搜索

x
中国物理学会期刊

超声速横向气流中液体射流的轨迹预测与连续液柱模型

CSTR: 32037.14.aps.69.20200903

Prediction of liquid jet trajectory in supersonic crossflow and continuous liquid column model

CSTR: 32037.14.aps.69.20200903
PDF
HTML
导出引用
  • 对于液体射流沿壁面法向喷注进入超声速横向气流中的射流轨迹开展了理论与实验研究, 建立了连续液柱三维实体模型. 基于液体微元受力分析建立了连续液柱沿喷注方向横截面的截面变形控制方程, 计算了液体射流轨迹与横截面变形, 合理考虑了液体射流因发生表面破碎所引起的质量损失, 提出适用于超声速横向气流的连续液柱模型. 利用高时空分辨率的显微成像方法拍摄超声速横向气流中连续液柱的瞬时图像, 研究的参数变量包括液体喷注压降(1—2 MPa)、液体喷嘴直径(0.5 mm/1.0 mm)及液气动量比(3.32—7.27). 研究结果表明, 采用连续液柱模型可以较好地预测中心面上的射流轨迹和三维空间上的液柱形态, 并可较为真实地反映实际流场特征, 预测结果与实验结果吻合良好.

     

    The trajectory of the spray is studied theoretically and experimentally when a round liquid jet is injected into a supersonic crossflow vertically. A solid model of continuous liquid column is established in three-dimensional space. The cross-section deformation equation of the continuous liquid column along the injection direction is established using a method of micro-element analysis. The stress analysis of cross section is simplified into a two-dimensional droplet. The shape of the cross section is considered to continuously change from circular to elliptical shape. And the bow shock wave in front of the jet column is simplified into an oblique shock wave with a known shock angle. Based on this, the calculation of aerodynamic force is greatly simplified. A dimensionless parameter named effective deformation time of liquid column (the logogram is t_\rm valid) is defined and used to judge the end point of the liquid column quantitatively. The liquid jet trajectory and cross-section deformation can be calculated using MATLAB software. The instantaneous images of continuous liquid columns in supersonic crossflow are captured using high-spatial-resolution microscopic imaging methods. The microscopic imaging system is composed of a double pulse solid-state laser, computer, CCD camera, synchronous controller, microscope lens and laser diffuser. After passing through the laser diffuser, a plane background light with uniform distribution is formed on the scattering plate. The mean filtering method is used to filter the original image. After filtering, the range of gray distribution in the background area is obviously reduced. The distribution of gray value is more concentrated, and the background of the image is more uniform. Then the image edge detection function is used to obtain the near-field jet trajectory. The parameter variables studied include liquid injection pressure drop (1–2 MPa), liquid nozzle diameter (0.5 mm/1.0 mm), and liquid gas momentum ratio (3.32–7.27). The results show that the continuous liquid column model can better predict the jet trajectory on the center plane and the shape of the liquid column in three-dimensional space. It is indicated that the predictive result matches well with the experimental result. This study is of great significance for establishing the solid-particle coupling model of liquid jet in supersonic crossflows.

     

    目录

    /

    返回文章
    返回