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Measurements of NOx precursor concentration profile above the bed at a full scale W-t-E plant and the effect of precursor speciation on the NOx formation

机译:在全尺寸W-t-E工厂对床上方的NOx前体浓度分布的测量以及前体物种形成对NOx形成的影响

摘要

Satisfactory result from CFD modelling of NOx formation during combustion of waste in grate-fired waste-to-energy plants relies heavily on an accurate description of the temperature field in the free-board, this is a consequence of the high dependency of the temperature on the fuel NOx chemistry [1,2]. Modelling of the temperature field in the free-board in a CFD code relies on an accurate determination of the boundary conditions from the bed into the computational domain, e.g., species concentrations, gas temperature and gas velocity. Most CFD models of grate-fired waste-to-energy plants use a stand-alone model of the bed, describing the waste devolatilisation and the partial oxidation of volatiles, which have been coupled with the CFD model. The drying, devolatilisation and volatile oxidation in the bed is strongly coupled with the combustion of gaseous species in the free-board due to the radiation onto the bed as indicated in figure 1.The devolatilisation of the fuel and partial oxidation of the volatiles in the bed, generated during devolatilisation, has been coupled with the combustion of gaseous species in the freeboard and been applied with success in previous studies [3, 4].
机译:炉排焚烧发电厂中废物燃烧过程中NOx形成的CFD模型令人满意的结果在很大程度上取决于对干舷温度场的准确描述,这是温度高度依赖于干舷的结果。燃料的NOx化学物质[1,2]。用CFD代码对干舷中的温度场进行建模依赖于从床层到计算域的边界条件的准确确定,例如物种浓度,气体温度和气体速度。炉排垃圾发电厂的大多数CFD模型都使用床的独立模型,该模型描述了废物挥发,挥发物的部分氧化以及CFD模型。床中的干燥,脱挥发分和挥发性氧化与自由板上的气态物质的燃烧密切相关,这是由于辐射到床上造成的,如图1所示。燃料的脱挥发分和挥发分在其中的部分氧化脱挥发分过程中产生的床层与干舷中的气态物质燃烧相结合,并已成功应用于先前的研究中[3,4]。

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