Droplet breakup phenomena in flows with velocity lag

被引:256
|
作者
Gelfand, BE
机构
[1] Institute of Chemical Physics, Russian Academy of Sciences, Moscow, 117977
关键词
atomization; primary breakup; droplet jets; sprays; drop size; breakup modes; particle production rate; pressure disturbances;
D O I
10.1016/S0360-1285(96)00005-6
中图分类号
O414.1 [热力学];
学科分类号
摘要
Available experimental data on droplet disintegration have been reviewed with due regard for modern knowledge of the phenomenon. Disintegration processes are known to be induced in flows with velocity lag between a continuous medium and dispersed particles. The disintegration process results in a drastic decrease in the characteristic size of particles. The formation of fine fog promotes evaporation processes and enhances processes of gasdynamic relaxation. The droplet breakup phenomena play an important role in various applications: shock, blast, compression and rarefaction waves in two-phase Bows; two-phase Bows in convergent/divergent nozzles; liquid jets and sprays in diesel engines; and supersonic flight in rainy conditions or in a dusty atmosphere. The critical conditions of droplet disintegration have been reviewed comprehensively and spatial and temporal characteristics of the phenomenon have been described quantitatively. Possible breakup modes are classified, specifying the ranges of their existence in terms of governing parameters. Also reviewed are the available data on breakup of non-Newtonian liquid and slurry. Of particular interest is knowledge of the effect produced by neighboring particles on the disintegrating droplet. Specific features of breakup phenomena in dense sprays have been discussed. Experimental data on superheated liquid drop disintegration are also presented. An attempt is undertaken to find similarities between the droplet breakup processes in various systems: (1) liquid drop-gaseous flow, (2) dense liquid drop-light liquid flow. Available data have been collected in order to address specific features of drop acceleration and deformation. The data presented allow comparison of characteristic times of chemical reactions in premixed combustible mixtures with characteristic times of atomization and evaporation in two-phase systems consisting of full drops and gaseous oxidant.
引用
收藏
页码:201 / 265
页数:65
相关论文
共 50 条
  • [1] Droplet breakup limits in simple shear flows
    Abdelgawad, Mohamed Shoieb
    Rosti, Marco Edoardo
    BIORHEOLOGY, 2021, 58 (3-4) : 163 - 163
  • [2] Droplet breakup and viscosity-stratified flows in microchannels
    Cubaud, Thomas
    Jose, Bibin M.
    Darvishi, Samira
    Sun, Ruopeng
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2012, 39 : 29 - 36
  • [3] Numerical simulation of liquid droplet breakup in supersonic flows
    Liu, Nan
    Wang, Zhenguo
    Sun, Mingbo
    Wang, Hongbo
    Wang, Bing
    ACTA ASTRONAUTICA, 2018, 145 : 116 - 130
  • [4] Breakup of a droplet at high velocity impacting a solid surface
    Kuo-Long Pan
    Kun-Cheng Tseng
    Ching-Hua Wang
    Experiments in Fluids, 2010, 48 : 143 - 156
  • [5] Breakup of a droplet at high velocity impacting a solid surface
    Pan, Kuo-Long
    Tseng, Kun-Cheng
    Wang, Ching-Hua
    EXPERIMENTS IN FLUIDS, 2010, 48 (01) : 143 - 156
  • [6] Edge states control droplet breakup in subcritical extensional flows
    Gallino, Giacomo
    Schneider, Tobias M.
    Gallaire, Francois
    PHYSICAL REVIEW FLUIDS, 2018, 3 (07):
  • [7] Droplet breakup in shear and elongation dominated flows in microfluidic devices
    Anna, Shelley L.
    Christopher, Gordon F.
    Noharuddin, Nadia
    MICRO-ELECTRO-MECHANICAL SYSTEMS - 2005, 2005, 7 : 669 - 671
  • [8] Effects of airflow velocity and droplet diameter on the secondary breakup characteristics
    Zhu, Wanli
    Zhao, Ningbo
    Jia, Xiongbin
    Sun, Chengwen
    Zheng, Hongtao
    AIAA Journal, 2021, 59 (08): : 3252 - 3260
  • [9] Effects of Airflow Velocity and Droplet Diameter on the Secondary Breakup Characteristics
    Zhu, Wanli
    Zhao, Ningbo
    Jia, Xiongbin
    Sun, Chengwen
    Zheng, Hongtao
    AIAA JOURNAL, 2021, 59 (08) : 3252 - 3260
  • [10] Droplet impact on sparse hydrophobic pillar surface: Impact phenomena, spreading mode, and droplet breakup
    Zhou, Xin
    Wang, Hong
    Zhang, Qian
    Tian, Ye
    Deng, Qiyuan
    Zhu, Xun
    Ding, Yudong
    Chen, Rong
    Liao, Qiang
    PHYSICS OF FLUIDS, 2022, 34 (11)