首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 109 毫秒
1.
设计了一套基于短波全向天线、超宽带全向天线的电磁辐射测量装置,对不同质量TNT爆炸产生的电磁辐射进行测量,通过数据处理得到电磁辐射特性。结果表明,炸药质量对爆炸产生的电磁辐射时域特性有显著影响,质量越大,电磁信号延迟响应越短,持续时间越长,峰值出现时间越早。60 kg TNT爆炸产生的电磁辐射信号频率主要集中在100 MHz以下,在0~50 MHz频段能量最集中,炸药成分对频谱分布的影响最大,不同成分的炸药爆炸产生的电磁辐射频谱分布有明显特异性。炸药爆炸产生的电磁辐射强度呈现与爆心距离较强的相关性,随着距离增大而递减,且递减幅度较大。装药构型和起爆方式会使炸药在爆炸过程中的几何运动模式发生变化,导致爆炸电磁辐射传播呈现非均匀性特征。  相似文献   

2.
导弹弹体空中结构解体毁伤研究   总被引:1,自引:0,他引:1  
针对弹体结构解体破坏是导弹K级毁伤主要毁伤模式之一,进行了爆炸冲击波载荷作用下自由状态导弹弹体结构毁伤理论预测与实验验证.基于简化的弹体质量阶梯分布梁结构和能量分析,进行了导弹弹体结构解体毁伤临界冲量理论预测,通过爆炸冲击载荷作用下局部及舱段式弹体模拟结构毁伤实验,对理论模型进行了分析验证.研究结果对于导弹目标易损性分析与毁伤评估具有一定参考价值.  相似文献   

3.
为研究气态抑爆介质对洞库管路系统油气爆炸的抑制作用,研制了主动式油气爆炸抑制实验装置,搭建了洞库管路系统油气爆炸抑制实验系统。以CO2为抑爆介质,进行了油气爆炸抑制实验,与无抑爆介质条件进行了对比,并分析了火焰强度、爆炸超压值、火焰传播速度和爆炸产物等特性参数变化情况。结果表明:抑爆器通过喷射CO2,对爆炸火焰强度、持续时间有明显的抑制作用;在CO2作用下,最大爆炸超压值和最大火焰传播速度分别下降了34.21%和54.48%;通过分析油气爆炸燃烧产物,可知在CO2作用下,有较多油气并没有参与燃烧反应或者反应不完全。  相似文献   

4.
基于爆破法扫雷爆破筒扫雷作用原理,设计了8.2 kg一次引爆型固态FAE扫雷装置。通过改变起爆位置和设置方式,多次野外近地面爆炸试验,采用反射压力传感器在装药正向与侧向离爆点不同位置进行压力测试,同时在正向测线压力传感器的对应位置设置某型防步兵地雷,得到爆炸场不同位置处的爆炸参数以及防步兵雷扫雷范围。结果表明:水平设置扫雷装药的扫雷范围明显大于垂直设置的装药,最佳炸高约为0.60 m;且其爆炸场正压区作用时间曲线呈“V”形,产物作用范围达63倍装药半径,与等当量的TNT的作用时间有明显的优势;本装置的扫雷范围约为目前扫雷爆破筒爆破扫雷范围的1.8~3.85倍,正向可靠扫雷范围可达其装药半径的77倍,侧向达69倍。由于该装药爆炸作用区域正压作用时间明显加长,因此有利于各种地雷的清除,是一种潜在高效的爆破法扫雷装药。  相似文献   

5.
根据远程反潜作战的需求,提出了一种以爆炸辅助的远程反潜预警系统的构想:该系统以小当量TNT爆炸产生的冲击波为声源,采用异地收发的方式,根据水听器接收到的直波和反射波的时刻,可对潜艇进行远距离探测定位。在分析系统原理的基础上,对系统的组成、战术运用进行了讨论,并总结了该系统的特点及其探测性能。研究结果表明:该系统具有探测距离远,搜索效率高,组织兵力简单等优点,可为编队远程反潜体系的建设提供参考。  相似文献   

6.
液体火箭发动机气液同轴式喷嘴混合特性实验研究   总被引:2,自引:2,他引:2       下载免费PDF全文
本文通过实验研究了液体火箭发动机气液同轴离心式喷嘴的混合特性。利用两相探针技术,测量了喷嘴下游喷雾流场中气液流强和混合比分布,考察了喷嘴缩进比和气液喷注压降等参数对混合特性的影响。结果表明,气液同轴离心式喷嘴的缩进比对喷嘴混合特性有较大影响,增大缩进比将导致更窄的气液流强分布和更均匀的混合,而改变气液喷注压降将导致不同的流强和混合比分布规律。  相似文献   

7.
针对爆磁压缩发生器高精度延时起爆控制的要求,建立了基于电路控制延时方案的最佳起爆时序模型,分析了其时序误差散布。设计了一种爆轰驱动飞片型高功率放电开关,通过数值仿真分析了开关的耐压能力及飞片变形。实验测试了6发开关的闭合放电性能,数据表明:开关两极间电压5k V时未出现击穿现象,闭合响应时间分布在66±5μs以内、标准差2.7μs,开关导通时间≥900μs,放电效率接近90%。采用小型爆磁压缩发生器与延时控制系统进行了联调实验,结果表明:爆磁压缩发生器运行时刻与电流峰值时刻相差1.8μs,延时误差7.8%,延时控制系统满足高精度起爆控制的要求。  相似文献   

8.
受限空间可燃气体爆炸抑爆实验系统研究   总被引:8,自引:2,他引:6  
针对狭长受限空间可燃气体爆炸抑制模拟实验研究的需要,采用超细冷气溶胶抑爆技术设计了一套操作方便、组装灵活、结构合理的复合式气体爆炸抑制系统.完成气体爆炸和抑爆实验.实验表明该抑爆实验系统能满足受限空间不同工况气体爆炸抑爆实验研究的需要;同时也表明可燃气体浓度、抑爆剂性能、信号采集及控制系统响应速度等是影响抑爆效果的主要因素.文中的研究为进一步研制抑爆装置奠定了实验和理论基础.  相似文献   

9.
以泰勒级数法的理论模型为基础,研究它在纯方位TMA中的应用问题。将泰勒级数法与高斯-牛顿法相结合,得到一种混合泰勒级数法。这种混合方法简单易懂,计算并不复杂。经蒙特卡罗仿真研究,其性能可与高斯-牛顿法相比较,对于有些态势甚至在收敛时间以及解算效果上要优于高斯-牛顿法。算法性能反映在一些典型的TMA态势上。  相似文献   

10.
对基于有限集统计的多目标跟踪算法进行研究。PHD滤波器针对传统多目标跟踪中计算量较大的问题,通过计算多目标分布后验密度的一阶矩模拟多目标贝叶斯迭代,取得了良好的效果。针对PHD滤波器对目标漏检较为敏感的缺陷,Cardinalized PHD(CPHD)滤波器同时估计得到后验密度分布和后验势分布,是对PHD滤波的泛化。通过实现PHD和CPHD滤波的混合高斯模型,分析比较两者的性能。实验表明,由于引入了势分布,CPHD滤波提高了对目标估计的准确率,总体性能优于PHD滤波算法。  相似文献   

11.
In order to improve the energy level of fuel air explosive(FAE) with delayed secondary igniters, high energetic metal powders were added to liquid fuels mainly composed of ether and isopropyl nitrate. Metal powders' explosive properties and reaction mechanisms in FAE were studied by high-speed video, pressure test system, and infrared thermal imager. The results show that compared with pure liquid fuels, the shock wave overpressure, maximum surface fireball temperature and high temperature duration of the mixture were significantly increased after adding high energetic metal powder. The overpressure values of the liquid-solid mixture at all measuring points were higher than that of the pure liquid fuels. And the maximum temperature of the fireball was up to 1700 ℃, which was higher than that of the pure liquid fuels. After replacing 30%of aluminum powder with boron or magnesium hydride, the shock wave pressure of the mixture was further increased. The high heat of combustion of boron and the hydrogen released by magnesium hydride could effectively increase the blast effect of the mixture. The improvement of the explosion performance of boron was better than magnesium hydride. It shows that adding high energetic metal powder to liquid fuels can effectively improve the explosion performance of FAE.  相似文献   

12.
Shockwaves from fuel-air explosive (FAE) cloud explosions may cause significant casualties. The ground overpressure field is usually used to evaluate the damage range of explosion shockwaves. In this paper, a finite element model of multi-sources FAE explosion is established to simulate the process of multiple shockwaves propagation and interaction. The model is verified with the experimental data of a fourfold-source FAE explosion, with the total fuel mass of 340 kg. Simulation results show that the overpressure fields of multi-sources FAE explosions are different from that of the single-source. In the case of multi-sources, the overpressure fields are influenced significantly by source scattering distance and source number. Subsequently, damage ranges of overpressure under three different levels are calculated. Within a suitable source scattering distance, the damage range of multi-sources situation is greater than that of the single-source, under the same amount of total fuel mass. This research provides a basis for personnel shockwave protection from multi-sources FAE explosion.  相似文献   

13.
An infrared colorimetric radiation thermometrical system was established based on the theory of optical radiation. The dynamic temperature history of fuel air explosive (FAE) was measured to obtain the temperature responses of primary initiation FAE and secondary initiation FAE in real time. And the characteristics of their temperature history curves were compared and analyzed. The results show that the primary initiation FAE has higher explosion temperature and longer duration compared to the secondary initiation FAE.  相似文献   

14.
In this study, a nonlinear three-dimensional hydrocode numerical simulation was carried out using AUTODYN-3D to investigate the effect of blasting of a high explosive material (TNT) against several configurations of the composite structure. Several numerical models were carried out to study the effect of varying the thickness of the walls and the effect of adding an air layer or aluminum foam layer inside two layers of concrete in mitigating the effect of blast waves on the structure walls. The results showed that increasing the thickness of walls has a good effect on mitigating the effect of blast waves. When a layer of air was added, the effect of blast waves was exaggerated, while when a layer of aluminum foam was added the blast wave effects were mitigated with a reasonable percentage.  相似文献   

15.
《防务技术》2022,18(9):1552-1562
To further explore the damage characteristics and impact response of the shaped charge to the solid rocket engine (SRE) in storage or transportation, protective armor was designed and the shelled charges model (SCM)/SRE with protective armor impacting by shaped charge tests were conducted. Air overpressures at 5 locations and axial acceleration caused by the explosion were measured, and the experimental results were compared with two air overpressure curves of propellant detonation obtained by related scholars. Afterwards, the finite element software AUTODYN was used to simulate the SCM impacted process and SRE detonation results. The penetration process and the formation cause of damage were analyzed. The detonation performance of TNT, reference propellant, and the propellant used in this experiment was compared. The axial acceleration caused by the explosion was also analyzed. By comprehensive comparison, the energy released by the detonation of this propellant is larger, and the HMX or Al particles contained in this propellant are more than the reference propellant, with a TNT equivalent of 1.168–1.196. Finally, advanced protection armor suggestions were proposed based on the theory of woven fabric rubber composite armor (WFRCA).  相似文献   

16.
《防务技术》2022,18(9):1662-1678
In current guidelines, the free air blast loads (overpressure and impulse) are determined by spherical charges, although most of ordnance devices are more nearly cylindrical than spherical in geometry. This may result in a great underestimation of blast loads in the near field and lead to an unsafe design. However, there is still a lack of systematic quantitative analysis of the blast loads generated from cylindrical charges. In this study, a numerical model is developed by using the hydrocode AUTODYN to investigate the influences of aspect ratio and orientation on the free air blast loads generated from center-initiated cylindrical charges. This is done by examining the pressure contours, the peak overpressures and impulses for various aspect ratios ranged from 1 to 8 and arbitrary orientation monitored along every azimuth angle with an interval of 5°. To characterize the distribution patterns of blast loads, three regions, i.e., the axial region, the vertex region and the radial region are identified, and the propagation of blast waves in each region is analyzed in detail. The complexity of blast loads of cylindrical charges is found to result from the bridge wave and its interaction with primary waves. Several empirical formulas are presented based on curve-fitting the numerical data, including the orientation where the maximum peak overpressure emerges, the critical scaled distance beyond which the charge shape effect could be neglected and blast loads with varied aspect ratio in arbitrary orientation, all of which are useful for blast-resistant design.  相似文献   

17.
The response characteristics of the warhead under thermal stimuli conditions are important to the safety improvement. The goal of this study is to obtain data on the warhead in the fast cook-off process. In this paper, a numerical calculation method is proposed, whose reliability is supported by comparison with experimental results. Through the numerical calculation, the temperature distribution, temperature change, and ignition time are acquired. The numerical results show that the ignition time is 76 s after the warhead started to burn and that the maximum temperature of the explosive's outer surface is 238.3 C at the ignition time. The fast cook-off experiment of the warhead is implemented so as to get the flame temperature and reaction grades that are not available through numerical calculation. The experimental results show that the overpressure fails to reach the preset minimum value which is equivalent to 6 kg of TNT and that the reaction grade is deflagration. The research results have reference value for the design of the warhead and the reduction of detonation risks.  相似文献   

18.
采用化学气相沉积(CVD, Chemical Vapor Deposition)工艺在KD-I型SiC纤维表面制备了SiC涂层,选择2h、4h、6h和8h四个时间点研究了沉积时间对纤维性能的影响.结果表明:具有CVD SiC涂层的SiC纤维较无涂层的纤维来说强度有所下降;在所研究的沉积时间范围内,随着沉积时间的增加,涂层的厚度有所增加,涂层由不连续的岛状转变为连续层状,纤维的单丝强度出现了先升后降的趋势.  相似文献   

19.
《防务技术》2020,16(1):96-106
The numerical simulation of a blast wave of a multilayer composite charge is investigated. A calculation model of the near-field explosion and far-field propagation of the shock wave of a composite charge is established using the AUTODYN finite element program. Results of the near-field and far-field calculations of the shock wave respectively converge at cell sizes of 0.25–0.5 cm and 1–3 cm. The Euler––flux-corrected transport solver is found to be suitable for the far-field calculation after mapping. A numerical simulation is conducted to study the formation, propagation, and interaction of the shock wave of the composite charge for different initiation modes. It is found that the initiation mode obviously affects the shock-wave waveform and pressure distribution of the composite charge. Additionally, it is found that the area of the overpressure distribution is greatest for internal and external simultaneous initiation, and the peak pressure of the shock wave exponentially decays, fitting the calculation formula of the peak overpressure attenuation under different initiation modes, which is obtained and verified by experiment. The difference between numerical and experimental results is less than 10%, and the peak overpressure of both internal and external initiation is 56.12% higher than that of central single-point initiation.  相似文献   

20.
为评估炸药在封闭容器内爆炸产生的振动效应对周围环境的影响,对封闭式爆炸容器小药量TNT炸药爆炸产生的爆炸振动效应进行了爆源邻近实地监测和测试。结果表明:小药量炸药爆炸引起的爆炸振动效应对距爆源100 m以外的普通砖结构民用住宅产生的速度强度远低于其临界峰值速度,不会对其结构产生明显影响。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号