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Application of agent model in the optimal design of AIG for SCR-DeNO_x system

机译:Agent模型在SCR-DeNO_x系统AIG优化设计中的应用

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Purpose Ammonia injection grid (AIG) is used as an input device for ammonia which reacts with NOx in the selective catalytic reduction (SCR) reactor. However, non-uniform concentration distribution of ammonia could produce partially poisoning or deposits of the catalyst. In this work, for making ammonia widely distributed throughout the flue gas and fully mixed, an optimization method of AIG is proposed.Design/methodology/approach Depending on the complexity of fluid flow, the relation between the concentration distributions of ammonia and the geometric parameters of AIG is nonlinear. Based on a certain amount of AIG samples, the computational fluid dynamics (CFD) simulations are applied to propose the agent model which describes the functional relation of the deviation of ammonia concentration and the geometric parameters of AIG. The optimization model of AIG based on the agent model is established. The optimized AIG based on the agent model can be used to produce uniform concentration distributions of ammonia, especially in the case that velocity distribution of flue gas is non-uniform.Findings For qualitatively confirming this optimization method, the three-dimensional CFD simulation of the optimized AIG is carried out. The results reveal that the diffusion process of ammonia gas is consistent with the development of the local vortices, which have a certain relation with the velocity distribution of the flue gas. The unequal ammonia injection designed by the optimization based on the agent model promotes a better mixing of ammonia and flue gas.Originality/value In this work, first, the method for optimizing AIG based on the agent model is proposed. Second, the three-dimensional CFD modeling and simulation of the optimized AIG is carried out, and the mixing effects of ammonia and flue gas are presented.
机译:用途氨注入格栅(AIG)用作氨的输入设备,氨在选择性催化还原(SCR)反应器中与NOx反应。但是,氨浓度分布不均匀可能会导致部分中毒或催化剂沉积。为了使氨在烟气中广泛分布并充分混合,提出了一种AIG的优化方法。设计/方法/方法根据流体的复杂程度,氨的浓度分布与几何参数之间的关系AIG是非线性的。基于一定数量的AIG样品,应用计算流体动力学(CFD)仿真,提出了代理模型,该模型描述了氨浓度偏差与AIG几何参数的函数关系。建立了基于Agent模型的AIG优化模型。基于Agent模型的优化AIG可用于产生均匀的氨浓度分布,特别是在烟气的速度分布不均匀的情况下。为定性确认此优化方法,对碳纳米管进行了三维CFD模拟进行了优化的AIG。结果表明,氨气的扩散过程与局部旋涡的发展是一致的,局部旋涡与烟气的速度分布有一定的关系。通过基于代理模型的优化设计而设计的不相等的氨注入促进了氨与烟气的更好混合。原始技术/价值在本工作中,首先,提出了基于代理模型的AIG优化方法。其次,对优化后的AIG进行三维CFD建模和仿真,并给出了氨与烟气的混合效果。

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