简化平衡温度法在水动力和水质模型- ce - quality - w2中的应用

Senlin Zhu, Xinzhong Du, Wenguang Luo
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引用次数: 7

摘要

水温是生物多样性和生态系统可持续性的重要指标。本研究将简化的平衡温度模型纳入ce - quality -W2 (W2)模型。该模型易于实现,需要较少的气象变量,无需参数标定。利用明尼苏达河下游四个站点的观测数据对模型的性能进行了评估。结果表明,简化平衡温度模型与原平衡温度模型和逐项过程模型的预测效果相当,决定系数(r2)、Nash-Sutcliffe效率(NSE)和百分比误差(PE)均在可接受范围内(r2 = 0.974, NSE = 0.972, PE = 1.377%)。研究了3种不同水温模型下水温对碳质生化需氧量(CBOD)浓度的影响,结果表明,简化平衡温度模型的月平均CBOD浓度与逐期方法的月平均CBOD浓度基本相同。在4个定标站中,简化平衡温度方法的溶解氧模拟效果优于其他两种模型(r2 = 0.791, NSE = 0.65, PE = 7.596%),表明简化平衡温度模型可作为水质模拟水温的潜在工具。
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Incorporation of the simplified equilibrium temperature approach in a hydrodynamic and water quality model – CE-QUAL-W2
Water temperature is an important indicator for biodiversity and ecosystem sustainability. In this study, a simplified equilibrium temperature model was incorporated into the CE-QUAL-W2 (W2) model. This model is easy to implement, needing fewer meteorological variables and no parameter calibration. The model performance was evaluated using observed data from four stations on the Lower Minnesota River. Results show that the simplified equilibrium temperature model performed as well as the original equilibrium temperature model and the term-by-term process model for water temperature predictions with the values of the coefficient of determination ( R 2 ), Nash–Sutcliffe Efficiency (NSE), and Percent Error (PE) in the accepted range ( R 2 = 0.974, NSE = 0.972, PE = 1.377%). The impact of the water temperature on Carbonaceous Biochemical Oxygen Demand (CBOD) concentrations under three different water temperature models was evaluated, and results show that the monthly averaged CBOD concentrations of the simplified equilibrium temperature model were almost the same as that of the term-by-term approach. For all the four calibration stations, the simplified equilibrium temperature approach performs better than the other two models for dissolved oxygen simulation ( R 2 = 0.791, NSE = 0.65, PE = 7.596%), which indicates that the simplified equilibrium temperature model can be a potential tool to simulate water temperature for water quality modelling.
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