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Instream Flow Condition and Summer Water Temperature in the Central Platte River

机译:普拉特河中部的入流条件和夏季水温

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Analyses were conducted to isolate and quantify the effect of instream flow condition of summer river temperature in the Central Platte River downstream of the Kingsly Dam Project, Nebraska. Daily maximum and mean river temperatures and diurnal variation were studied. Relationships between water temperatures and river discharge or flow depth were developed using an analytical solution method and a reference parameter for weather. The theoretical relationships were validated against continuous 5-year field measurements at the river. Different temperature-discharge relationships were found to exist under different weather regimes. Statistical analysis was conducted to quantify the effect of river discharge on temperature exceedence of a water quality standard of 32 deg C and degree-days of exceedence. A threshold discharge dividing significant and insignificant flow effects on water temperature was etermined by a diminishing return approach. Minimum discharge requirements under given meteorological conditions to meet a river temperature standard were derived for the Central Platte River. The results provide information useful in proper planning and design of reservoir operations and streamflow management. The discharge-temperature relationships and the minimum discharge requirements can be incorporated into a habitat assessment model and a reservoir and hydropower plant management program.
机译:进行了分析,以隔离和量化内布拉斯加州金斯利大坝项目下游中央普拉特河夏季河水入流条件的影响。研究了每日最高和平均河流温度以及日变化。使用解析解方法和天气参考参数,开发了水温与河流流量或水深之间的关系。理论关系已针对连续5年的河流实地测量进行了验证。发现在不同的天气条件下存在不同的温度-放电关系。进行了统计分析,以量化河流排放对超过32摄氏度水质标准的温度超标和超标度数天的影响。通过递减的回流方法确定了划分流量对水温的显着影响和微不足道影响的阈值排放。得出了中央普拉特河在给定气象条件下满足河流温度标准的最低排放要求。结果提供了有用的信息,可用于正确规划和设计油藏运营和流量管理。排放温度关系和最小排放要求可以纳入栖息地评估模型以及水库和水力发电厂管理计划中。

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