Droplet characterization of a pressure-swirl atomizer by means of high-fidelity modelling based on DNS simulations

被引:2
|
作者
Salvador, F. J. [1 ]
Marti-Aldaravi, P. [1 ]
Lozano, A. [1 ]
Taghavifar, H. [2 ]
Nemati, A. [3 ]
机构
[1] Univ Politecn Valencia, CMT Motores Termicos, Camino de Vera S N, E-46022 Valencia, Spain
[2] UiT Arctic Univ Norway, Dept Technol & Safety, Tromso, Norway
[3] Tech Univ Denmark, Dept Energy Convers & Storage, Fysikvej, DK-2800 Lyngby, Denmark
关键词
Atomization; DNS; Two-phase flow; Spray; Pressure-swirl; Droplet; NUMERICAL-SIMULATION; ADAPTIVE SOLVER; SURFACE-TENSION; ATOMIZATION; VISCOSITY; FLOW;
D O I
10.1016/j.fuel.2023.130169
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Liquid injection optimization is key to enhance the efficiency of many processes in a wide variety of fields. Combustion processes are one of the most challenging ones, due to the direct emissions and greenhouse gases implications. This work aims at studying the external two-phase flow produced when injecting fuel with a pressure-swirl atomizer in an operating condition typical of an academic burner. The main objective is to have a better comprehension of the atomization process in this type of nozzles, getting information on the droplets' characteristic size and how they are produced and arranged. For that regard, a high-fidelity Direct Numerical Simulation (DNS) is used to analyse the very near field of the spray produced, where primary atomization takes place. Pre-processing tasks are explained in terms of geometry comprehension, computational domain and mesh selection, boundary conditions and main simulation setup parameters. Then, through post-processing tasks, both quantitative and qualitative results are extracted, which will serve to validate the modelling against previous works and to provide novel data about the atomization process in pressure-swirl atomizers. Results show that smaller droplets predominate over bigger ones as expected, since just the first millimetres of the spray are modelled. However, there is a clear trend of droplet's size growing when increasing both axial and radial distances, indicating coalescence in regions relatively far from the nozzle. The achieved results, together with results from simulating the injection event with other fuels or at other operating conditions, can be used to develop a phenomenological model able to predict how atomization is going to be as a function of the non-dimensional Reynolds and Weber numbers that could be implemented in lower-resolution RANS and LES codes for modelling atomization. This investigation proves that it is possible to faithfully predict the near field of these sprays through DNS simulation, getting similar trends to those of the experimental data, and that the study through numerical models is necessary in the investigation process. The information they can bring, together with the experimental knowledge, can make a good synergy that will eventually lead to a better understanding of this type of atomizers.
引用
收藏
页数:14
相关论文
共 50 条
  • [1] High-fidelity simulations of a rotary bell atomizer with electrohydrodynamic effects
    Krisshna, Venkata
    Liu, Wanjiao
    Owkes, Mark
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2023, 168
  • [2] HIGH-SPEED RADIOGRAPHY AND VISIBLE LIGHT EXTINCTION OF A PRESSURE-SWIRL ATOMIZER
    Kastengren, A. L.
    ATOMIZATION AND SPRAYS, 2018, 28 (01) : 47 - 63
  • [3] Investigation on mean and fluctuation velocity distribution of droplet from a double line pressure-swirl atomizer with PDPA
    Chen, Jun
    Ji, Hong-Hu
    Zhang, Bao-Cheng
    Hangkong Dongli Xuebao/Journal of Aerospace Power, 2010, 25 (11): : 2464 - 2471
  • [4] Spray characterization of an air-assist pressure-swirl atomizer injecting high-viscosity Jatropha oils
    Fan, Yong
    Hashimoto, Nozomu
    Nishida, Hiroyuki
    Ozawa, Yasushi
    FUEL, 2014, 121 : 271 - 283
  • [5] 2D and 3D numerical modelling of internal flow of Pressure-swirl atomizer
    Maly, Milan
    Slama, Jaroslav
    Sapik, Marcel
    Jedelsky, Jan
    EXPERIMENTAL FLUID MECHANICS 2018 (EFM18), 2019, 213
  • [6] EXTRACTION OF DROPLET GENEALOGIES FROM HIGH-FIDELITY ATOMIZATION SIMULATIONS
    Rubel, Clark
    Owkes, Mark
    ATOMIZATION AND SPRAYS, 2019, 29 (08) : 709 - 739
  • [7] SWIRLING FLOW AND BREAKUP CHARACTERISTICS AT HIGH REYNOLDS NUMBER IN A PRESSURE-SWIRL ATOMIZER FOR ARTIFICIAL SNOWMAKING
    Dong, Peiwen
    Zhang, Bowen
    Liu, Guoqiang
    Wu, Haifeng
    Yan, Gang
    Wang, Ruixiang
    ATOMIZATION AND SPRAYS, 2023, 33 (06) : 41 - 61
  • [8] High-fidelity simulations of bubble, droplet and spray formation in breaking waves
    Wang, Zhaoyuan
    Yang, Jianming
    Stern, Frederick
    JOURNAL OF FLUID MECHANICS, 2016, 792 : 307 - 327
  • [9] Editorial: Data-driven modelling and high-fidelity simulations
    Michelassi, Vittorio
    He, Li
    JOURNAL OF THE GLOBAL POWER AND PROPULSION SOCIETY, 2021,
  • [10] High-Fidelity Simulations of Pressure-Gain Combustion Devices Based on Detonations
    Kailasanath, K.
    Schwer, D. A.
    JOURNAL OF PROPULSION AND POWER, 2017, 33 (01) : 153 - 162