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首页> 外文期刊>Journal of Hydrology >Global sensitivity analysis of water age and temperature for informing salmonid disease management
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Global sensitivity analysis of water age and temperature for informing salmonid disease management

机译:旱营疾病管理的全球敏感性分析和温度

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摘要

Many rivers in the Pacific Northwest region of North America are anthropogenically manipulated via dam operations, leading to system-wide impacts on hydrodynamic conditions and aquatic communities. Understanding how darn operations alter abiotic and biotic variables is important for designing management actions. For example, in the Klamath River, dam outflows could be manipulated to alter water age and temperature to reduce risk of parasite infections in salmon by diluting or altering viability of parasite spores. However, sensitivity of water age and temperature to the riverine conditions such as bathymetry can affect outcomes from dam operations. To examine this issue in detail, we conducted a global sensitivity analysis of water age and temperature to a comprehensive set of hydraulics and meteorological parameters in the Klamath River, California, where management of salmonid disease is a high priority. We applied an analysis technique, which combined Latin-hypercube and one-at-a-time sampling methods, and included simulation runs with the hydrodynamic numerical model of the Lower Klamath. We found that flow rate and bottom roughness were the two most important parameters that influence water age. Water temperature was more sensitive to inflow temperature, air temperature, solar radiation, wind speed, flow rate, and wet bulb temperature respectively. Our results are relevant for managers because they provide a framework for predicting how water within 'high infection risk' sections of the river will respond to dam water (low infection risk) input. Moreover, these data will be useful for prioritizing the use of water age (dilution) versus temperature (spore viability) under certain contexts when considering flow manipulation as a method to reduce risk of infection and disease in Klamath River salmon. (C) 2018 Elsevier B.V. All rights reserved.
机译:北美太平洋西北部地区的许多河流通过大坝运营进行人为操纵,导致系统范围内对流体动力学条件和水生社区的影响。了解DARN操作如何改变非生物和生物变量对于设计管理行为很重要。例如,在克拉马河河中,可以操纵大坝流出以改变水时期和温度,以降低鲑鱼中寄生虫感染的风险,通过稀释或改变寄生虫孢子的存活率。然而,水时代和温度与河流条件(例如浴)的敏感性可能会影响来自坝操作的结果。为了详细研究这个问题,我们对加利福尼亚州Klamath河河流河流综合液压和气象参数进行了全球敏感性分析,在盐水疾病疾病中的管理是高优先级的。我们应用了一种分析技术,该技术组合了拉丁 - 超立方体和一次性采样方法,包括仿真与下klamath的流体动力数数字运行。我们发现流速和底部粗糙度是影响水时代的两个最重要的参数。水温分别对流入温度,空气温度,太阳辐射,风速,流速和湿灯泡温度更敏感。我们的结果与管理人员有关,因为它们提供了预测“​​高感染风险”部分的水域在河流中的框架将如何应对水坝水(低感染风险)投入。此外,在考虑流量操纵作为降低喀拉莫河鲑鱼鲑鱼中的感染和疾病风险的方法时,这些数据将在某些情况下优先考虑水时龄(稀释)与温度(孢子生存力)的使用。 (c)2018年elestvier b.v.保留所有权利。

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