A performance investigation of a multi-staging hydrokinetic turbine for river flow

Kerishmaa Theavy Kunalan, Cheng Yee Ng, Nauman Riyaz Maldar
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引用次数: 1

Abstract

Our world has been relying on fossil fuel, a non-renewable energy that is depleting day by day and negatively impacting the environment. Hydropower is known to contribute a significant portion of the renewable power production. Dams has been the most common technique to generate hydropower. However, such scheme was not able to support the rural areas as it requires large areas and huge amount of water resource. Savonius hydrokinetic turbine (HKT) has been suggested as the device for a small-scale application as it can generate power from low-velocity river flow with less installation cost. With that, the aim of this study is designed to investigate and compare performance of the single-staged and two-staged HKT for river flow. This study considered numerical simulation that includes modelling, testing, and analyzing the data. Then, comparing it with the existing literature results, to identify the solution. This investigation demonstrates an improvement of 8.1% in the efficiency of power coefficient when compared with single-staged HKT.
多级水动力水轮机河流性能研究
我们的世界一直依赖于化石燃料,这是一种不可再生的能源,正在日益消耗,并对环境产生负面影响。众所周知,水力发电在可再生能源生产中占很大一部分。大坝一直是最常用的水力发电技术。然而,这种方案无法支持农村地区,因为它需要大面积和大量的水资源。Savonius水轮机(HKT)可以利用低速河水发电,且安装成本较低,因此被建议作为小规模应用的设备。因此,本研究的目的是调查和比较单级和两级HKT对河流流量的性能。本研究考虑了数值模拟,包括建模、测试和数据分析。然后,将其与已有文献结果进行比较,找出解决方案。该研究表明,与单级HKT相比,功率系数效率提高了8.1%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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