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991.
This paper presents a new method for measuring the cabin noise of a structure in a wind tunnel. A method for scaling the cabin sound was derived to obtain the cabin noise of a structure, and the derivation of the scaling procedure was based on a theoretical hypothesis regarding the cabin noise prediction for a scaled model in a wind tunnel. A frequency offset was generated because of the error introduced by model manufacture and installation, and a proposed modal test method was used to eliminate the frequency offset. Both a full-scale structure and scaled structure were measured in the wind tunnel tests. The cabin noise of the full-scale model was compared with the results obtained using the scaling procedure based on the scaled model. The comparisons of the measurement results indicate that the scaling procedures developed in this paper are effective for vibro-acoustic predictions in wind tunnels. Moreover, background noise tended to affect the results of the cabin sound for the wind tunnel test, and thus background noise should be prevented through specific design efforts. 相似文献
992.
高超声速飞行器在较低空域以极高马赫数飞行时,表面会同时存在湍流与化学非平衡流动,但目前针对此类高温化学非平衡湍流边界层流动特性的研究工作还比较有限,对不同湍流特征的主导流动机制的认识还有待于进一步深入。选取高超声速楔形体头部斜激波后的流动状态,设置3种不同的壁面温度,通过直接数值模拟对比了不同壁温条件下的边界层参数分布特性,并采用象限分解技术分析了边界层不同象限流动事件对雷诺剪切应力、湍流热流、湍流质量扩散的贡献。结果显示:在整个边界层中上抛和下扫运动对雷诺剪切应力的贡献占优;冷壁效应会使得流向和法向湍流热流通量的主导流动事件在温度峰值两侧发生改变。O原子组分流向湍流组分扩散主要受到高质量分数流体慢速运动事件和低质量分数流体快速运动事件的影响,而法向湍流组分扩散则主要受到高质量分数流体向上运动事件和低质量分数流体向下运动事件的影响。 相似文献
993.
Chunhua Jiang Hui Hu Guobin Yang Jing Liu Zhengyu Zhao 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2019,63(10):3167-3176
Ionograms recorded at Puer station (PUR, 22.7°N, 101.05°E, Dip Latitude 12.9°N) in the Southwest of China from January 2015 to December 2016 were used to study characteristics of the F2 layer stratification at the northern equatorial ionization anomaly. Ionosonde observations show that the development of the F2 layer stratification is different under different conditions. Both the upward and downward movement of the F2 layer stratification could be observed. The F2 layer stratification could occur both at daytime and nighttime. The new cusp could originate from different positions on ionograms. Moreover, statistical results indicate that the F2 layer stratification occurred later in the winter than in other seasons at daytime, it occurred frequently in the local spring, and most of ionograms with the F2 layer stratification at post-midnight occurred in March and April. Our results also show that the F2 layer stratification has a correlation with solar activity. 相似文献
994.
Stefaan Van wal Simon Tardivel 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2021,67(1):411-435
The impact of nonspherical bodies is complex, even at low velocities where contacting bodies are assumed to be rigid. Models of varying complexity (e.g. finite element methods) can be used to evaluate such impacts, but it is advantageous to use impulsive models such as that by Stronge, which are computationally inexpensive and governed by (fixed) material interaction coefficients. Stronge’s model parameterizes nonspherical rigid-body impacts with energetic restitution and Coulomb friction coefficients. This model was successfully used in large-scale simulations of ballistic lander deployment to asteroids and comets, whose trajectories involve dozens of chaotic bounces. To better understand the complex dynamics of these bouncing trajectories, this paper performs a dedicated study of idealized bouncing in two dimensions and on a flat plane, in order to limit the involved degrees of freedom. Using a numerical implementation of Stronge’s model, the motion of a bouncing square is simulated with different impact conditions: the square’s impact attitude, velocity, and mass distribution as well as the surface restitution and friction coefficients. The simulation results are used to investigate how these conditions affect the bouncing motion of the square, with a distinction between first impacts with zero angular velocity and successive impacts in which the square is spinning. This reveals how a single “macroscopic” bounce that separates two ballistic arcs may often consist of multiple micro-impacts that occur in quick succession. For the different impact conditions, we show how the number of micro-impacts per macro-bounce varies, as well as the normal, tangential, and total kinematic restitution coefficients. These are different from the energetic material restitution coefficient that parameterizes the impact. Finally, we examine how the settling time and distance of the bouncing trajectories change. These trends provide insight into the bouncing motion of ballistic lander spacecraft in small-body microgravity. 相似文献
995.
本文将微分几何中光滑曲面上局部存在的基于主方向的正交系联系于张量分析中的非完整基理论,以此为曲面与其邻域上的张量场场论提供了一种新方法,称为基于曲面主方向的正交系的非完整基理论。这种场论方法,基于基面的沿主方向的参数坐标,然后沿基面的法方向进行空间延拓,以此获得基面邻域内的完整的正交系。对此引入非完整基理论,可得所有的非零Christoffel符号直接对应为基面或者当地曲面的主曲率或者测地曲率,因而张量场的各种微分算子相对于曲面的主方向与法方向展开,所得分量表达式仅含物理量与曲面曲率。由此不仅可以清晰地展现曲面几何特征与物理量/物理过程之间的关系,而且所获得的分量表达式形式上最为简单。另一方面,经典的诸如柱坐标系、球坐标系等正交系也隶属基于曲面主方向的正交系,从而本文方法可以统一相关正交系下的张量场场论。作为应用,本文推导了可变形曲面上涡量、涡量法向梯度与变形率张量的表达式,曲面上流体边界层方程的分量方程,曲面介质相关守恒律方程等。 相似文献
996.
997.
An experimental study was conducted on turbulent separation behaviors induced by blunt fins with different sweep angles at Mach number 6.0. The Nano-particle based Planar Laser Scattering technique(NPLS) was applied to visualize the flowfield, complemented by pressure tests.Sweep angles of the fins were 10°, 20°,...,60°, with the same leading edge diameter of 10 mm. Fine structures of the interference flowfield induced by blunt fins have been obtained, including the shock systems and vortexes. I... 相似文献
998.
对边界层内小孔气水多相流场下射流问题开展数值仿真及定常水洞试验研究,建立了适用于边界层内压差驱动下小孔向气腔射流多相流场问题研究的数值仿真计算模型,针对典型孔参数及气水流场条件,对比分析了仿真试验数据,验证了数值仿真模型的正确性及模型计算精度。结合流体质点受力及运动模型及平板边界层理论,分析了气水域压力场特征及水域流动规律对小孔射流过程的作用机理及影响规律,开展了孔参数对射流多相流场特征及射流量的影响研究。获得了小孔射流量估算方法,为航行体上防水装置设计提供数据支撑。 相似文献
999.
1000.