[1] Chen Jiong, Zheng Yongguang, Hu Fei. Isolating the coherent structure in atmospheric turbulence in the rough urban canopy layer by using continuous wavelet transform [J]. Chinese Journal of Atmospheric Sciences, 2003, 27(2): 182-190(in Chinese).
陈炯, 郑永光, 胡非. 用连续子波变换提取城市冠层大气湍流的相干结构 [J]. 大气科学, 2003, 27(2): 182-190.
[2] Hu Fei. Atmospheric Boundary Layer Eddy Structure Identification by Orthonormal Wavelet Expansion [J]. Climatic and Environmental Research, 1998, 3(2): 97-104(in Chinese).
胡非. 大气边界层湍流涡旋结构的小波分解 [J]. 气候与环境研究, 1998, 3(2): 97-104.
[3] Wang Jiansheng, Wang Chenjian, Li Xun. The velocity and temperature properties of coherent structure in turbulence [J]. Journal of Experimental Mechanics, 2002, 17(2): 242-248(in Chinese).
汪键升, 王晨键, 李汛. 湍流相干结构的速度与温度特性 [J]. 实验力学, 2002, 17(2): 242-248.
[4] Liu Haifeng, Wu Tao, Wang Fuchen, et al. Coherent Structure of Turbulence Based on Wavelet Analysis (Ⅰ) Determining Coherent With Energy Maxima Criterion [J]. Journal of Chemical Industry and Engineering (China), 2000, 51(6): 761-765(in Chinese).
刘海峰, 吴韬, 王辅臣, 等. 应用小波分析研究湍流相干结构(Ⅰ)小波分析辨识相干结构的能量最大准则 [J]. 化工学报, 2000, 51(6): 761-765.
[5] Liu Shihe. Orthogonal decomposition and low dimensional approximation of turbulent structures and identification of turbulent coherent patterns [J]. Journal of Wuhan University of Hydraulic and Electric Engineering, 2000, 33(2): 1-6(in Chinese).
刘士和. 湍流结构的正交分解与低阶近似及湍流相干模式的识别 [J]. 武汉水利电力大学学报, 2000, 33(2): 1-6 [6]Mahrt L. Intermittency of atmospheric turbulence [J]. J. Atmos. Sci., 1989, 46(1): 79-95.
[7] Lewalle J. Decomposition of mixing layer turbulence into coherent structures and background fluctuations [J]. Flow Turb.Combust., 2000, 64(4): 301-328. |