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1.
影响柴油机喷雾数值模拟精度的若干因素分析   总被引:1,自引:0,他引:1  
为探明影响柴油机喷雾数值模拟精度的若干因素,采用通用商业软件FLUENT对柴油机喷雾特性进行了CFD模拟计算,分别研究了网格尺寸、喷雾粒子数和最大时间步长对油束几何形状及油束贯穿距的影响.结果表明,网格划分的精度和喷雾粒子数量的多少对计算结果的正确性和油束的几何形状有直接的影响,网格尺寸过大或喷雾粒子数过少则喷雾几何形状失真.最大时间步长对数值模拟的精度在一定的范围内影响是比较小的.  相似文献   

2.
为了研究某滑膛武器弹丸弹托的不同结构参数及摩擦系数对挤进阻力的影响,分别以弹丸弹托的不同结构参数及摩擦系数作为单一变量,利用Ansys-workbench有限元软件分别对其挤进过程进行数值模拟仿真,得到挤进阻力的变化,进而分析该结构参数对挤进阻力的影响,从而为该滑膛武器弹丸结构设计提供了重要依据,也为同类武器的弹托设计提供了一定的参考价值。  相似文献   

3.
数字化部队指挥网络系统效能评价模型   总被引:5,自引:0,他引:5  
以结构熵理论为基础,分析数字化部队作战指挥信息网络系统组织结构对系统内信息流的影响,从信息的角度对系统组织结构的有序度进行评价,引入信息流的时效和质量的概念,建立定量评价系统结构有序度计算的时效质量模型,结合系统数据传输业务效能的评价方法,形成作战指挥信息网络系统整体综合效能的评价模型。最后辅以实例。  相似文献   

4.
建立了Kagome点阵夹层板在爆炸冲击荷载作用下的数值模拟模型,计算分析了夹层板的面板厚度、夹芯层杆件半径以及爆炸冲击荷载峰值压力和作用时间对Kagome点阵夹层板吸能性能的影响。发现在给定的爆炸冲击荷载作用下,夹层板只有在合适的几何尺寸下才能使夹芯层的塑性变形能占整个结构塑性变形能的大部分,从而体现出该夹层板主要由夹芯层塑性变形耗能的优势。  相似文献   

5.
为了评价腔体开口因素对核电磁脉冲(High-amplitude Electro Magnetic Pulse,HEMP)和高功率微波(High Power Microwave,HPM)破坏效能的影响,采用CST电磁计算软件建立强电磁脉冲的孔缝耦合模型,研究孔缝的位置、大小以及长宽比对HEMP和HPM耦合效应的影响。结果表明,孔缝的位置、大小及长宽比对HEMP的耦合效应影响较大,合理控制孔缝的位置、大小以及长宽比能在一定程度上削弱HEMP的破坏效能。对于HPM,相同条件下其耦合效应要明显强于HEMP。在孔缝达到一定尺寸后,其大小和长宽比对HPM的耦合效应影响较小,仅孔缝位置会带来较大的影响。当开口平面与HPM入射方向平行时,耦合效应最弱,但此时耦合进入腔体内的能量还是很容易达到多种电子元器件的电磁损伤阈值级别。  相似文献   

6.
Composite solid propellants (CSPs) have widely been used as main energy source for propelling the rockets in both space and military applications. Internal ballistic parameters of rockets like characteristic exhaust velocity, specific impulse, thrust, burning rate etc., are measured to assess and control the performance of rocket motors. The burn rate of solid propellants has been considered as most vital parameter for design of solid rocket motors to meet specific mission requirements. The burning rate of solid propellants can be tailored by using different constituents, extent of oxidizer loading and its particle size and more commonly by incorporating suitable combustion catalysts. Various metal oxides (MOs), complexes, metal powders and metal alloys have shown positive catalytic behaviour during the com-bustion of CSPs. These are usually solid-state catalysts that play multiple roles in combustion of CSPs such as reduction in activation energy, enhancement of rate of reaction, modification of sequences in reaction-phase, influence on condensed-phase combustion and participation in combustion process in gas-phase reactions. The application of nanoscale catalysts in CSPs has increased considerably in recent past due to their superior catalytic properties as compared to their bulk-sized counterparts. A large surface-to-volume ratio and quantum size effect of nanocatalysts are considered to be plausible reasons for improving the combustion characteristics of propellants. Several efforts have been made to produce nanoscale combustion catalysts for advanced propellant formulations to improve their energetics. The work done so far is largely scattered. In this review, an effort has been made to introduce various combustion catalysts having at least a metallic entity. Recent developments of nanoscale combustion catalysts with their specific merits are discussed. The combustion chemistry of a typical CSP is briefly discussed for providing a better understanding on role of combustion catalysts in burning rate enhancement. Available information on different types of combustion nanocatalysts is also presented with critical comments.  相似文献   

7.
This paper presents a comprehensive review of the research studies on direct energy system effect on aircraft composite structures to develop a good understanding of state-of-the-art research and devel-opment in this area. The review begins with the application of composite materials in the aircraft structures and highlights their particular areas of application and limitations. An overview of directed energy system is given. Some of the commonly used systems in this category are discussed and the working principles of laser energy systems are described. The experimental and numerical studies re-ported regarding the aircraft composite structures subject to the effect of directed energy systems, especially the laser systems are reviewed in detail. In particularly, the general effects of laser systems and the relevant damage mechanisms against the composite structures are reported. The review draws attention to the recent research and findings in this field and is expected to guide engineers/researchers in future theoretical, numerical, and experimental studies.  相似文献   

8.
条形装药爆炸条件下地下结构的动力数值分析   总被引:1,自引:0,他引:1  
军事地下工程多采用直墙拱结构形式,实战中美军大量使用的精确制导炸弹装药可视为条形装药。为研究近区爆炸条件下条形装药对直墙拱结构的动力响应影响问题,利用LS—DYNA程序进行了条形装药爆炸条件下地下直墙拱结构的动力数值分析。通过对比集团装药的数值模拟结果,发现在条形装药垂直入射结构拱项时,直墙拱顶的有效应力峰值高于集团装药达25%。因此,如果按传统方法将精确制导炸弹装药视为集团装药,进行防护工程结构计算和设计偏于不安全,根据数值计算结果提出了防护工程结构设计参考建议。  相似文献   

9.
分别采用四指数表达式拟合的方法和数值计算求解双RLC人体静电放电(ESD)模型的方法得到了符合标准要求的ESD电流波形,计算这两种方法下各自的放电电荷量和放电电阻消耗的能量;测量空气式和接触式两种ESD模式下的放电电流波形,并分别计算放电电荷量和能量情况;通过比较得出,放电电荷量和放电电阻消耗的能量都能够超过放电前的3/4,用数值拟合的电流波形虽能满足四个关键参数的要求,但其它部分电流值偏大。  相似文献   

10.
加筋板架抗动能穿甲的等效防护厚度研究   总被引:1,自引:0,他引:1  
为研究舰船舷侧结构抗穿甲性能,采用有限元分析了两种典型工况下板架的穿甲破坏模式、弹体的剩余速度和板架的变形吸能规律,提出了基于剪切冲塞模式的剩余速度理论计算模型,比较了不同等效计算方法得到的结果,并将理论计算结果分别与相关文献的实验结果和本文的有限元计算结果进行了比较,两者之间均吻合较好。结果表明,加强筋对板架的抗穿甲性能影响较大,而板架的实际等效厚度是决定其抗穿甲性能的主要因素;不同的等效计算方法与模型相对尺寸、弹体冲击速度以及命中位置有关,对于弹体直径相对较大且初始冲击速度较高时,不同的等效计算方法得到的结果基本一致。  相似文献   

11.
爆炸冲击作用下加筋板结构变形研究   总被引:7,自引:2,他引:5  
为了预报加筋板结构在爆炸冲击载荷作用下的变形程度,将加筋板的变形分为整体变形和局部变形,借助数值计算拟合了两者能量分配关系,进而提出了爆炸冲击作用下加筋板结构变形的理论计算方法,并与实验结果进行比较,结果吻合较好。  相似文献   

12.
为解决无线传感器网络中节点能量受限,文中提出一种基于有限反馈的协同M ISO传输方案,此方案通过接收端反馈给簇头节点的信道增益比值来调整簇头节点和协同节点的发射功率。通过联合优化传输速率和协同节点数,使得网络总能耗最小。分析和仿真结果表明,此方案能有效降低网络的总能耗。  相似文献   

13.
电子数密度是表征等离子体物理特性的一项重要因素,在等离子体与高功率微波的相互作用中,等离子体对入射电磁波的吸收、衰减和屏蔽等电磁特性可通过电子数密度的变化进行表征。基于等离子体流体近似研究方法,利用COMSOL软件求解等离子体中的波动方程、电子传递方程和重粒子传递方程,计算分析了等离子体与高功率微波相互作用中的电子分布特性,重点分析了相互作用中平均电子数密度和平均电子能的数值和空间分布变化过程。研究表明,在高功率微波作用下,等离子体区域电子数密度在数值上会产生剧烈的阶跃变化,形成雪崩效应,在空间分布上电子数密度峰值产生趋于入射方向移动的变化;电子能的变化与入射波激励和电子数密度相关,随入射激励增加呈增长趋势,随电子数密度的增加而减小。  相似文献   

14.
为研究T型分支坑道对油气爆炸传播特性的影响,通过对比实验,测定了相同初始条件下T型分支坑道和直坑道中油气混合物爆炸的火焰传播速度和爆炸波超压值。利用高速摄影仪,记录了火焰传播至T型分支坑道时的火焰阵面变化情况,并对T型分支坑道中油气混合物爆炸的传播情况进行了理论分析。结果表明:T型分支坑道对油气混合物爆炸的影响可以视为面积突扩和障碍物扰动双重作用的影响;火焰经过支坑道时,火焰阵面发生扭曲并产生皱褶,表面积增大导致火焰传播速度增大;T型分支坑道处,大量反射波和绕射波进入波后反应区,加强了气流湍流强度,并推动已燃气体回传,迅速提高了燃烧反应速度和能量释放率,起到了增大火焰传播速度和爆炸波超压值的作用。  相似文献   

15.
《防务技术》2022,18(9):1715-1726
High efficiency, environmental protection and sustainability have become the main theme of the development of the protection engineering, requiring that the components not only meet the basic functions, but also have chemical properties such as acid and alkali corrosion resistance and aging resistance. Polyisocyanate-oxazodone (POZD) polymer has the above characteristics, it also has the advantages of strong toughness, high strength and high elongation. The concrete slab sprayed with POZD material has excellent anti-blast performance. In order to explore the damage characteristics of POZD sprayed concrete slabs under the action of contact explosion thoroughly, the contact explosion test of POZD concrete slabs with different charges were carried out. On the basis of experimental verification, numerical simulation were used to study the influence of the thickness of the POZD on the blast resistance of the concrete slab. According to the test and numerical simulation results that as the thickness of the coating increases, the anti-blast performance of the concrete slab gradually increases, and the TNT equivalent required for critical failure is larger. Based on the above analysis, empirical expressions on normalized crater diameter, the normalized spall diameter and normalized spall diameter are obtained.  相似文献   

16.
Guo-qiang Deng  Xiao Yu 《防务技术》2021,17(4):1461-1470
When considering the bomb explosion damage effect, the air shock wave and high-speed fragments of the bomb case are two major threats. In experiments, the air shock wave was studied by the bare ex-plosives superseding the real cased bomb; in contrast, the bomb case influence was ignored to reduce risk. The air explosion simulations of the MK84 warhead with and without the case were conducted. The numerical simulation results showed that the bomb case significantly influenced the shock wave generated by the bomb: the spatial distribution of shock wave in the near field changed, and the peak value of shock wave was reduced. Breakage of the case and kinetic energy of the fragmentation consumed 3 and 38% of the explosion energy, respectively. The increasing factors of the peak over-pressure induced by the bare explosive on the ground and in the air were 1.43-3.04 and 1.37-1.57, respectively. Four typical stages of case breakage were defined. The mass distribution of the fragments follows the Mott distribution. The initial velocity distribution of the fragments agreed well with the Gurney equation.  相似文献   

17.
现有的鼓型消声器由具有刚性背腔的膨胀腔和张紧的薄膜构成,利用薄膜的振动辐射声场与原声场叠加作用,使得透射过消声器的声能减少,达到消声的目的。为使消声器兼具隔振作用,提出了新型柔性背腔鼓型消声器,基于Fourier-Galerkin方法建立其声学理论模型,将传递损失特性与现有的刚性背腔模型进行比较,进一步研究柔性背腔鼓形消声器的消声机理,并分析了背腔参数对性能的影响。计算结果表明,柔性背腔有效提高了消声器低频消声效果,较相同结构尺寸条件下的刚性背腔消声器,显著拓宽了有效消声带宽。  相似文献   

18.
为研究集群的形成与否和半径大小之间的关系,主要考虑了具有单个领导的一般等级结构及其领导者速度不变的Cucker-Smale模型。探讨了自由意志对集群产生的影响,通过证明可以给出半径有下界的充分条件(下界和速度差、粒子数、通信强度等有关)。当半径大于下界时,会产生集群。通过MATLAB数值仿真验证了相关结论。  相似文献   

19.
为了从理论上分析磁化等离子体对飞行器隐身的机理,采用等效输入阻抗方法计算金属平板前非均匀磁化等离子体层对垂直入射电磁波的功率反射系数,结果表明:电子数密度大小、入射波频率、等离子体碰撞频率和外磁场是功率反射系数的主要影响因素.电子数密度、等离子体碰撞频率取值必须合适,外加磁场才能明显降低等离子体对入射电磁波的功率反射系数.  相似文献   

20.
全面分析了初始束流分布、发散度、能散度以及地磁场对粒子束空间传输的影响情况,并针对束流长距离传输的静电扩散和地磁偏转效应进行了数值建模及定量的数值仿真研究。结果表明,对于固定束流能量、流强粒子束,可通过增大初始半径削弱粒子束静电扩散效应达到设计要求;通过背景磁场精确预测,可准确控制束流方向精度。可以看出,研究带电粒子束本身的自洽行为以及与外场的作用,对带电粒子束流的产生、传输特性研究及工程化应用都有重要意义。  相似文献   

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