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171.
The axial and tangential velocities of gas and particle phases and particle concentration for turbulent swirling and recirculating gas-particle (simulating gas-droplet) flows in a cold model of a dual-inlet sudden-expansion combustor with partially tangential central tubes, proposed by the present authors, were measured by using a 2-D LDV system and a laser optic fiber system combined with a sampling probe. The results show that there are both gas and particle strongly reverse flows and swirling flows in the head part of the combustor. The velocity slip between gas and particle phases is remarkable. The particle concentration is higher near the wall and lower near the axis. There are two peaks in the concentration profiles near the inlet tubes. The above-obtained flow characteristics are favorable to ignition, flame stabilization and combustion. The results can also be used to validate the numerical modeling. 相似文献
172.
协同多目标攻击空战决策的启发式粒子群优化算法 总被引:3,自引:0,他引:3
利用协同多目标攻击战术的特定知识,并结合粒子群算法,提出了一种用于空战决策的启发式粒子群算法。该算法利用粒子群算法对解空间探索能力强,容易跳出局部最优陷井及启发式算法局部搜索能力强的优点,快速、高效地对全局最优值进行搜索。该算法通过求解友机导弹对目标的最优分配来确定空战决策方案。仿真实验结果表明。本文算法对最优空战决策方案的搜索性能明显优于普通粒子群算法及其他两种遗传算法。 相似文献
173.
174.
为了研究压电驱动狭缝喷口自耦合射流的流动特性,采用PIV、热线风速仪测试手段,对自耦合射流激发器在不同激励因素下的流场和速度场分布进行了实验和分析.结果显示,自耦合射流在狭缝出口处产生了反向涡对,随着自耦合射流的发展,射流呈现出在喷口短轴方向急剧向两侧扩展、而在喷口长轴方向先收缩后缓慢扩展的流动特征;自耦合射流的速度分布在法线方向呈现先上升后下降的趋势,在z/b=10左右速度达到最大值;在射流展向上,短轴方向速度呈规律的对称分布和速度自模的特征,而长轴方向速度近喷口区域呈现马鞍状分布,随着法向距离增加这种趋势消失.研究中发现,激发器存在两个谐振频率,在谐振频率激发下自耦合射流的速度和涡量比较大.与常规射流相比,自耦合射流显示出了独特的流动特性. 相似文献
175.
文章将粒子群优化方法应用于飞机低空突防航路规划技术研究,提出了利用一组正弦波曲线来构造一个粒子,并在适应度函数设计巾加入处罚函数,使该方法得到的飞行航线严格经过起始点和目标点,而且满足飞机的机动性能要求,以及起始航向角与目标进入角的要求。仿真结果表明,所用方法简便可行,粒子能较快地收敛于全局最佳航路。 相似文献
176.
喷丸强化对AISI 420不锈钢固体粒子冲蚀行为的影响 总被引:1,自引:1,他引:0
研究了喷丸强化(SP)对AISI 420马氏体不锈钢抗同体粒子冲蚀(SPE)行为的影响.探讨了喷丸引起的表面残余压应力,表面粗糙度增大和表面加工硬化等三因素对SPE抗力的作用机制.结果表明:SP处理对AISI 420不锈钢在30°攻角下的SPE抗力无明显影响,但却降低了该钢在90°攻角下的SPE抗力.SP处理后进行表面抛光,则使该钢在两种攻角下的SPE抗力均得以提高.SP三因素对SPE抗力的作用机制主要有:表面粗糙化增大了试样表面对冲蚀粒子的有效暴露面积,因而降低了不锈钢在两种攻角下的SPE抗力;表面残余压应力能够有效抑制疲劳裂纹萌生和早期扩展,因而能有效提高AISI 420不锈钢的SPE抗力,特别是对90°垂直冲击条件下SPE抗力的提高作用更为明显;表面加工硬化提高了材料表面的微犁削抗力,因而对提高AISI 420钢在30°攻角下的SPE抗力有贡献,但是表面加工硬化层的抗多冲疲劳性能差,却不利于AISI 420钢在90°攻角下抗SPE性能的改善. 相似文献
177.
178.
Pankaj K. Soni Bharati Kakad Amar Kakad 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2021,67(2):749-761
This article aims to understand the motion of the charged particles trapped in the Earth’s inner magnetosphere. The emphasis is on identifying the numerical scheme, which is appropriate to characterize the trajectories of the charged particles of different energies that enter the Earth’s magnetosphere and get trap along the magnetic field lines. These particles perform three different periodic motions, namely: gyration, bounce, and azimuthal drift. However, often, the gyration of the particle is ignored, and only the guiding center of the particle is traced to reduce the computational time. It is because the simulation of all three motions (gyro, bounce, and drift) together needed a robust numerical scheme, which has less numerical dissipation. We have developed a three-dimensional test particle simulation model in which the relativistic equation of motion is solved numerically using the fourth and sixth-order Runge-Kutta methods. The stability of the simulation model is verified by checking the conservation of total kinetic energy and adiabatic invariants linked with each type of motion. We found that the sixth-order Runge-Kutta method is suitable to trace the complete trajectories of both proton and electron of a wide energy range, 5 keV to 250 MeV for L = 2 – 6. We have estimated the bounce and drift periods from the simulations, and they are found to be in good agreement with the theory. The study implies that a simulation model with sixth-order Runge-Kutta method can be applied to the time-vary, non-analytical form of magnetic configuration in future studies to understand the dynamics of charged particles trapped in Earth’s magnetosphere. 相似文献
179.
基于片状Al2O3陶瓷互锁结构强度高的特点,制备出夹杂石墨的高气孔率的Al2O3多孔陶瓷,并通过原位还原在多孔骨架中制备出Ni微粒,形成一种轻质的双损耗陶瓷基吸波材料。通过XRD、FE-SEM和EDS研究了还原温度对多孔吸波材料的组成、微观形貌、元素分布和吸波性能的影响。结果表明,还原温度升温至700 ℃可将多孔网络中Ni完全还原,形成以堆叠互锁Al2O3为基,夹杂片状石墨和孔表面覆盖Ni微粒的双损耗轻质吸波材料。当复合材料厚度为6.5 mm时,最小反射损耗为-35.01 dB,有效吸收带宽达到1.75 GHz。片状Al2O3锁定的石墨片构筑的导电网络,Ni微粒与基体之间的极化效应等共同促进复合材料良好的微波吸收性能。 相似文献
180.
Collisions between birds and aircraft are one of the most dangerous threats to flight safety. In this study, smoothed particles hydrodynamics (SPH) method is used for simulating the bird strike to an airplane wing leading edge structure. In order to verify the model, first, experiment of bird strike to a flat aluminum plate is simulated, and then bird impact on an airplane wing lead-ing edge structure is investigated. After that, considering dimensions of wing internal structural components like ribs, skin and spar as design variables, we try to minimize structural mass and wing skin deformation simultaneously. To do this, bird strike simulations to 18 different wing structures are made based on Taguchi’s L18 factorial design of experiment. Then grey relational analysis is used to minimize structural mass and wing skin deformation due to the bird strike. The analysis of variance (ANOVA) is also applied and it is concluded that the most significant parameter for the performance of wing structure against impact is the skin thickness. Finally, a validation simu-lation is conducted under the optimal condition to show the improvement of performance of the wing structure. 相似文献