首页> 外文会议>2002 ASME International Mechanical Engineering Congress and Exposition , Nov 17-22, 2002, New Orleans, Louisiana >NUMERICAL SIMULATION OF NATURAL GAS COMBUSTION PROCESS USING A ONE STEP AND A TWO-STEP REACTION
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NUMERICAL SIMULATION OF NATURAL GAS COMBUSTION PROCESS USING A ONE STEP AND A TWO-STEP REACTION

机译:一步和两步反应的天然气燃烧过程数值模拟

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The work evaluates the combustion of natural gas in a cylindrical furnace. The Generalized Finite Rate Reaction Model was selected for predicting the reactions. Two situations were considered. In the first case the combustion of the fuel was predicted by a single global reaction, and in the second case a two-step reaction was considered for predicting the combustion process. The conservation equations of mass, momentum, energy and chemical species were solved by the finite volume procedure, with the commercial software FLUENT. The turbulent flow was modeled by employing the two differential equation κ-ε model. The solutions obtained with the two reaction models, for the temperature and species concentration fields, were compared among them and against experimental data available in the literature. It was observed that the two-step reaction model represents better the physical phenomena, showing a better agreement with the experimental data.
机译:该工作评估了圆柱形炉中天然气的燃烧。选择广义有限速率反应模型来预测反应。考虑了两种情况。在第一种情况下,燃料的燃烧是通过一个整体反应来预测的,而在第二种情况下,则考虑了两步反应来预测燃烧过程。质量,动量,能量和化学物种的守恒方程是通过有限体积程序使用商业软件FLUENT求解的。采用两个微分方程κ-ε模型对湍流进行建模。比较了在温度和物种浓度场方面使用两种反应模型获得的溶液,并与文献中提供的实验数据进行了比较。据观察,两步反应模型代表了更好的物理现象,显示出与实验数据更好的一致性。

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