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首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >Time domain broadband noise predictions for non-cavitating marine propellers with wall pressure spectrum models
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Time domain broadband noise predictions for non-cavitating marine propellers with wall pressure spectrum models

机译:具有壁压谱模型的非空化船用螺旋桨的时域宽带噪声预测

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The broadband noise can be dominant or important for total characteristics for marine propeller noise representing the minimum base of self-noise. Accurate prediction of such noise is crucial for survivability of underwater military vessels. While the FW-H Formulation 1B can be used to predict broadband trailing edge noise, the method required experiment measurements of surface pressure correlations, showing its limitations in generality. Therefore, in this study, the methods are developed to utilize wall pressure spectrum models to overcome those limitations. Chase model is adopted to represent surface pressure along with the developed formulations to reproduce pressure statistics. Newly developed method is validated with the experiments of airfoils at different velocities. Thereafter, with its feasibility and generality, the procedure incorporating computational fluid dynamics is established and performed for a propeller behind submarine hull. The results are compared with the experiments conducted at Large Cavitation Tunnel, thus showing its usability and robustness.
机译:对于船用螺旋桨噪声的总特性,宽带噪声可能是主要的或重要的,这是表示最小自噪声基础的船舶螺旋桨噪声。准确预测这种噪音对于水下军用船只的生存性至关重要。虽然FW-H配方1b可用于预测宽带后缘噪声,但该方法需要表面压力相关的实验测量,显示其局限性。因此,在本研究中,开发了该方法以利用壁压谱模型来克服这些限制。采用追逐模型来表示表面压力以及显影配方以再现压力统计。新开发的方法用不同速度的翼型试验验证。此后,具有可行性和一般性,建立并对潜艇船体后面的螺旋桨进行并执行包含计算流体动力学的程序。将结果与大型空化隧道进行的实验进行比较,从而显示其可用性和鲁棒性。

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