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首页> 外文期刊>Journal of Hydrology >Longitudinal spread of bicomponent contaminant in wetland flow dominated by bank-wall effect
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Longitudinal spread of bicomponent contaminant in wetland flow dominated by bank-wall effect

机译:双组分污染物在湿地流中的纵向扩散受岸壁效应支配

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Presented in this paper is a theoretical analysis for longitudinal spread of bicomponent contaminant in a fully developed steady wetland flow dominated by bank-wall effect. Based on the general form of concentration transport equations adopted for wetland flows, an ecological risk assessment model is given for the decay of concentration under the combined action of reversible and irreversible reactions, as well as hydraulic dispersion. Through a combination of the method for solving linear parabolic system and an asymptotic analysis for hydraulic dispersion in the wetland flow, an analytical solution for long time evolution of bicomponent contaminant concentration is rigorously derived and illustrated. The solution is shown to be an extension of known solutions for single component contaminant transport due to an irreversible reaction and hydraulic dispersion, as well as biocomponent contaminant transport due to reversible reactions and hydraulic dispersion. It is found that the concentration ratio of binary components can approach an equilibrium status, with necessary time to obtain the status dependent on transfer and degradation rates of each component. The length and duration of influenced region with concentration of contaminant cloud beyond given environmental standard level are presented for a uniform instantaneous emission into the wetland flow. The result shows that the length increases with time to reach maximum and then decreases to zero, and the duration is sensitive to the variation of a dimensionless parameter to reflect the relative importance of an irreversible action and lateral mass dispersion
机译:本文介绍的是在充分发展的稳定湿地流中,以堤壁效应为主导的双组分污染物在纵向扩散的理论分析。基于湿地水流的浓度输运方程式的一般形式,给出了可逆和不可逆反应以及水力分散作用下浓度衰减的生态风险评估模型。通过求解线性抛物线系统的方法和湿地水力水力扩散的渐近分析的组合,严格推导并说明了双组分污染物浓度长期演变的分析解决方案。由于不可逆的反应和水力分散,该解决方案是已知解决方案的扩展,用于单组分污染物的运输;由于可逆的反应和水力分散,解决方案是生物组分的污染物运输。发现二元组分的浓度比可以达到平衡状态,需要一定的时间来获得取决于每种组分的转移和降解速率的状态。给出了超过给定环境标准水平的污染物云浓度影响区域的长度和持续时间,以向湿地流中均匀地瞬时排放。结果表明,长度随着时间的增加而达到最大值,然后减小到零,并且持续时间对无量纲参数的变化敏感,以反映不可逆作用和横向质量分散的相对重要性

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