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首页> 外文期刊>Universal Journal of Control and Automation >Model-based Analysis of Ammonia Generation in SCR-systems
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Model-based Analysis of Ammonia Generation in SCR-systems

机译:SCR系统中基于模型的氨生成分析

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The selective catalytic reduction (SCR) of nitrogenous oxides is the most promising technique to meet prospective emission regulations of cars. Due to its toxic potential the reducing agent ammonia cannot be stored in a car but it can be carried in the form of an urea-water-solution (UWS) which is injected into the hot exhaust gas and reacts to ammonia. This formation of ammonia upstream the catalytic converter is responsible for the efficiency of the complete SCR-process-chain. This paper deals with the numerical analysis and description of interactions between droplets of the urea-water-solution and the exhaust gas. For the description of the droplets' trajectories, a numeric model was developed, which considers, in contrast to previous surveys, the loss of the droplets' mass due to evaporation of water and thermal decomposition of urea. The model for the droplets' motion was extended by an evaporation model for binary fluids and additionally on a kinetic approach to describe the thermal decomposition. This model is able to determine the exact position of flying droplets, the droplets' velocity, the composition and its current temperature in a gas flow. These parameters are substantial for further considerations of the interactions between droplets and hot surfaces, e.g. wall wetting.
机译:氮氧化物的选择性催化还原(SCR)是满足汽车预期排放法规的最有前途的技术。由于其毒性潜力,还原剂氨无法存储在汽车中,但可以以尿素水溶液(UWS)的形式携带,该溶液被注入热废气中并与氨发生反应。催化转化器上游氨的这种形成负责整个SCR工艺链的效率。本文对尿素水溶液中的液滴与废气之间的相互作用进行了数值分析和描述。为了描述液滴的轨迹,建立了一个数值模型,与以前的调查相比,该模型考虑了由于水的蒸发和尿素的热分解而造成的液滴质量的损失。液滴运动的模型通过二元流体的蒸发模型进行了扩展,此外还采用动力学方法来描述热分解。该模型能够确定气流中飞沫的确切位置,飞沫的速度,成分及其当前温度。这些参数对于进一步考虑液滴与热表面之间的相互作用(例如,表面张力)非常重要。墙湿。

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