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231.
超空泡体结构响应问题的有限元分析   总被引:3,自引:0,他引:3  
超空泡体在水下高速航行时要受到冲击载荷的作用,这对其结构是不利的。用有限元方法分析计算了冲击载荷作用下超空泡体的结构响应,数值计算结果表明,超空泡体在一定频率下引起的结构响应非常显著,且随着频率的升高响应幅值有减小的趋势。  相似文献   
232.
作战仿真模型体系结构的描述是一个复杂的问题,传统的方法难以清晰描述各要素之间的内在关系。采用解释结构模型的方法对模型体系中的继承、组合关系进行形式化建模,在对体系要素进行简化抽象的基础上,通过矩阵运算和逻辑推理完成对体系内所有要素的关系描述,能够实现对复杂模型体系的结构化描述和简洁化表达。  相似文献   
233.
近年来,全国消防部队开展了轰轰烈烈的执勤岗位大练兵工作,灭火救援一线官兵素质普遍得到提高,然而,随着社会的发展,兵员结构的变化和兵役制度的改革,消防部队在参加灭火救援工作还存在一些问题。分析了当前消防部队参加灭火救援工作存在的问题,并提出了相应解决对策。  相似文献   
234.
坦克嵌入式车场射击训练炮长操纵控制模型   总被引:1,自引:1,他引:0  
在嵌入式射击模拟训练系统中,针对炮长操作过程对模拟训练的影响,建立了炮长操纵控制模型。炮长操纵控制模型包括炮长操纵模型和炮长射击决策模型。炮长操纵模型的建立是基于装备的物理模型和人的生理反应模型。炮长射击决策模型根据坦克射击教范要求,采用与/或正向演绎推理得到。在炮长操纵控制模型基础上,建立了射击反应时间模型,并与实际装备操作进行了比较,对建立的操纵控制模型进行了验证。  相似文献   
235.
通过对装备作战需求分析,提出一种系统化、结构化的装备作战需求论证方法,为作战需求分析提供方法支持。该方法不仅可规范需求分析过程,增强需求分析过程的合理性、全面性和可操作性,而且对提高需求分析的理论水平,提高武器装备的论证质量,具有一定的意义。  相似文献   
236.
为了使石墨烯电声换能器获得最优性能,主要针对石墨烯热致发声器件和静电式发声器件进行了发声机理研究,通过理论建模和分析,得到了薄膜尺寸、厚度以及应力等结构参数对两种电声换能器的频率响应特性的影响规律。通过微纳加工制造方法设计和制备了一批不同结构参数下的电声换能器,并对这些器件进行了性能测试和对比分析,结果表明:薄膜厚度对热致电声换能器发声声压影响显著,即薄膜越薄,该电声换能器的发声声压越大;薄膜半径、厚度和应力对静电式电声换能器的频带影响较大,即薄膜半径越大,厚度越薄,应力越小,该电声换能器频带越宽。以上研究为优化选取石墨烯电声换能器的类型,优化设计结构参数,提升器件发声性能奠定了基础。  相似文献   
237.
《防务技术》2020,16(2):374-380
Micro-TATB particles with different sizes and 3D nanoporous TATB architectures with different specific surface areas were prepared through recrystallization to study short pulse duration shock initiation properties by electric gun technology. For micro-TATB, the initiation threshold significantly decreases with TATB average size ranging from 79.7 μm to 0.5 μm. For 3D nanoporous TATB architecture, the initiation threshold decreases and then increases with specific surface areas increased from 9.6 m2/g to 36.2 m2/g. The lowest initiation thresholds are obtained for the micro-TATB with average sizes of 1.3 μm and 0.5 μm, and 3D nanoporous TATB architecture with specific surface area of 22.4 m2/g. The shock initiation thresholds of micro-TATB and 3D nanoporous TATB architectures show significantly decreases with the porosity increased. The decomposition reaction and thermal conductivity properties were further investigated to understand the initial response mechanism. High porosity provides more collapse sites to generate high temperature for formation of hot spots. The low thermal conductivity and decomposition temperature could enhance the formation and ignition of the hot spots, and initial decomposition reaction of TATB. The effect of the decomposition temperature is higher than that of the thermal conductivity on the shock initiation properties. The enhanced decomposition reaction could promote energy release and transfer process from the ignition to the combustion. This work offers a new insight to understand the effects of microstructure on the shock initiation properties and the initial response mechanism of TATB.  相似文献   
238.
《防务技术》2020,16(4):856-875
Reinforced concrete (RC) columns are widely used as supporting structures for high-piled wharfs. The study of damage model of a RC column due to underwater explosion is a critical issue to assess the wharf’s antiknock security. In this study, the dynamic response and damage model of circular RC columns subjected to underwater explosions were investigated by means of scaled-down experiment models. Experiments were carried out in a 10.0 m diameter tank with the water depth of 2.25 m, under different explosive quantities (0.025 kg–1.6 kg), stand-off distances (0.0 m–7.0 m), and detonation depths (0.25 m–2.0 m). The shock wave load and dynamic response of experiment models were measured by configuring sensors of pressure, acceleration, strain, and displacement. Then, the load distribution characteristics, time history of test data, and damage models related to present conditions were obtained and discussed. Three damage models, including bending failure, bending-shear failure and punching failure, were identified. In addition, the experience model of shock wave loads on the surface of a RC column was proposed for engineering application.  相似文献   
239.
《防务技术》2020,16(6):1167-1187
The load-carrying capacities and failure patterns of reinforced concrete components can be significantly changed by membrane effects. However, limited work has been carried out to investigate the blast resistance of Hybrid Fiber Reinforced Lightweight Aggregate Concrete (HFR-LWC) members accompanying membrane action. This paper presents a theoretical approach to quantitatively depicting the membrane behavior and its contribution on the behavior of HFR-LWC beams under close-range blast loadings, and the suitability of the proposed model is validated by a series of field tests. An improved Single-Degree-of-Freedom (SDOF) model was employed to describe the dynamic responses of beam-like members under blast loadings accompanying membrane action, where the mass-load coefficient is determined according to the nonuniformly distributed load induced by close-range explosion, and the membrane action is characterized by an in-plane (longitudinal) force and a resisting moment. The elasto-plastic and recovery responses of HFR-LWC beams under the combined action of blast load and membrane force were analyzed by the promoted model. A specially built end-constrain clamp was developed to provide membrane action for the beam member when they are subjected to blast load simultaneously. It is demonstrated that the analytical displacement-time histories are in good agreement with experimental results before peak deflections and that the improved SDOF model is an acceptable tool for predicting the behavior of HFR-LWC beams under blast loadings accompanying membrane action.  相似文献   
240.
介绍地铁火灾发生时的几个主要的特点以及其巨大的危害性,引出了地铁火灾应急预案制定模式的重要性。通过对已有的资料进行研究、分析,同时结合实际,对地铁火灾应急预案制定时所包含的主要内容进行了科学的完善,得出了一个完整的预案制定模式。  相似文献   
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