养殖系统中沉降式颗粒驱动机制的研究进展
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S955

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国家重点研发计划(2024YFD2400200)


Progress on settleable particle driving mechanisms in aquaculture systems
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The National Key R&D Program of China (No. 2024YFD2400200)

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    摘要:

    陆基养殖系统在设施渔业时代发挥着重要作用,无论是全周期陆基循环水养殖模式还是深远海养殖中的陆基育苗模式,以及陆-海接力养殖模式中的陆基养殖,陆基养殖系统的性能都至关重要。然而,陆基养殖系统在固体废物处理上仍面临挑战,尤其是残饵和粪便等沉降式颗粒物的高效收集与去除问题,废物积累对养殖水质稳定、养殖生物安全、生产操作等带来不利影响。为了对养殖池沉降式颗粒物运动影响因素进行准确、全面地描述,本研究重点综述了陆基养殖系统中水动力特征量、养殖池结构特征量和沉降式颗粒物自身特性对其驱动的影响。针对陆基系统中沉降式颗粒物去除的难点,提出具有研究价值的方向,通过研究改善养殖环境、增进鱼类健康,提升养殖系统水质,为生产提供理论支持和实践指导。

    Abstract:

    Land-based aquaculture systems play an important role in the era of facility-based fisheries. Whether it is a full-cycle land-based recirculating aquaculture model or a land-based nursery model in deep-sea aquaculture, or land-based aquaculture in land-sea relay aquaculture models, the performance of land-based systems is critical. However, land-based aquaculture systems still face challenges in solid waste management, especially the efficient collection and removal of settleable particles like uneaten feed and feces. Accumulation of these wastes adversely impacts the stability of water quality, biological safety of cultured organisms, and production operations. To accurately and comprehensively describe the factors influencing the movement of settleable particles in aquaculture tanks, this paper focuses on reviewing the effects of hydrodynamic characteristics of aquaculture tanks, structural characteristics of the tanks, and the inherent properties of settleable particles on the movement of settleable particles. Aiming at the difficulties of removing settable particles in land-based systems, this paper proposes valuable research directions to improve the aquaculture environment, enhance fish health, and improve the water quality of the aquaculture system, thus providing theoretical support and practical guidance for production.

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任效忠,赵晨旭,赵崴,王一凡,张俊,吴罡,史宪莹,卢珊.养殖系统中沉降式颗粒驱动机制的研究进展[J].上海海洋大学学报,2025,34(4):839-849.
REN Xiaozhong, ZHAO Chenxu, ZHAO Wei, WANG Yifan, ZHANG Jun, WU Gang, SHI Xianying, LU Shan. Progress on settleable particle driving mechanisms in aquaculture systems[J]. Journal of Shanghai Ocean University,2025,34(4):839-849.

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  • 收稿日期:2024-12-12
  • 最后修改日期:2025-01-08
  • 录用日期:2025-03-19
  • 在线发布日期: 2025-07-13
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