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Performance investigation of self-adjusting blades turbine through experimental study

机译:通过实验研究自调节叶片式涡轮机的性能研究

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In the quest for renewable energy sources and sustainable development, hydrokinetic energy available in marine currents, river currents, water flows and man-made canals should be harnessed. This is particularly true for rural and remote areas, which have access to water but often have poor electricity. The vertical axis current turbine, which is a key hydrokinetic technology, has been greatly improved over the last few years. It has numerous advantages, including independency of flow direction, design simplicity, quiet operation, no required yaw mechanism and low cost. The Savonius hydrokinetic turbine is one of the most important drag-type configurations of a vertical axis current turbine. However, it suffers from negative torque, negative drag force on the returning blades, low efficiency and difficulty interfacing with a generator. This paper proposes a novel drag based vertical axis current turbine using arms and self-adjusting blades. This novel design was developed based on the framework of a Savonius hydrokinetic turbine. In an effort to decrease the hydrodynamic resistance of the returning blades and increase the total output torque of the turbine, this study aims to investigate the performance characteristics of a novel vertical axis current turbine (hereinafter referred to as "self-adjusting blade turbine"). Experimental tests were conducted in the Universiti Teknologi Malaysia (UTM) at low speed currents to assess the performance characteristics of three configurations of a fixed blade turbine and a self-adjusting blade turbine. The force acting on one blade of the self-adjusting turbine was analysed in detail. The results showed that the arm length and blade angle affected the performance of turbine, and that there was 30.7% increase in performance for the self-adjusting blade turbine compared to the fixed blade turbine.
机译:在寻求可再生能源和可持续发展的过程中,应利用海流,河流,水流和人造运河中可利用的动能。对于农村地区和偏远地区来说尤其如此,那里虽然有水,但经常用电较差。在过去的几年中,作为一项关键的水动力技术的垂直轴流式水轮机已经得到了很大的改进。它具有许多优点,包括流向的独立性,设计简单性,安静的操作,不需要偏航机制和低成本。萨沃纽斯流体动力涡轮机是垂直轴电流涡轮机最重要的阻力型配置之一。然而,它具有负扭矩,在返回叶片上的负阻力,效率低和与发电机连接的困难。本文提出了一种新颖的基于阻力的垂直轴流式水轮机,它采用了臂和自调节叶片。这种新颖的设计是基于Savonius流体动力涡轮机的框架开发的。为了减少回程叶片的流体动力阻力并增加涡轮机的总输出扭矩,本研究旨在研究新型垂直轴电流涡轮机(以下称为“自调节叶片式涡轮机” ”)。在马来西亚科技大学(UTM)上以低速电流进行了实验测试,以评估固定叶片式涡轮机和自调节叶片式涡轮机三种配置的性能特征。详细分析了作用在自调节式涡轮机的一个叶片上的力。结果表明,臂长和叶片角度会影响涡轮的性能,与固定叶片涡轮相比,自调节叶片涡轮的性能提高了30.7%。

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