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A logistic regression model for estimating turbine mortality at hydroelectric generating stations

机译:用于估算水力发电站涡轮机死亡率的逻辑回归模型

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摘要

We present a method that allows separation of fish mortality caused by handling and capture techniques from that caused by passage through a turbine. Fish that are naturally entrained into the turbine tube are captured with nets deployed in the turbine tailrace for varying lengths of time. The live or dead status of captured fish is modeled as a binomial response that is a function of the duration of net deployment. Within this model, the intercept is an estimate of the mortality of fish that have spent zero time in the net. For species that do not suffer high mortality from other components of the capture process (such as removal from the net), this intercept may be interpreted as an estimate of turbine mortality. If mortality from other components is high, the intercept cannot be interpreted as turbine mortality without correction for mortality from the other sources. We suggest a modification to the model that allows estimation of mortality from these components. We demonstrate the method with data for 12 species of fish captured at the Annapolis Tidal Generating Station, Nova Scotia, Canada. Acute turbine mortality estimates ranged from 0.0% for sea lamprey Petromyzon marinus to 23.4% for American shad Alosa sapidissima.
机译:我们提出了一种方法,该方法可以将处理和捕获技术造成的鱼类死亡与涡轮机造成的死亡分开。自然地夹带到涡轮管中的鱼被部署在涡轮机尾种族中的网捕获了不同的时间长度。捕获鱼的生死状态被建模为二项式响应,它是净部署持续时间的函数。在此模型中,截距是对在网中度过零时间的鱼的死亡率的估计。对于没有因捕获过程的其他组成部分(例如从网中清除)而导致高死亡率的物种,这种截距可解释为涡轮机死亡率的估计值。如果来自其他组件的死亡率很高,则在不校正来自其他来源的死亡率的情况下,截距不能解释为涡轮机的死亡率。我们建议对模型进行修改,以便从这些组件估算死亡率。我们用在加拿大新斯科舍省安纳波利斯潮汐发电站捕获的12种鱼类的数据证明了该方法。急性涡轮机的死亡率估计值范围从海七rey鱼Petromyzon marin的0.0%到美国American鱼Alosa sapidissima的23.4%。

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