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Blade Polymeric Material Study of a Cross-Flow Water Turbine Runner

机译:横流水轮机流道的叶片聚合物研究

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摘要

Although Romania has a consistent hydro energetic potential, till now is valuated just approximate 30 percent of it. On die big rivers there are already installed high power hydro plants, but a lot of small and medium rivers are not valuated energetically. Installing a new high power hydro plant tends to affect the zone, being necessary a lot of changes in the environment. The Cross-Flow hydraulic turbines don't need very complex hydro settlements, being very suitable for small and medium power hydro plants. Also a quite big potential in the use this type of hydraulic machines is the energy recovery in the water treatment and sewage plants. The turbine's blades surfaces enters in contact with the pressurized water jet. The water jet creates a hydrodynamic force that tends to stress the blade. Mainly the Cross-flow turbine blades are made from steel. This article presents the hydrodynamic design and the possibility of using new polymeric material Delrin (R) AF for the Cross-Flow turbine runner blades, together with the stress analysis.
机译:虽然罗马尼亚具有一致的水力充沛的能量潜力,但直到现在,估值似乎是30%的估价。在Die Big Rivers上已经安装了高功率水力发电,但很多小型河流在很大程度上不会耐高采烈。安装新的高功率水力发电厂往往会影响区域,在环境中是必要的。横流液压涡轮机不需要非常复杂的水电定居点,非常适合中小型动力水力发电植物。在使用这种类型的液压机器中也是相当大的潜力是水处理和污水植物的能量回收。涡轮机的叶片表面与加压水射流接触。水射流产生倾向于应对刀片的流体动力学力。主要是横流涡轮叶片由钢制成。本文介绍了流体动力学设计和使用新型聚合物材料Delrin(R)AF的可能性,用于交叉流动涡轮流道叶片,以及应力分析。

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