热水下滑翔机的热交换器布局

Yanan Yang, Yanhui Wang, Zhiliang Wu, Yuhong Liu, Hongwei Zhang, Shuxin Wang
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引用次数: 3

摘要

热滑翔机是一种利用海洋温跃层获取推进能量的新型水下滑翔机。与传统的电动水下滑翔机相比,热滑翔机可以实现更长的持续时间和航程。水下滑翔机上的热交换器可以安装在船体上方、船体下方和船体两侧。本文采用计算流体力学的方法,对三种换热器布置方案的热滑翔机进行了水动力分析。以升阻比和无量纲位置杠杆为评价参数,研究了布局设计对滑翔效率和静稳定性的影响。结果表明,热滑翔机在有换热器的情况下是静态稳定的。换热器的布置方式对滑翔机的静稳定性影响较大,而对滑翔机的滑翔效率影响较小。考虑到滑行效率和静稳定性,换热器安装在船体下方效果较好。研究结果为热滑翔机的设计提供了理论指导。
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Heat exchanger layout for a thermal underwater glider
Thermal glider is a new type of underwater glider which harvests its propulsive energy from the thermocline in the ocean. Compared with traditional electric underwater glider, the thermal glider may achieve a much longer duration and range. The heat exchangers on the underwater glider can be mounted above the hull, below the hull, and by the sides of the hull. In this paper, hydrodynamic analysis is conducted for the thermal glider with the three heat exchanger layout designs using computational fluid dynamics. Impact of the layout design on glide efficiency and static stability is investigated, using lift to drag ratio and dimensionless position lever as the evaluation parameters. Result shows that the thermal glider is statically stable with the heat exchangers. The layout of the heat exchangers greatly affects the static stability of the glider, while little influence has been found on the glide efficiency. It is also found that taking glide efficiency and static stability into consideration, the heat exchangers are better mounted below the hull. The result provides theoretical guidance for thermal glider design.
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