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Hydrodynamic optimization of channelling device for hydro turbine based on lattice Boltzmann method

机译:基于格子玻尔兹曼法的水轮机导水装置水动力优化

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As the demand of renewable energy increasing, tidal current hydro turbine has become a research focus of domestic and overseas, which is a kind of energy conversion device collecting tidal current energy and generating electricity. The water depth and flow direction have little effect on work efficiency, but it must work at a flow speed higher than a certain value. In order to increase the flow speed in the neighborhood of the turbine, a channelling device should be fixed around the hydro turbine. In order to get a better hydrodynamic of the channelling device, lattice Boltzmann method (LBM) which is a new method of computational fluid dynamics is adopted to the numerical simulation of the channelling device. The hydrodynamics of the channelling devices with different geometries and assemble gaps are compared. Finally, a program of hydrodynamic optimization is constructed.
机译:随着对可再生能源需求的增加,潮流水轮机已经成为国内外研究的热点,它是一种收集潮流能量并发电的能量转换装置。水深和流向对工作效率影响不大,但必须以高于一定值的流速工作。为了提高涡轮机附近的流速,应在水轮机周围固定一个导流装置。为了获得更好的导水装置的水动力性能,采用格子玻尔兹曼法(LBM)作为计算流体动力学的新方法,对导水装置进行了数值模拟。比较了具有不同几何形状和装配间隙的通道装置的流体力学。最后,构建了水动力优化程序。

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