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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Mathematical modeling of swirling flames of pulverized coal: what can combustion engineers expect from modeling?
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Mathematical modeling of swirling flames of pulverized coal: what can combustion engineers expect from modeling?

机译:煤粉回旋火焰的数学模型:燃烧工程师可以从模型中得到什么?

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摘要

The present study is concerned with mathematical modeling of swirling pulverized coal flames. The attention is focused on the near burner zone properties of high and low-NO{sub}x flames issued from an Aerodynamically Air Staged Burner of 3.4 Mwthermal input. The swirling combusting flows are calculated using the k-ε model and second-order models of turbulence. The Eulerian balance equations for enthalpy and mass fractions of oxygen, volatiles, carbon monoxide and final combustion products(CO{sub}2 + H{sub}2O) are solved. The Lagrangian particle tracking is accompanied by appropriate models of coal devolatilization and char combustion. Nitric oxide emissions are calculated using a NO{sub}X post-processor for thermal-, prompt- and fuel NO.The objective of this paper is to examine whether the engineering information required for designing industrial burners is obtainable through the mathematical modeling. To this end, the flame computations, including NO emissions, are compared with themeasured inflame data. The guidelines as to the combination of physical submodels and model parameters needed for quality predictions of different flame types are given. The paper is a shorter version of our recent ASME publication (Weber et al., 1993).
机译:本研究涉及涡旋煤粉火焰的数学模型。注意力集中在由输入功率为3.4 Mw的空气动力空气分级燃烧器发出的高NOx和低NOxx火焰的近燃烧器区域特性上。旋流燃烧流是使用k-ε模型和二阶湍流模型计算的。求解了氧气,挥发物,一氧化碳和最终燃烧产物(CO {sub} 2 + H {sub} 2O)的焓和质量分数的欧拉平衡方程。拉格朗日粒子跟踪伴随着合适的煤脱挥发分和焦炭燃烧模型。使用NO {sub} X后处理器来计算NO,substant和燃料NO的一氧化氮排放量。本文的目的是检验是否可以通过数学模型获得设计工业燃烧器所需的工程信息。为此,将火焰计算(包括NO排放)与测得的火焰数据进行比较。给出了有关不同火焰类型的质量预测所需的物理子模型和模型参数的组合的指南。本文是我们最近的ASME出版物的简短版本(Weber等,1993)。

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