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Evaluation of Gas Transport Properties on the Process of Urea Gas Decomposition in the Modeling of a Urea-SCR System

机译:尿素-CC系统建模尿素气体分解过程中的气体运输性能评价

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It is important to understand the influence of gas transport properties on the process of urea gas decomposition in the modeling of a urea-SCR system. The purpose of this study is to find the gas transport property that exerts the strongest influence on the process of urea gas decomposition in a urea-SCR system using a three-dimensional model with the laminar flow of incompressible viscous gas at a steady-state condition by the SIMPLE algorithm. It is found that the gas transport properties which have the strongest influence on the process of urea gas decomposition in a urea-SCR system are the density and molecular diffusivity. It is also found that the influence of density is stronger than the molecular diffusivity at low temperature ranges. In contrary, the molecular diffusivity has stronger influence at high temperature ranges comparing with the density. Consequently, the density and molecular diffusivity with temperature-dependent function should not be neglected in the urea gas decomposition modeling of a urea-SCR system.
机译:重要的是要了解气体运输性能对尿素-CC系统建模中的尿素气体分解过程的影响。本研究的目的是找到使用具有三维模型在稳态状态下使用三维模型对尿素-CC系统中尿素 - SCR系统中尿素气体分解过程产生最强的影响。通过简单的算法。发现对尿素系统中尿素气体分解过程具有最强影响的气体传输性质是密度和分子扩散性。还发现密度的影响比低温范围的分子扩散率强。相反,分子扩散性在与密度相比的高温范围内具有较强的影响。因此,在尿素-CC系统的尿素气体分解建模中不应忽略与温度依赖性功能的密度和分子扩散性。

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