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October 5, 2025Journal of Marine Science and Engineering2 citationsOpen Access

Structural Responses of the Net System of a Bottom-Mounted Aquaculture Farm in Waves and Currents

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FLFuxiang LiuHBHan BaoGSGuoqing Sun

Key Points

  • Scheme 1 reduces peak bottom tension rope loads by 14% compared to Scheme 2 under survival conditions.
  • Maximum netting displacement is limited to 4.0 m in Scheme 1, which is 21.3% lower than that of Scheme 3.
  • Structural responses are evaluated using a lumped-mass method integrated with finite element analysis techniques.
  • Findings highlight that Scheme 1 offers the best balance between structural safety and functional efficiency in net system design.

Abstract

This study investigates the hydrodynamics of the net system of the bottom-mounted aquaculture farms located in the Bohai Sea, addressing the growing demand for high-quality aquatic products and the limitations of coastal aquaculture. Based on the validation part, the established lumped-mass method integrated with the finite element method ABAQUS/AQUA was employed to evaluate the structural responses of the net system with three arrangement schemes under diverse environmental loads. The hydrodynamic loads on net twines are modeled with Morison formulae. With the motivation of investigating the trade-offs between volume expansions, load distributions, and structural reliabilities, Scheme 1 refers to the baseline design enclosing the basic aquaculture volume, while Scheme 2 targets to increase the aquaculture volume and utilization rate and Scheme 3 seeks to optimize the load distributions instead. The results demonstrate that Scheme 1 provides the optimal balance of structural safety and functional efficiency. Specifically, under survival conditions, Scheme 1 reduces peak bottom tension rope loads by 14% compared to Scheme 2 and limits maximum netting displacement to 4.0 m. It is 21.3% lower than Scheme 3, of which the displacement is 5.08 m. It has been confirmed that Scheme 1 effectively minimizes collision risks, whereas the other schemes exhibit severe collisions. Scheme 1 trades off maximum volume expansion for optimal load management, minimal deformation, and the highest overall structural reliability, making it the recommended design. These findings offer valuable insights for the design and optimization of net systems in offshore aquaculture structures serviced in comparable offshore regions.

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Cite This Study

Liu et al. (2025) studied this question.

synapsesocial.com/papers/68e24e60d6d66a53c247343bhttps://doi.org/10.3390/jmse13101900
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