期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
湍流状态下超疏水表面流场减阻特性数值仿真研究 被引量:4
1
作者 宋东 胡海豹 宋保维 《空气动力学学报》 EI CSCD 北大核心 2012年第2期233-237,共5页
通过对湍流状态下具有特定微观尺寸的超疏水表面流场进行数值仿真计算,对超疏水表面流场的减阻特性进行了分析。针对超疏水表面矩形微观形貌特点,计算域采用结构化网格进行划分,采用VOF多相流模型,Realizable湍流模型,对超疏水表面流场... 通过对湍流状态下具有特定微观尺寸的超疏水表面流场进行数值仿真计算,对超疏水表面流场的减阻特性进行了分析。针对超疏水表面矩形微观形貌特点,计算域采用结构化网格进行划分,采用VOF多相流模型,Realizable湍流模型,对超疏水表面流场进行仿真。结果表明:受微观形貌的影响,超疏水表面在宏观上的壁面滑移、微观凹坑处的低剪应力和近壁面的低湍流度是其具有减阻特性的重要原因;超疏水表面减阻特性受凹坑内空气体积比影响很大,但是在凹坑内全充满液体条件下,依然具有减阻效果。 展开更多
关键词 湍流 超疏水表面 减阻 滑移 空气体积比
下载PDF
Properties of an improved Gabor wavelet transform and its applications to seismic signal processing and interpretation
2
作者 Ji Zhan-Huai Yan Sheng-Gang 《Applied Geophysics》 SCIE CSCD 2017年第4期529-542,621,共15页
This paper presents an analytical study of the complete transform of improved Gabor wavelets (IGWs), and discusses its application to the processing and interpretation of seismic signals. The complete Gabor wavelet ... This paper presents an analytical study of the complete transform of improved Gabor wavelets (IGWs), and discusses its application to the processing and interpretation of seismic signals. The complete Gabor wavelet transform has the following properties. First, unlike the conventional transform, the improved Gabor wavelet transform (IGWT) maps time domain signals to the time-frequency domain instead of the time-scale domain. Second, the IGW's dominant frequency is fixed, so the transform can perform signal frequency division, where the dominant frequency components of the extracted sub-band signal carry essentially the same information as the corresponding components of the original signal, and the sub- band signal bandwidth can be regulated effectively by the transform's resolution factor. Third, a time-frequency filter consisting of an IGWT and its inverse transform can accurately locate target areas in the time-frequency field and perform filtering in a given time-frequency range. The complete IGW transform's properties are investigated using simulation experiments and test cases, showing positive results for seismic signal processing and interpretation, such as enhancing seismic signal resolution, permitting signal frequency division, and allowing small faults to be identified. 展开更多
关键词 Seismic signal inverse transform Gabor wavelet transform FAULTS RESOLUTIONS instantaneous phase
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部