Path flow study of a lab scale cyclonic combustor for coal-biomass co-combustion

A. Ikram, A. A. Rahman, N. Mostafa, A. Shamsuddin
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引用次数: 1

Abstract

A lab scale cyclonic combustor is in developmental stage for firing coal-biomass blends. The lab scale test rig would be used to support a study of coal-biomass co-combustion in a selected real pulverized coal, tangentially fired power plant. The conceptual design is made similar to the two-stage inverted cyclonic combustor at Cardiff University (A. Abd Rahman and N. Syred), previously used in a completed EU commissioned study on co-combustion. The design consists of two stages where the primary reactor is for fuel gasification and devolatilisation of volatile matters, followed by a secondary reactor for complete combustion of fuel. Cyclonic combustion is chosen as it can provide high turbulence during combustion, and the assumed flow path of particles mimics that of a real tangential boiler. The design would also allow the particle residence time to be in the same order to a real boiler. In order to better understand the cyclonic combustion process and optimize the rig operation, computational fluid dynamics (CFD) is used. At the current stage, CFD simulation of the flowpath is chosen to prove the subject as having a turbulence flow, before continuing with combustion simulation, and actual fabrication of the cyclonic combustor.
实验室规模煤-生物质共燃旋流燃烧室路径流动研究
实验室规模的燃烧煤-生物质混合燃料的旋流燃烧室正处于研制阶段。实验室规模的试验台将用于支持在选定的真实煤粉切线燃烧电厂中进行煤-生物质共燃烧的研究。概念设计类似于卡迪夫大学(a . Abd Rahman和N. Syred)的两级倒置旋风燃烧器,该燃烧器先前用于完成欧盟委托的共燃烧研究。该设计包括两个阶段,其中主反应堆用于燃料气化和挥发性物质的脱挥发,其次是二级反应堆用于燃料的完全燃烧。选择旋风燃烧是因为它可以在燃烧过程中提供高湍流,并且假设的颗粒流动路径模拟了实际切向锅炉的流动路径。该设计还将允许颗粒停留时间在同一顺序,以一个真正的锅炉。为了更好地了解旋流燃烧过程并优化钻井操作,应用了计算流体动力学(CFD)。现阶段,在继续燃烧模拟和实际制造旋风燃烧室之前,选择CFD流道模拟来证明主体存在湍流流动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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