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11.
董朝阳 《飞行力学》1992,10(4):39-47
本文用能量状态近似法和奇异摄动法两件方法讨论了最优飞行剖面的生成.并以某机为例,用能量状态近似法求出了给定航程下的最优飞行剖面和给定初、末状态的爬升飞行剖面;为了对两种方法比较,也给出了奇异摄动法求得的爬升剖面.  相似文献   
12.
结合数值Riemann不变量和通量限制器(FluxLimiter)的概念,将基于Chakravarthy和Osher半离散差分格式的等价差分格式应用于三维复杂流场计算,应用时间相关法和全流场捕捉技术,获得了Ma=10,a=10°状态下球头绕流结果,壁面压力分布与Rusanov的计算结果相符合,在此基础上细致地刻画了在Ma=7,a=20°状态下绕流带座能飞船的复杂流场。  相似文献   
13.
本文首先将粒子云侵蚀条件下的驻点表面后退分解为无粒子烧蚀部分、粒子云引起的烧蚀增量部分和粒子撞击物面引起的直接侵蚀部分。然后研究了表面能量平衡关系,给出了粒子云引起的烧蚀增量表达式。最后分三类讨论粒子与飞行器的碰撞:(1)完全弹性碰撞(不符合实际);(2)完全非弹性碰撞;(3)部分弹性碰撞。对于后两种碰撞,本文分析了动能通量模拟适用的条件。  相似文献   
14.
1引言在叶轮机械叶栅内流动控制中,可以通过在叶片吸力面、端壁上安装翼刀或隔片,控制二次流的发展,降低二次流损失,其中将翼刀加装在吸力面上的控制方式即为吸力面翼刀控制技术。吸力面翼刀主要是通过阻断端壁附面层和叶片吸力面附面层近端壁处低能流动沿吸力面的展向迁移来对  相似文献   
15.
能谱变硬后的X射线对Ly12铝破坏效应的研究   总被引:1,自引:0,他引:1  
用数值模拟方法讨论了X射线的能谱向短波方向变化后,对Ly12铝破坏效应的影响,对所得结果进行了分析和解释。  相似文献   
16.
空间任意形状凸面的轨道空间外热流计算方法   总被引:11,自引:1,他引:11  
采用蒙特卡罗(MonteCarlo)方法,进行了平板、半球面、抛物面的地球反照角系数和地球红外角系数计算,通过与文献数据的比较,证明了由此方法所编程序的可靠性和实用性。利用这种方法,可以计算空间任意形状凸表面的轨道空间外热流。  相似文献   
17.
《中国航空学报》2020,33(6):1602-1610
This paper presents an integrated research scheme for vector deflection and energy extraction in a gas plasma jet under Magneto-Hydrodynamic (MHD) control. A MHD-controlled thrust-vector test rig was used to conduct the experimental research. A gas plasma was obtained by injecting ionization seeds of Cs2CO3 into the combustion chamber via artificially forced ionization. The effects of the gas temperature and ionization seed mass fraction on the plasma jet deflection and energy extraction were experimentally verified under an applied magnetic field. The experimental results were analyzed theoretically. The results showed that the deflection amplitude of the gas plasma jet and the extracted voltage signal intensity increased with increasing gas temperature and the ionization seed mass fraction. The extracted dynamic voltage signals proved that the ionization seeds of Cs2CO3 induced gas ionization at 1173 K. The experiment verified that it is feasible to simultaneously achieve jet deflection and extract energy under the action of an external magnetic field.  相似文献   
18.
Vegetable oil can be used as a base oil in minimal quantity of lubrication(MQL). This study compared the performances of MQL grinding by using castor oil, soybean oil, rapeseed oil, corn oil, sunflower oil, peanut oil, and palm oil as base oils. A K-P36 numerical-control precision surface grinder was used to perform plain grinding on a workpiece material with a high-temperature nickel base alloy. A YDM–III 99 three-dimensional dynamometer was used to measure grinding force,and a clip-type thermocouple was used to determine grinding temperature. The grinding force, grinding temperature, and energy ratio coefficient of MQL grinding were compared among the seven vegetable oil types. Results revealed that(1) castor oil-based MQL grinding yields the lowest grinding force but exhibits the highest grinding temperature and energy ratio coefficient;(2) palm oil-based MQL grinding generates the second lowest grinding force but shows the lowest grinding temperature and energy ratio coefficient;(3) MQL grinding based on the five other vegetable oils produces similar grinding forces, grinding temperatures, and energy ratio coefficients, with values ranging between those of castor oil and palm oil;(4) viscosity significantly influences grinding force and grinding temperature to a greater extent than fatty acid varieties and contents in vegetable oils;(5) although more viscous vegetable oil exhibits greater lubrication and significantly lower grinding force than less viscous vegetable oil, high viscosity reduces the heat exchange capability of vegetable oil and thus yields a high grinding temperature;(6) saturated fatty acid is a more efficient lubricant than unsaturated fatty acid; and(7) a short carbon chain transfers heat more effectively than a long carbon chain. Palm oil is the optimum base oil of MQL grinding, and this base oil yields 26.98 N tangential grinding force,87.10 N normal grinding force, 119.6 °C grinding temperature, and 42.7% energy ratio coefficient.  相似文献   
19.
《中国航空学报》2020,33(12):3027-3038
Hypersonic and high-enthalpy wind tunnels and their measurement techniques are the cornerstone of the hypersonic flight era that is a dream for human beings to fly faster, higher and further. The great progress has been achieved during the recent years and their critical technologies are still in an urgent need for further development. There are at least four kinds of hypersonic and high-enthalpy wind tunnels that are widely applied over the world and can be classified according to their operation modes. These wind tunnels are named as air-directly-heated hypersonic wind tunnel, light-gas-heated shock tunnel, free-piston-driven shock tunnel and detonation-driven shock tunnel, respectively. The critical technologies for developing the wind tunnels are introduced in this paper, and their merits and weakness are discussed based on wind tunnel performance evaluation. Measurement techniques especially developed for high-enthalpy flows are a part of the hypersonic wind tunnel technology because the flow is a chemically reacting gas motion and its diagnosis needs specially designed instruments. Three kinds of the measurement techniques considered to be of primary importance are introduced here, including the heat flux sensor, the aerodynamic balance, and optical diagnosis techniques. The techniques are developed usually for conventional wind tunnels, but further improved for hypersonic and high-enthalpy tunnels. The hypersonic ground test facilities have provided us with most of valuable experimental data on high-enthalpy flows and will play a more important role in hypersonic research area in the future. Therefore, several prospects for developing hypersonic and high-enthalpy wind tunnels are presented from our point of view.  相似文献   
20.
考虑可压缩与热传导的壁面函数边界条件及其应用   总被引:4,自引:0,他引:4  
考虑到可压缩和热传导效应的壁面函数边界条件,被耦合到了采用k-ω两方程湍流模型、用有限体积法求解N-S方程的程序中。壁面函数基于耦合的速度和温度型,并且在边界层内的粘性子区和对数区内一致有效。引入壁面函数边界条件后,通过算例验证在y <100的范围内,得到的物面压力、摩阻、热流与实验结果比较,结果可靠。而无壁面函数边界条件时,要得到相同精度的结果,要求y ≈1。壁面函数的引入,为工程上准确预测飞行器在湍流流动中表面受力与气动热提供了保障。  相似文献   
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