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作 者:王磊 朱威 杨慧慧 WANG Lei;ZHU Wei;YANG Huihui(National Energy Jiangsu Electric Power Engineering Technology Co.,Ltd.,Zhenjiang Jiangsu 212006,China;School of Energy and Environment,Southeast University,Nanjing Jiangsu 210096,China)
机构地区:[1]国能江苏电力工程技术有限公司,江苏镇江212006 [2]东南大学能源与环境学院,江苏南京210096
出 处:《电子器件》2023年第5期1455-1460,共6页Chinese Journal of Electron Devices
摘 要:在流场显示测量技术中,粒子图像测速(Particle Image Velocimetry,PIV)技术占有相当重要的地位。简要介绍了粒子图像测速的基本原理,提出了一种基于快速傅里叶变化(FFT)的互相关改进算法,以多帧连续互相关和窗口迭代缩小的方法,来实现互相关函数的运算,使得结果更加贴合实际、分辨率更高。首次提出了将测量监视图像与实际空间尺寸一一对应转换的全局标定法,结合改进后的算法,可在河渠场流速测算中得到较好的应用。计算所得流速场速度与实际水流流速的相对误差可保证在6%以内。For the flow field display measurement technology,the particle image velocimetry technology occupies a very important position.The basic principle of particle image velocimetry is briefly introduced,and an improved cross-correlation algorithm based on fast Fourier transform(FFT)is proposed.The calculation of the cross-correlation function is realized by using the method of multi-frame continuous cross-correlation and window iterative reduction,and the result is more realistic and has a higher resolution.A global calibration method for the one-to-one conversion between the measurement monitoring image and the actual space size is proposed.Combined with the improved algorithm,it can be well applied in the flow velocity measurement of the canal field.The relative error between the calculated velocity field velocity and the actual flow velocity can be guaranteed to be within 6%.
关 键 词:粒子图像测速 流场测速 快速傅里叶变换 全局标定法
分 类 号:TH81[机械工程—仪器科学与技术]
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