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81.
董忠厚 《兵团教育学院学报》2013,(3):65-67,78
"兵团音乐"这一语辞包含区域、主题、风格、功能、情感等多重属性。本论文尝试从兵团音乐的特质、兵团音乐创作机制的类型、兵团音乐创作主题的类型三方面来阐释兵团音乐的思想教育功能。 相似文献
82.
针对大规模异构无人机集群的全局任务规划问题,提出一种基于均衡聚类市场拍卖机制的任务规划方法。对无人机群协同合作完成任务的场景进行分析,综合任务聚类和无人机联盟的优势,建立了通用性较高的任务规划模型。考虑到对无人机群负载均衡的需求,融合和改进了K-means聚类算法和市场拍卖机制,形成一种综合考虑路程消耗和任务消耗的均衡聚类市场拍卖算法。在拍卖过程中引入平衡参数,通过计算旅行商问题来修正平衡参数,保证无人机群在负载均衡的同时整体成本不断降低。仿真结果表明,使用均衡聚类市场拍卖机制的任务规划方法能够在较短时间内完成异构无人机群的复杂任务规划,保证无人机群负载均衡的同时,整体成本和总时间上也有较好表现,具有一定的实际应用价值。 相似文献
83.
朱嘉 《兵团教育学院学报》2022,(1)
文娱领域综合治理是当下的文化热点,但与之相关的高校艺术学科教师的评价与考核机制建设却一直是被学术界忽略的问题。该问题不仅关乎高校教师评价与考核工作的整体进程、艺术学科的健康发展,还关乎国家文艺创作队伍的建设、文娱行业的天清气朗。本文认为艺术学科教师评价与考核机制是决定文娱领域艺人违法失德乱象的重要要素之一,科学、系统、规范的评价与考核机制有利于这一问题的解决。 相似文献
84.
《防务技术》2022,18(9):1679-1687
Boron is a very promising and highly attractive fuel because of high calorific value. However, the practical applications in explosives and propellants of boron have been limited by long ignition delay time and low combustion efficiency. Herein, nano-Al and graphene fluoride (GF) as surface activated materials are employed to coat boron (B) particles to improve ignition and combustion performance. The reaction heat of nano-Al coated B/KNO3 and GF coated B/KNO3 are 1116.83 J/g and 862.69 J/g, respectively, which are higher than that of pure B/KNO3 (823.39 J/g). The ignition delay time of B/KNO3 could be reduced through nano-Al coating. The shortest ignition delay time is only 75 ms for B coated with nano-Al of 8 wt%, which is much shorter than that of pure B/KNO3 (109 ms). However, the ignition delay time of B/KNO3 coated with GF has been increased from 109 to 187 ms. B coated with GF and nano-Al shown significantly influence on the pressure output and flame structure of B/KNO3. Furthermore, the effects of B/O ratios on the pressure output and ignition delay time have been further fully studied. For B/KNO3 coated with nano-Al and GF, the highest pressures are 88 KPa and 59 KPa for B/O ratio of 4:6, and the minimum ignition delay time are 94 ms and 148 ms for B/O ratio of 7:3. Based on the above results, the reaction process of boron coated with GF and nano-Al has been proposed to understand combustion mechanism. 相似文献
85.
在信息主导,火力主战的背景下,间瞄火力的效能发挥对战争的胜负起着至关重要的作用。而实兵对抗训练中,间瞄火力打击效能的评估一直以来缺乏有效的理论依据,影响间瞄火力裁决的科学决策。文章结合间瞄武器模拟终端的使用,根据间瞄火炮打击的特点规律,用面火力射击数学模型推导出间瞄火炮射击的毁伤概率公式,该公式可以为间瞄武器模拟终端的火力毁伤概率的确定提供理论依据。 相似文献
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88.
提出了中段反导指挥控制能力生成的要素基础建设机理、要素集成聚优机理和要素联动涌效机理,构建了中段反导指挥控制能力总体构成框架,并对作战能力具体构成进行了分析,可为反导指挥控制系统建设及作战效能评估提供借鉴。 相似文献
89.
《防务技术》2014,10(2):226-238
Transparent armor consists of glass-polymer laminates in most cases. The formation and propagation of damage in the different glass layers has a strong influence on the ballistic resistance of such laminates. In order to clarify the course of events during projectile penetration, an experimental technique was developed, which allows visualizing the onset and propagation of damage in each single layer of the laminate. A telecentric objective lens was used together with a microsecond video camera that allows recording 100 frames at a maximum rate of 1 MHz in a backlit photography set-up. With this technique, the damage evolution could be visualized in glass laminates consisting of four glass layers with lateral dimensions 500 mm × 500 mm. Damage evolution was recorded during penetration of 7.62 mm AP projectiles with tungsten carbide core and a total mass of 11.1 g in the impact velocity range from 800 to 880 m/s. In order to measure the deformation of single glass plates within the laminates, a piece of reflecting tape was attached to the corresponding glass plate, and photonic Doppler velocimetry (PDV) was applied. With the photonic Doppler velocimeter, an infrared laser is used to illuminate an object to be measured and the Doppler-shifted light is superimposed to a reference light beam at the detector. The simultaneous visualization and PDV measurement of the glass deformation allow determining the deformation at the time of the onset of fracture. The analysis of the experimental data was supported by numerical simulations, using the AUTODYN commercial hydro-code. 相似文献
90.
《防务技术》2020,16(2):432-438
The airborne missile launch mechanism often subjects to significant deformations induced by the large ejection force during high-speed actuations in missile ejection process, leading to a substantial deviation of separation parameters from designed values that threats safety of the carrier. This study proposes a novel variable topology design for launch mechanism, achieved via a Prismatic-Revolute-Revolute pair (PR-R) motion formed by the structural gap with a specific direction. It enables launch mechanism variability during missile ejection process and optimizes the ejection force given by the front and back ejection arms, and greatly optimizes the separation parameters during missile ejection. The kinetics simulation analysis is conducted under working conditions of the original ejection mechanism and the novel mechanism with variable topology design, respectively. The results show that the novel variable topology design is more befitting for the launch process in terms of system safety and controllability, effectively improving the separation posture, restraining the flexible effect of the mechanism, and fulfilling the effectiveness of the design value of multi-rigid body. 相似文献