Please wait a minute...
大学物理实验, 2023, 36(4): 37-40     https://doi.org/10.14139/j.cnki.cn22-1228.2023.04.008
  本期目录 | 过刊浏览 | 高级检索 |
利用多普勒效应测量液体流速的研究
李文清,郭松青,张小娟 * ,霍运通 ** ,张瑞琳 ** ,徐雅菁 ** ,夏嘉一 ** ,张永恒 **
中国民航大学 理学院,天津 300300
Research on Measuring Liquid Velocity by Doppler Effect
LI Wenqing,GUO Songqing,ZHANG Xiaojuan * ,HUO Yuntong ** ,ZHANG Ruilin ** ,XU Yajing ** ,XIA Jiayi ** ,ZHANG Yongheng **
下载:  PDF (888KB) 
输出:  BibTeX | EndNote (RIS)      
摘要 

研究了利用多普勒效应进行液体流速的测量。将超声光栅测超声波的原理和多普勒效应巧妙结合,由于超声波在恒定流动液体中传播时入射波和反射波的频率不同,因而测得上述状态下两个频率的差值即可得液体的流速。这为液体流速的测量提供了新的思路和方法,丰富了普通物理实验教学内容,增加了实验创新方案,在启发实验创新设计思维等方面具有借鉴意义。

服务
把本文推荐给朋友
加入引用管理器
E-mail Alert
RSS
作者相关文章
李文清
郭松青
张小娟
霍运通
张瑞琳
徐雅菁
夏嘉一
张永恒
关键词:  多普勒效应  超声光栅  液体流速     
Abstract: 

The experiment studies a method of measuring liquid velocity by Doppler effect in this text.This method is an ingenious combination of the principle of the measurement of ultrasonic waves by ultrasonic gratings and the Doppler effect.The liquid velocity can be measured by the frequency differential between the incident wave and the reflected wave generated by ultrasonic waves propagating in a constant fluid environment.It provides a new idea and method for the measurement of liquid velocity,which will enrich experimental teaching content and increase experimental innovation scheme,and which can be used for enlightening the innovative design thinking of experiment.

Key words:  Doppler effect    ultrasonic grating    liquid velocity
                    发布日期:  2023-08-25     
ZTFLH:  O 4-33  
引用本文:    
李文清, 郭松青, 张小娟 , 霍运通 , 张瑞琳 , 徐雅菁 , 夏嘉一 , 张永恒 . 利用多普勒效应测量液体流速的研究 [J]. 大学物理实验, 2023, 36(4): 37-40.
LI Wenqing, GUO Songqing, ZHANG Xiaojuan , HUO Yuntong , ZHANG Ruilin , XU Yajing , XIA Jiayi , ZHANG Yongheng . Research on Measuring Liquid Velocity by Doppler Effect . Physical Experiment of College, 2023, 36(4): 37-40.
链接本文:  
http://dawushiyan.jlict.edu.cn/CN/10.14139/j.cnki.cn22-1228.2023.04.008  或          http://dawushiyan.jlict.edu.cn/CN/Y2023/V36/I4/37
[1] 宋羽飞 , 张 城 , 王昊科 , 何苏红 , 龚艳春 . 对多普勒效应验证实验仪器的改进 [J]. 大学物理实验, 2023, 36(2): 91-94.
[1] . [J]. Physical Experiment of College, 2020, 33(1): 0 .
[2] . [J]. Physical Experiment of College, 2020, 33(1): 0 .
[3] WU Ming, ZENG Hong, ZHANG Wenpeng, ZHANG Yuanwei, DAI Zhenbing. Theoretical and Experimental Research of A zimuthal-Radial Pendulum [J]. Physical Experiment of College, 2020, 33(1): 1 -6 .
[4] LIU Weiwei, SUN Qing, LIU Chenglin. Research on Selection of Critical Magnetization Current for Measuring Charge-Mass Ratio of Electron by Magnetron Controlling [J]. Physical Experiment of College, 2020, 33(1): 7 -9 .
[5] DENG Li, LIU Yang, ZHANG Hangzhong, ZHOU Kewei, ZHAO guoru, WEI luanyi. MATLAB simulation of Fourier transform of Gaussian beam and the spatial filtering effects basing on 4F optical imaging system [J]. Physical Experiment of College, 2020, 33(1): 10 -16 .
[6] MA Kun. Experiment Study on the Measuring Young' s Modulus by Stretching [J]. Physical Experiment of College, 2020, 33(1): 17 -20 .
[7] FEI Xianxiang, CHEN Chunlei, WANG Wenhua, SHI Wenqing, HUANG Cunyou. Design of Lens Group Focal Length Measurement System Based on Object-Image Parallax Comparison [J]. Physical Experiment of College, 2020, 33(1): 21 -24 .
[8] LI Chunjiang, LI Luyu, YANG Jinglei, LI Tingrong, XIANG Wenli. A New Method for Simple and Rapid Measurement of Refractive Index [J]. Physical Experiment of College, 2020, 33(1): 25 -28 .
[9] WANG Cuiping, YAO Mengyu, YE Liu, LI Aixia, ZHANG Ziyun, DAI Peng. Progress and Applications of Electron Spin Resonance in Biology [J]. Physical Experiment of College, 2020, 33(1): 29 -33 .
[10] CHEN Yingmo, SHEN Siyi, WANG Jie. Study on the Characteristics of Silicon Photocells [J]. Physical Experiment of College, 2020, 33(1): 34 -36 .
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed