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Numerical study on energy-converging efficiency of the ducts of vertical axis tidal current turbine in restricted water

机译:限制水垂直轴线电流涡轮机管道能量融合效率的数值研究

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摘要

Installation of the channeling device around a tidal turbine can stabilize flow field, increase flow velocity and improve energy utilization efficiency significantly. The application of channeling devices on improving the efficiency of vertical axis tidal turbines in restricted water has hardly been investigated. In the present study, two ducts with different inside wall shapes have been taken as examples to investigate the bank and free surface effects on energy-converging efficiency of the ducts around a vertical axis tidal current turbine in shallow and narrow water. The three dimensional viscous flow field around the ducts is simulated by using CFD technology. RANS equations are employed as viscous-flow solvers and the realizable two-layer k-e turbulence model is applied to predict the energy-converging efficiency of the ducts. Investigation of grid dependence is conducted and grid independent solution is obtained by analyzing the numerical results of several sets of computational grids. For the duct around the vertical axis tidal current turbine near or piercing the free-surface of the water in some cases, Volume of Fluid (VOF) method is employed to capture the free surface. Based on the numerical results, it is known that the average energy flux density in W02 model is much larger than that in W01 model, so it can be concluded that the inside wall shape of the ducts dominates the energy-converging efficiency of the ducts in great extent and bank effect on energy-converging efficiency of the duct varies with inside wall shapes of the duct. What's more, the free surface plays an important role in the energy-converging efficiency of the ducts, and smaller clearance between free surface and the top of duct will induce higher energy-converging efficiency.
机译:在潮汐涡轮机周围安装通道装置可以稳定流场,提高流速,显着提高能量利用效率。通道装置在提高限制水中垂直轴潮汐轮机效率的应用。在本研究中,已经采用了具有不同内壁形状的两个管道作为示例,以研究堤坝和自由表面对浅窄和窄水中的垂直轴线电流涡轮机周围的管道的能量会聚效率。通过使用CFD技术模拟管道周围的三维粘性流场。 RAN方程用作粘性流动溶剂,并且可实现的两层K-E湍流模型应用于预测管道的能量会聚效率。通过分析几组计算网格的数值结果,获得了对网格依赖的研究,并获得了网格独立解决方案。对于垂直轴线电流涡轮机附近或刺穿水的自由表面,在某些情况下,使用流体(VOF)方法的体积来捕获自由表面。基于数值结果,已知W02模型中的平均能量通量密度远大于W01模型中的平均能量通量密度,因此可以得出结论,导管的内壁形状主要占据管道中的能量会聚效率很大程度和银行对管道的能量聚合效率的影响变化,导管内壁形状不同。更重要的是,自由表面在管道的能量收敛效率中起重要作用,自由表面和管道顶部之间的较小间隙将引起更高的能量会聚效率。

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  • 来源
    《Ocean Engineering》 |2020年第15期|107320.1-107320.14|共14页
  • 作者单位

    Zhejiang Ocean Univ Sch Naval Architecture & Mech Elect Engn Zhoushan 316022 Zhejiang Peoples R China|Key Lab Offshore Engn Technol Zhejiang Zhoushan 316022 Zhejiang Peoples R China;

    Zhejiang Ocean Univ Sch Naval Architecture & Mech Elect Engn Zhoushan 316022 Zhejiang Peoples R China;

    Zhejiang Ocean Univ Donghai Sci & Technol Coll Zhoushan 316000 Zhejiang Peoples R China;

    Zhejiang Ocean Univ Sch Naval Architecture & Mech Elect Engn Zhoushan 316022 Zhejiang Peoples R China;

    Zhejiang Ocean Univ Sch Naval Architecture & Mech Elect Engn Zhoushan 316022 Zhejiang Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    energy-Converging efficiency; Duct of vertical axis turbine; Restricted water; Numerical simulation; Effect of free surface; Bank effect;

    机译:能量融合效率;垂直轴涡轮机的管道;限制水;数值模拟;自由表面的影响;银行效应;

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