光学仪器, 2017, 39 (6): 84, 网络出版: 2018-01-25   

数字图像技术在颗粒流测量中的应用

Application of digital image technology in granular flows measurement
作者单位
1 上海理工大学 光电信息与计算机工程学院, 上海 200093
2 上海理工大学 医疗器械与食品学院,上海 200093
引用该论文

陈晨, 杨晖, 李然, 陈晓荣, 郑刚. 数字图像技术在颗粒流测量中的应用[J]. 光学仪器, 2017, 39(6): 84.

CHEN Chen, YANG Hui, LI Ran, CHEN Xiaorong, ZHENG Gang. Application of digital image technology in granular flows measurement[J]. Optical Instruments, 2017, 39(6): 84.

参考文献

[1] WESTERWEEL J.Fundamentals of digital particle image velocimetry[J].Measurement Science and Technology,1997,8(12):1379-1392.

[2] LUEPTOW R M,AKONUR A,SHINBROT T.PIV for granular flows[J].Experiments in Fluids,2000,28(2):183-186.

[3] BALDASSARRE A,DE LUCIA M,NESI P,et al.A vision-based particle tracking velocimetry[J].Real-Time Imaging,2001,7(2):145-158.

[4] GDR M.On dense granular flows[J].The European Physical Journal E,2004,14(4):341-365.

[5] 陆坤权,刘寄星.颗粒物质(上)[J].物理,2004,33(9):629-635.

[6] HSIAU S S,WANG P C,TAI C H.Convection cells and segregation in a vibrated granular bed[J].AIChE Journal,2002,48(7):1430-1438.

[7] TAI C H,HSIAU S S.Dynamic behaviors of powders in a vibrating bed[J].Powder Technology,2004,139(3):221-232.

[8] CHOU H T,LEE C F.Cross-sectional and axial flow characteristics of dry granular material in rotating drums[J].Granular Matter,2009,11(1):13-32.

[9] SEIDEN G,THOMAS P J.Complexity,segregation,and pattern formation in rotating-drum flows[J].Reviews of Modern Physics,2011,83(4):1323-1365.

[10] WANG Z W,ZHANG J.Fluctuations of particle motion in granular avalanches-from the microscopic to the macroscopic scales.[J].Soft Matter,2015,11(27):5408-5416.

[11] LIAO C C,HSIAU S S.Influence of interstitial fluid viscosity on transport phenomenon in sheared granular materials[C]∥Powsers and grains 2009:proceedings of the 6th international conference on micromechanics of granular media.[S.l.]:AIP,2009:1023-1026.

[12] JAIN N,OTTINO J M,LUEPTOW R M.Effect of interstitial fluid on a granular flowing layer[J].Journal of Fluid Mechanics,2004,508:23-44.

[13] STEINGART D A,EVANS J W.Measurements of granular flows in two-dimensional hoppers by particle image velocimetry.Part I:experimental method and results[J].Chemical Engineering Science,2005,60(4):1043-1051.

[14] SLOMINSKI C,NIEDOSTATKIEWICZ M,TEJCHMAN J.Application of particle image velocimetry(PIV) for deformation measurement during granular silo flow[J].Powder Technology,2007,173(1):1-18.

[15] ECKART W,GRAY J M N T,HUTTER K.Particle image velocimetry(PIV) for granular avalanches on inclined planes[M]∥HUTTER K,KIRCHNER N.Dynamic response of granular and porous materials under large and catastrophic deformations.Berlin Heidelberg:Springer,2003:195-218.

[16] SHIRSATH S S,PADDING J T,CLERCX H J H,et al.Cross-validation of 3D particle tracking velocimetry for the study of granular flows down rotating chutes[J].Chemical Engineering Science,2015,134:312-323.

[17] XU X R,SUN Q C,JIN F,et al.Measurements of velocity and pressure of a collapsing granular pile[J].Powder Technology,2016,303:147-155.

[18] ZHANG W,WANG Y,LEE S J.Simultaneous PIV and PTV measurements of wind and sand particle velocities[J].Experiments in Fluids,2008,45(2):241-256.

[19] CHUNG Y C,HSIAU S S,LIAO H H,et al.An improved PTV technique to evaluate the velocity field of non-spherical particles[J].Powder Technology,2010,202:151-161.

[20] CHUNG Y C,HSIAU S S,LIAO H H,et al.An improved PTV technique to evaluate the velocity field of non-spherical particles[J].Powder Technology,2010,202(1/3):151-161.

[21] 许宏庆,ADRIAN R J.粒子像测速技术(PIV)和激光散斑测速技术(LSV)的实验研究[J].气动实验与测量控制,1995,9(2):9-15.

[22] 宋磊磊,孔平,于小强,等.一种用于研究激光散斑血流成像方法的测试系统[J].光学仪器,2015,37(2):107-110,115.

[23] 马生,杨晖,李然,等.基于动态散斑的颗粒流模式转变机理研究[J].光学仪器,2016,38(2):159-166.

[24] ATOR J T.Image-velocity sensing with parallel-slit reticles[J].Journal of the Optical Society of America,1963,53(12):1416-1422.

[25] AIZU Y,ASAKURA T.Principles and development of spatial filtering velocimetry[J].Applied Physics B,1987,43(4):209-224.

[26] ITAKURA Y,SUGIMURA A,TSUTSUMI S.Amplitude-modulated reticle constructed by a liquid crystal cell array[J].Applied Optics,1981,20(16):2819-2826.

[27] ITAKURA Y,SUGIMURA A,TSUTSUMI S.Amplitude-modulated reticle constructed by a liquid crystal cell array[J].Applied Optics,1981,20(16):2819-2826.

[28] KITAGAWA Y,HAYASHI A,MINAMI S.Particle velocity measurements using an optical fiber array spatial filter[J].Transactions of the Society of Instrument and Control Engineers,1991,27(10):1041-1043.

[29] BERGELER S,KRAMBEER H.Novel optical spatial filtering methods based on two-dimensional photodetector arrays[J].Measurement Science and Technology,2004,15(7):1309-1315.

[30] XU C L,LI J,WANG S M.A spatial filtering velocimeter for solid particle velocity measurement based on linear electrostatic sensor array[J].Flow Measurement and Instrumentation,2012,26:68-78.

[31] LI J,XU C L,WANG S M.Spatial filtering characteristics of electrostatic sensor matrix for local velocity measurement of pneumatically conveyed particles[J].Measurement,2014,53:194-205.

[32] PETRAK D.Simultaneous measurement of particle size and particle velocity by the spatial filtering technique[J].Particle & Particle Systems Characterization,2002,19(6):391-400.

[33] FIEDLER O,WERTHER J,LABAHN N,et al.Measurement of local particle velocities and velocity distributions in gas-solid flows by means of the spatial filter method[J].Powder Technology,1997,94(1):51-57.

[34] OBOKATA T.Application of a spatial filter velocimeter to the two phase flows in a Spark Ignition(SI)[J]∥Particle Image Displacement Velocimetry.[S.l.]:STI,1988.

[35] HOSOKAWA S,MATSUMOTO T,TOMIYAMA A.Measurement of bubble velocity using spatial filter velocimetry[J].Experiments in Fluids,2013,54(6):1538.

[36] ITAKURA Y,SUWA H,TAKEUCHI M.Measurement of surface velocity of debris flows by spatial filtering velocimetry[J].Transactions of the Society of Instrument and Control Engineers,1989,25(4):504-506.

[37] 宋国炜,詹义正,陆晶,等.岸坡稳定分析中休止角的运用[J].人民黄河,2008,30(8):23-25.

[38] 丁国栋.风沙物理学[M].2版.北京:中国林业出版社,2010:57-58.

[39] 董玉秀,宋珍鹏,崔素娟.对休止角测定方法的讨论[J].中国药科大学学报,2008,39(4):317-320.

[40] ILELEJI K E,ZHOU B.The angle of repose of bulk corn stover particles[J].Powder Technology,2008,187(2):110-118.

[41] JAEGER H M,LIU C H,NAGEL S R.Relaxation at the angle of repose[J].Physical Review Letters,1989,62(1):40-43.

[42] DU PONT S C,GONDRET P,PERRIN B,et al.Wall effects on granular heap stability[J].EPL(Europhysics Letters),2003,61(4):492-498.

[43] HORNBAKER D J,ALBERT R,ALBERT I,et al.What keeps sandcastles standing[J].Nature,1997,387(6635):765.

[44] TEGZES P,ALBERT R,PASKVAN M,et al.Liquid-induced transitions in granular media[J].Physics Review E,1999,60(5):5823-5826.

[45] AGUIRRE M A,NERONE N,CALVO A,et al.Influence of the number of layers on the equilibrium of a granular packing[J].Physical Review E,2000,62(1):738-743.

[46] ALBERT R,ALBERT I,HORNBAKER D,et al.Maximum angle of stability in wet and dry spherical granular media[J].Physical Review E,1997,56(6):R6271-R6274.

[47] KUDROLLI A.Angle of repose and segregation in cohesive granular matter[C]∥Annual APS March meeting.Indianapolis,Indiana:Indiana Convention Center,2002.

[48] TENNAKOON S G K,BEHRINGER R P.Vertical and horizontal vibration of granular materials:coulomb friction and a novel switching state[J].Physical Review Letters,1998,81(4):794-797.

[49] GRASSELLI Y,HERRMANN H J.On the angles of dry granular heaps[J].Physica A:Statistical Mechanics and Its Applications,1997,246(3/4):301-312.

[50] 刘小燕,周生健,张小刚.基于图像处理的回转窑物料休止角检测方法[J].控制工程,2009,16(4):498-501.

[51] 张瑶瑶.基于图像反馈的回转筒物料运动状态控制系统研究[D].长沙:湖南大学,2012.

[52] 周向玲,麦麦提吐逊·阿布都热依木,俞胜清,等.自然沙堆积的静止角研究[J].山东大学学报:理学版,2015,50(7):89-94.

[53] 田晓红,李光涛,张淑丽.谷物自然休止角测量方法的探究[J].粮食加工,2010,35(1):68-71.

陈晨, 杨晖, 李然, 陈晓荣, 郑刚. 数字图像技术在颗粒流测量中的应用[J]. 光学仪器, 2017, 39(6): 84. CHEN Chen, YANG Hui, LI Ran, CHEN Xiaorong, ZHENG Gang. Application of digital image technology in granular flows measurement[J]. Optical Instruments, 2017, 39(6): 84.

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