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Large eddy simulation of transient turbulent flow and mixing process in an SCR denitration system

机译:SCR脱硝系统瞬态湍流流动和混合过程的大涡流模拟

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Selective catalytic reduction (SCR) with ammonia is a key technology to reduce the NOx emissions from the coal-fired power stations. The denitration efficiency of SCR system depends on whether the flue gas and ammonia can get a good mixing in the reactor. Combined with the species transport model and porous medium model, the large eddy simulation (LES) is carried out to simulate the transient multi-species flow in an SCR system at a 310 MW coal-fired station. Predicted transient total pressure drop histories for various loads are compared against the measurements, and close agreements are achieved for the mean values. The instantaneous velocity field is composed of various small recirculation zones and multiple vortices, and their positions and intensity are ever-changing. For the SCR reactor without any gate leaves, a big secondary recirculation flow is found around the straightener, and several dead zones of ammonia mass fraction distributions are found at the corners of the catalyst layers. The mixing quality is improved significantly by incorporating a series of gate leaves. Predicted transient turbulence information by LES may be important for the optimization of the SCR reactor structure. (C) 2018 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:氨的选择性催化还原(SCR)是减少燃煤发电站的NOx排放的关键技术。 SCR系统的脱硝效率取决于烟道气和氨是否可以在反应器中得到良好的混合。结合物种传输模型和多孔介质模型,进行了大涡模拟(LES),以模拟310 MW燃煤站的SCR系统中的瞬态多物种流动。预测各种载荷的瞬态总压降历史与测量比较,并且为平均值实现了密切的协议。瞬时速度场由各种小再循环区域和多个涡流组成,它们的位置和强度是不断变化的。对于没有任何浇口叶的SCR反应器,围绕矫直器围绕着大的次要再循环流动,并且在催化剂层的拐角处发现了几个氨质量分数分布的死区。通过纳入一系列浇口叶子,混合质量得到了显着的提高。 LES的预测瞬态湍流信息对于优化SCR反应器结构可能是重要的。 (c)2018化学工程师机构。 elsevier b.v出版。保留所有权利。

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