首页> 外文期刊>Atomization and Sprays: Journal of the International Institutes for Liquid Atomization and Spray Systems >SPRAY CHARACTERISTICS OF AN AIR-DRIVEN ROTARY ATOMIZER WITH A DOUBLE-LAYER CUP FOR USE IN AN INDUSTRIAL OIL BURNER
【24h】

SPRAY CHARACTERISTICS OF AN AIR-DRIVEN ROTARY ATOMIZER WITH A DOUBLE-LAYER CUP FOR USE IN AN INDUSTRIAL OIL BURNER

机译:用于工业燃油炉的双层杯气动旋转式喷雾器的喷雾特性

获取原文
获取原文并翻译 | 示例
           

摘要

An experimental investigation of spray characteristics in a rotary burner with an air-driven double-layer cup atomizer is reported. The air stream generated by a centrifugal blower was used to rotate a vane propeller attached to the double-layer cup, and to assist disintegration of liquid sheets formed from the rim of the double-layer cup at the air nozzle exit. As the blower power increased, the rotational speed of the cup and the gas-to-liquid mass ratio (GLR) increased, and the atomizing crossflow velocity at an annular slot increased as well. For some given operating conditions, the effect of the crossflow velocity on the spray quality was investigated by varying the outer diameters of the air nozzle (88, 83, and 79.5 mm). The spray cone angles were measured by analyzing stroboscopic images. As the air velocity at the annular slot increased, the spray cone angle decreased. The spray radial and streamwise dispersion distributions were obtained by two liquid-collecting devices. The crossflow velocity at the annular slot, the GLR, and the diameter of air nozzles had an impact on the drop sizes and size distribution. The drop sizes of the spray were obtained using laser diffraction spectroscopy. The spray performance was described in terms of Sauter mean diameter (SMD), maximum drop diameter, relative span factor, and some representative drop diameters such as D_(0.9), D_(0.5), and D_(0.1). The SMD and maximum drop diameter were correlated with liquid Weber number (We_L) only. The atomization quality was improved with increasing GLR and crossflow velocity at the annular slot.
机译:报道了在带有气动双层杯式雾化器的旋转燃烧器中喷雾特性的实验研究。由离心鼓风机产生的气流用于旋转连接到双层杯的叶片螺旋桨,并协助在空气喷嘴出口处由双层杯的边缘形成的液体薄片分解。随着鼓风机功率的增加,杯的转速和气液质量比(GLR)也会增加,环形槽处的雾化错流速度也会增加。对于某些给定的工作条件,通过改变空气喷嘴的外径(88、83和79.5 mm)来研究错流速度对喷雾质量的影响。通过分析频闪图像来测量喷雾锥角。随着环形槽处的空气速度增加,喷雾锥角减小。通过两个液体收集装置获得了喷雾的径向和流向分散分布。环形槽处的错流速度,GLR和空气喷嘴的直径对液滴尺寸和尺寸分布有影响。喷雾的液滴尺寸使用激光衍射光谱法获得。用Sauter平均直径(SMD),最大墨滴直径,相对跨度因子和一些代表性的墨滴直径(例如D_(0.9),D_(0.5)和D_(0.1))描述了喷雾性能。 SMD和最大液滴直径仅与液体韦伯数(We_L)相关。雾化质量随环形槽处GLR和错流速度的增加而提高。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号