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101.
将一种基于多维修正的Osher通量运用于高阶加权紧致非线性格式(WCNS)中,该修正通量主要在垂直于激波面的界面上增加耗散,能够改善Osher通量的激波捕捉稳定性,同时对边界层和接触间断的分辨率影响非常小。对修正的Osher通量在高阶WCNS中的特性进行研究,通过数值模拟测试了基于Osher通量的WCNS的激波稳定性、热流预测精度、边界层模拟能力、激波边界层干扰模拟能力,并与Steger-Warming通量和Roe通量进行了对比。结果表明修正后的Osher通量比Harten修正的Roe通量具有更好的激波捕捉鲁棒性,而边界层、驻点热流值和激波边界层干扰的模拟则明显优于Steger-Warming通量。上述结果说明了基于修正的Osher通量的高阶WCNS具有较好的激波捕捉特性、热流预测精度和边界层计算能力。 相似文献
102.
以航空发动机叶片制孔为导向,结合飞秒激光对单晶镍基高温合金材料的非热熔性损伤阈值(Φth1)和热熔性损伤阈值(Φth2)特征,研究了飞秒激光能量密度(0Φ44.2J/cm2)对制孔重铸层和加工效率的影响规律。研究结果表明:在Φth1ΦΦth2时,镍基合金经飞秒激光加工后加工侧壁没有出现明显的重铸物;在ΦΦth2时,加工侧壁开始出现重铸物,并随着能量密度的增加,重铸层厚度增大。在试验结果的基础上,建立了飞秒激光单脉冲加工深度与能量密度的定量关系。能量密度越高,飞秒激光单脉冲加工深度越大,加工效率越高。 相似文献
103.
《中国航空学报》2016,(5):1367-1377
A systemic and validated model was developed to predict ultraviolet spectra features from the shock layer of near-space hypersonic vehicles in the ‘‘solar blind" band region. Computational procedures were performed with 7-species thermal non-equilibrium fluid mechanics, finite rate chemistry, and radiation calculations. The thermal non-equilibrium flow field was calculated with a two-temperature model by the finite volume technique and verified against the bow-shock ultra-violet(BSUV) flight experiments. The absorption coefficient of the mixture gases was evaluated with a line-by-line method and validated through laboratory shock tube measurements. Using the line of sight(LOS) method, radiation was calculated from three BSUV flights at altitudes of 38,53.5 and 71 km. The investigation focused on the level and structure of ultraviolet spectra radiated from a NO band system in wavelengths of 200–400 nm. Results predicted by the current model show qualitative spatial agreement with the measured data. At a velocity of 3.5 km/s(about Mach11), the peak absolute intensity at an altitude of 38 km is two orders of magnitude higher than that at 53.5 km. Under the same flight conditions, the spectra structures have quite a similar distribution at different viewing angles. The present computational model performs well in the prediction of the ultraviolet spectra emitted from the shock layer and will contribute to the investigation and analysis of radiative features of hypersonic vehicles in near space. 相似文献
104.
以异氰酸酯为固化剂固化环氧树脂,通过比较不同固化条件下固化物结构的差异,研究了异氰酸酯与环氧树脂的反应历程;改变异氰酸酯/环氧树脂体系的化学计量比(I/E),采用FTIR/ATR、DSC、DMTA等研究了固化产物的结构与性能。结果表明,异氰酸酯与环氧树脂的固化历程随着温度的升高可分为三个阶段,第一阶段为异氰酸酯的三聚反应;第二阶段是一个复杂的过程,首先环氧树脂和异氰酸酯可反应生成嗯唑烷酮结构,通过嗯唑烷酮环扩链得到端畀氰酸酯基低聚物,可继续发生三聚反应;第三阶段为异氰脲酸酯与残余的环氧基团反应生成嗯唑烷酮结构,异氰脲酸酯六元环向噁唑烷酮五元环的转化是一个可逆的过程。不同的I/E比例可得到结构不同的固化物,不同的结构导致固化物性能的差异:当(I/E)=1.8时,综合力学性能良好,异氰酸酯/环氧树脂/玻璃纤维复合材料的弯曲强度、弯曲模量、层剪强度分别为652.53、33270.63和31.66MPa,优于甲基四氢苯酐/环氧树脂/玻璃纤维复合材料力学性能;当I/E=2.0时,固化物T_g达到了305℃,明显优于传统的环氧树脂固化体系。 相似文献
105.
A theoretical methodology for thermochemical non-equilibrium flow combing with the HLLC (Harten-Lax-van Leer Contact) scheme was applied to study the hypersonic thermochemical non-equilibrium environment of an entry configuration in ionized flow. A two-temperature controlling model was utilized and the Gupta’s 11 species (N2, O2, NO, O, N, NO+, N2+, O2+, N+, O+, e?) thermochemical non-equilibrium model was taken. Firstly, numerical calculations of hypersonic thermochemical non-equilibrium environments for different aerodynamic shapes were carried out to verify the reliability of the method above. Then, the method was used to research the effects of ionization and wall catalysis on the hypersonic thermochemical non-equilibrium environment of the entry configuration in ionized flow. The shock stand-off distance can be reduced by thermochemical reactions but doesn’t continue to decrease significantly when ionization occurs. The shock stand-off distance calculated by the 11 species model is 4.2% smaller than that calculated by the 5 species (N2, O2, NO, O, N) thermochemical non-equilibrium model without considering ionization. Ionization reduces wall heat flux but increases wall pressure a little. The effect of ionization on aerothermal loads is greater than that of aerodynamic loads. The thermochemical reactions of electrons and ions catalyzed at the wall increase wall heat flux significantly but make a small change in wall pressure. The maximum wall heat flux obtained by only considering the electrons and ions catalyzed at the partially catalytic wall condition is 11.8% less than that calculated at the super-catalytic wall condition. 相似文献
106.
为了研究高主流湍流度下二次流密度比对涡轮导叶全气膜冷却特性的影响,使用热色液晶测量了在主流湍流度为15%,二次流密度比为1.0和1.5下三维涡轮导叶的气膜冷却效率和换热系数。二次流与主流质量流量比为7.0%和12.5%。结果表明:二次流密度比增大可以降低冷气射流的动量,小流量比工况下,在叶片前缘和压力面前半段,动量较低的二次流在高主流湍流度的影响下更易耗散,增大二次流密度比使冷却效率明显降低;大流量比工况下,二次流动量降低使气膜孔后区域冷气贴附性增强,气膜冷却效率和冷气覆盖效果均得到提升。小流量比工况下,二次流密度比增大对叶片表面换热的影响较小;大流量比工况下,二次流密度比增大使吸力面中弦区域和压力面后半段的平均换热系数比分别降低15%和25%。 相似文献
107.
A.D. Danilov A.V. Konstantinova 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2019,63(1):359-370
Long-term changes in the E-layer critical frequency, foE, at three stations of the European region (Juliusruh, Slough and Rome) and also at Moscow and Wakkanai stations are analyzed by the method developed by the authors and described in detail in the previous papers. It is found that Juliusruh and Slough stations demonstrate a well-pronounced change in foE (a trend) during two previous decades. At the same time, the same features of the behavior of the aforementioned trend k(foE) are obtained. The trend is positive and negative in the morning and evening hours, respectively. Similar diurnal behavior of k(foE) is found also for Moscow station but with lower absolute values of the trends. A well-pronounced seasonal behavior of k(foE) is detected at Juliusruh and Slough: the trend is minimal and maximal in the summer period and at the end of fall—beginning of winter, respectively. The maximal amplitude in the morning hours reaches +0.04?MHz per year, whereas the minimal amplitude in evening hours is ?0.06?MHz per year. No systematic changes exceeding by the magnitude 0.01?MHz per year are found for Rome and Wakkanai stations. It is assumed that the observed trends are related to changes (trends) in the meridional wind bringing NO molecules from the auroral oval to lower latitudes. 相似文献
108.
基于剪敏液晶涂层(SSLCC)材料的光学特性,发展了适合于内流场狭小空间环境下的SSLCC边界层流动显示技术:设计并加工了微型摄像头-发光二极管(LED)组合式图像采集设备解决拍摄光路问题;基于二维SSLCC图像与三维模型的空间映射关系,建立了真实模型的三维重构方法;通过SSLCC图像光谱Hue色相值转化,实现了液晶图像信息的定量分析。以西北工业大学高亚声速平面叶栅风洞为平台,开展了某扩压叶栅吸力面边界层流态的剪敏液晶流动显示试验。结果表明:所发展的剪敏液晶显示技术可进行叶栅内流场边界层的流态测量;所建立的图像处理方法可为边界层流动特征的辨识及其特征位置确定提供技术支撑;在来流马赫数为0.12、攻角为0°的条件下,叶片吸力面边界层沿流向依次经历了层流边界层分离、再附着及转捩为湍流状态的过程,且边界层的发展受叶栅角区分离流动影响,造成其前缘分离区减小,再附着点和边界层转捩位置向前缘移动。 相似文献
109.
110.
随着新型Al-Li-Cu-Mg合金蒙皮在航空航天等高技术工业的应用日益广泛,新型Al-Li-Cu-Mg合金蒙皮拉伸成形特性已成为新型Al-Li-Cu-Mg合金板蒙皮成形质量精确控制以及蒙皮设计迫切需要解决的关键问题.因此,首先获得了新型T8态Al-Li-Cu-Mg合金的最佳热处理工艺参数;其次,采用试验方法,研究了不同热处理状态的拉伸成形过程,揭示了新型Al-Li-Cu-Mg合金板材的拉伸成形特性.发现通过固溶处理,后续时效能够显著提高新型T8态Al-Li-Cu-Mg合金材的拉形能力;在新型A1-Li-Cu-Mg合金板材拉形过程,桔皮现象主要出现在补拉阶段,蒙皮悬空区应变值>0.0215时,板材表面将出现桔皮,且与材料热处理状态无关. 相似文献