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首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >Shape optimization of blended-wing-body underwater glider by using gliding range as the optimization target
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Shape optimization of blended-wing-body underwater glider by using gliding range as the optimization target

机译:以滑行距离为优化目标的混合机翼水下滑翔机形状优化

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AbstractBlended-Wing-Body Underwater Glider (BWBUG), which has excellent hydrodynamic performance, is a new kind of underwater glider in recent years. In the shape optimization of BWBUG, the lift to drag ratio is often used as the optimization target. However this results in lose of internal space. In this paper, the energy reserve is defined as the direct proportional function of the internal space of BWBUG. A motion model, which relates gliding range to steady gliding motion parameters as well as energy consumption, is established by analyzing the steady-state gliding motion. The maximum gliding range is used as the optimization target instead of the lift to drag ratio to optimizing the shape of BWBUG. The result of optimization shows that the maximum gliding range of initial design is increased by 32.1% though an Efficient Global Optimization (EGO) process.
机译: 摘要 具有出色水动力性能的混合翼机翼水下滑翔机(BWBUG)是近来一种新型的水下滑翔机年份。在BWBUG的形状优化中,升阻比通常被用作优化目标。但是,这导致内部空间的损失。在本文中,能量储备被定义为BWBUG内部空间的直接比例函数。通过分析稳态滑行运动,建立了将滑行范围与稳态滑行运动参数以及能量消耗相关联的运动模型。最大滑行范围被用作优化目标,而不是升阻比来优化BWBUG的形状。优化结果表明,通过高效的全局优化(EGO)流程,初始设计的最大滑动范围增加了32.1%。

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