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Mass balance analysis and calculation of wind effects on heat fluxes and water temperature in a large lake

机译:大湖中风对热通量和水温的质量平衡分析和计算

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Modeling applications often ignore the water mass balance for hydrodynamic simulations in large lakes such as the Great Lakes. However, evaluation of the water budget can be of interest, especially when water surface calculations are important, and also as it relates to the heat budget. In this study Lake Ontario is modeled using the Environmental Fluid Dynamics Code for the heating seasons in 2008–2013, with calibration focused on 2008, for which more data are available. The model is used to test both water mass and heat budgets, and various interpolation schemes for meteorological data are tested to determine the degree of sensitivity of results to the interpolation method used. The water budget incorporates flow from major tributaries and precipitation/evaporation, and it is shown that these processes alone cannot provide a balance. Missing water quantities include direct runoff and flows from smaller, probably ungauged tributaries. In 2008 the calculated quantity is 1.61 × 1010 m3during April to September, which is equivalent to a change in water surface level of 0.7 m and represents an average flow rate of 1018 m3/s, which is larger than the inflow of any tributary to the lake except the Niagara River. Latent and sensible heat flux calculations are highly affected by wind, and interpolation of wind data is found to impact model calculations of those quantities, though different interpolation schemes do not have a strong effect on surface water temperatures. In general, the natural neighbor interpolation method is preferred over inverse distance methods.
机译:建模应用程序通常在大湖(例如大湖)的水动力模拟中忽略水质平衡。但是,对水预算的评估可能会引起关注,尤其是在水面计算很重要的情况下,并且还与热量预算有关。在本研究中,使用环境流体动力学代码对2008-2013年供暖季节进行建模,以2008年为校准重点,可获得更多数据。该模型用于测试水量和热量预算,并测试了各种气象数据插值方案,以确定结果对所用插值方法的敏感程度。水的预算包括了主要支流的流量和降水/蒸发,这表明仅这些过程并不能提供平衡。缺少的水量包括直接径流和较小的,可能是未开放的支流的流量。在2008年,4月至9月的计算量为1.61××1010μm3,相当于水面水位变化0.7μm,代表的平均流量为1018μm3/ s,大于任何支流的流入量。除尼亚加拉河外的湖泊。潜热和显热通量计算受风影响很大,尽管不同的插值方案对地表水温没有很大影响,但风数据的插值会影响这些量的模型计算。通常,自然邻点内插法优于逆距离法。

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