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Numerical modelling of a stoker furnace operated under indirect co-firing of biomass

机译:生物量间接共烧的炉式炉数值模拟

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The subject of the CFD analysis presented in this paper is the process of biomass indirect co-firing carried out in a system composed of a stoker-fired furnace coupled with a gasification reactor. The installation is characterised by its compact structure, which makes it possible to minimise heat losses to the environment and enhance the physical enthalpy of the oxidising agent – flue gases – having a favourable chemical composition with oxygen and water vapour. The test results provided tools for modelling of biomass thermal processing using a non-standard oxidiser in the form of flue gases. The obtained models were used to optimise the indirect co-combustion process to reduce emissions. An overall effect of co-combustion of gas from biomass gasification in the stoker furnace is the substantial reduction in NO emissions by about 22%.
机译:本文介绍的CFD分析的主题是生物量间接共烧过程,该过程是在由炉火炉和气化反应器组成的系统中进行的。该装置的特点是结构紧凑,可以最大程度地减少对环境的热损失,并增强氧化剂(烟道气)的物理焓,该氧化剂具有良好的化学组成,具有氧气和水蒸气。测试结果提供了使用烟道气形式的非标准氧化剂对生物质热加工进行建模的工具。所获得的模型用于优化间接共燃过程以减少排放。煤炉中生物质气化产生的气体共燃烧的总体效果是,NO排放量大幅减少了约22%。

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