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军队审计在维护军事经济安全方面的作用 被引量:5
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作者 俞远 《军事经济研究》 2012年第2期52-54,共3页
军队审计作为军队的一项重要监督制度,是维护军事经济安全的重要手段,具有重要的政治意义、军事意义和经济意义。军队审计在维护军事经济安全的过程中,主要发挥类似人体免疫系统的"防御"、"自稳"、"监视"... 军队审计作为军队的一项重要监督制度,是维护军事经济安全的重要手段,具有重要的政治意义、军事意义和经济意义。军队审计在维护军事经济安全的过程中,主要发挥类似人体免疫系统的"防御"、"自稳"、"监视"等功能,并通过实现"四个拓展"、落实"三个有效"、加强协作与联动等方式强化这些功能的效果,履行维护军事经济安全方面的责任。 展开更多
关键词 军队审计 军事经济安全 防御功能 自稳功能
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Stability and self-adaption character of turbulence coherent structure in narrow-deep river bend 被引量:7
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作者 BAI YuChuan JI ZiQing XU HaiJue 《Science China(Technological Sciences)》 SCIE EI CAS 2012年第11期2990-2999,共10页
In a meandering fiver, a certain scale of turbulent vortex dominates the development of fiver morphology, making the river bend with s particular curvature. This kind of vortex is denoted as "bend-forming vortex". T... In a meandering fiver, a certain scale of turbulent vortex dominates the development of fiver morphology, making the river bend with s particular curvature. This kind of vortex is denoted as "bend-forming vortex". The coordinated relationship of bend-forming vortex and meandering fiver channel is then known as "self-adaption feature" of rivers. With these two concepts, this paper investigated the stability and self-adaption character of coherent vortex in the U-shape river bend with a constant curvature. On the basis of fluid mechanics theory and in consideration of turbulent coherent vortex as disturbance, the growth rate and the wave number response range of coherent vortex in meandering rivers with different curvatures were calculated in this paper. Moreover, the responses of different scales of coherent turbulence structure to river bend parameters were analyzed to explain the mechanism of fiver bend maintenance. These methods could provide a theoretical basis for further investigation on fiver meandering. 展开更多
关键词 meandering river river bend bend-forming vortex self-adaption turbulence flow
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Morphable three-dimensional electronic mesofliers capable of on-demand unfolding 被引量:4
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作者 Ziyao Ji Jianzhong Zhao +12 位作者 Honglie Song Shiwei Xu Wenbo Pang Xiaonan Hu Fan Zhang Tianqi Jin Yumeng Shuai Yu Lan Di Cheng Wenwen Man Renheng Bo Zhaoguo Xue Yihui Zhang 《Science China Materials》 SCIE EI CAS CSCD 2022年第8期2309-2318,共10页
Development of miniaturized three-dimensional(3 D)fliers with integrated functional components has important implications to a diverse range of engineering areas.Among the various active and passive miniaturized 3 D f... Development of miniaturized three-dimensional(3 D)fliers with integrated functional components has important implications to a diverse range of engineering areas.Among the various active and passive miniaturized 3 D fliers reported previously,a class of 3 D electronic fliers inspired by wind-dispersed seeds show promising potentials,owing to the lightweight and noiseless features,aside from the stable rotational fall associated with a low falling velocity.While on-demand shape-morphing capabilities are essential for those 3 D electronic fliers,the realization of such miniaturized systems remains very challenging,due to the lack of fast-response 3 D actuators that can be seamlessly integrated with 3 D electronic fliers.Here we develop a type of morphable3 D mesofliers with shape memory polymer(SMP)-based electrothermal actuators,capable of large degree of actuation deformations,with a fast response(e.g.,~1 s).Integration of functional components,including sensors,controllers,and chip batteries,enables development of intelligent 3 D mesoflier systems that can achieve the on-demand unfolding,triggered by the processing of real-time sensed information(e.g.,acceleration and humidity data).Such intelligent electronic mesofliers are capable of both the low-air-drag rising and the low-velocity falling,and thereby,can be used to measure the humidity fields in a wide 3 D space by simple hand throwing,according to our demonstrations.The developed electronic mesofliers can also be integrated with other types of physical/chemical sensors for uses in different application scenarios. 展开更多
关键词 bioinspired mesofliers mechanically guided 3D assembly shape morphing low-air-drag throwing low-velocity falling flexible electronics
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