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October 23, 2025Journal of Marine Science and Engineering3 citationsOpen Access

A CFD-Based Surrogate for Pump–Jet AUV Maneuvering

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YKYounhee KwonDKDong-Hwan KimJSJeonghwa Seo

Key Points

  • Surrogate model achieves time-efficient predictions for maneuvering performance in underwater vehicles.
  • Key findings show the framework accurately reproduces trends in kinematic responses, forces, and moments.
  • Analysis based on computational fluid dynamics using unsteady Reynolds-averaged Navier–Stokes equations.
  • Framework highlights the potential for reduced computational costs in maneuvering simulations for pump–jet vehicles.

Abstract

Prediction of the maneuvering performance of autonomous underwater vehicles equipped with pump–jet propulsion remains computationally intensive when relying solely on high-fidelity computational fluid dynamics. To overcome this limitation, a surrogate maneuvering model is developed to achieve comparable accuracy with drastically reduced computational cost. The model is constructed from numerical results obtained using unsteady Reynolds-averaged Navier–Stokes equations with the k–ω shear stress transport turbulence model, and formulated through a Taylor-expansion-based framework. The propulsion and rudder modules are refined to enhance physical representation and efficiency: a conventional open-water-based formulation is adopted to embed the pump–jet propulsive model, incorporating axial flow velocities near the duct inlet for improved thrust prediction; meanwhile, the rudder force model minimizes the number of captive simulations by employing a kinematic approach that compensates for limited datasets. The surrogate model is applied to free-running simulations and validated against high-fidelity computational results. The findings confirm that the proposed framework reproduces the dominant trends of kinematic responses, forces, and moments with high consistency, providing a practical and time-efficient alternative for maneuvering prediction of underwater vehicles equipped with pump–jet propulsion systems.

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Cite This Study

Kwon et al. (2025) studied this question.

synapsesocial.com/papers/68f9f86eb2c35e10cc4e3d7fhttps://doi.org/10.3390/jmse13102014
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1A CFD-Based Surrogate for Duct-Jet AUV Maneuvering2025
  2. 2Nonparametric and Parametric Modeling of Hydrodynamics for a Fully Appended Autonomous Underwater Vehicle2026
  3. 3Learning from sparse flow field observations to unsteady hydrodynamics of pump-jet propulsor via a novel data-driven method2026
  4. 4Performance Studies of an Axial Flow Waterjet Pump Using an Unsteady Reynolds-Averaged Navier-Stokes Model2024
  5. 5Prediction of steady hydrodynamic performance of pump jet propulsion based on free wake vortex model2024 · 4 citations