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作 者:孙越林 蔡子雷 施锐 胡浩 张文译 SUN Yuelin;CAI Zilei;SHI Rui;HU Hao;ZHANG Wenyi(Unit 92942 of the Chinese People’s Liberation Army,Beijing 100161,China;System Engineering Research Institute,China State Shipbuilding Corporation Limited,Beijing 100094,China)
机构地区:[1]92942部队,北京100161 [2]中国船舶集团系统工程研究院,北京100094
出 处:《兵器装备工程学报》2023年第S01期137-142,共6页Journal of Ordnance Equipment Engineering
摘 要:为充分发挥舰炮弹药的杀伤效果,提升弹药火力覆盖区域面积,建立舰炮弹药威力场模型和毁伤面积计算模型。通过构建舰炮弹药结构模型,结合破片威力场计算理论,得到舰炮弹药威力场数字化模型。根据舰炮弹药毁伤原理和打击目标易损特性,建立舰炮弹药毁伤面积计算模型,分析舰炮弹药在不同高度、落角、落速的毁伤面积,对比得到舰炮弹药最佳攻击模式。研究表明,落角直接影响破片在地面上的分布集中带的形状,落速和落高主要影响破片分布的密集程度。In order to give full play of the killing effect of naval gun ammunition and increase the coverage area of ammunition firepower,this paper establishes a power field model and a damage area calculation model of naval gun ammunition.By constructing a structural model of naval gun ammunition and combining with the theory of computation of fragment power fields,a digital model of naval gun ammunition power field is obtained.Based on the damage principle of naval gun ammunition and the vulnerability characteristics of the targets,a calculation model for the damage area of the naval gun ammunition is established.The damage area of the naval gun ammunition at different heights,falling angles and falling velocities is analyzed,and the optimal attack mode of the naval gun ammunition is compared by comparison.The results show that the falling angle directly affects the shape of the distribution and concentration zone of the fragments on the ground,while the falling velocity and falling height mainly affect the density of fragment distribution.
分 类 号:TJ391[兵器科学与技术—火炮、自动武器与弹药工程]
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