首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >An analysis of the impact of draft tube modifications on the performance of a Kaplan turbine by means of computational fluid dynamics
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An analysis of the impact of draft tube modifications on the performance of a Kaplan turbine by means of computational fluid dynamics

机译:用计算流体动力学分析管道修改对卡普兰汽轮机性能的影响

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摘要

Due to the low electricity prices in central Europe, cost optimisations related to all parts of a new hydropower plant have become increasingly important. In case of a run-of-river hydropower plant using a vertical axis Kaplan turbine, one of the cost drivers are the excavation works. Thus, a decisive factor for the reduction of construction costs is the minimisation of the construction depth of the elbow-type draft tube. In course of the design phase of a new hydropower plant in Austria, an analysis of the impact of draft tube modifications on the performance of the Kaplan turbine was carried out by applying computational fluid dynamics. The net head of the turbine with a diameter of D=3.15m accounts for H-net=9.00m and the maximum discharge per unit is Q(max)=57.5m(3)/s. After it was proven that there is a good agreement of the numerically calculated and experimentally measured turbine efficiency for the original turbine configuration, various draft tube designs were tested in order to find out their impact on the turbine efficiency and to analyse the sources of draft tube losses in detail. Finally, it was possible to find a new draft tube design representing a compromise of reduced construction costs and acceptable turbine efficiency.
机译:由于中欧的低电价,与新水电站所有部分相关的成本优化变得越来越重要。如果采用垂直轴Kaplan涡轮机的河流水电站,其中一台成本驱动器是挖掘工程。因此,降低建筑成本的决定性因素是肘部型牵伸管的施工深度最小化。在奥地利新水电站的设计阶段,通过施加计算流体动力学进行了对木管改造对Kaplan涡轮机的性能的影响。直径为D = 31.15m的涡轮机的净头占H-NET = 9.00M,每单位的最大放电是Q(最大值)= 57.5M(3)/ s。经过证明,在原始涡轮机配置的数值计算和实验测量的涡轮机效率存在良好的同意之后,测试了各种牵引管设计,以便找出其对涡轮机效率的影响并分析牵引管的来源详细损失。最后,有可能找到一种新的管道设计,代表施工成本降低和可接受的涡轮效率的折衷。

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