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Numerical study of SNCR application to a full-scale stoker incinerator at Daejon 4th industrial complex

机译:SNCR在大田第四工业园区大型炉式焚烧炉中应用的数值研究

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Considering the rapid variation of waste composition and the more severe regulation trend of pollutant emission in this country, the importance of the development of a reliable computer program for a full-scale, stoker-type incinerator cannot be emphasized too much especially in the view of proper design and optimal determination of operating condition of existing and future constructed facility. To this end, a comprehensive, numerical model related with the process of the waste-off gaseous combustion with the capacity of 200 tons/day is successfully made. This includes development of several phenomenological models such as municipal waste-off gaseous reaction, NO pollutant generation and destruction in turbulence-related environment. Especially, in this study a number of sound assumptions have been made for the NO reaction model, 3-D geometry of incinerator and waste-bed model to achieve the efficient incorporation of the empirical models and enhancement of the stability of calculation process. First of all, the turbulence-related, complex combustion chemistry involved with NO reaction is modeled by the harmonic mean method, which is given by the relative strength of the rates of chemistry and turbulent mixing. Further, the 3-D rectangular shape of the incinerator is simply approximated by a 3-D axi-symmetric geometry with equivalent area. And the modeling of complex waste-burning process on moving grate is described by a pure gaseous combustion process of waste off-gas. The program developed in this study is successfully validated by comparing with the experimental data such as temperature and NO concentration profiles in the incinerator located at 4th industrial complex of Daejon, S. Korea. Using the program developed, a series of parametric investigations have been made for the evaluation of SNCR process and thereby evaluate various important design and the operating variables. The major parameters considered in this parametric study are heating value of municipal waste, the injection location and amount of reduction material, and the proper length of insulating castable. In general, the calculated results are physically acceptable and fairly consistent.
机译:考虑到该国废物组成的迅速变化和污染物排放的管制趋势更加严峻,特别是从以下方面来看,不能过分强调开发可靠的计算机程序以用于大型,烟囱式焚化炉的重要性。适当设计和确定现有和未来建造设施的运行状况。为此,成功地建立了一个与200吨/天的废气废气燃烧过程相关的综合数值模型。这包括开发几种现象学模型,例如市政废气废气反应,NO污染物的产生以及与湍流有关的环境中的破坏。特别是,在这项研究中,为NO反应模型,焚化炉的3-D几何形状和废物床模型做出了许多合理的假设,以实现经验模型的有效合并并增强计算过程的稳定性。首先,通过谐波均值方法对与NO反应有关的与湍流有关的复杂燃烧化学进行建模,该方法由化学反应速率和湍流混合的相对强度给出。此外,焚烧炉的3-D矩形形状简单地由具有等效面积的3-D轴对称几何形状近似。并通过废气的纯气态燃烧过程描述了在移动炉rate上进行复杂废物燃烧过程的模型。通过与位于韩国大田市第四工业园区的焚化炉中的实验数据(例如温度和NO浓度分布图)进行比较,成功验证了本研究开发的程序。使用开发的程序,已经进行了一系列参数研究以评估SNCR过程,从而评估了各种重要的设计和操作变量。该参数研究中考虑的主要参数是城市垃圾的发热量,注入位置和还原材料的量以及绝缘浇铸料的适当长度。通常,计算结果在物理上可以接受并且相当一致。

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