超冲水车的有效网格连接方法

Americo Vicente Teixeira-Leite
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引用次数: 0

摘要

在过去几年中,人们对小型水力发电的兴趣有所增加。这些微型水电系统的范围从几瓦到几千瓦不等。利用低水头场地不需要昂贵的土建工程,而且对环境是可持续的。微型水电系统不仅对没有电网的偏远地区有吸引力,而且对电网连接也有吸引力。这对用于其他活动但也可用于发电的现有基础设施尤其重要。水车在这方面具有巨大的潜力。低速以及水头和水流的变化限制了它们与电网的连接。这项研究表明,它们可以使用其他可再生能源(如光伏)的竞争性和广泛可用的技术有效地连接到电网。本文提出了一种基于超调水轮的微水力系统有效并网的创新方法。为此,使用了永磁同步发电机和光伏逆变器。详细分析了它们之间的相容性,对其他水轮机也有一定的参考价值。直径2米的水车安装在一个水产养殖中心的现有基础设施上。它的流量约为13l /s,为微电网注入平均126w的功率,全球效率为50%。
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Effective grid connection approach for an overshot waterwheel
Interest in very small-scale hydropower generation has increased over the past few years. These pico-hydro systems range from a few watts to several kW. The exploitation of low head sites does not require expensive civil works and is environmentally sustainable. Pico-hydro systems are attractive not only for remote areas where the grid is not available, but also for grid connection. This is especially relevant in existing infrastructures, used for other activities but which can also be used for energy generation. Waterwheels are emerging with enormous potential in this context. Low speeds and variations in head and water flow are a constraint to their connection to the grid. This study shows that they can be effectively connected to the grid using competitive and widely available technology for other renewable sources, such as photovoltaics. This paper presents an innovative approach for an effective grid connection of a pico-hydro system based on an overshot waterwheel. For this purpose, a permanent magnet synchronous generator and a photovoltaic inverter are used. The compatibility between them is analysed in detail and the analysis is valid for other hydro turbines. The 2 m diameter waterwheel has been installed on an existing infrastructure of an aquaculture centre. With a flow rate of about 13 l/s, it injects an average power of 126 W into a microgrid with a global efficiency of 50%.
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