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Characteristic Study of Flat Spray Nozzle by Using Particle Image Velocimetry (PIV) and ANSYS Simulation Method

机译:用粒子图像速度(PIV)和ANSYS仿真方法对平喷喷嘴的特征研究

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Water mist sprays are used in wide range of application. However it is depend to the spray characteristic to suit the particular application. This project studies the water droplet velocity and penetration angle generated by new development mist spray with a flat spray pattern. This research conducted into two part which are experimental and simulation section. The experimental was conducted by using particle image velocimetry (PIV) method, ANSYS software was used as tools for simulation section meanwhile image J software was used to measure the penetration angle. Three different of combination pressure of air and water were tested which are 1 bar (case A), 2 bar (case B) and 3 bar (case C). The flat spray generated by the new development nozzle was examined at 9cm vertical line from 8cm of the nozzle orifice. The result provided in the detailed analysis shows that the trend of graph velocity versus distance gives the good agreement within simulation and experiment for all the pressure combination. As the water and air pressure increased from 1 bar to 2 bar, the velocity and angle penetration also increased, however for case 3 which run under 3 bar condition, the water droplet velocity generated increased but the angle penetration is decreased. All the data then validated by calculate the error between experiment and simulation. By comparing the simulation data to the experiment data for all the cases, the standard deviation for this case A, case B and case C relatively small which are 5.444, 0.8242 and 6.4023.
机译:水雾喷雾在各种应用中使用。然而,它依赖于适合特定应用的喷雾特性。该项目研究了新的开发雾喷雾产生的水滴速度和穿透角,具有平坦的喷雾图案。该研究分为两部分是实验和仿真部分。通过使用粒子图像速度(PIV)方法进行实验,使用ANSYS软件作为仿真部分的工具,同时使用图像J软件来测量穿透角度。测试了三种不同的空气和水压力,是1巴(壳体A),2巴(壳体B)和3巴(Case C)。由新的开发喷嘴产生的扁平喷雾在9cm垂直线上从喷嘴孔口的8cm垂直检查。详细分析中提供的结果表明,图形速度与距离的趋势在模拟和实验中提供了良好的一致性,以满足所有压力组合。随着水和空气压力从1巴增加到2巴,随着速度和角度渗透也增加,但对于在3条条件下运行的情况下,产生的水滴速度增加,但角度渗透率降低。然后通过计算实验和仿真之间的错误来验证所有数据。通过将模拟数据与所有情况进行比较,这种情况下的标准偏差A,CASE B和CASE C,其比较小,为5.444,0.8242和6.4023。

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