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作 者:穆中国[1] 白雪莲[1] 杨洪禹[1] MU Zhongguo;BAI Xuelian;YANG Hongyu(Department of Underwater Weaponry and Chemical Defense,Dalian Naval Academy,Dalian 116018,China)
机构地区:[1]海军大连舰艇学院水武与防化系,辽宁大连116018
出 处:《兵器装备工程学报》2018年第11期26-29,共4页Journal of Ordnance Equipment Engineering
基 金:军内科研重点资助项目(DLJYNYK2015-12)
摘 要:结合海洋环境的气象变化特点,构建了化学急袭杀伤作用数学模型,研究估算了化学急袭在海战场中的杀伤威力。研究表明:化学急袭毒害剂量高、范围大,一旦使用将会对舰艇部队的作战行动产生严重影响,随着弹药量和毒害纵深的增加,化学急袭的威力显著增大。从陆地和海上发动化学急袭,海上的杀伤威力更大。The mathematics model of killing power of chemical snapshot attack was established in accordance with characteristics of meteorologic characteristics of sea battlefield in this paper.The killing power of chemical snapshot attack in the sea battlefield was studied and estimated.The results show that chemical snapshot attack with high poisoning dose and large harm scale can affect combat action of warship seriously.The killing power of chemical snapshot attack is enhanced remarkably with the increase of ammunition weight and poison depth.The chemical snapshot attack at the sea has greater killing power.
分 类 号:TJ92[兵器科学与技术—武器系统与运用工程]
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