湍流
均匀各向同性湍流
物理
各向同性
机械
半径
长度刻度
粒子图像测速
均方根
科尔莫戈洛夫显微镜
湍流动能
自相关
比例(比率)
航程(航空)
Kε湍流模型
经典力学
光学
直接数值模拟
K-omega湍流模型
雷诺数
材料科学
数学
统计
计算机科学
复合材料
计算机安全
量子力学
作者
D. Bradley,M. Lawes,Mohamed Elsayed Morsy
标识
DOI:10.1080/14685248.2019.1610566
摘要
Particle Image Velocimetry, PIV, is employed to characterise the near-homogeneous, isotropic, turbulence generated inside a large spherical vessel by four rotating fans. Spatial and temporal distributions of mean and root mean square, rms, velocity fluctuations are investigated, as well as integral length scales, L, Taylor microscales, λ, and Kolmogorov length scales, η, in the fan speed range, 1000–6000 rpm. Mean velocities are about 10% of the turbulence velocity, u′ and turbulence is close to homogeneous and isotropic in the central volume. This volume decreases with increasing fan speed, and its radius and other characteristics are expressed in terms of the fan speed. At each speed, the mean gas velocity scarcely varies with time. Relationships are presented for the variations of u′ and L with fan speed, temperature and pressure. A new relationship between the autocorrelation function and integral length scale is obtained, for when Taylor's hypothesis is invalid.
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