河流中污染物扩散的数学模拟:秘鲁阿雷基帕辣椒河粪便大肠菌群的案例研究

A. Perez, Ana Pérez Manrique, Nataly Perez Manrique
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引用次数: 1

摘要

当许多城市允许未经处理的废水直接流入河流和其他水体时,河流污染的过程就出现了。这一过程产生了大量的污染,特别是粪便大肠菌群的污染,损害了依赖河流的人们的健康,也损害了河流生态系统本身。本研究设计调查了秘鲁阿雷基帕的Chili河的具体案例。污染物的浓度,特别是水流中的粪便大肠菌群,用微分方程表示的数学模型表示,微分方程包含扩散、对流、反应或衰变和源的成分。这些方程不能解析求解,因此,由于对流是主要成分,所以使用了有限元和Petrov-Galerkin方法。智利河流经阿雷基帕市,该市人口约100万。城市污水不经处理直接排入这条河,流量约为1.2立方米/秒。模拟是利用30公里长的河段进行的。为了满足边界条件和模拟校准,我们从河流的不同地点采集水样,并在实验室进行分析,以确定粪便大肠菌群的浓度值。为了模拟粪便大肠菌群的浓度,这条河被分成了几段。校正后的结果非常令人担忧,部分切片的粪便大肠菌群浓度高达200005397.68 PMN/100 ml (PMN =可能最大值)。这些值“远高于”最大允许限值(MPL = 10,000 PMN/100 ml)和标准环境质量(SEQ = 1,000 PMN/100 ml)。只有在城市上游的赤利河部分水质可以接受。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MATHEMATICAL SIMULATION OF POLLUTANT SPREAD IN RIVERS: A CASE STUDY OF FECAL COLIFORMS IN THE CHILI RIVER OF AREQUIPA, PERU
The process of river pollution arises when many cities allow untreated wastewater to flow directly into rivers and other bodies of water. This process generates a lot of pollution, especially in the form of fecal coliforms, which damage the health of the people who depend on the river, as well as the river ecosystem itself. This research design investigates the specific case of the Chili River in Arequipa, Peru. The concentration of pollutants, fecal coliforms in water flow in particular, is represented with a mathematical model expressed with differential equations which contain the components of diffusion, convection, reaction or decay, and source. These equations cannot be solved analytically, so, for this reason, the finite element and Petrov–Galerkin methods have been used due to the predominant component being convection. The Chili River passes through the city of Arequipa, which has a population of about one million people. The city’s wastewater is dumped directly into this river without first being treated, with an approximate flow of 1.2 m3/s. The simulation was conducted utilizing a 30 kilometer stretch of the river. For boundary conditions and simulation calibration, water samples were taken from the river at different points and analyzed in the laboratory in order to determine the concentration values of fecal coliforms. The river was divided into several sections to simulate the concentration of fecal coliforms. The results obtained after the calibration were very alarming, since the concentration of fecal coliforms in some sections reached values of up to 20,005,397.68 PMN/100 ml (PMN = probable maximum number). These values are “well above” the maximum permissible limit (MPL = 10,000 PMN/100 ml) and standard environmental quality (SEQ = 1,000 PMN/100 ml). Only in the sections of the Chili River upstream of the city was the water quality acceptable.
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