Enhancing the efficiency of an axial impulse turbine with a diffuser

Geetam Saha, Diogo Neves Ferreira, N. Srikanth, Lei Zuo
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Abstract

In oscillating water column wave energy converters, the aerodynamic losses caused by flow misalignment between the rotor outlet and the outlet guide vane of self-rectifying impulse turbines are a significant design problem. The symmetrical positioning of guiding vanes on both sides of the rotor is the reason for it. In comparison to the equivalent Wells turbine, the efficiency of impulse turbines is lower because of these losses in the outlet guide vane. This paper presents a strategy to develop animproved design of an axial impulse turbine to reduce the losses in the outlet guide vane along with the residual kinetic energy loss by integrating a diffuser between the rotor and guide vanes. The proposed model was investigated numerically using RANS simulations. Multiple diffuser geometries were tested against the reference turbine for comparison of the performance characteristics. The results support the hypothesis behind the proposed design. The performance was compared extensively with the reference case in terms of the dimensionless loss coefficients for a better insight into the contribution of all the turbine sectors. The current work shows a possible design path for the performance improvement of the turbine. Results also support the fact that the guide vanes need to beredesigned for obtaining maximizing efficiency with the proposed design. The losses in the outlet guide vane were reduced by approximately 50% with an overall efficiency rise of around 2%. 
带扩散器的轴向脉冲涡轮效率的提高
在振荡水柱波能转换器中,自整流脉冲涡轮转子出口与出口导叶之间的气流失调所造成的气动损失是一个重要的设计问题。转子两侧导叶的对称定位是其产生的原因。与等效井式涡轮相比,脉冲涡轮的效率较低,因为这些损失在出口导叶。本文提出了一种轴向冲击涡轮的改进设计策略,通过在转子和导叶之间集成扩压器来减少出口导叶的损失和剩余动能损失。利用RANS仿真对该模型进行了数值研究。对参考涡轮进行了多种扩散器几何形状的测试,以比较其性能特性。结果支持了设计背后的假设。在无量纲损失系数方面,性能与参考案例进行了广泛的比较,以便更好地了解所有涡轮部门的贡献。目前的工作显示了一个可能的设计路径,以提高涡轮机的性能。结果也支持这样一个事实,即需要重新设计导叶,以获得最大的效率与所提出的设计。出口导叶的损失减少了约50%,整体效率提高了约2%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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