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Hydrodynamic modeling of Edmonton storm-water ponds

机译:Edmonton Storm-Water Ponds的流体动力学建模

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摘要

Computational models often are applied to simulate water quality for management of natural and constructed aquatic systems. As part of a larger study, a three-dimensional hydrodynamic and biogeochemical model was applied to three storm-water ponds in the City of Edmonton to examine relations between nutrients and eutrophication. This paper reports on the calibration and validation procedure of the hydrodynamic component of the model suite. It was found that correcting surface heat fluxes for atmospheric instability (defined as the difference between air and water temperature) led to greater latent and sensible heat loss (up to similar to 32% and similar to 34%, respectively) and resulted in the most accurate simulation of observed temperature time series (root-mean-square error, RMSE<3.03 degrees C). The calibration also involved tuning of albedo and light attenuation coefficients, which were optimized by applying a global sensitivity analysis tool that showed the model was more sensitive to albedo. Global sensitivity analysis, can be applied to develop a resulting limited area, which is shown to be a valuable tool to optimize the calibration process.
机译:计算模型通常用于模拟自然和建造水生系统的水质。作为较大研究的一部分,将三维流体动力学和生物地球化学模型应用于埃德蒙顿市的三个雨水池塘,以研究营养素与富营养化之间的关系。本文报告了模型套件的流体动力组分的校准和验证程序。发现校正大气不稳定性的表面热通量(定义为空气和水温之间的差异)导致更大的潜伏和明智的热量损失(最高可达32%,并且分别类似于34%)并导致最多准确仿真观察温度时间序列(根均方误差,RMSE <3.03摄氏)。校准还涉及通过应用显示该模型对Albedo更敏感的全局敏感性分析工具进行了优化的反应和光衰减系数。全局敏感性分析,可以应用于开发产生的有限区域,这被示出为优化校准过程的有价值的工具。

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