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COMPUTATIONAL OPTIMIZATION OF A SUBSONIC COMPRESSIBLE GAS VENTURI'S EJECTOR

机译:亚音速可压缩气体文丘里射流器的计算优化

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摘要

The paper deals with a 3-D numerical simulation and validation against industrial measurements of turbulent frozen reacting flow in a subsonic compressible gas Venturi''s ejector used as "fluid dynamic engine" for external flue gas recirculation in a state-of-the-art "annular shaft" lime kiln. Higher stagnation thermodynamics parameters of the ejector hot gas primary stream permit the avoidance of the condensing temperature window of compounds such as K_2O and Na_2O, and KCl and NaCl that produce sticky builds-up on the ejector''s internal wall. An improved gas dynamics effectiveness allows the maximization of the amount of secondary flue gas stream using much less primary stream mass flow rate. The commercial Fluent™ UNS/5 software was used to predict all flow behavior characteristics inside the original and new Venturi''s ejectors. A reasonable agreement has been found between the computed and experimental flow rate figures of the secondary flue gas stream of the actual functioning kiln.
机译:本文针对亚音速可压缩气体中湍流冷冻反应流的工业测量进行了3D数值模拟和验证,文丘里喷射器用作“流体动力发动机”,用于在当前状态下进行外部烟气再循环。艺术“环形竖井”石灰窑。喷射器热气主流的较高的停滞热力学参数可以避免化合物(例如K_2O和Na_2O,以及KCl和NaCl)在喷射器内壁上产生粘性积聚的冷凝温度窗口。改进的气体动力学效率允许使用少得多的一次气流质量流速来最大化二次烟气流的量。商业Fluent™UNS / 5软件用于预测原始和新的Venturi喷射器内部的所有流动行为特征。在实际运行的窑炉的二次烟气流量的计算值和实验值之间找到了合理的协议。

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