期刊文献+

同轴数字全息用于铝燃烧颗粒的测量研究 被引量:5

Measurement of Particle Size of Aluminum Combustion in Solid Propellant Using Digital In-line Holography
下载PDF
导出
摘要 为获得三维空间范围内固体推进剂铝颗粒动态燃烧的粒径信息,采用同轴数字全息技术对固体推进剂中铝动态燃烧颗粒粒径分布的测量进行了研究。在常温常压下,采用两种放大倍数(1.1倍和2.7倍)的成像系统对两种推进剂进行了全息测量,分别从两种推进剂铝燃烧颗粒的全息重建图像中提取了所有铝燃烧颗粒的粒径信息,采用Log-Normal多峰拟合方法获得了颗粒粒径分布的详细参数。实验结果表明:在颗粒重建全息图的基础上,采用插值方法极大地提高了颗粒粒径的测量精度,在10μm^200μm内,相对测量误差可降低至0.4%。该方法能够清晰获得10μm^900μm内所有铝燃烧颗粒粒径分布和平均粒径等信息,说明该方法适用于固体推进剂铝颗粒燃烧的精细化测量。 In order to obtain the particle sizes of three-dimensional dynamic combustion of aluminum parti-cles in the solid propellant,a new method used digital in-line holography(DIH)techniques for measuring thesize of aluminum particle during solid propellants combustion was studied.Under normal pressure and tempera-ture,two propellants were measured with two magnification times(1.1 times and 2.7 times)DIH system,the par-ticle size information of all aluminum combustion particles was extracted from the holographic reconstructed im-age,and the detailed parameters of particle size distribution were obtained by Log-Normal multi-peak fittingmethod.The experimental results show that:Based on the particle reconstruction hologram image,the measure-ment accuracy of particle size is greatly improved by interpolation method,and the relative measurement errorcan be reduced to 0.4%in the range of 10μm^200μm.The method can clearly obtain the information such asparticle size distribution and average particle size of all the aluminum combustion particles in the range of 10μm^900μm,and it is proved that this method is suitable for refine measurement of the aluminum particles combus-tion in solid propellant.So,it can provide fine measuring means and important data support for inform aluminumand agglomeration combustion model and evaluate new propellant formulations.
作者 金秉宁 王志新 刘佩进 徐庚 JIN Bing-ning;WANG Zhi-xin;LIU Pei-jin;XU Geng(National Key Laboratory of Combustion,Flow and Thermo-Structure,Northwestern Polytechnical University,Xi’an 710072,China;Shanghai Space Propulsion Technology Research Institute,Shanghai 201109,China)
出处 《推进技术》 EI CAS CSCD 北大核心 2019年第6期1399-1408,共10页 Journal of Propulsion Technology
基金 国家自然科学基金(51706186)
关键词 固体推进剂 铝燃烧 同轴数字全息 图像重建 概率密度粒径分布 Solid propellant Aluminum combustion Digital in-line holography(DIH) Image reconstruction Particle distribution function(PDF)
  • 相关文献

参考文献7

二级参考文献45

  • 1浦世亮,Denis Lebrun,王勤辉,岑可法,任宽方.激光数码全息测量技术在循环流化床中的应用[J].中国电机工程学报,2005,25(15):111-115. 被引量:11
  • 2王宁飞,陈龙,赵崇信,李上文.固体火箭燃烧室内微粒分布的实验研究[J].推进技术,1995,16(4):24-27. 被引量:18
  • 3方丁酉.两相流体力学[M].北京:国防科技大学出版社,1988..
  • 4Triballier K, the spraytec Dumouchel C, Cousin J performances : influence A technical study on of multiple light scattering and multi modal drop-size distribution measurements. Experiments in Fluids, 2003, 35 (4) : 347 -356
  • 5Boothby C, Daniel J, Adam S, Dyson J. Use of a laser diffraction particle sizer for the measurement of mean diameter of multicellular tumor spheroids. In Vitro Cellular Developmental Biology Plant, 1989, 25 ( 10 ): 946 -950
  • 6Gao H, Guo L, Zhang X. Liquid-solid separation phenomena of two phase turbulent flow in curved pipes. International Journal of Heat and Mass Transfer, 2002, 45 (25):4995-5005
  • 7Allen T. Particle Size Measurement. Vol 1. London: Chapman & Hall, 1997
  • 8Durst F, Zare M. Laser Doppler measurements in two- phase flows//Proceedings of LDA-75 Symposium,
  • 9Bachalo W D, Houser M J. Phase/Doppler spray analyzer for simultaneous measurements of drop size and velocity distributions. Opt. Eng., 1984, 23:583-590
  • 10Pu S L, Allano D, Patte-Rouland B, Malek M, Lebrun D, Cen K F. Particle field characterization by digital in-line holography: 3D location and sizing. Experiments in Fluids, 2005, 39 (1): 1- 9

共引文献423

同被引文献29

引证文献5

二级引证文献7

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