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CFD data of unsteady cavitation around a hydrofoil, based on an extended Schnerr-Sauer model coupled with a nucleation model

机译:基于扩展的Schnerr-Sauer模型和成核模型的水翼机体非定常空化的CFD数据

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摘要

The data presented in this article were the basis for the study reported in the research articles entitled “Characterization of unsteady cavitating flow regimes around a hydrofoil, based on an extended Schnerr-Sauer model coupled with a nucleation model” (De Giorgi et?al., 2018)[1]. The reference study presented a spatio-temporal characterization of different cavitating flow regimes using Computational Fluid Dynamics (CFD). The authors evaluated the accuracy of an extended Schnerr-Sauer cavitation model. The accuracy of the numerical model has been improved by means of the introduction of a Density Correction Model of the turbulent viscosity, and a simplified Population Balance Modeling (PBM).
机译:本文中提供的数据是研究文章“基于扩展的Schnerr-Sauer模型与成核模型的水翼机翼非定常空化流态的特征”研究报告的基础(De Giorgi等人。 ,2018)[1]。参考研究使用计算流体动力学(CFD)提出了不同空化流态的时空特征。作者评估了扩展的Schnerr-Sauer空化模型的准确性。通过引入湍流粘度的密度校正模型和简化的人口平衡模型(PBM),提高了数值模型的准确性。

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