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61.
回热循环燃气轮机中回热器的动态特性研究   总被引:3,自引:1,他引:2  
采用多段集中参数模型对具有分布参数特性的回热器建模,简化了由偏微分方程带来的大量计算.应用Matlab/Simlink软件作为仿真平台,采取数值方法求解,对具体回热燃气轮机中的回热器进行了仿真.结果表明,回热器时间常数较大,在回热循环燃气轮机仿真中回热器的热惯性不能忽略,而且是影响系统平衡稳定性的重要因素.  相似文献   
62.
基于Petri网的潜艇CGF鱼雷攻击行为建模   总被引:1,自引:0,他引:1  
为了实现潜艇对舰鱼雷攻击过程的计算机仿真,基于Petri网理论研究了潜艇鱼雷攻击过程的行为建模问题.在对潜艇鱼雷攻击过程的准离散化分析与构建了鱼雷攻击过程Petri网结构的基础上,将Petri网的变迁和潜艇鱼雷攻击过程的战术规则相关联,并提出了解决变迁冲突的方法,建立了基于Petri网行为模型.这种运用Petri网特有的可视化和以动态方式描述了潜艇鱼雷攻击过程的方法,有着坚实的数学基础,为进一步研究潜艇CGF鱼雷攻击自治行为规划打下了理论基础.  相似文献   
63.
围绕战斗建模中的作战Agent模型的实现问题,通过对坦克战斗过程的分析,提出了以属性建模、能力建模和行为机制建模为要点的作战Agent建模方法,并在此基础上建立了面向实际应用的作战Agent模型;通过推演实验和与兰切斯特方程的比较实验,验证了作战Agent模型在模拟和解释战斗活动时的可行性、有效性和可操作性。  相似文献   
64.
提出了一个新的三维混沌系统,研究了该系统的基本动力学行为,据此分析了系统在某一区间参数下的新混沌系统状态;根据新混沌系统的数学模型,进行了计算机软件数值模拟仿真.  相似文献   
65.
基于扬尘现象的物理模型和粒子系统的基本原理,给出了一种车尾扬尘特效的快速实时生成算法.首先建立适用的扬尘粒子系统模型,再通过OpenGL的纹理映射、融合功能等技术对模型进行渲染,特别是从实时性角度入手对传统粒子系统进行改进,最终成功地运用到基于WTK平台创建的某型装甲车辆视景仿真系统的复杂地形中,在实时性和逼真度方面均获得了较好的效果.  相似文献   
66.
复杂体系的结构分析和建模研究   总被引:3,自引:0,他引:3       下载免费PDF全文
根据复杂体系的概念及其所呈现出的多种特性,利用复杂体系的使命分解和复杂体系的元素组成对复杂体系进行综合的结构分析,描述了目标分解、功能分解和行为分解的复杂体系使命目标三阶段分解过程以及系统单元、复合元和体系外部环境的复杂体系三元素结构框架。在此基础上,提出了采用一种“两层四级”的设计思想对复杂体系进行有效的结构建模设计,并针对复杂体系内部的相互位置层次及其功能关联定义了度量实体、层级映射、系统关联性和软构层等相关概念,清晰地阐释了复杂体系结构分析和建模时体系层次映射的实质,从而为复杂体系的效能评估以及体系改进和优化提供一定的理论指导。  相似文献   
67.
The present study deals with development of conceptual proof for jute rubber basedflexible composite block to completely arrest the projectile impacting the target at high velocity impact of 400 m/s through numerical simulation approach using finite element (FE) method. The proposed flexible composite blocks of repeating jute/rubber/jute (JRJ) units are modelled with varying thickness from 30 mm to 120 mm in increments of 30 mm and impacted by flat (F), ogival (O) and hemispherical (HS) shaped projectiles. All the considered projectiles are impacted with proposed flexible composite blocks of different thicknesses and the penetration behaviour of the projectile in each case is studied. The penetration depth of the projectile in case of partially penetrated cases are considered and the effect of thickness and projectile shape on percentage of penetration depth is statistically analyzed using Tagu-chi's design of experiments (DOE). Results reveal that the though proposedflexible composite block with thickness of 90 mm is just sufficient to arrest the complete penetration of the projectile, considering the safety issues, it is recommended to use theflexible composite with thickness of 120 mm. The nature of damage caused by the projectile in the flexible composite is also studied. Statistical studies show that thickness of the block plays a prominent role in determining the damage resistance of the flexible composite.  相似文献   
68.
In this study, the anti-penetration performance of polyurea/ASTM1405-steel composite plate subjected to high velocity projectile was analyzed. Two kinds of modified polyurea material (AMMT-053 and AMMT-055) were selected and a ballistic impact testing system including speed measuring target system and high-speed camera was designed. This experiment was conducted with a rifle and 5.8 mm projectile to explore the effects by the polyurea coating thickness, the polyurea coating position and the glass-fiber cloth on the anti-penetration performance of polyurea/ASTM1405-steel composite plate. The result showed that the effects of polyurea coating position were different between two types of polyurea, and that the effects of glass-fiber position were disparate between two types of polyurea as well. For AMMT-053 polyurea material, it was better to be on front face than on rear face; whereas for AMMT-055 pol-yurea, it was better to be on rear surface although the difference was very subtle. Additionally, formulas had been given to describe the relationship between the effectiveness of polyurea and the thickness of polyurea coating. In general, AMMT-055 had better anti-penetration performance than AMMT-053. Furthermore, five typical damage modes including self-healing, crack, local bulge, spallation and local fragmentation were defined and the failure mechanism was analyzed with the results of SHPB test. Additionally, the bonding strength played an important role in the anti-penetration performance of polyurea/steel composite plate.  相似文献   
69.
《防务技术》2019,15(6):868-874
Ammonium perchlorate (APC) is the most common oxidizer in use for solid rocket propulsion systems. However its initial thermal decomposition is an endothermic process that requires 102.5 J·g−1. This manner involves high activation energy and could render high burning rate regime. This study reports on the sustainable fabrication of CuO nanoparticles as a novel catalyzing agent for APC oxidizer. Colloidal CuO nanoparticles with consistent product quality were fabricated by using hydrothermal processing. TEM micrographs demonstrated mono-dispersed particles of 15 nm particle size. XRD diffractogram demonstrated highly crystalline material. The synthesized colloidal CuO particles were effectively coated with APC particles via co-precipitation by using fast-crash solvent–antisolvent technique. The impact of copper oxide particles on APC thermal behavior has been investigated using DSC and TGA techniques. APC demonstrated an initial endothermic decomposition stage at 242 °C with subsequent two exothermic decomposition stages at 297.8 °C and 452.8 °C respectively. At 1 wt%, copper oxide offered decrease in initial endothermic decomposition stage by 30%. The main outcome of this study is that the two main exothermic decomposition peaks were merged into one single peak with an increase in total heat release by 53%. These novel features can inherit copper oxide particles unique catalyzing ability for advanced highly energetic systems.  相似文献   
70.
《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   
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