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61.
为探究超燃冲压发动机燃烧室中煤油燃料燃烧的化学动力学过程,综合采用敏感性分析方法与路径分析方法,针对RP-3航空煤油三组分替代燃料的详细反应模型进行简化,建立一种适用于超声速燃烧流场数值模拟的新型26组分89反应简化燃烧反应模型。采用该简化燃烧模型对RP-3航空煤油替代燃料的点火、燃烧特性进行数值模拟,并与详细反应模型结果和试验数据进行对比校验。此外,将该简化燃烧模型与超声速燃烧流场计算方法相结合,数值分析了典型超燃冲压发动机燃烧室流场内化学动力学特性。研究结果表明:新型简化燃烧反应模型在不影响数值模拟精度的前提下,有效减少了反应组分与反应方程个数,提高了超声速复杂燃烧流场的数值模拟效率,并且能够准确获得烯烃、炔烃等重要中间燃烧产物以及小分子活性基团的空间分布规律,给出更全面的流场信息。  相似文献   
62.
针对潜艇远航中面临探潜兵力种类多、各兵力间相互联系的特点,将基于贝叶斯网络的故障诊断方法引入到潜艇隐蔽性的评估中。假设通过分析某次远航实例后得到节点分布参数,结合建立的潜艇远航暴露贝叶斯网络图,得出相关结论。初步探讨了该方法对潜艇隐蔽性的评估、诊断暴露原因、确定关键探潜兵力等方面的应用价值。  相似文献   
63.
基于柔性基础的双层隔振系统概率灵敏度分析   总被引:4,自引:1,他引:3  
对基于柔性基础的双层隔振系统的功率流传递特性进行了分析,利用有限元分析软件ANSYS计算了传递到基础的功率流,并用概率灵敏度分析方法研究了功率流对隔振系统给定参数的灵敏度,为双层隔振系统的优化设计奠定了基础.  相似文献   
64.
本文提出雷达接收微弱信号能力的新拟指标——雷达综合灵敏度。给出其在不解体状态下的测试方法,并对测试误差进行了分析。  相似文献   
65.
首先对传统的比例导引控制系统进行了分析,分析结果表明,传统的比例导引方法对导弹剩余飞行时间的估计依赖性强,剩余飞行时间估计误差将大大降低制导性能,甚至造成导弹脱靶.为了解决这一问题,提出了一种降低敏感度制导律,建立了该改进制导律的数学模型并进行了仿真,仿真结果表明,该制导律对剩余飞行时间误差敏感度低,并能够提高制导性能...  相似文献   
66.
针对步进电机存在负载摄动和失步超步问题,提出了一种基于粒子群优化算法的混合灵敏度设计方法。在H∞混合灵敏度约束下,采用粒子群算法寻找能够反映系统特性的适应度函数最优值,在搜索到合适的加权阵基础上,利用Matlab得到了H∞最优控制器,并利用优化控制器对步进电机进行控制仿真实验。实验结果表明:该系统具有响应快速平稳、抗负载扰动强等特点。  相似文献   
67.
钝感电火工品具有一定的稳定性和抗静电能力。采用真实静电感度试验方法测试其静电敏感度,能够为产品设计和鉴定试验时进行定量的静电安全性评估、确定钝感电火工品对各种有害使用环境的抵抗能力以及为产品制定安全技术标准和采取防护措施提供科学依据。  相似文献   
68.
A melt-cast Duan-Zhang-Kim (DZK) mesoscopic reaction rate model is developed for the shock initiation of melt-cast explosives based on the pore collapse hot-spot ignition mechanism. A series of shock initiation experiments was performed for the Comp B melt-cast explosive to estimate effects of the loading pressure and the particle size of granular explosive component, and the mesoscopic model is validated against the experimental data. Further numerical simulations indicate that the initial density and formula proportion greatly affect the hot-spot ignition of melt-cast explosives.  相似文献   
69.
To study the thermal decomposition of Al/ZrH2/PTFE with different Al particle size as well as mechanical strength and impact sensitivity under medium and low strain rates, molding-vacuum sintering was adopted to prepare four groups of power materials and cylindrical specimens with different Al particle size. The active decomposition temperature of ZrH2 was obtained by TG-DSC, and the quasi-static me-chanics/reaction characteristics as well as the impact sensitivity of the specimen were studied respec-tively by quasi-static compression and drop-hammer test. The results show that the yield strength of the material decreased with the increase of the Al particle size, while the compressive strength, failure strain and toughness increased first and then decreased, which reached the maximum values of 116.61 MPa, 191%, and 119.9 MJ/m respectively when the Al particle size is 12—14μm because of particle size grading. The specimens with the highest strength and toughness formed circumferential open cracks and reacted partly when pressed. Those with developmental cracks formed inside did not react. It is considered that fracture of specimens first triggered initial reaction between Al and PTFE to release an amount of heat. Then ZrH2 was activated and decomposed, and participated in subsequent reaction to generate ZrC. The impact sensitivity of the specimens decreased with the increase of Al particle size.  相似文献   
70.
《防务技术》2020,16(1):188-200
The present day weapon technology demands novel energetic materials that exhibit simultaneous high explosive yield and reduced sensitivity. This article demonstrates application of spray evaporation to prepare reduced sensitive co-crystals of high performance nitramine explosives like HMX and CL-20 with a relatively less insensitive explosive 1,1-diamino-2,2-dinitroethylene or FOX-7. Stronger intermolecular hydrogen bonding in FOX-7 is responsible for limited solubility in most of organic solvents. Large solubility differences of FOX-7 with HMX and CL-20 restricts it's co-crystallization through classical methods that yields thermodynamically favorable product. Spray flash evaporation, a kinetic crystallization method, has been therefore adopted and could successfully produce CL-20/FOX-7 (2:1) and HMX/FOX-7 (4:1) co-crystals. The fine powdered materials obtained were characterized by SEM, powder XRD, Raman spectroscopy, DSC-TGA etc. Multipoint Raman spectra showed consistent occurrence of spectral features indicating stoichiometric co-existence of ingredients in the crystal lattices. DSC analysis showed absence of all thermally assisted solid-solid phase transformation in the co-crystals as they were observed in pristine materials. The thermal stability calculated in terms of activation barrier for decomposition, revealed the CL-20/FOX-7 co-crystal to be intermediately stable on comparison to their constituents while, the HMX/FOX-7 co-crystal is more stable. Compared to pure HMX and CL-20, both the co-crystals have shown higher insensitivity to impact force, suggesting them to be suitable for future generation insensitive munitions.  相似文献   
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