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首页> 外文期刊>Journal of Mechanical Science and Technology >CFD based design of a 4.3MW Francis turbine for improved performance at design and off-design conditions
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CFD based design of a 4.3MW Francis turbine for improved performance at design and off-design conditions

机译:基于CFD的4.3MW竞技汽轮机设计,改进了设计和非设计条件的性能

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摘要

AbstractHydraulic turbines are designed for the available head and flow rate of the hydroelectric power plant. Design point usually gives the best efficiency. However, when the turbine is used at off-design conditions where the flow rate and head change mostly because of seasonal fluctuations, efficiency significantly reduces. Therefore, the objective of hydraulic turbine design is not only satisfying the power requirements and maximum efficiency at the design point, but also improved characteristics at off-design conditions. In this work, a 4.3 MW Francis turbine is designed with the help of Computational fluid dynamics. All turbine components are designed separately, and then full turbine analyses are performed to confirm the design. Once an efficient design is obtained for the design head and flow rate, CFD simulations for off-design conditions are performed to confirm the high efficiency of the turbine at these flow rate-head combinations. The efficiency of the designed turbine is in the range of 90 to 92 % for a wide range of head and flow rates.
机译:<标题>摘要 ara>液压涡轮机设计用于水力发电设备的可用头和流量。设计点通常提供最佳效率。然而,当涡轮机用于在流量和头部主要因季节性波动而变化的偏移设计条件下时,效率显着降低。因此,液压涡轮机设计的目的不仅满足设计点的功率要求和最大效率,而且还提高了在非设计条件下的特性。在这项工作中,在计算流体动力学的帮助下设计了4.3兆瓦弗朗西斯涡轮机。所有涡轮机组件都是单独设计的,然后进行全涡轮机分析以确认设计。一旦获得了设计头和流速获得了有效的设计,就可以执行用于非设计条件的CFD模拟,以确认在这些流量速率部件中的涡轮机的高效率。各种头部和流速的设计涡轮机的效率在90至92%的范围内。

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