首页> 外文期刊>Journal of Applied Mechanics and Technical Physics >DISPERSION OF A CLOUD OF PARTICLES BY A MOVING SHOCK: EFFECTS OF THE SHAPE, ANGLE OF ROTATION, AND ASPECT RATIO
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DISPERSION OF A CLOUD OF PARTICLES BY A MOVING SHOCK: EFFECTS OF THE SHAPE, ANGLE OF ROTATION, AND ASPECT RATIO

机译:运动冲击分散的颗粒云:形状,旋转角度和纵横比的影响

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This paper discusses the particle-laden flow development from a cloud of particles in an accelerated flow behind a normal moving shock. The effects of the aspect ratio of a rectangular and ellipsoidal cloud and the cloud's angle of attack with respect to the carrier flow are studied. Computations are performed with an in-house high-order weighted essentially non-oscillatory (WENO-Z) finite-difference scheme-based Eulerian-Lagrangian solver that solves the conservation equations in the Eulerian frame, while particles are traced in the Lagrangian frame. Streamlined elliptically shaped clouds exhibit a lower dispersion than blunt rectangular clouds. The averaged and root-mean-square locations of the particle coordinates in the cloud show that the cloud's stream-wise convection velocity increases with decreasing aspect ratio. With increasing rotation angle, the cross-stream dispersion increases if the aspect ratio is larger than unity. The particle-laden flow development of an initially moderately rotated rectangle is qualitatively and quantitatively comparable to the dispersion of an initially triangular cloud.
机译:本文讨论了在正常运动冲击后加速流中由粒子云形成的含粒子流的发展。研究了矩形和椭圆形云的纵横比以及云的迎角相对于载流的影响。使用基于内部高阶加权基本非振荡(WENO-Z)有限差分方案的Eulerian-Lagrangian求解器进行计算,该求解器在Eulerian框架中求解守恒方程,而在Lagrangian框架中跟踪粒子。流线型椭圆形云的散布度低于钝的矩形云。云中粒子坐标的平均位置和均方根位置表明,云的对流速度随纵横比的减小而增加。随着旋转角度的增加,如果纵横比大于1,则横流色散会增加。初始适度旋转的矩形的充满粒子的流动发展在质量和数量上可与初始三角云的弥散相媲美。

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