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Analysis of the impact of coal quality on the heat transfer distribution in a high-ash pulverized coal boiler using co-simulation

机译:联合模拟分析煤质对高灰煤粉锅炉传热分布的影响

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摘要

The burning of very high ash coal can adversely affect heat absorption in boiler furnaces and radiant superheater heat exchangers, while the lower calorific value can lead to lower bulk furnace temperatures and higher tube wall temperatures in the radiative superheaters. This paper presents the results of a numerical study that compares the heat transfer characteristics of a subcritical boiler firing coal with a very high ash content to that of the same boiler burning the original design coal. The analysis is based on a detailed furnace combustion and heat transfer CFD model using ANSYS Fluent®, applied in a co-simulation mode together with a system level thermofluid network model using Flownex® SE. Furthermore, the paniculate radiation models include the effects of variable emissivity and scattering as the particles transition from parent fuel to ash. The aim is to demonstrate the extent to which the effects of differences in the coal quality can be identified in utility scale boilers using this approach. The results show that it is possible to identify the impact on furnace and radiant heat exchanger heat uptake, steam generation rate, as well as potential areas of high heat exchanger tube wall temperatures.
机译:燃烧极高的灰煤会不利地影响锅炉炉和辐射式过热器热交换器中的热吸收,而较低的热值会导致较低的散装炉温度和辐射式过热器中较高的管壁温度。本文介绍了一个数值研究的结果,该研究比较了燃烧具有高灰分含量的亚临界锅炉与燃烧原始设计煤的同一锅炉的传热特性。该分析基于使用ANSYSFluent®的详细的熔炉燃烧和传热CFD模型,并在共同仿真模式下应用,以及使用Flownex®SE的系统级热流体网络模型。此外,当粒子从母体燃料过渡到灰烬时,圆锥辐射模型包括可变的发射率和散射效应。目的是证明使用这种方法可以在公用事业规模的锅炉中识别出煤质差异的影响的程度。结果表明,有可能确定对炉子和辐射式换热器吸热,蒸汽产生速率以及高换热器管壁温度的潜在区域的影响。

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