首页> 外文会议>ASME Annual Dynamic Systems and Control Conference >DYNAMIC MODELLING OF UPDRAFT GASIFIERS: INCIDENCE OF FEEDSTOCK QUALITY AND OPERATIONAL VARIABLES IN THE TRANSIENT MODEL STRUCTURE
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DYNAMIC MODELLING OF UPDRAFT GASIFIERS: INCIDENCE OF FEEDSTOCK QUALITY AND OPERATIONAL VARIABLES IN THE TRANSIENT MODEL STRUCTURE

机译:上升气流气体的动态建模:瞬态模型结构原料质量和运行变量的发生率

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This paper describes the definition of the transient model structure for an updraft gasifier and the input variables related to the process and the feedstock quality with the most significant influence on the dynamic models and the transient behaviour. For such purpose, a set of open-loop dynamics experiments were carried out in the gasifier. Moreover, the output variables performance was recorded together with the composition analysis of the municipal solid waste batch (MSW). The output and operational variables record was used as base information for performing regressions of transient models with the purpose of determining the model type choice that achieves the largest occurrence frequency of fitting percentage figures above 50%. In addition, the dataset of regression parameters is analysed through feature selection in order to establish the influence of feedstock quality parameters and independent dynamic operational variables in dynamic changes. The model structure selection determined that underdamped, second order with one zero transfer function (P2ZU) is the most accurate case for updraft gasifiers. Regarding the influence of feedstock-related information, feature selection results show that ultimate composition is the group of quality parameters with the most significant influence on transient behaviour. Results also show that recirculation flow rate is the operational variable whose effect in the output variables is the most likely to be predicted and potentially controlled. The results for this variable show that 64.3% of the performed regressions achieved a fitting percentage value above 50%.
机译:本文介绍了上升气化器的瞬态模型结构的定义以及与过程和原料质量相关的输入变量以及对动态模型的最显着影响和瞬态行为的输入变量。为此目的,在气化炉中进行一组开环动力学实验。此外,输出变量性能与城市固体废物批次(MSW)的成分分析一起记录。输出和操作变量记录被用作用于执行瞬态模型回归的基础信息,目的是确定拟合百分比数字的最大出现频率的模型类型选择以上50%。此外,通过特征选择分析回归参数的数据集,以便在动态变化中建立原料质量参数和独立动态操作变量的影响。确定的模型结构选择被拒绝,具有一个零传递函数(P2ZU)的二阶,是最准确的上升气体气体的情况。关于原料相关信息的影响,特征选择结果表明,最终的组成是质量参数组,对瞬态行为的影响最大。结果还表明,再循环流速是运行变量,其在输出变量中的效果最有可能被预测和潜在地控制。该变量的结果表明,64.3%的表现回归达到了高于50%的拟合百分比值。

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