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自航式实体模拟目标受鱼雷撞击冲击力计算仿真
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作者 谢志强 向小梅 《舰船科学技术》 北大核心 2019年第3期145-149,共5页
本文采用有限元分析方法,构建某重型鱼雷、自航式实体模拟目标几何模型及参数,对鱼雷撞击自航式实体模拟目标的冲击力进行仿真计算,得出自航式实体模拟目标的变形以及塑性应变,为自航式实体模拟目标的安全防护设计提供技术支撑。
关键词 自航式实体模拟目标 冲击力 变形 塑性应变
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四点插值法在柔性织物曲面模拟中的应用
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作者 杨晓波 《纺织学报》 EI CAS CSCD 北大核心 2015年第6期50-54,共5页
为进一步提高柔性织物的仿真度,提出一种基于四点插值法的柔性织物曲面模拟方法。具体研究过程是:首先分析了基于四点插值法的织物曲面模型,利用四点插值法细分柔性织物的曲线和曲面,最后通过四点插值法进行曲面的拼接和局部修改,并采... 为进一步提高柔性织物的仿真度,提出一种基于四点插值法的柔性织物曲面模拟方法。具体研究过程是:首先分析了基于四点插值法的织物曲面模型,利用四点插值法细分柔性织物的曲线和曲面,最后通过四点插值法进行曲面的拼接和局部修改,并采用对比实验验证四点插值法的可行性。研究结果表明,所提出的基于四点插值法的柔性织物实体模拟方法,模拟准确度达到95%以上,从而验证了该方法的可行性。 展开更多
关键词 四点插值法 柔性织物 曲面模型 实体模拟
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用于锻压模拟的动力项调整准逆算法
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作者 柳葆生 《重庆工学院学报》 2007年第3期1-5,共5页
实体成形过程的数值模拟如锻压过程的模拟,由于所采用的算法导致很高计算代价,所以提高计算效率和稳定性,仍然是一个需要努力解决的问题.通常采用的两大类算法,即准静态隐式算法和动力显式算法,难以很有效地应用于这类问题的模拟,基于Ne... 实体成形过程的数值模拟如锻压过程的模拟,由于所采用的算法导致很高计算代价,所以提高计算效率和稳定性,仍然是一个需要努力解决的问题.通常采用的两大类算法,即准静态隐式算法和动力显式算法,难以很有效地应用于这类问题的模拟,基于Newmark类的动力问题算法也会导致庞大的计算量.针对这类问题提出一种特定的算法.该算法基于准静态模型,又加入动力调整项.该方法使用动力项调整加强了刚度矩阵的对角线元素,因而可以使用一种准逆算法代替传统技术求解线性方程组.由于求解代价的显著降低,可以使用显式Runge-Kutta方法进行模拟过程的时间积分.这一方法预计可用于以合理的代价实现锻压过程的稳定和可靠模拟. 展开更多
关键词 锻压 实体成形模拟 准逆算法 动力项调整
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Numerical simulation of dynamic process for liquid film spreading by lattice Boltzmann method and its experimental verification 被引量:2
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作者 刘邱祖 寇子明 韩振南 《Journal of Central South University》 SCIE EI CAS 2014年第8期3247-3253,共7页
Combined with the kinetic model of liquid film spreading, a new numerical method of solid-liquid-gas three-phase flow was developed for the moving of contact line, which was a hybrid method of computational fluid dyna... Combined with the kinetic model of liquid film spreading, a new numerical method of solid-liquid-gas three-phase flow was developed for the moving of contact line, which was a hybrid method of computational fluid dynamics and lattice Boltzmalm method (LBM). By taking the effect of molecule force in droplet and the wall surface on liquid film into account, the changing law of contact angle with different surface tensions was analyzed on glass and aluminum foil surfaces. Compared with experimental results, the standard deviation by using LBM is less than 0.5°, which validates the feasibility of LBM simulation on the dynamic process of liquid film spreading. In addition, oscillations are discovered both at the initial and end phases. The phenomenon of retraction is also found and the maximum retraction angle is 7.58°. The obtained result shows that the retraction is proved to be correlative with precursor film by tracking the volume change of liquid film contour. Furthermore, non-dimensional coefficient 2 is introduced to measure the liquid film retraction capacity. 展开更多
关键词 liquid film spreading contact angle lattice Boltzmann method (LBM) retraction phenomenon numerical simulation
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Simulation and experimental study of high pressure switching expansion reduction considering real gas effect 被引量:2
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作者 罗语溪 张彦军 +2 位作者 高玉宝 王宣银 徐志鹏 《Journal of Central South University》 SCIE EI CAS 2014年第6期2253-2261,共9页
Switching expansion reduction(SER)uses a switch valve instead of the throttle valve to realize electronically controlled pressure reduction for high pressure pneumatics.A comprehensive and interactive pneumatic simula... Switching expansion reduction(SER)uses a switch valve instead of the throttle valve to realize electronically controlled pressure reduction for high pressure pneumatics.A comprehensive and interactive pneumatic simulation model according to the experimental setup of SER has been built.The mathematical model considers heat exchanges,source air pressure and temperature,environmental temperatures and heat transfer coefficients variations.In addition,the compensation for real gas effect is used in the model building.The comparison between experiments and simulations of SER indicates that,to compensate the real gas effect in high pressure discharging process,the thermal capacity of air supply container in simulation should be less than the actual value.The higher the pressure range,the greater the deviation.Simulated and experimental results are highly consistent within pressure reduction ratios ranging from 1.4 to 20 and output air mass flow rates ranging from 3.5 to 132 g/s,which verifies the high adaptability of SER and the validity of the mathematic model and the compensation method. 展开更多
关键词 high pressure pneumatics pressure reduction dynamic simulation model real gas effect
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