排序方式: 共有61条查询结果,搜索用时 15 毫秒
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经验模态分解方法在结构冲击信号分析中的应用 总被引:1,自引:0,他引:1
介绍一种非线性非平稳信号分析的新方法,此方法是基于经验模态分解(EMD)技术的振动信号分析算法。基于这种方法编写了非线性信号分析程序,把振动信号分解成多个本征函数,在分析过程中比较EMD方法与传统的FFT方法,通过两种方法的对比分析,体现了基于EMD的希尔伯特一黄变换的先进性。对水下爆炸载荷作用下的舰船结构响应进行数值模拟分析,并将EMD方法应用于水下爆炸结构冲击信号分析。通过研究每一个本征函数,从本质上分析水下爆炸冲击加速度信号的组成成分及特点。 相似文献
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当气泡在自由面和水面舰船附近运动时,两者的存在均会对气泡脉动产生影响。基于不可压缩势流理论,采用边界元方法对边界积分方程进行求解。针对建立自由面需要大量的网格,且处理自由面与水面结构交界面时数值不稳定,采用考虑自由面效应的格林函数取代基本格林函数,通过与自由面附近气泡轴对称模型的计算结果进行对比,验证了该方法的有效性。通过对舰船结构附近的气泡运动射流特性进行模拟,发现当药包在舷侧和自由面附近爆炸时,气泡射流可能不会完全作用在舰船上,自由面效应的存在削弱了气泡的打击能力。 相似文献
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高速弹丸侵彻储油容器液固耦合数值分析 总被引:1,自引:0,他引:1
为了探讨高速弹丸侵彻储油容器的液固耦合作用机理,采用大型动态非线性有限元软件ABAQUS\EXPLICIT,对空载、4/5装载和满载三种装载状态下的侵彻动力学过程进行了数值模拟.通过对比分析,得到了三种装载状态下弹丸速度衰减曲线和储油箱体的损伤变形特征,并对侵彻过程不同阶段的动力学特征和损伤机理进行了分析,计算结果与相关实验和理论结果吻合较好.结果表明:燃油对高速弹丸侵彻油箱的动力学过程影响很大,其作用主要体现在吸收更多弹丸的动能并将其转化为与燃油接触箱体的变形能,这往往会带来箱体整体性的破坏,在储油容器的结构强度设计时必须加以考虑. 相似文献
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Both sea battles and testing of ship in underwater explosions reveal unacceptably poor anti-shock performance of important shipboard equipment. Anti-shock performance of shipboard equipment is a significant factor determining fighting strength and survivability. The anti-shock performance of a shipboard gear case based on BV043/85 was investigated using numerical simulation. A geometric model of the gear case was built using MDT software and meshed in HyperMesh software, and then the finite element model of the gear case was formed. Using ABAQUS software, the anti-shock performance of the gear case was simulated. First, shock response of typical regions of gear case was determined. Next, some generalizations were made about the anti-shock performance of the gear case by analyzing the Mises stress of typical regions varied with shock inputs. Third, weak regions were determined from simulation results. The threshold values of shock resistance of the gear case at different impulse widths were obtained through interpolating the numerical simulation results selected from the most dangerous spot. This research provides a basis for further optimization of the design of gear cases. 相似文献
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