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NUMERICAL METHODS FOR APPROXIMATE CALCULATION OF TURBULENT FLOWS IN ENGINEERING SYSTEMS AND THEIR CONVERGENCE ANALYSIS.

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DataCite Commons2026-05-05 更新2026-05-07 收录
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https://zenodo.org/doi/10.5281/zenodo.20037066
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This paper investigates the mathematical modeling of turbulent flows within engineering systems. The research focuses on numerical algorithms for solving the non-linear Navier-Stokes equations, specifically utilizing the SIMPLE algorithm coupled with the k-epsilon turbulence model. The study performs a rigorous mathematical analysis of the impact of mesh refinement on computational accuracy and the stability of the convergence process. The results demonstrate that the proposed numerical scheme allows for high-fidelity prediction of hydrodynamic processes and the optimization of energy dissipation in engineering devices. The findings provide a robust computational framework for hydraulic infrastructure design.
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Zenodo
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2026-05-05
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