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EXTENDED SEMI-ANALYTICAL MODEL FOR THE PREDICTION OF FLOW AND CONCENTRATION FIELDS IN A TANGENTIALLY-FIRED FURNACE

机译:切向炉膛内流场和浓度场的扩展半解析模型

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摘要

Tangentially-fired furnaces (TFF) are one of the modified types of furnaces which have become more attractive in the field of industrial firing systems in recent years. Multi-zone thermodynamic models can be used to study the effect of different parameters on the operation of TFF readily and economically. Flow and mixing sub-model is a necessity in multi-zone models. In the present work, the semi-analytical model previously established by the authors for the prediction of the behavior of coaxial turbulent gaseous jets is extended to be used in a single-chamber TFF with square horizontal cross-sections and to form the flow and mixing sub-model of the future multi-zone model for the simulation of this TFF. A computer program is developed to implement the new extended model. Computational fluid dynamics (CFD) simulations are carried out to validate the results of the new model. In order to verify the CFD solution procedure, a turbulent round jet injected into cross flow is simulated. The calculated jet trajectory and velocity profile are compared with other experimental and numerical data and good agreement is observed. Results show that the present model can provide very fast and reasonable predictions of the flow and concentration fields in the TFF of interest.
机译:切向燃烧炉(TFF)是改进型炉之一,近年来在工业燃烧系统领域变得越来越有吸引力。可以使用多区域热力学模型轻松,经济地研究不同参数对TFF运行的影响。流动和混合子模型在多区域模型中是必需的。在目前的工作中,作者先前建立的用于预测同轴湍流气态射流行为的半分析模型被扩展以用于具有方形水平横截面的单室TFF中,并形成流动和混合。该TFF的仿真的未来多区域模型的子模型。开发了计算机程序以实现新的扩展模型。进行计算流体动力学(CFD)模拟以验证新模型的结果。为了验证CFD解决方案,对湍流圆形射流进行了模拟。将计算出的射流轨迹和速度分布图与其他实验和数值数据进行比较,并观察到良好的一致性。结果表明,该模型可以为目标TFF中的流场和浓度场提供非常快速和合理的预测。

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