期刊文献+

新型固定式消防水炮结构设计及其水射流性能研究(英文) 被引量:3

Structure Design and Analysis of Water Jet Performances of a New Type of Fixed Fire Water Monitor
下载PDF
导出
摘要 为了改善消防水炮的水射流性能,提高其消防灭火效率,设计了一种新型固定式消防水炮,并对其流道能量损失及炮头水流出口速度进行了水力学理论计算。采用Fluent流场仿真软件对炮身内部流体流态进行了仿真分析,得到较好的炮身形状及结构;对消防水炮炮头喷嘴射流性能进行了仿真分析,比较了直流射流和喷雾射流这两种射流方式的效果;最后进行了初步的现场射流实验。仿真结果和实验测试表明:所设计的新型固定式消防水炮能满足实际消防作战使用要求,相关结论可为其它规格和类型的消防水炮设计提供参考依据。 Fire water monitor is widely used to put out fire in the fire fighting. In order to improve water jet performances of a fire water monitor and to enhance its fire fighting efficiency, a new fixed fire water monitor was designed. The channel energy loss and outlet velocity of the fixed fire water monitor were calculated based on the engineering hydraulic theory. The channel flow pattern was simulated using the Computational Fluid Dynamics (CFD), and the better structure channel of the monitor body was also obtained. Meanwhile, the jet influence of the monitor nozzle was simulated. The water jet performances of spray jet and direct jet were also compared. Finally, the field test was also carried out. The simulation results and the test results indicate that the fixed fire water monitor well meets the requirements of fire fighting, and the relevant results can provide some guidance to design other types of fire water monitor.
出处 《机床与液压》 北大核心 2013年第12期15-22,61,共9页 Machine Tool & Hydraulics
基金 National Natural Science Foundation of China(50865004) Educational Commission of Jiangxi Province of China(GJJ11428)
关键词 消防水炮 喷嘴 结构设计 水射流性能 流场仿真 fire water monitor, monitor nozzle, structure design, water jet performance, flow field simulation
  • 相关文献

参考文献1

二级参考文献20

  • 1Yang L Z,Zhou X D,Deng Z H. Fire situation and fire characteristic analysis based on fire statistics of China[J].Fire Safety Journal,2002,(08):785-802.doi:10.1016/S0379-7112(01)00054-6.
  • 2Zhong M H,Fan W C,Liu T M. China:some key technologies and the future developments of fire safety science[J].Safety Science,2004,(07):627-637.doi:10.1016/j.ssci.2003.10.003.
  • 3Guo T N,Fu Z M. The fire situation and progress in fire safety science and technology in China[J].Fire Safety Journal,2007,(03):171-182.doi:10.1016/j.firesaf.2006.10.005.
  • 4James M T,Galien M I. Fire-fighting monitor with remote control[P].US 7,191,964 B2,2007.
  • 5Eric C,Cromwell I N,James M T. Fire fighting monitor[P].US 7,644,777 B2,2010.
  • 6Evan J L,Blockley D. Hydraulically-driven oscillating mechanism,particularly for a fire-fighting monitor[P].EuropeanPatent Application 0061258 A2,1982.
  • 7Hu G L,Liang J X. Design and jet characteristics study of a liquamatic fire water monitor with self-swinging device[J].Current Advances in Materials and Processes,2010.2801-2805.
  • 8Hu G L,Hu A M,Liang J X. Study of the influence rules between structural parameters and jet characteristics of a liquamatic fire water monitor with self-swinging device[J].Applied Mechanics and Materials,2010.1254-1258.
  • 9Kempf D D,Calif S J. Water-driven oscillating montor[P].US 4,789,101,1988.
  • 10Kim D H,Tsao T C. A linearized electrohydraulic servovalve model for valve dynamics sensitivity analysis and control system design[J].Journal of Dynamic Systems,Measurement,and Control,2000,(01):179-187.doi:10.1115/1.482440.

共引文献3

同被引文献33

引证文献3

二级引证文献11

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部