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Advanced modelling and testing of a 13 MWth waste wood-fired grate boiler with recycled flue gas

机译:使用循环烟气的13兆瓦燃木废渣炉排锅炉的高级建模和测试

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Numerical modelling is widely used in industry for detailed understanding of the combustion process and for appropriate design and optimization of biomass/waste-fired boilers. This paper presents a numerical study of a 13 MWth waste wood-fired grate boiler, based on the coupled in-bed fuel conversion modelling and freeboard combustion modelling methodology. A 1D model is developed for the conversion of the waste wood in the fuel bed on the grate, providing the appropriate grate inlet condition for the 3D simulation of the freeboard region. Since part of the flue gas is recycled into the boiler as an innovative attempt to improve the boiler performance, a refined weighted-sum-of-grey-gases-model of greater accuracy is developed to better address the impacts of the elevated CO2 and H2O vapour concentrations on radiative heat transfer in the boiler. The impacts of full buoyancy on the turbulent flow are also investigated. The temperature profiles at different ports in the furnace are measured to shed some light on the flow and combustion characteristics in the boiler and also to collect some in-flame data for modelling validation. The overall modelling strategy, the new sub-models and the use of recycled flue gas are all of great benefit or reference for modelling and design of grate-fired boilers. (C) 2016 Elsevier Ltd. All rights reserved.
机译:数值模型在工业中被广泛使用,以详细了解燃烧过程,以及对生物质/废物锅炉的适当设计和优化。本文基于耦合床内燃料转化模型和干舷燃烧建模方法,对一台13兆瓦时废木柴炉排锅炉进行了数值研究。开发了一维模型以转换炉排上燃料床中的废木料,为干舷区域的3D模拟提供适当的炉排入口条件。由于将一部分烟气再循环到锅炉中是提高锅炉性能的一项创新尝试,因此,开发了一种精度更高的精炼加权灰色总和模型,以更好地解决升高的CO2和H2O的影响。锅炉辐射热传递中的蒸汽浓度。还研究了完全浮力对湍流的影响。测量炉内不同端口的温度曲线,以了解锅炉的流量和燃烧特性,并收集一些火焰数据以进行模型验证。整体建模策略,新的子模型以及再循环烟气的使用对于炉排锅炉的建模和设计都具有很大的益处或参考。 (C)2016 Elsevier Ltd.保留所有权利。

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