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2D simulation of transport and degradation in the river Rhine

机译:莱茵河中运输和降解的二维模拟

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A simple 2D model has been developed for the simulation of mass transport and degradation of substances in the river Rhine. The model describes mass transport in the flow direction with a convective and a dispersive term. Transversal transport is described by segmenting the river and formulating a transversal exchange coefficient between the segments. Degradation can be formulated with any kinetics from first order to complex enzyme kinetics. The model was verified with monitoring data from the river Rhine. The hydrodynamic parameters such as dispersion coefficients and exchange coefficients were fitted to the conductivity, which was assumed to be non-degradable. The degradation term was fitted to ammonia values. The model was used to simulate measured concentrations of a readily (Aniline) and a poorly biodegradable substance (1,4-Dioxan) 10 m from the left river bank. It was the objective of this research program to develop a model which allows a realistic estimation of the locally and regionally predicted environmental concentration of chemical substances in the EU risk assessment scheme. [References: 6]
机译:已经开发了一个简单的二维模型,用于模拟莱茵河中物质的大量运输和降解。该模型使用对流和分散项描述了沿流动方向的质量传输。横向运输是通过对河流进行分段并在两段之间制定横向交换系数来描述的。降解可以用从一阶动力学到复杂酶动力学的任何动力学来配制。该模型已通过莱茵河的监测数据进行了验证。将诸如分散系数和交换系数之类的流体力学参数拟合到电导率上,假设该参数是不可降解的。降解项适合氨值。该模型用于模拟距左河岸10 m处的易(苯胺)和难降解物质(1,4-二恶烷)的测量浓度。该研究计划的目的是开发一种模型,该模型可以对欧盟风险评估计划中化学物质的本地和区域预测环境浓度进行实际估算。 [参考:6]

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