在锅炉炉膛中联合燃烧各种工业废料流。第三部分

Yu. P. Yarmolchick, R. Schröger, H. Haberfelner, M. Pichler, D. Kostić, G. V. Moroz
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引用次数: 0

摘要

为了解决液态和气态工业废料的有效利用问题(在发热装置中燃烧)(本文第 1 部分已对此进行了定义),第 2 部分考虑了发热装置中的传热过程。有效解决这一过程的主要设备是燃烧器装置和燃烧室,并将热量传递给外部热载体,例如锅炉炉或热回收锅炉。本文举例说明了如何通过对火焰燃烧系统的可能方案进行建模,计算化工企业废弃物的特殊混合物的工艺流程,该工艺流程适用于各种气态和液态可燃产物的特征组合。为此,应用了 CFD(计算流体动力学)计算流体力学方法,该方法被认为是分析介质流动和燃烧过程行为的最有效方法。通过 CFD 分析,可以预测流体动力学和热过程(尤其是复杂的多组分系统),并对其进行优化,以达到最佳效果。高质量燃烧的最重要因素是具有高表面张力系数的高粘度液体的雾化过程(精细雾化)。超声波方法对这类液体最为有效。此外,还要考虑燃烧室中燃烧混合物和烟气流量分布的质量。为此,有必要将轴向气流和外围气流分开,这样不仅可以改变火焰的构造,还可以将对流烟气流引向燃烧室中最有效的区域。文章考虑到燃烧产物中污染物(主要是氮氧化物)形成的概率,根据各种因素考虑了各种传热方案(对流和径向)。文中介绍了该问题的数值求解结果。对燃烧所需的一次气流和二次气流的最佳比例结果进行了分析。最后,对在锅炉中直接燃烧燃料和在预燃烧室中燃烧燃料的方案进行了比较分析。直接燃烧的效率已得到证实。
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Combined Combustion of Various Industrial Waste Flows in Boiler Furnaces. Part 3
To solve the problem of useful utilization (by combustion in heat generators) of liquid and gaseous industrial waste (that was defined in Part 1 of the present article), heat transfer processes in heat generating units were considered in Part 2. The main equipment for the effective solution of this process is a burner device and a combustion chamber with heat transfer to an external heat carrier, for example, a boiler furnace or a heat recovery boiler. The present article considers an example of calculating such a process for a distinctive mixture of waste from a chemical industry enterprise using modeling of possible schemes of a flame combustion system for a characteristic combination of various types of gaseous and liquid combustible products. For this purpose, the CFD (Computational Fluid Dynamics) computational hydrodynamics method was applied, which is determined to be the most effective one, in analyzing the behavior of media flows and combustion processes. CFD analysis makes it possible to predict hydrodynamic and thermal processes (especially in complex multicomponent systems) and optimize them to achieve the best results. The most important factor in high-quality combustion is the atomization process (fine atomization) of highly viscous liquids with high surface tension coefficients. The ultrasonic me-thod has been adopted as the most effective for such liquids. Besides, the quality of the distribution of flows of combustion mixtures and flue gases in the combustion chamber is considered. For doing this, it is necessary to arrange separate flows of axial and peripheral air, which make it possible not only to change the configuration of the flame, but also to direct convective flue gas flows to the most efficient areas of the combustion chamber. The article considers various options for heat transfer (convective and radial) depending on various factors, taking into account the degree of probability of formation of pollutants (primarily NOx) in combustion products. The results of the numerical solution of the problem are presented. The analysis of the results on the optimal ratio of the shares of primary and secondary air flows for combustion was carried out. In conclusion, a comparative analysis of the options for burning fuel directly in the boiler and in the pre-combustion chamber is presented. The efficiency of direct combustion has been demonstrated.
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