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Application of Element-Free Method to water quality analysis of Miyun reservoir

机译:无元素法在密云水库水质分析中的应用

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This paper presents a 3D mathematical model for transfer and transform of water contaminants in reservoir, describes the discrete methods and the compute process of using an element-free collocation method. By these models and methods, the water quality conditions of Miyun reservoir area, the quantified description of three dimensions concerning the distribution and change of diversified contaminants are obtained within the assigned time. The distributions of total nitrogen and total phosphorus of the reservoir area in 2003, 2004 and 2005 are simulated and forecasted by the boundary conditions in 2003, so the main development trend is shown. It is found through calculation that: The contribution of the bed mud with regard to total phosphorus is comparatively marked. On the whole, the influence factor of the bed mud in the reservoir area and other comprehensive factors to total phosphorus are quite great. The influence of the living things or other function in the surface water of the Chaohe River valley in the east of the reservoir on the total phosphorus is comparatively conspicuous. Within the reservoir area in spring, summer and autumn, the concentration distribution of total nitrogen is basically in the trend of a slow progressive decrease, but the concentration of total phosphorus increases progressively. It is just contrary in autumn, winter and spring, the concentration of total nitrogen increases and the concentration of total phosphorus decreases. On the whole of the year's development, the total nitrogen is basically in a steady state, and the total phosphorus is in the increasing trend with years, but the kind of the trend is not conspicuous.
机译:本文提出了一种用于水库中水污染物转移和转化的3D数学模型,描述了使用无元素配置方法的离散方法和计算过程。通过这些模型和方法,在指定时间内获得了密云水库库区水质状况,有关多种污染物分布和变化的三个维度的定量描述。利用2003年的边界条件对2003、2004和2005年库区总氮,总磷的分布进行了模拟和预测,显示了主要的发展趋势。通过计算发现:床泥对总磷的贡献比较明显。总体上看,库区床泥对总磷的影响因素较大。在水库以东的潮河流域地表水中,生物或其他功能对总磷的影响比较明显。在春季,夏季和秋季的库区中,总氮的浓度分布基本上呈缓慢递减的趋势,而总磷的浓度则逐渐增加。恰恰相反,在秋季,冬季和春季,总氮的浓度增加而总磷的浓度减少。在全年的发展中,总氮基本处于稳定状态,总磷随年呈增加趋势,但这种趋势并不明显。

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