首页> 外文期刊>Fire Technology >Numerical Modelling of Internal Flow in Water Mist Injectors: Effect of Nozzle Geometry and Operating Conditions
【24h】

Numerical Modelling of Internal Flow in Water Mist Injectors: Effect of Nozzle Geometry and Operating Conditions

机译:水雾喷射器内部流动的数值模型:喷嘴几何形状和工作条件的影响

获取原文
获取原文并翻译 | 示例
       

摘要

Water mist fire fighting has achieved a well established position in fire protection for industrial and civil applications. The performances of water mist nozzles, largely used in water mist production, are deeply influenced by the internal nozzle flow characteristics and CFD modelling is a powerful tool to analyse them in details. The paper focuses on the numerical investigation of the internal flow in pressure swirl injectors for water mist applications. 3D large eddy simulations based on the Volume-Of-Fluid methodology have been implemented. The flow is assumed to be incompressible and under isothermal non-reacting conditions. Validation of the model against available experimental data is performed with satisfactory results. The effect of internal nozzle geometry on the injector behaviour is investigated by modifying the inclined swirling channels (five configurations) and the injection pressure in the range 5 to 320 bar. The effect of the size of cylindrical and conical swirl chambers are also independently investigated. Three different flow regimes can be distinguished as a function of imposed swirl and injection pressure and a map is reported to clarify the effect of these parameters. When a stable hollow cone spray is formed the mass flow rate fluctuations are < 5%, corresponding to a discharge coefficient between 0.34 and 0.50. When no air core is present in the discharge hole, mass flow rate fluctuations as high as 16% are observed, which correspond to discharge coefficient as high as 0.7. A detailed quantification of in-nozzle characteristics, like swirl number and momentum flux distribution along the nozzle and lamella thickness in the discharge hole, is reported and discussed, with particular emphasis on stability and transient behaviour of the atomiser internal flow, which represents the main novelty of the present study.
机译:水雾灭火在工业和民用应用的防火方面已确立了良好的地位。大量用于水雾生产的水雾喷嘴的性能受到内部喷嘴流动特性的深刻影响,CFD建模是详细分析它们的有力工具。本文重点研究了用于水雾应用的压力旋流喷射器内部流动的数值研究。已经实现了基于流体体积方法的3D大涡模拟。假定该流动是不可压缩的,并且处于等温非反应条件下。根据可用的实验数据对模型进行验证,结果令人满意。通过在5至320 bar的范围内修改倾斜的涡流通道(五个配置)和喷射压力,研究了内部喷嘴几何形状对喷射器性能的影响。圆柱和圆锥形涡流室的尺寸影响也可以独立研究。可以根据所施加的旋流和喷射压力来区分三种不同的流态,并报告一个图以阐明这些参数的影响。当形成稳定的空心锥形喷雾时,质量流量波动<5%,对应于排放系数0.34至0.50。当排气孔中不存在空芯时,观察到质量流量波动高达16%,这对应于高达0.7的排放系数。报告并讨论了喷嘴内特性的详细量化,如沿喷嘴的旋流数和动量通量分布以及排放孔中的薄层厚度,尤其着重于雾化器内部流动的稳定性和瞬态行为。本研究的新颖性。

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