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CFD modeling of ash deposition for co-combustion of MBM with coal in a tangentially fired utility boiler

机译:切向公用锅炉中MBM与煤共燃灰分沉积的CFD模型

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摘要

Ash deposition is one of the main challenges that needs to be tackled in response to increased percentage of biomass co-firing in pulverized fuel boilers. In this study, a model has been developed to investigate the slagging behavior of meat and bone meal (MBM) at higher co-firing rates in the Maasvlakte boiler operated by EON Benelux. The model includes the combustion of solid fuels in a tangentially fired boiler and post-processing of ash deposition on the heat exchange surfaces. The deposition tendency of the impacting ash particles is predicted on the basis of ash viscosity, which is calculated with the Urbain viscosity model. Thermodynamic equilibrium is used to calculate the various fuel ash properties for both oxidizing and reducing conditions. On the basis of the thermal heat input, solid fuel combustion is modeled and evaluated for various co-firing rates which consists of 0%, 12.5%, 25% and 40% of MBM. The calculation results show that the deposition propensity is the highest for a co-firing ratio of 25% MBM. The preferred deposition locations in the boiler calculated by the CFD model are in line with observations in operational practice.
机译:灰分沉积是粉煤锅炉中生物质共燃百分比增加所需要解决的主要挑战之一。在这项研究中,已经开发了一个模型来研究在EON比荷卢三国运营的Maasvlakte锅炉中,较高的共烧速率下肉骨粉(MBM)的结渣行为。该模型包括切向燃烧锅炉中固体燃料的燃烧以及热交换表面灰烬沉积的后处理。基于灰分粘度预测撞击的灰分颗粒的沉积趋势,该灰分粘度是用UrbAIN粘度模型计算的。使用热力学平衡来计算氧化和还原条件下的各种燃料灰分性质。根据热输入,对各种形式的固体燃料燃烧进行建模和评估,这些混合燃烧率包括0%,12.5%,25%和40%的MBM。计算结果表明,共烧比为25%MBM时,沉积倾向最高。通过CFD模型计算的锅炉中的首选沉积位置与操作实践中的观察结果一致。

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