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Use of low-frequency signals to improve imaging quality under high-velocity basalt 被引量:1
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作者 She Deping Guan Luping +1 位作者 Xu Ying Li Pei 《Applied Geophysics》 SCIE CSCD 2006年第2期112-119,共8页
Wave equation wave field numerical modeling technology is applied to the observation that deep layer imaging is difficult below a screening layer of high-velocity basalt. Three simple high-velocity basalt models are d... Wave equation wave field numerical modeling technology is applied to the observation that deep layer imaging is difficult below a screening layer of high-velocity basalt. Three simple high-velocity basalt models are designed on the basis of basalt formation characteristics. The analysis of deep-layer reflection seismic signal energy shows that lowfrequency seismic signals are capable of both penetrating the thin high-velocity basalt layer and reducing the diffraction noise caused by the rough surfaces. The simulation experiment of a complete 2D basalt model confirms that the low-frequency signals can be used to boost the quality of deep-layer imaging under the high-velocity basalt layer and achieve good results in low-pass filter processing of actual data. 展开更多
关键词 high-velocity screening layer BASALT LOW-FREQUENCY penetrating force and numerical modeling
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Insertion and Pull Behavior of Worker Honeybee Stinger 被引量:1
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作者 Jintian Ling Lelun Jiang +4 位作者 Keyun Chen Chengfeng Pan Yan Li Wei Yuan Liang Liang 《Journal of Bionic Engineering》 SCIE EI CSCD 2016年第2期303-311,共9页
Worker honeybee pierces animal or human skin with its ultra-sharp stinger and injects venom to defend itself. The insertion behavior is a painless transdermal drug delivery process. In this study, Apis cerana cerana w... Worker honeybee pierces animal or human skin with its ultra-sharp stinger and injects venom to defend itself. The insertion behavior is a painless transdermal drug delivery process. In this study, Apis cerana cerana worker honeybee was chosen as the research object. The geometry and structure of the stinger were observed by the Scanning Electron Microscope (SEM). High-speed video imaging technique was adopted to observe the stinger insertion and pull behavior of honeybee. The skin insertion, pull-out, in-plane buckling and out-of-plane bending forces of honeybee stinger were tested by a self-developed mechanical loading equipment. Results showed that the honeybee stinger pierces directly into skin without frequent vibration. The pull-out force (average 136.04 mN) was two orders of magnitude higher than the penetration force (average 1.34mN). Compared with the penetration force, the in-plane buckling force (average 6.72 mN) was in the same order of magnitude. The result of out-of-plane bending test showed that the stinger was elastic and it could recover after bending. The excellent geometry and structure of honeybee stinger will provide an inspiration for the further improved design ofmicroneedle-based transdermal drug delivery system. 展开更多
关键词 stinger mechanical loading penetration force pull-out force barbs
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