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21.
针对混合飞艇体积巨大同时气动外形复杂使得现有条件的风洞试验很难精确测量其气动性能的问题,开展了适用于混合飞艇气动性能分析的计算流体力学(CFD)的数值分析方法研究。考虑混合飞艇低速大雷诺数的特点,将变分多尺度方法 (VMS)与动态Smagorinsky大涡模拟(LES)模型相结合,提出了组合的VMSLES湍流模型。将基于RANS方法和LES方法的其他三种湍流模型相对比,利用雷诺数相近、实验数据丰富的6:1长椭球飞艇对不同的湍流模型进行了对比验证。结果显示LES方法预测结果与实验结果吻合较好,优于RANS方法,并能显示更多流动细节,而组合的VMS-LES模型能够更精确地捕获实验研究中观察到的二次涡。利用组合的VMS-LES模型对有翼HAV与多囊瓣HAV进行了气动性能分析,并研究了不同部件对飞艇气动特性的影响。结果表明,由于尾翼表面产生的一次涡与二次涡相互作用,尾翼在增加气动升力的同时也增加了阻力。  相似文献   
22.
This article examines critically the literature of hybrid war and evaluates the countermeasures often proposed. It explains the concept of hybrid warfare and its varied interpretations, illustrating how it is a manifestation of current anxieties in armed conflict. The selection of the literature is based on works that are referenced, that offer a scientific approach, and which review either the phenomenon of hybrid warfare or its countermeasures empirically. Unscientific works have been omitted. The analysis of the literature presented here shows that the antidotes to ‘hybridity’ lie not in the operational or tactical sphere but in strategic and political domains.  相似文献   
23.
混合模糊逻辑方法就是利用模糊规则和对象输入输出的观测数据来辨识一个模糊逻辑系统。该方法对模糊规则和观测数据进行了预处理,给出系统模型的初始结构和参数。将该方法用于处理雷达/红外双模制导中对目标的跟踪问题。仿真表明该方法是有效的。  相似文献   
24.
《防务技术》2020,16(1):77-87
The effects of metallic material on the penetration resistances of ceramic-metal hybrid structures against vertical long-rod tungsten projectiles were studied by artillery-launched experiments and numerical simulation. Hybrid structures with rectangular cores in transverse orthogonal arrangement and slide-fitting ceramic inserts of zirconia toughened alumina prisms were fabricated with titanium alloy TC4 (Ti6Al4V), AISI 4340 steel and 7075 aluminum alloy panels, respectively. The results showed that the hybrid structure of Ti6Al4V exhibited the highest penetration resistance, followed by that of 7075 aluminum alloy with the same area density. The penetration resistance of the hybrid structure of AISI 4340 steel was the lowest. The underlying mechanisms showed that the metallic material of a ceramic-metal hybrid structure can directly affect its energy absorption from the impact projectile, which further affects its penetration resistance. Different metallic frames exhibited different failure characteristics, resulting in different constraint conditions or support conditions for ceramic prisms. The high penetration resistance of the Ti6Al4V hybrid structure was due to its stronger back support to ceramic prisms as compared with that of AISI 4340 steel hybrid structure, and better constraint condition for ceramic prisms by metallic webs as compared with that of 7075 aluminum alloy hybrid structure. The results of mass efficiency and thickness efficiency showed that the Ti6Al4V hybrid structure has advantages in reducing both the thickness and the mass of protective structure. In addition, because the ceramic-metal hybrid structures in the present work were heterogeneous, impact position has slight influence on their penetration resistances.  相似文献   
25.
《防务技术》2020,16(6):1098-1105
Due to notable characteristics, sustainability concept and environmental issues, hybridisation natural with synthetic fibres to fabricate composites have been rapidly gaining market share in different applications (structural, military, aerospace and automotive vehicles). Compression, tension and fatigue tests of various stacking sequences of plain jute/carbon reinforced (PVB) polyvinyl butyral by hot hydraulic press technique were experimentally conducted. Six types of fabricated composites with various constituents (jute, carbon and their hybrids) were fabricated and tested. Notably, fatigue lifetime of hybrids increases with increasing the carbon content relative to the jute fibre content. On the other hand, Jute composites possess high strain compared to pure carbon composite, which gives an overall improvement in mechanical behaviours. Interestingly, H1 hybrid with Carbon/Jute/Carbon sequences offers similar fatigue stiffness behaviour of H3 hybrid with Carbon/Jute/Carbon/Jute sequences when subjected to cyclic loading. Carbon composite (C) exhibited the highest fatigue resistance, whiles jute composite (J) possessed the highest strain and semi brittle trends in both mechanical and fatigue performance. Results concluded that plain jute fibres could partially replace high-cost synthetic carbon fibres to produce more eco-friendly hybrids to be utilised in different composites industries.  相似文献   
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