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Analysis of the Dynamics of Coal Char Combustion with Ignition and Extinction Phenomena: Shrinking Core Model

机译:具有燃灭现象的煤焦燃烧动力学分析:收缩模型

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摘要

Single-particle combustion of coal char is analyzed using a generalized shrinking core model. Finite volume method, which was earlier employed by the authors in solving moving boundary problems involving fluid-solid noncatalytic reactions in general, is used to solve fully transient mass and energy equations. The model takes into account convection and diffusion inside the particle as well as in the boundary layer. The computed results are compared with the experimental data of the authors for combustion of coal char in a fluidized bed combustor. The effects of parameters such as bulk temperature and initial particle radius on the combustion dynamics are examined. The phenomena of ignition and extinction are also investigated. Finally, the importance of Stefan flow, originating due to nonequimolar counterdiffusion, on combustion of coal char is analyzed.
机译:使用广义收缩核模型分析了煤焦的单颗粒燃烧。作者使用较早的方法来解决通常涉及流固非催化反应的运动边界问题时所使用的有限体积方法,用于求解完全瞬态的质量和能量方程。该模型考虑了粒子内部以及边界层中的对流和扩散。将计算结果与作者在流化床燃烧器中燃烧煤焦的实验数据进行比较。研究了诸如体温和初始颗粒半径等参数对燃烧动力学的影响。还研究了起火和熄灭的现象。最后,分析了非等摩尔反扩散引起的Stefan流动对煤焦燃烧的重要性。

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