参考文献/References:
[1]N.H.Ethridge. A Procedure for Reading and Smoothing PressureTime Data from H.E. and Nuclear Explosions. BRL Memo. Report 1691. Aberdeen Proving Ground, Md., September 1965.[2]S.Glasstone. The effect of nuclear weapons U.S.Government printing Office.Washington.D.C,1962. [3]W.E.贝克.空中爆炸[M].原子能出版社, 1982.15~16.[4]范鹏贤,宋锋良. 温压武器的原理及其发展现状[J]. 科技资讯, 2006,(27):36.[5]李林.温压弹的原理与实践[J].现代军事, 2005,(1):55~57.[6]顾平安,卫海鹰,肖昌炎. FAE云雾爆轰冲击波压力测试技术研究[J].爆炸与冲击,2001,21(4) :311~314.[7]北京工学院《爆炸及其作用》编写组.爆炸及其作用第二册[M] .北京:国防工业出版社, 1979,279.[8]张陶,惠君明,谢立峰,等.FAE爆炸场超压与威力的试验研究[J].爆炸与冲击,2004,24(2):176~181.[9]张均奎,王正国. 冲击波负压致伤作用的研究[J].中华创伤杂志, 1993,9(3):20~22. [10]朗道,栗弗席兹.连续介质力学第三册[M]. 北京:高等教育出版社, 1969,52.[11]孙忠良,孙慧明,刘江,等.对人体损伤的兵器噪声和冲击波的标准化测量[J].解放军医学杂志,2003,28(1):19~22.
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