论文标题
粒子在不均匀和各向异性湍流中的湍流热扩散的实验研究
Experimental study of turbulent thermal diffusion of particles in inhomogeneous and anisotropic turbulence
论文作者
论文摘要
我们研究了小颗粒在空气流中一个振荡网格产生的不均匀和各向异性稳定分层的湍流中的小颗粒的实验湍流热扩散。已经使用粒子图像速度法(PIV)测量了速度场。我们已经确定了各种湍流特征:均值和湍流速度,速度场的两点相关函数以及来自测得的速度场的湍流的积分尺度。温度场已经用配备12 E热电偶的温度探针测量。微米大小颗粒的空间分布已通过PIV系统确定,使用流动中的MIE光散射的效果。实验表明,由于湍流热扩散现象,颗粒在平均流体温度的最低水平下积累。使用测量的颗粒和温度场的空间分布,我们确定了不均匀温度分层湍流中颗粒的有效湍流热扩散系数。这项实验研究清楚地检测到了不均匀湍流中湍流热扩散的现象。
We study experimentally turbulent thermal diffusion of small particles in inhomogeneous and anisotropic stably stratified turbulence produced by one oscillating grid in the air flow. The velocity fields have been measured using a Particle Image Velocimetry (PIV). We have determined various turbulence characteristics: the mean and turbulent velocities, two-point correlation functions of the velocity field and an integral scale of turbulence from the measured velocity fields. The temperature field have been measured with a temperature probe equipped with 12 E thermocouples. Spatial distributions of micron size particles have been determined by a PIV system using the effect of the Mie light scattering by particles in the flow. The experiments have demonstrated that particles are accumulated at the minimum of mean fluid temperature due to phenomenon of turbulent thermal diffusion. Using measured spatial distributions of particles and temperature fields, we have determined the effective turbulent thermal diffusion coefficient of particles in inhomogeneous temperature stratified turbulence. This experimental study has clearly detected phenomenon of turbulent thermal diffusion in inhomogeneous turbulence.