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Experiment Study and Simulation Research for the Atomization Characteristics of the Internal-Mixing Twin-Fluid Atomizer

机译:实验研究和模拟内部混合双流体雾化器的雾化特性研究

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The internal-mixing twin-fluid atomizer has found wide application in aerospace, industrial gas turbine, oil-fired boiler, energy field and so on The atomization characteristics of internal mixing nozzle under different operating conditions are studied by utilizing the Malvern laser particle size analyzer. According to the experiment results the influence of air pressure, hydraulic pressure and air-liquid ratio to droplet size and uniformity are analyzed. The three-dimensional flow field model of internal mixing nozzle is built to simulate the droplet size of mixing room and outlet by Fluent. The simulation results show that the dronlet size decreases along with the increase of the air pressure and the air-liquid ratio, moreover the air pressure plays a main actor. The droplet size increases in the mixing room, and then decrease sharply at the domain of the outlet. The droplet size of the nozzle's outlet obtained in simulation matches the experimental result.
机译:通过利用Malvern激光粒子尺寸分析仪研究了内部混合的双流体雾化器在航空航天,工业燃气轮机,燃油锅炉,能源场等,在不同的操作条件下研究了内部混合喷嘴的雾化特性。 。根据实验结果,分析了空气压力,液压和空气液体比与液滴尺寸和均匀性的影响。内部混合喷嘴的三维流场模型是为模拟混合室和出口的液滴尺寸。仿真结果表明,随着空气压力的增加和空气液体比率,Droonlet尺寸随着气压的增加而降低,而气压起到主动力。液滴尺寸在混合室中增加,然后在出口区域处急剧下降。在模拟中获得的喷嘴出口的液滴尺寸与实验结果相匹配。

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