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Developing an empirical model for ducted tidal turbine performance using numerical simulation results

机译:使用数值模拟结果开发管道式潮汐涡轮性能的经验模型

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摘要

This article studies the effects of viscous loss, flow separation, and base pressure for ducted turbine designs using computational fluid dynamics (CFD) simulations. Analytical model coefficients for inlet and diffuser efficiency and base pressure coefficient parameterize these effects and have been identified from CFD results. General trends are that the inlet efficiency is nearly unity for the simulated designs; the diffuser efficiency has a significant impact on performance and is degraded by flow separation; and that the base pressure effect can provide a significant performance enhancement. Geometric features influencing each of the aforementioned parameters are identified and a regression-based model has been developed to predict ducted turbine performance.
机译:本文使用计算流体力学(CFD)模拟研究了粘性损失,流动分离和基压力对管道涡轮机设计的影响。入口和扩散器效率的分析模型系数和基本压力系数可对这些影响进行参数化,并已从CFD结果中确定。总体趋势是,模拟设计的进气效率几乎统一。扩散器的效率对性能有重大影响,并且会因流动分离而降低;基础压力效应可以显着提高性能。确定影响上述每个参数的几何特征,并开发了基于回归的模型来预测管道涡轮性能。

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  • 来源
    《Journal of Power and Energy》 |2012年第1期|p.112-125|共14页
  • 作者

  • 作者单位

    Department of Mechanical Engineering, University of Victoria, Victoria, British Columbia, Canada;

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  • 正文语种 eng
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