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EXPERIMENTAL AND COMPUTATIONAL FLUID DYNAMIC ANALYSIS OF AXIAL-FLOW HYDRODYNAMIC POWER TURBINE

机译:轴流式水力发电机组的实验和计算流体动力学分析

摘要

Thorough analysis of drag and power characteristics of hydrodynamic power turbines is necessary for the efficient extraction of energy available at sea. In an effort to obtain these characteristics for a three-bladed, axial-flow hydroturbine, used to provide electric power on small sailing vessels, a load cell and voltage measuring system was installed on a carriage in a towing tank for analysis across a speed range of 0.5 to 1.8 m/s. A high-speed camera was used to determine the precise carriage speed and the rotational speed of the turbine rotor. For validation of concept, two thin flat plates were analyzed using the same drag force measuring system in the tow tank to compare experimentally determined drag coefficients with known literature values. Results are shown for the drag force experienced by the flat plates and both the non-rotating and the rotating turbine configurations. Additional results are shown for the turbines power generation capabilities at rotational speeds between 90 and 500 RPMs. Using computational fluid dynamics for the rectangular flat plate and non-rotational turbine configuration, the experimental and computational results for the drag force characteristics were compared.
机译:为了有效地提取海上可用能量,有必要对水动力涡轮机的阻力和功率特性进行透彻的分析。为了获得用于在小型帆船上提供电力的三叶片轴流式水轮机的这些特性,将一个称重传感器和电压测量系统安装在拖船的滑架上,以便在整个速度范围内进行分析0.5至1.8 m / s使用高速相机确定精确的托架速度和涡轮转子的转速。为了验证概念,在拖箱中使用相同的阻力测量系统分析了两个薄平板,以将实验确定的阻力系数与已知文献值进行比较。显示了平板承受的阻力以及非旋转和旋转涡轮配置的结果。涡轮机在90至500 RPM的转速下的发电能力显示了其他结果。使用矩形平板和非旋转涡轮配置的计算流体动力学,比较了阻力特性的实验和计算结果。

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    Bryan Grant T.;

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  • 年度 2013
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