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在浅水、薄船、无限宽水域的条件下,舰船以亚临界速度(F_H<1)运动时,利用E.O.Tuck提出的渐近匹配展开法,可以得到定深度扰动速度势的摄动方程。对水深缓慢变化的海底,舰船的绕流不再是定常的,根据A.Plotkin所采用的多重尺度法,可以得到变深度浅水舰船扰动速度势的摄动方程。如果仅考虑扰动速度势的一阶摄动方程,则可得到考虑了线性兴波影响的舰船水压场的计算公式。 相似文献
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《防务技术》2019,15(4):495-505
Wave shaper effect on formation behavior and penetration performance of reactive liner shaped charge (RLSC) are investigated by experiments and simulations. The reactive materials liner with a density of 2.3 g/cm3 is fabricated by cold pressing at a pressure of 300 MPa and sintering at a temperature of 380 °C. Experiments of the RLSC with and without wave shaper against steel plates are carried out at standoffs of 0.5, 1.0, and 1.5 CD (charge diameter), respectively. The experimental results show that the penetration depths and structural damage effects of steel plates decrease with increasing the standoff, while the penetration depths and the damage effects of RLSC without wave shaper are much greater than that with wave shaper at the same standoff. To understand the unusual experimental results, numerical simulations based on AUTODYN-2D code are conducted to discuss the wave shaper effect, including the propagation behavior of detonation wave, the velocity and temperature distribution of reactive jet, and penetration depth of reactive jet. The simulations indicate that, compared with RLSC without wave shaper, there is a higher temperature produced inside reactive jet with wave shaper. This unusual temperature rise effects are likely to be an important mechanism to cause the initiation delay time of reactive jet to decline, which results in significantly decreasing its penetration performance. 相似文献
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针对自导深弹自导系统设计过程中,面临的简化目标探测系统和弹体姿态控制系统的要求,设计采用自动调整提前角导引算法作为自导策略;操极限舵,采用直接由导引算法得出舵角值的弹体姿态控制方法.给出了纵平面内深弹运动学模型、目标运动学模型、深弹与目标相对运动模型的数学描述,并在Matlab/Simulink 环境下完成了以上三个模型的实现和子模块封装, 编制了描述深弹整个自导过程的Simulink模块化程序;给出了自导深弹自动调整提前角导引方法的实现原理,并基于Simulink/StateFlow工具箱建立了该导引算法的图形化程序进行了仿真研究,验证了导引方法的有效性. 相似文献
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莫云 《中国人民武装警察部队学院学报》2010,26(5):60-63
谍战剧《潜伏》注重文化内涵的挖掘,融入了以往谍战类作品鲜见的人文因素,从信仰、人性深度、英雄的悲剧意蕴等三个方面进行了严肃的探讨。 相似文献
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运载火箭试验靶场就是用于火箭发射试验的专门场区,包括陆域、海域、空域等。靶场安全问题比较复杂、涉及范围广,火箭进入外层空间前不允许穿越外国领域或必须保证距国境线有一定的安全距离,其残骸落区不允许在外国领域。在我国,受到国土范围限制,又要实现洲际运载火箭全程飞行试验的要求,实际中通常采取"高弹道"、"低弹道"等特殊弹道的飞行试验来代替全程飞行试验的策略。通过对两类特殊亚轨道飞行器的飞行试验火箭的弹道特点描述,开展射程控制分析,研究基于我国国境进行亚轨道飞行试验的靶场安全控制方法。射程控制,对于低弹道可以采用控制俯仰程序角速度方法,而对于高弹道可以采用控制俯仰程序角方法。 相似文献