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机动受限的舰艇防御声自导鱼雷是常见的作战态势之一,而对抗武器的选择和使用就是此时保证舰艇安全的关键。对此在分析作战态势的基础上选择火箭诱杀弹作为对抗武器,并建立其数学及仿真模型,在设定的战术背景下运用蒙特卡洛法进行仿真,对采用不同的发射数量、发射时机,以及不同的对抗武器时舰艇的生存概率进行了比较,理论验证了机动受限时舰艇选择火箭诱杀弹对抗声自导鱼雷的有效性,同时提出了其使用过程中值得注意的战术问题,为部队实际应用武器提供了理论依据。  相似文献   
2.
火箭助飞鱼雷与空投鱼雷齐射攻潜是水面舰艇中远距离攻潜的有效方法之一。由于火箭助飞鱼雷和空投鱼雷齐射的平台、弹道不同,为了有效的组织鱼雷的齐射,必须解决相关的问题。因此,从火箭助飞鱼雷与空投鱼雷的作战使用特点出发,首先探讨两雷齐射的定义及实施方法,其次通过计算机仿真研究了实施齐射时的直升机安全问题,并研究了两雷射击的间隔时间,拟合了计算公式。总之,此问题的研究对发挥水面舰艇中远距离反潜作战能力具有一定的意义。  相似文献   
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以气氧/煤油作为推进剂对火箭发动机进行流量连续调节试验,研究火箭发动机连续变工况过程中的燃烧特性。火箭发动机通过可调气蚀文氏管连续调节煤油流量。试验在富燃工况(混合比0.405~0.690)下成功点火,并实现了混合比、燃气总流量连续调节。试验发现流量连续调节过程中,当混合比小于0.535时,燃烧室压力随煤油流量减小而增大;当混合比大于0.535时,燃烧室压力随煤油流量减小而减小。同时,特征速度和燃烧效率随混合比增大而增大,并且混合比小于0.535时特征速度、燃烧效率增大的速率大于混合比大于0.535时的速率。研究表明推进剂流量与燃烧效率同时影响燃烧室压力。当混合比小于0.535时,燃烧效率的影响占优;混合比大于0.535时,推进剂流量影响占优。  相似文献   
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魏龙  刘乐  刘吉吉  马群 《国防科技》2021,42(4):69-75
传统固体火箭发动机无损检测图像判读工作存在人工识别效率低、图像数据分散及数据利用率低等问题。本文借助机器学习算法与计算机视觉技术,利用大量发动机无损检测图像数据开展无损检测图像数据预处理、边缘检测以及数据模型训练和应用等技术研究,探索快速、准确获得发动机无损检测图像数据特征的方法,深入挖掘固体发动机无损检测数据的内在联系,找到潜在规律。本研究不仅为固体发动机无损检测图像判读提供了一种准确、高效的手段,同时,能够为发动机无损检测图像识别、测量、判读和发动机相关故障模式分析与故障诊断提供数据和决策支持,也能够为未来机器学习在固体发动机无损检测图像判读领域的深入应用提供实践探索和理论研究方面的参考。  相似文献   
5.
考虑入口和出口容积效应的涡轮动力学模型   总被引:1,自引:0,他引:1       下载免费PDF全文
建立了考虑涡轮入口和出口容积效应的涡轮动力学模型 ,利用该模型计算了燃气涡轮气瓶启动的动态响应过程 ,分析了影响涡轮动态特性的主要因素。计算结果表明 :涡轮前容积对涡轮入口压力和出口背压的过渡过程均有显著的影响 ,涡轮后容积对涡轮入口压力的过渡过程影响不大 ,对涡轮出口背压的影响显著。  相似文献   
6.
《防务技术》2019,15(6):905-911
In view of that existing opening technologies of front cover for rocket launch canister have disadvantages such as causing damage on the ground equipment, not being reused and easily broken. A novel reusable non-separation spring-driven opening scheme is proposed to achieve rapid and reliable opening of the front cover. The mathematical model of the opening process of the front cover is established by the rigid body dynamics theory. To establish a response surface model to optimize the opening scheme, three main influencing factors of the opening process are obtained through the designed experiments, including the pre-compression, the stiffness of the thrust spring, and the thrust spring force arm length. In addition, the prescribed kinematic law was taken as constraint, and the smaller thrust spring preliminary pressure and angular velocity was taken as optimization expectations. The results show that the opening scheme meets the design requirements on opening process well. It also shows that the optimized scheme can reduce the kinetic energy of the front cover, and the impact on the canister effectively, achieving a reliable and rapid opening of the front cover.  相似文献   
7.
The paper presents the possibilities of, and methods for, acquiring, analysing and processing optical signals in order to recognise, identify and counteract threats on the contemporary battleground. The main ways electronic warfare is waged in the optical band of the electromagnetic wave spectrum have been formulated, including the acquisition of optical emitter signatures, as well as ultraviolet (UV) and thermal (IR) signatures. The physical parameters and values describing the emission of laser radiation are discussed, including their importance in terms of creating optical signatures. Moreover, it has been shown that in the transformation of optical signals into signatures, only their spectral and temporal parameters can be applied. This was confirmed in experimental part of the paper, which includes our own measurements of spectral and temporal emission characteristics for three types of binocular laser rangefinders. It has been further shown that through simple registration and quick analysis involving comparison of emission time parameters in the case of UV signatures in “solar-blind” band, various events can be identified quickly and faultlessly. The same is true for IR signatures, where the amplitudes of the recorded signal for several wavelengths are compared. This was confirmed experimentally for UV signatures by registering and then analyzing signals from several events during military exercises at a training ground, namely Rocket Propelled Grenade (RPG) launches and explosions after hitting targets, trinitrotoluene (TNT) explosions, firing armour-piercing, fin-stabilised, discarding sabots (APFSDS) or high explosive (HE) projectiles. The final section describes a proposed model database of emitters, created as a result of analysing and transforming the recorded signals into optical signatures.  相似文献   
8.
针对空气深度预冷组合循环发动机——协同吸气式火箭发动机(Synergistic Air-Breathing Rocket Engine,SABRE),采用部件法对其进行建模,匹配计算得到吸气式模态下飞行走廊内其性能参数变化规律,并研究其高度速度特性。计算模型可信度较高,推力误差小于6%,能够较为准确地模拟SABRE吸气式模态的性能参数。结果表明:SABRE兼具火箭发动机大推力和航空发动机高比冲的特点,吸气式模态下比冲介于21 300~27 380 m/s,随着高度速度的增大,其推力比冲先增大后减小;SABRE利用预冷器将入口空气温度降低,可使其空域速域拓宽至25 km、5Ma,满足高超声速飞行的动力需求;发动机速度下限由压气机最大流量决定,速度上限则由氦气回路减压器工作限制条件决定。  相似文献   
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