from free-flowing rivers and rivers exposed to hydropeaking. We then defined metrics that enable quantification of the deviation of the altered short-term flow regime variables from those of the unaltered state. The approach was successfully tested in two rivers in northern Sweden, one free-flowing and another regulated by cascades of hydropower plants, which were additionally classified based on their impact on short-term flows in sites of similar management. The largest differences between study sites corresponded to metrics describing sub-daily flow magnitudes such as amplitude (i.e., difference between the highest and the lowest hourly flows) and rates (i.e., rise and fall rates of hourly flows). They were closely followed by frequency-related metrics accounting for the numbers of within-day hourly flow patterns (i.e., rises, falls and periods of stability of hourly flows). In comparison, between-site differences for the duration-related metrics were smallest. In general, hydropeaking resulted in higher within-day flow amplitudes and rates and more but shorter periods of a similar hourly flow patterns per day. The impacted flow feature and the characteristics of the impact (i.e., intensity and whether the impact increases or decreases whatever is being described by the metric) varied with season. Our approach is useful for catchment management planning, defining environmental flow targets, prioritizing river restoration or dam reoperation efforts and contributing information for relicensing hydropower dams. (C) 2017 Elsevier B.V. All rights reserved.
机译:短期改变河水流量的刻画是理解水电厂,其通过打开或关闭涡轮机产生的市场需求用电以下变化(即hydropeaking)运营的生态效应至关重要。我们研究的目标是开发跨多个水坝和河流日内流态表征水电厂操作的效果的方法。出于这个目的,我们首先定义了在很短的时间尺度提供的流动状态的完整表示从暴露于hydropeaking自由流动的河流和河流生态有意义的指标。然后,我们定义的指标,使改变短期流动状态变量的那些未改变状态的偏差的定量。该方法在两条河试验成功在瑞典北部,一个自由流动和水力发电厂,这基于他们对短期的影响被加分类类似的管理的网站流量的级联另一个调节。研究地点之间最大的差异相当于描述子每天的流量大小,如振幅(即最高和最低之间相差每小时流量)和价格指标(即,上升和下降的每小时流率)。他们紧随其后的是频率相关的指标占日内每小时流量模式的数字(即上升,下降,每小时流量的稳定期)。相比之下,持续时间相关的指标地点间的差异最小。在一般情况下,hydropeaking导致更高的日内流动的幅度和速率和每天类似的每小时流量模式的更多,但更短的周期。受影响的流动特征和影响(即,强度和是否任何正在由度量描述的冲击增加或减少)的随季节而变化的特性。我们的做法是对流域管理规划是有用的,确定环境流量目标,优先河流修复或再次手术坝努力和重新授权水电大坝提供信息。 (c)2017年Elsevier B.V.保留所有权利。

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