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1.
The Monte Carlo ray-tracing method (MCRT) based on the concept of radiation distribution factor is extended to solve radiative heat transfer problem in turbulent fluctuating media under the optically thin fluctuation approximation. A one-dimensional non-scattering turbulent fluctuating media is considered, in which the mean temperature and absorption coefficient distribution are assumed and the shape of probability density function is given. The distribution of the time-averaged volume radiation heat source is solved by MCRT and direct integration method. It is shown that the results of MCRT based on the concept of radiation distribution factor agree with these of integration solution very well, but results of MCRT based on the concept of radiative transfer coefficient do not agree with these of integration solution. The solution of time-averaged radiative transfer equation by the concept of radiative transfer coefficient should be treated with caution. 相似文献
2.
隧道环境与陆地上移动通信有显著不同,需要对其无线信道特性进行研究.本文提出了一种改进的射线跟踪法,能够对隧道环境无线信道特性高效地仿真,降低了射线跟踪的计算复杂度,同时采用一种新的坐标系描述弯道的几何形状,便于对弯道部分进行射线跟踪.本文将路径损耗的仿真结果与北京地铁14号线的实测结果进行对比,对比表明:改进的射线跟踪法能够有效地预测路径损耗;直道中K因子在-8~25 dB范围内变化,且随着距离增大有减小的趋势. 相似文献
3.
基于声线跟踪法的稳态声场空间分布计算 总被引:1,自引:0,他引:1
使用一种新的声线跟踪模型来预测稳态声场的能量分布,声场空间分布能通过一次仿真就得到预测并成像.接收球在这种方法中没有被使用,因为预测的目标不是一个点而是整个三维空间.首先建立一个三维的能量数组以模拟整个声空间,该数组的行数,列数和层数分别与声空间的宽,长和高成正比.能量数组中的每一个元素被用于记录声空间中某一个小立方体的声强,而该元素在数组中的位置与该立方体在声空间中的位置相同.每根声线的传播路径都被跟踪,其传播路径将被离散化为一系列均匀分布而又密集的节点,每个节点的坐标都被计算出来以找到能量数组中位置相同的元素,该节点的声强将被记录在它所对应的数组元素中.当全部声线都被跟踪完毕时,声强空间分布就已经建立在能量数组中了.某一个平面内或某一条线上的声强级和声压级分布都可以直接根据能量数组中的值计算出来并成像.在进行的实验中对稳态声场的声压级进行测量和预测,发现预测结果与实验结果吻合很好,因此这种新的声线跟踪模型的有效性得到证明. 相似文献
4.
为了分析高功率准分子激光主振荡功率放大(MOPA)系统中各光学元件稳定性对靶面光斑定位精度的影响,建立了分析模型,利用分析结果指导高稳定性镜架设计以满足系统实验需求。根据高功率准分子激光MOPA系统特点,有效地简化了系统光路,建立了系统光路模型;按照系统打靶精度要求,利用三维坐标变换和光线追迹法,计算得到了系统单个光学元件稳定性对靶面光斑定位精度的影响规律;最后,对自行设计的镜架进行了稳定性测量。计算结果表明,反射镜的旋转变化和透镜垂直光轴的平移变化是影响靶面光斑定位精度的主要因素,且主放大光路中反射镜在X方向和Y方向上最大的变化范围分别不能超过0.8和1.6μrad。实际测量结果表明,设计的镜架在X方向和Y方向最大的变化范围分别为0.6和0.81μrad,满足系统实验要求。 相似文献
5.
Yong Huang Ke-Yong Zhu Jun Wang 《Journal of Quantitative Spectroscopy & Radiative Transfer》2011,112(14):2363-2371
The curved ray-tracing method is extended to radiative transfer in the graded index medium with diffuse gray boundary conditions instead of black boundary conditions and the pseudo-source adding method is extended to the case of the linear-anisotropic scattering medium with graded index from non-scattering medium. Furthermore, the equivalence of the two methods is verified by formulation derivation. As exact analytical solutions, both the methods have high accuracy and fast computational speed. The predicted temperature distributions and dimensionless radiative heat flux at radiative equilibrium are determined by the proposed methods, and the numerical results are compared with the data in references. The results show that the present methods have a good accuracy. Influences of various combinations of refractive index and boundary emissivities on the temperature distributions and dimensionless radiative heat flux are also investigated. 相似文献
6.
针对单层曲面仿生复眼的子眼数目多, 难以加工以及所能达到的视场角较小的问题, 提出一种多层曲面仿生复眼结构。经过计算与分析得到, 当边缘子眼与中心子眼的光轴夹角为66.8°, 子眼的视场角为74.5°时, 利用7个子眼通道可实现仿生复眼系统180°范围内无盲区的成像, 减少了多个子眼复杂的加工过程。对单个子眼通道进行优化设计, 使其成像质量满足使用要求。实验表明, 该多层曲面仿生复眼结构能实现180°视场的成像, 且无成像盲区。 相似文献
7.
A newly designed cylindrical optical micro-rotator which has slopes for trapping and rotation on its upper surface is proposed. The cylindrical shape is effective in decreasing viscous drag force (damping factor) in the medium. A ray-tracing method considering the beam waist is employed to analyze the radiation pressure exerted on the upper surface of the rotator. We have demonstrated optical trapping and high speed rotation for various optical beam parameters such as the lens numerical aperture and the Gaussian mode profile as well as rotator shape parameters including oblique angle, height and diameter. 相似文献
8.
9.
Passive noise control devices for jet flows, such as chevron nozzles, have been studied for a long time due to their large application in turbofan engines. The main purpose of their usage is the reduction of low-frequency noise generation and thus decreasing the noise perceived at the far field. This work is a numerical study of acoustic noise generated by jet flow operating at Mach number 0.9 and Reynolds number 1.38 × 106, considering two chevron nozzle geometries that differ from each other by the penetration angle into the flow. The main aim was to demonstrate that Reynolds averaged Navier Stokes (RANS)-based methods are reliable means to obtain acoustical noise predictions for the industry with a considerably low computational cost. In order to achieve this objective, computational fluid dynamics (CFD) RANS simulations were performed with a cubic k-ɛ model and the acoustic noise spectrum for different angles of radiation was obtained via the Lighthill ray-tracing (LRT) method. The numerical results for the acoustic and flow fields were seen to be in reasonable agreement with the experimental data, suggesting that this methodology can be used as a fast and useful option to predict acoustic noise of jet flows from chevron nozzles. 相似文献
10.