Numerical Modeling of Reaeration Coefficient for Lakes: A Case Study of Sawa Lake, Iraq

H. A. Al-Zubaidi, A. Naje, Z. Al-Ridah, Shreeshivadasan Chelliapan, K. Sopian
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Abstract

Accurate determination of reaeration coefficient in lakes is a key factor for accurate modeling of dissolved oxy - gen. This study developed a new numerical model to determine the lake reaeration coefficient of Sawa lake, Iraq based on solving the transform mechanisms of dissolved oxygen without the using the empirical and laboratory methods. The model solved the gas transport at the water-air surface numerically to predict the dissolved oxygen and the reaeration coefficient simultaneously. Results showed that the lake reaeration coefficient was 0.001 day -1 at 20 °C with low root mean squared errors (0.138, 0.137, and 0.168 mg/L for the three years of simulation 2007, 2012, and 2017, respectively) and absolute mean errors (0.121, 0.114, and 0.145 mg/L in 2007, 2012, and 2017, respectively). It was noticed that the lake habitat was impacted causing unhealthy conditions (low reaeration rate), and there was upward dissolved oxygen movement due to the presence of positive trend in the yearly cycle of temperature. In addition, including this numerical approach along with other water quality models can improve the predictions of other water quality parameters.
湖泊曝气系数的数值建模:伊拉克萨瓦湖案例研究
准确测定湖泊中的再曝气系数是准确建立溶解氧模型的关键因素。本研究在解决溶解氧转化机理的基础上,开发了一种新的数值模型来确定伊拉克萨瓦湖的湖泊再曝气系数,而不使用经验方法和实验室方法。该模型对水气表面的气体传输进行了数值求解,以同时预测溶解氧和再曝气系数。结果表明,在 20 °C 条件下,湖泊再曝气系数为 0.001 天-1,且均方根误差较小(2007、2012 和 2017 年三年模拟的均方根误差分别为 0.138、0.137 和 0.168 mg/L),绝对平均误差较小(2007、2012 和 2017 年分别为 0.121、0.114 和 0.145 mg/L)。结果表明,湖泊生境受到了影响,造成了不健康的状况(再通气率低),并且由于温度的年周期呈正趋势,溶解氧出现了上升。此外,将这一数值方法与其他水质模型结合起来,可以改进对其他水质参数的预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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