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Numerical study on cavitating flow due to a hydrofoil near a free surface

机译:自由表面附近水翼引起空化流的数值研究

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A numerical strategy is proposed for a viscous uniform flow past a 2-D partially cavitating hydrofoil placed at a finite depth from the free surface. The flow was modeled by the Reynolds-averaged Navier–Stokes (RANS) equations. A finite-volume method with the SIMPLE scheme and k-ε turbulence model were employed for computations. The “full cavitation model,” which included the effects of vaporization, noncondensible gases and compressibility, was incorporated in the computation of cavitating flow. The cavity shape and free surface were updated iteratively till a reasonable convergence was reached. As for the determination of the free surface, the VOF approach was adopted. The test cases show the accuracy and stability of our procedure to capture the cavitating flow near the free surface.
机译:提出了一种数值策略,用于通过均匀分布在距自由表面有限深度的二维部分空化水翼的粘性均匀流。用雷诺平均的Navier-Stokes(RANS)方程建模流。计算采用有限体积的SIMPLE方案和k-ε湍流模型。包含汽化,不凝性气体和可压缩性影响的“全空化模型”被纳入空化流的计算中。空腔的形状和自由表面不断地更新,直到达到合理的收敛。至于自由表面的确定,采用了VOF法。测试案例显示了我们捕获自由表面附近空化流的方法的准确性和稳定性。

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