首页> 外文期刊>Combustion Science and Technology >DETERMINATION OF THE INFLUENCE OF UNCERTAIN MODEL PARAMETERS IN PRESSURIZED GASIFICATION OF BLACK LIQUOR USING A FACTORIAL DESIGN
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DETERMINATION OF THE INFLUENCE OF UNCERTAIN MODEL PARAMETERS IN PRESSURIZED GASIFICATION OF BLACK LIQUOR USING A FACTORIAL DESIGN

机译:用因子设计确定不确定模型参数对黑液加压气化的影响。

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摘要

Introduction of pressurized gasification of black liquor in the pulping industry has the potential to give a significant increase in energy efficiency. However, uncertainties about the reliability and robustness of the technology are preventing large-scale market introduction. One important step toward a greater trust in the process reliability is the development of a better understanding of the sensitivity of the process to parameter variations. A computational fluid dynamics model for pressurized gasification of black liquor in an entrained-flow gasifier is presented and used for investigation of the effects of uncertainties in the specific heat capacity of black liquor, the radiation absorption coefficient, and the volatile devo-latilization rate using factorial design methodology. It is found that all main factor effects, but none of the interaction effects, influence the considered responses: char conversion, maximum temperature, and outlet temperature. However, the main effects are found to be relatively small and the uncertainties in the examined model parameters would not invalidate the results from a design optimization with the presented model.
机译:制浆工业中黑液加压气化的引入有可能显着提高能源效率。但是,由于技术可靠性和健壮性的不确定性,无法大规模推向市场。增强对过程可靠性的信任的一个重要步骤是对过程对参数变化敏感性的更好理解。提出了在夹带流化气化炉中黑液加压气化的计算流体动力学模型,并用于研究不确定性对黑液比热容,辐射吸收系数和挥发挥发速率的不确定性的影响。析因设计方法论。发现所有主要因素效应,但没有相互作用效应,均影响所考虑的响应:炭转化率,最高温度和出口温度。但是,发现主要影响相对较小,并且所检查的模型参数中的不确定性不会使所提出模型的设计优化结果无效。

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