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Fuel-specific devolatilization parameters for detailed comparison of pulverized biomass fuels

机译:用于详细比较粉碎生物质燃料的燃料特异性脱挥石参数

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摘要

Low-grade biomass feedstocks are sustainable alternatives for pulverized fuel applications in the energy industry. Adverse fuel properties can make their adoption challenging due to operational issues such as flame ignition problems and high emissions. These issues can be potentially resolved by Computational Fluid Dynamics (CFD) simulations, where a submodel is needed to describe the fuel devolatilization behavior. In this work, the devolatilization parameters are reported for three pulverized biomass fuels: high-quality industrial wood pellet, lower-grade spruce bark, and steam-explosion pretreated spruce bark. The parameters are determined with a combination of high heating-rate drop-tube reactor experiments and CFD-coupled optimization algorithm. Comprehensive analysis is conducted to examine how the devolatilization reactivity and steam-explosion pretreatment affect the industrially relevant fuel properties. The functionality of the drop-tube devolatilization parameters is further demonstrated in larger-scale combustion simulations of a 120 kW pulverized fuel test rig. The simulations are able to capture the more challenging ignition behavior of the lower-grade bark fuels, and give detailed insight on the phenomenological side of solid fuel ignition. The fuel devolatilization reactivity is shown to have a strong impact on highly nonlinear flame characteristics, such as NO formation. Most importantly, the presented characterization, simulation and analysis methods can be applied to other biomass feedstocks to better understand how reactivity is altered by feedstock pretreatment, and how the process characteristics are influenced by fuel devolatilization reactivity.
机译:低级生物质原料是能源工业中粉碎燃料应用的可持续替代品。由于诸如火焰点火问题和高排放等运营问题,不利燃料特性可以通过挑战。这些问题可能通过计算流体动力学(CFD)模拟可能解决,其中需要子模型来描述燃料脱挥发化行为。在这项工作中,报告了三种粉碎生物质燃料的脱挥石参数:高品质的工业木质颗粒,较低级云杉吠声和蒸汽爆炸预处理云杉树皮。用高加热速率下降管反应器实验和CFD耦合优化算法的组合确定参数。进行综合分析,以研究脱挥发反应性和蒸汽爆炸预处理如何影响工业相关的燃料特性。进一步说明了滴管脱挥发化参数的功能,以120kW粉碎燃料试验台的较大燃烧模拟。模拟能够捕捉较低级别的树皮燃料的更具挑战性的点火行为,并详细了解固体燃料点火的现象学侧。燃料脱挥发反应性被显示为对高度非线性火焰特性产生强烈影响,例如不形成。最重要的是,所呈现的表征,仿真和分析方法可以应用于其他生物质原料以更好地了解反应性是如何通过原料预处理改变的反应性,以及如何通过燃料脱挥发反应性影响。

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