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A one-dimensional model for water quality simulation in medium- and small-sized rivers

机译:中小型河流水质模拟的一维模型

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While studying water quality in the Tatara river, we realized that the river has various hydraulic and topographic characteristics when flowing through different regions. Because of these specific characteristics, the application of the existing models for simulation of its water quality may not be appropriate due to limitations in the models themselves. Therefore, we developed a mathematical model that is suitable for short-term simulations of water quality in rivers with characteristics similar to the Tatara river. The main foundation of the model is the one-dimensional transport equation established on the basis of the mass conservation law. To solve this equation numerically, it was discretized by the method of finite-difference approximations, and an algorithm has been programmed in Fortran 90. To verify the model, the Tatara river was chosen as a case study. Water temperature, dissolved oxygen, hydraulic parameters in four typical blocks of the river, and meteorological data of the study area, have been observed and used to test the model. By calibrating the model with different series of data collected from the designated blocks, all results have shown a good fit between simulated data and the observed one. Therefore, the model could be a reliable tool for simulating water quality in medium- and small-sized rivers over a short-term period. This research has also indicated the changing tendencies of water temperature and dissolved oxygen in Tatara river in response to different meteorological patterns over a daily 24-h period. Besides, the model could be improved to simulate other water quality variables, which would be studied further.
机译:在研究塔塔拉河的水质时,我们意识到该河在流经不同地区时具有各种水力和地形特征。由于这些特定的特征,由于模型本身的限制,可能不适合将现有模型应用于其水质模拟。因此,我们开发了一种数学模型,适用于特征与塔塔拉河相似的河流的水质短期模拟。该模型的主要基础是根据质量守恒定律建立的一维输运方程。为了用数学方法求解该方程,通过有限差分近似法将其离散化,并在Fortran 90中编程了一种算法。为验证模型,选择了塔塔拉河作为案例研究。已观察到水温,溶解氧,河流四个典型区块的水力参数以及研究区域的气象数据,并将其用于测试模型。通过使用从指定块中收集的不同系列数据对模型进行校准,所有结果都显示出模拟数据与观察到的数据之间的良好拟合。因此,该模型可能是短期内模拟中小型河流水质的可靠工具。这项研究还表明,塔塔拉河中水温和溶解氧的变化趋势在每天24小时内响应不同的气象模式。此外,可以对该模型进行改进以模拟其他水质变量,并将对此进行进一步研究。

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