船舶力学
船舶力學
선박역학
JOURNAL OF SHIP MECHANICS
2007年
3期
453-461
,共9页
杜志鹏%李晓彬%夏利娟%金咸定
杜誌鵬%李曉彬%夏利娟%金鹹定
두지붕%리효빈%하리연%금함정
舰船舷侧防护结构%爆炸载荷下结构破裂%多欧拉一拉格朗日耦合%耦合面失效
艦船舷側防護結構%爆炸載荷下結構破裂%多歐拉一拉格朗日耦閤%耦閤麵失效
함선현측방호결구%폭작재하하결구파렬%다구랍일랍격랑일우합%우합면실효
warship broadside protective structure%rupture due to explosion loading%multiple Euler-Lagrange couple%coupling surface with failure
文章通过应用MSC.Dytran中的多欧拉一拉格朗日耦合方法,对反舰武器战斗部进入舷侧防爆结构内部爆炸作用下其变形和破坏的情况进行数值模拟研究.用多欧拉域模拟结构内外空气中爆炸冲击波传播情况.用快速一般耦合方法计算结构和流体的耦合作用.模拟结果显示:在冲击波作用下,防护结构外层舱室变形、失效后破裂,冲击波通过破口流入内层舱室.由于文中考虑了结构破坏与爆炸冲击波的相互作用,使得数值模拟方法和结果更符合实际.通过对爆炸冲击波动能与结构吸能的研究发现,除了结构的直接吸收削弱了冲击波的动能以外,通过破孔和舱壁上预开的孔泻掉的能量相当于结构总吸能的46.7%.因此在舰船舷侧防护结构设计时考虑内舱壁的适当开孔并减小强度是有益和必要的.
文章通過應用MSC.Dytran中的多歐拉一拉格朗日耦閤方法,對反艦武器戰鬥部進入舷側防爆結構內部爆炸作用下其變形和破壞的情況進行數值模擬研究.用多歐拉域模擬結構內外空氣中爆炸遲擊波傳播情況.用快速一般耦閤方法計算結構和流體的耦閤作用.模擬結果顯示:在遲擊波作用下,防護結構外層艙室變形、失效後破裂,遲擊波通過破口流入內層艙室.由于文中攷慮瞭結構破壞與爆炸遲擊波的相互作用,使得數值模擬方法和結果更符閤實際.通過對爆炸遲擊波動能與結構吸能的研究髮現,除瞭結構的直接吸收削弱瞭遲擊波的動能以外,通過破孔和艙壁上預開的孔瀉掉的能量相噹于結構總吸能的46.7%.因此在艦船舷側防護結構設計時攷慮內艙壁的適噹開孔併減小彊度是有益和必要的.
문장통과응용MSC.Dytran중적다구랍일랍격랑일우합방법,대반함무기전두부진입현측방폭결구내부폭작작용하기변형화파배적정황진행수치모의연구.용다구랍역모의결구내외공기중폭작충격파전파정황.용쾌속일반우합방법계산결구화류체적우합작용.모의결과현시:재충격파작용하,방호결구외층창실변형、실효후파렬,충격파통과파구류입내층창실.유우문중고필료결구파배여폭작충격파적상호작용,사득수치모의방법화결과경부합실제.통과대폭작충격파동능여결구흡능적연구발현,제료결구적직접흡수삭약료충격파적동능이외,통과파공화창벽상예개적공사도적능량상당우결구총흡능적46.7%.인차재함선현측방호결구설계시고필내창벽적괄당개공병감소강도시유익화필요적.
A numerical study is presented, in which an explicit coupled multiple Euler-Lagrange method in MSC.Dytran is used to investigate the deformation and rupture of broadside protective structure under inner explosion due to antiship warhead explosions.In the calculation procedure,multiple Euler domains are used to simulate the air inside the structure, the surrounding air and the explosive. A fast general coupling is used to simulate the interaction between the Lagrangian mesh and Euler mesh. When impacted by the shock wave, the outer cabin of protective structure deforms,fails, and then air blast flows into the inner cabins. Considering the coupling interaction between the structure's failure and the blast flow, the numerical simulation could be more rigorous and therefore may serve as a useful reference for designers. A brief investigation of energy absorbing and diffusion effect of the broadside protective structure is presented. The results indicate that besides the energy absorption effect of the structure material, the holes on the structure through which the shock blast diffuses and flow out of the structure also play a very important role in the whole explosive gas pressure releasing process.