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首页> 外文期刊>Fluid Dynamics >Unsteady Vortex Pattern in a Flow over a Flat Plate at Zero Angle of Attack (Two-Dimensional Problem)
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Unsteady Vortex Pattern in a Flow over a Flat Plate at Zero Angle of Attack (Two-Dimensional Problem)

机译:零迎角(二维问题)在平板上流动的非定常涡旋模式

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摘要

A technique of self-consistent analytical and numerical modeling of strongly and weakly (with the buoyancy frequency N = 1.2 and 0.02 s(-1)) stratified flows, as well as of almost and absolutely homogeneous flows (with N = 10(-5) and 0.0 s(-1)), is developed using the fundamental system of equations without additional hypotheses or constants. Using an open-source software, the basic physical parameters (velocity, density, pressure) and their derivatives in the flow around a thick (0.5 cm) and a relatively thin (0.05 cm) rectangular plate 10 cm long are first calculated within the framework of a unique formulation over a wide range of velocities 0 < U < 80 cm/s. A complex flow structure comprising leading disturbances, internal waves, vortices, and thin interlayers is visualized. The maximal gradients are observed near the leading edge. In the unsteady vortex regime the structural parameters vary due to the nonlinear interaction of the flow components with different scales. For the finite plate, the calculated friction differs substantially from the Blasius solution but, for a semi-infinite plate, agrees to the accuracy of 5%.
机译:强和弱(浮力频率N = 1.2和0.02 s(-1))分层流以及几乎和绝对均匀流(N = 10(-5)的自洽分析和数值建模技术)和0.0 s(-1)),是使用基本的方程组系统开发的,没有附加的假设或常数。使用开源软件,首先在框架内计算厚(0.5 cm)和相对薄(0.05 cm)长10 cm的矩形板周围的流动中的基本物理参数(速度,密度,压力)及其导数在0

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