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首页> 外文期刊>Ocean Engineering >Reduction of demi-hull wave interference resistance in fast displacement catamarans utilizing an optimized centerbulb concept
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Reduction of demi-hull wave interference resistance in fast displacement catamarans utilizing an optimized centerbulb concept

机译:利用优化的中心灯泡概念减少快艇双体船的半壳波干扰

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摘要

A centerbulb was integrated to a catamaran in order to create a favorable secondary wave interference to reduce the unfavorable wave interference resistance between the demi-hulls. An Artificial Neural Network (ANN) technique is implemented together with a computational flow solver based on the low-Froude number theory, which uses a source-panel method with Dawson's algorithm, to find an efficient centerbulb geometry. In order to gain computation time in the optimization algorithm the present ANN approach is applied to the responses of the flow solver to the centerbulb design parameter changes. The numerical design procedure is verified by model tests conducted with a catamaran model both with and without the centerbulb. Numerical and experimental analyses verify each other and confirm that it is possible to reduce wave interference in considerable amounts with an optimal centerbulb. The study presented for catamarans, demonstrates the capabilities of the optimization procedure in reducing the wave interference resistance as well as the efficiency and ease of application of the centerbulb as a retrofit.
机译:将中心灯泡集成到双体船中,以产生有利的二次波干扰,从而减少半船体之间的不利波干扰阻力。人工神经网络(ANN)技术与基于低弗洛德数论的计算流求解器一起实现,该算法使用源面板方法和Dawson算法,以找到有效的中心灯泡几何形状。为了在优化算法中获得计算时间,将当前的ANN方法应用于流求解器对中心灯泡设计参数变化的响应。数值设计程序通过使用双体船模型(带有或不带有中心球)的模型测试来验证。数值和实验分析相互验证,并确认可以通过最佳的中心灯泡来减少大量的波干扰。针对双体船的研究表明,该优化程序具有降低抗波干扰的能力,以及改装后中心灯泡的效率和易用性。

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