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Similarity and modeling of axial CO and NO concentration profiles in a fluidized-bed combustor (co-)firing biomass fuels

机译:流化床燃烧器(共燃)生物质燃料轴向CO和NO浓度分布的相似性和建模

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摘要

Some common features and trends of the behavior of CO and NO along the height in a conical fluidized-bed combustor (FBC) firing rice husk and pre-dried sugarcane bagasse, and co-firing "as-received" rice husk with "as-received" sugarcane bagasse, for wide ranges of fuel properties and operating conditions, were summarized. Empirical models for predicting axial CO and NO concentration profiles in this fluidized-bed combustor were developed based on analysis and treatment of experimental results. Supporting correlations, including the effects of excess air, the bed temperature and fuel properties, were proposed for estimating the peak of the CO concentration (CO_(max)) and NO concentration (NO_(max)) located in the reactor at a level of X_(CO_(max)) and X_(NO_(max)), respectively, above the air distributor. These models secured the computational error of ±25% for CO_(max) and ±20% for NO_(max). Experimental dependencies of the relative gas concentration on the relative axial distance, CO/CO_(max) =f(X/X_(CO_(max))) and NO/NO_(max) = f(X/X_(NO_(max))), were found to show an apparent similarity for all the fuels and firing options analyzed in this work, and could be, therefore, approximated by the fitting equations at R~2 = 0.74-0.90. With the proposed equations, CO and NO concentrations can be estimated for any arbitrary level (X) above the air distributor in the conical FBC, for the particular (selected) fuel properties and operating conditions.
机译:圆锥形流化床燃烧器(FBC)燃烧稻壳和预干燥的甘蔗渣,然后将“按原样”稻壳与“ as-as”共燃的一些共同特征和行为,即CO和NO沿高度的行为趋势总结了广泛使用的“甘蔗渣”,用于各种燃料性质和操作条件。基于对实验结果的分析和处理,建立了预测该流化床燃烧器轴向CO和NO浓度分布的经验模型。为了估算位于反应堆中CO浓度(CO_(max))和NO浓度(NO_(max))的峰值,提出了支持性相关性,包括过量空气,床温和燃料特性的影响。 X_(CO_(max))和X_(NO_(max))分别位于空气分配器上方。这些模型确保了CO_(max)的±25%和NO_(max)的±20%的计算误差。相对气体浓度对相对轴向距离的实验依赖性,CO / CO_(max)= f(X / X_(CO_(max)))和NO / NO_(max)= f(X / X_(NO_(max) )),发现在这项工作中分析的所有燃料和燃烧选项都具有明显的相似性,因此可以通过拟合方程在R〜2 = 0.74-0.90处进行近似。利用提出的方程式,可以针对特定(选定的)燃料特性和运行条件,估算圆锥形FBC中空气分配器上方任意水平(X)的CO和NO浓度。

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