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首页> 外文期刊>Journal of the American Water Resources Association >STREAM TEMPERATURE ESTIMATION FROM AIR TEMPERATURE1
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STREAM TEMPERATURE ESTIMATION FROM AIR TEMPERATURE1

机译:从空气TEMPERATURE1估算流温度

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ABSTRACT:Air temperatures are sometimes used as substitutes for stream temperatures. To examine the errors associated with this procedure, linear relationships between stream temperatures, T, and air temperatures, Ta, recorded for 11 streams in the central U.S. (Mississippi River basin) were analyzed. Weather stations were an average 42 miles (range 0 to 144 miles) from the rivers. The general equations, Tw= 5.0 + 0.75 Taand Tw= 2.9 + 0.86 Tawith temperatures in °C, were derived for daily and weekly water temperatures, respectively, for the 11 streams studied. The simulations had a standard deviation between measurements and predictions of 2.7°C (daily) and 2.1°C (weekly). Equations derived for each specific stream individually gave lower standard deviations, i.e., 2.1°C and 1.4°C, respectively. Small, shallow streams had smaller deviations than large, deep rivers. The measured water temperatures follow the air temperatures closely with some time lag. time lags ranged from hours to days, increasing with stream depth. Taking into account these time lags improved the daily temperature predictions slightly. Periods of ice cover were excluded from the anal
机译:摘要:空气温度有时被用作溪流温度的替代品。为了检查与此过程相关的误差,分析了美国中部(密西西比河流域)11条溪流记录的溪流温度T和气温Ta之间的线性关系。气象站距离河流平均 42 英里(范围 0 到 144 英里)。分别推导了所研究的 11 条溪流的每日和每周水温的一般方程 Tw= 5.0 + 0.75 Taand Tw= 2.9 + 0.86 Tawith 温度(以°C为单位)。模拟测量和预测之间的标准差为 2.7°C(每天)和 2.1°C(每周)。为每个特定流分别推导的方程给出了较低的标准偏差,即分别为 2.1°C 和 1.4°C。小而浅的溪流比大而深的河流具有较小的偏差。测得的水温与气温密切相关,但有一定的时间滞后。时间滞后从几小时到几天不等,随着溪流深度的增加而增加。考虑到这些时间滞后,每日温度预测略有改善。肛门排除了冰盖的时期

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