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Efficient diagnosis of grate-fired biomass boilers by a simplified CFD-based approach

机译:通过简化的基于CFD方法有效地诊断炉排燃烧的生物质锅炉

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摘要

This paper describes the development and validation of a numerical tool able to simulate biomass combustion in grate-fired systems and support operation and design improvements of these devices. The modeling method is conceived as a compromise between the demand of computing time and the degree of detail in the simulation. As such, it integrates both the bed zone and the freeboard zone on a same 3D grid and assumes the bed as a porous medium, where heterogeneous reactions are simulated by a modified laminar rate model. Liquid water, dry biomass and char are introduced as site species that react on the porous medium surfaces to produce and/or consume gas species (O-2, CO, CO2, H-2, H2O, light hydrocarbons and condensable gases). To validate the numerical tool, predictions have been compared to experimental data gathered in a 250 kW(th) combustion test facility operated with a high quality woody pellet. Once validated, the tool has been applied to characterize the flow patterns as well as the temperature and the main gaseous emissions profiles within the combustion chamber. According to the analysis of the simulation results, significant improvements have been identified concerning not only operation but also design issues.
机译:本文介绍了能够在炉排系统中模拟生物量燃烧的数值工具的开发和验证,并支持这些设备的支持操作和设计改进。建模方法在计算时间的需求和模拟中的细节程度之间构思为折衷。这样,它将床区和自收床区域整合在相同的3D网格上,并假定床作为多孔介质,其中通过改进的层速模型模拟异质反应。将液态水,干生物量和焦炭作为位点物种引入,其在多孔介质表面上反应以产生和/或消耗气体物种(O-2,CO,CO 2,H-2,H 2 O,轻碳氢化合物和可冷凝气体)。为了验证数值工具,已经将预测与用高质量的木质颗粒操作的250千瓦(TH)燃烧试验设施中收集的实验数据进行了比较。一旦验证,该工具已被应用于表征流动模式以及燃烧室内的温度和主气态排放型材。根据仿真结果的分析,不仅有关操作而且还识别出显着的改进,而且还识别出设计问题。

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