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Spatial Fluctuating Pressure Calculation of Underwater Counter Rotating Propellers under Noncavitating Condition

机译:非空化条件下水下反向旋转螺旋桨的空间脉动压力计算

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The spatial fluctuating pressure field (FPF) of counter rotating propeller (CRP) under noncavitating condition is investigated. The hydrodynamic performance and pressure distributions on the blade surfaces are obtained through low-order potential-based panel method, which is also used to analyze the hydrodynamic interaction between the front and rear propellers of CRP as well as the hydrodynamic interference between any solid surface and propeller. The interaction between the given solid spherical surface and propeller is used to simulate the spatial FPF of propeller, and the fluctuating pressure induced by a propeller over one revolution is analyzed in frequency domain through fast Fourier transform. The method proposed is validated through two given propellers by comparing the calculation results with test data. The FPFs of the front and rear propellers are calculated and compared with that of the corresponding single propeller. The result shows that the CRP produces weaker FPF compared with the single propeller.
机译:研究了非空化条件下反向旋转螺旋桨(CRP)的空间脉动压力场(FPF)。叶片表面的水动力性能和压力分布是通过基于低阶电位的面板方法获得的,该方法也可用于分析CRP前后螺旋桨之间的水动力相互作用以及任何固体表面和叶片之间的水动力干扰。螺旋桨。利用给定的固体球形表面与螺旋桨之间的相互作用来模拟螺旋桨的空间FPF,并通过快速傅立叶变换在频域中分析螺旋桨在一转中引起的脉动压力。通过将计算结果与测试数据进行比较,通过两个给定的螺旋桨对所提出的方法进行了验证。计算前后螺旋桨的FPF,并将其与相应的单个螺旋桨的FPF进行比较。结果表明,与单螺旋桨相比,CRP产生的FPF较弱。

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