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Cross-Flow Turbine Design for Energy Production and Discharge Regulation

机译:横流式水轮机的能量产生和排放调节设计

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Cross-flow turbines are very efficient and cheap turbines that allow a very good cost/benefit ratio for energy production located at the end of conduits carrying water from a water source to a tank. In this paper, a new design procedure for a cross-flow turbine working with a variable flow rate is proposed. The regulation of the head immediately upstream the turbine is faced by adopting a shaped semicircular segment moving around the impeller. The maximum efficiency of the turbine is attained by setting the velocity of the particles entering the impeller at about 2x the velocity of the rotating system at the impeller inlet. If energy losses along the pipe are negligible, the semicircular segment allows always a constant hydraulic head and a constant velocity at the impeller inlet, even with variable flow rate. The decrease of the turbine efficiency along with the inlet surface reduction is first investigated; a design methodology, using also computational fluid dynamics simulations, is then proposed for both the cases of negligible and not negligible energy losses along the pipe. (C) 2014 American Society of Civil Engineers.
机译:错流式涡轮机是非常高效且便宜的涡轮机,其位于将水从水源输送到水箱的管道末端,为能源生产提供了非常好的成本/收益比。本文提出了一种变流量横流涡轮的新设计程序。通过采用围绕叶轮移动的成形半圆形扇形片,可以直接在涡轮机上游调节水头。通过将进入叶轮的颗粒速度设置为叶轮入口处旋转系统速度的约2倍,可以达到涡轮机的最大效率。如果沿管道的能量损失可以忽略不计,则即使在流量可变的情况下,半圆形部分也始终允许恒定的液压头和恒定的叶轮入口速度。首先研究涡轮效率的降低以及入口表面的减少。然后提出了一种设计方法,同时还使用了计算流体动力学模拟,以应对沿管的能量损失可忽略和不可忽略的情况。 (C)2014年美国土木工程师学会。

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