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Model for biomass char combustion in the riser of a dual fluidized bed gasification unit:Part 1-Model development and sensitivity analysis

机译:双流化床气化装置提升管中生物质炭燃烧的模型:第1部分:模型开发和灵敏度分析

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摘要

A comprehensive model for steady state combustion of biomass char in a fast fluidized bed is presented,although the model is capable to deal any fluidization regime.The air needed for combustion is staged as bottom,primary and secondary air.The combustor is divided into two sectors:a dense(bottom)zone and a transport(upper)zone.The model consists of sub-models for bed hydrodynamics,conversion and conservation.The hydrodynamic description of the bottom bed is based on the modified two phase theory while the freeboard is based on a simplified core-annulus approach.Biomass char is modelled as partially volatile fuel.Char composition is a model parameter and is defined by weight fractions of C,H and O.The model includes the release of volatiles from biomass char and their subsequent combustion.The combustion reactor also serves as a sink for spent organic solvent.Char mass balance and energy balances are solved globally in each zone.The sensitivity analysis shows that the model is not very sensitive to changes in operating parameters.The model is robust to deal with solid,liquid and gaseous fuel combustion.
机译:尽管该模型能够处理任何流化状态,但仍提供了一种用于快速流化床中生物质炭稳态燃烧的综合模型。燃烧所需的空气分为塔底,一次和二次空气。燃烧器分为两种区域:密实(底部)区域和运输(上部)区域。该模型由用于床层流体动力学,转换和守恒的子模型组成。底部床层的流体力学描述基于改进的两相理论,而干舷为基于简化的核-环空方法,将生物质焦炭建模为部分挥发性燃料,焦炭成分是模型参数,由C,H和O的重量分数定义,该模型包括从生物质焦炭及其后续物质释放的挥发物燃烧反应堆也用作废有机溶剂的汇,在每个区域中全局解决了焦炭质量平衡和能量平衡问题,敏感性分析表明该模型不是很该模型对处理固态,液态和气态燃料燃烧具有鲁棒性。

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