仿生蝠鲼型水下观测装置的设计
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S951.2;TP242.6

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国家重点研发计划(2023YFD2401302);国家自然科学基金(41876141)


Design and implementation of a biomimetic manta ray fish observation device
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the National Key R&D Program of China (2023YFD2401302);,

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    摘要:

    为提升水产养殖水下观测的生态兼容性与数据获取效率,设计一种低扰动、高稳定性的仿生水下观测装置。实验采用仿生蝠鲼形态设计,基于计算机视觉提取生物标本轮廓并构建NACA0013翼型外形态模型,结合Lighthill理论建立展向运动学模型;通过动水槽试验验证水动力性能并开展实际水域试验,评估对鱼群的扰动程度及图像传输能力。结果显示:仿生本体轮廓与NACA0013翼型的拟合优度达0.944,具备优良流体动力特性;动水槽试验中,在θ=50°,f=0.830 Hz时推力值、升力值、俯仰力矩值达到最大,呈规律振荡,表明运动平稳性;经测试,鱼群平均跟随率最高达36.5%,证实装置对鱼群干扰极小,环境兼容性优异,同时可实时传输仿生蝠鲼和自然鱼群共融的高清图像,完全满足生态观测需求。研究表明,NACA0013翼型具有显著的流线型拟合优势;仿生蝠鲼的推力、升力和俯仰力矩随运动振幅及频率的增大而增强,但受环境流速影响显著;当仿生蝠鲼运动速度为0.3 m/s时,鱼群跟随率达到峰值;该装置在水产养殖中可实现无扰检测,为养殖管理提供有效数据支撑。本研究为水产养殖提供了新型生态友好型水下观测装备,其仿生设计与智能控制方法可扩展至海洋生态监测、水下机器人等领域,推动低干扰水下技术的发展。

    Abstract:

    In order to improve the ecological compatibility and data acquisition efficiency of aquaculture underwater observation, a bionic underwater observation device with low disturbance and high stability was designed. In this experiment, the morphological design of bionic manta rays was adopted, the outline of biological specimens was extracted based on computer vision,the external morphological model of the NACA0013 airfoil was constructed, and the radial kinematic model was established by combining the Lighthill theory. The hydrodynamic performance was verified by the moving tank test, and the actual water area test was carried out to evaluate the degree of disturbance to the fish population and the image transmission ability. The results show that the goodness of fit between the biomimetic body contour and the NACA0013 airfoil is 0.944, which has excellent hydrodynamic characteristics, and the thrust, lift and pitch moment values reach the maximum when θ=50° and f=0.830 Hz in the moving tank test, and the oscillation is regular, indicating the stability of the motion. After testing, the average tracking rate of fish schools is as high as 36.5%, which proves that the device has minimal interference with fish schools and excellent environmental compatibility, and can transmit high-definition images of the integration of bionic manta rays and natural fish in real time, which fully meets the needs of ecological observation. The results show that NACA0013 airfoil has a significant streamlined fitting advantage. The thrust, lift and pitching moments of the bionic manta rays increased with the increase of motion amplitude and frequency, but were significantly affected by the environmental flow velocity. When the movement speed of the bionic manta ray was 0.3 m/s, the fish follow-up rate reached the peak. The device can realize non-disturbance detection in aquaculture and provide effective data support for aquaculture management. This study provides a new eco-friendly underwater observation equipment for aquaculture, and its bionic design and intelligent control methods can be extended to the fields of marine ecological monitoring and underwater robots, so as to promote the development of low-interference underwater technology.

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引用本文

李炳麟,王其伟,黄小双,张英,孔祥洪,韩东兴.仿生蝠鲼型水下观测装置的设计[J].上海海洋大学学报,2025,34(4):875-886.
LI Binglin, WANG Qiwei, HUANG Xiaoshuang, ZHANG Ying, KONG Xianghong, HAN Dongxing. Design and implementation of a biomimetic manta ray fish observation device[J]. Journal of Shanghai Ocean University,2025,34(4):875-886.

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  • 收稿日期:2025-05-26
  • 最后修改日期:2025-05-29
  • 录用日期:2025-05-30
  • 在线发布日期: 2025-07-13
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