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621.
李波  王水 《空间科学学报》2001,21(2):97-104
将实际的太阳大气划分为多个等温层次,导出了均匀倾斜磁场下线性Alfven波通过任意多等温层的能量透射率,结果表明,两等温层模式与三等温层模式的结果存在本质的区别。在两等温层中,温度的跃变式增高对Alfven波起着高通滤波的作用,而三等温层中在高频端Alfven波的透射率显示为振荡形态,对实际大气温度模式的计算结果表明,太阳低层大气更适合于周期为数秒的Alfven波的能量传输。  相似文献   
622.
《中国航空学报》2021,34(5):504-509
The interaction length induced by Shock Wave/Turbulent Boundary-Layer Interactions (SWTBLIs) in the hypersonic flow was investigated using a scaling analysis, in which the interaction length normalized by the displacement thickness of boundary layer was correlated with a corrected non-dimensional separation criterion across the interaction after accounting for the wall temperature effects. A large number of hypersonic SWTBLIs were compiled to examine the scaling analysis over a wide range of Mach numbers, Reynolds numbers, and wall temperatures. The results indicate that the hypersonic SWTBLIs with low Reynolds numbers collapse on the supersonic SWTBLIs, while the hypersonic cases with high Reynolds numbers show a more rapid growth of the interaction length than that with low Reynolds numbers. Thus, two scaling relationships are identified according to different Reynolds numbers for the hypersonic SWTBLIs. The scaling analysis provides valuable guidelines for engineering prediction of the interaction length, and thus, enriches the knowledge of hypersonic SWTBLIs.  相似文献   
623.
In the design of a hypersonic inward-turning inlet by applying the traditional basic flowfield, a reflected shock-wave is formed in the isolator due to the continuous reflection of the cowlreflected shock wave in the basic flow-field, which interacts with the boundary layer to produce a considerable influence on the performance of the inlet. Here, a basic flow-field design method that can control the velocity direction at the throat section is developed, and numerical simulations are conducted to demonstrate the effectiveness of this method. The method presented in this paper can achieve the absorption of the reflected waves at the shoulder of the basic flow-field by adjusting the variation law of the center radius in the basic flow-field, and a smooth transition between the compression surface and the isolator can also be produced. The Mach number and total pressure recovery coefficient of the inlet designed according to this method are 3.00 and 0.657, respectively, at design point(the incoming flow Mach number Ma1= 6.0). The results show that with this method, the inlet can efficiently weaken both the reflection of the shock wave and the interaction between the boundary layer and the reflected shock waves, which improves the aerodynamic performance of the inlet.  相似文献   
624.
Lamb Wave(LW) simulation under time-varying conditions is an effective and low cost way to study the problem of the low reliability of the structural health monitoring methods based on the LW and Piezoelectric Transducer(PT). In this paper, a multiphysics simulation method of the LW propagation with the PTs under load condition is proposed. With this method, two key mechanisms of the load influence on the LW propagation are considered and coupled with each other. The first mechanism is the acoustoelastic effect which is the main reason of the LW velocity change. The second key mechanism is the load influence on piezoelectric materials, which results in a change of the amplitude. Based on the computational platform of the COMSOL Multiphysics, a multiphysics simulation model of the LW propagation with the PTs under load condition is established. The simulation model includes two physical phenomena. The first one is called solid mechanics, which is used to simulate the acoustoelastic effect being combined with the hyperelastic material properties of the structure in which the LW propagates. The second one is called electromechanical coupling, which considers the simulation of the piezoelectric effect of the PTs for the LW excitation and sensing. To simulate the load influence on piezoelectric materials, a non-linear numerical model of the relationship between the load and the piezoelectric coefficient d31 is established based on an experiment of the load influence on the LW. The simulation results under uniaxial tensile load condition are obtained and are compared with the data obtained from the experiment. It shows that the variations of the phase velocity and amplitude of the LW obtained from the simulation model match the experimental results well.  相似文献   
625.
本文使用基于钻孔测井数据的3类模型,即常速度外推模型、速度梯度模型、双深度参数外推模型,通过对北京地区460个深度超过30m的钻孔剪切波速资料进行分析,详细探究了V_(S30)估算模型在本研究区的适用性。研究结果表明双深度参数外推模型在估算V_(S30)上准确度很高,其不需要大量的数据进行回归分析,且不具有区域独立性,可以为全球包括北京地区场地类别划分提供依据,进而在震害快速评估中用于确定场地影响,是一种值得推广的估算模型。  相似文献   
626.
吸收边界条件的选取在使用时域有限差分法分析设计衍射光学元件的过程中有着举足轻重的作用。文章从麦克斯韦方程组出发,推导出了一维吸收边界条件的解析解及该吸收边界对TEM波的反射系数,用数值模拟验证了在激励源分别处于讨论区域右边、中间,且在TEM波传播的同时一直存在的情况下,一维Mur一阶吸收边界条件和波延迟法的优质吸收效果。对两种边界条件的计算误差进行了对比和分析,结果表明Neum ann边界条件波形稳定早,数值精度高,Mur一阶边界条件波形稳定稍迟,有一定误差,但吸收效果很好。  相似文献   
627.
赵慧勇  雷波  乐嘉陵 《推进技术》2010,31(4):406-411
针对两种双尖鳍外形的对称交叉激波与湍流边界层相互作用,采用N-S方程和两种湍流模型进行了计算。研究了网格收敛性、鳍的角度和湍流模型对壁面压强、Stanton数和壁面摩擦力线的影响。弱相互作用的计算结果较好,强相互作用的壁面压强和摩擦力线的计算结果与试验吻合较好,而Stanton数的计算结果较差,峰值高达试验的2.5倍左右。随着鳍的角度的增加,壁面压强和Stanton数的分布从单调分布发展为M型分布,两者的峰值不在相同的位置。湍流模型对壁面压强和壁面摩擦力线影响很小,对Stanton数计算的影响很大,SST模型比BSL模型表现好一些。  相似文献   
628.
分析了纳米磁性金属电磁波吸收剂的吸波原理,综述了纳米磁性金属电磁波吸收材料如零维磁性纳米颗粒、一维磁性金属纳米线、二维磁性薄膜、二维片状磁性金属颗粒的国内外研究进展情况,并对未来的研究方向提出见解。  相似文献   
629.
为解决依靠计算机实现从SAR数据中提取内波参数的问题,从实用的角度出发建立了SAR海洋内波传播方向的自动化检测算法,该方法在多种SAR内波数据中进行了检验,证明了这种方法的有效性和实用性。  相似文献   
630.
朱莉  李兴国  王本庆 《宇航学报》2011,32(11):2457-2462
针对近程条件下由于目标各散射点回波的干涉而产生“角闪烁”效应的问题,首次提出采用全息技术研究近程目标的毫米波散射特性。该方法利用相位干涉效应,补偿电磁波的波前球面弯曲,并通过对回波信号的数学建模,反演目标的散射场分布函数。给出了四类不同特征的目标进行近程RCS预测,预测结果与目标特性相一致,表明该方法切实有效。
  相似文献   
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