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The potential of the water hammer in pico-scale tidal power systems: An experimental investigation

机译:皮克级潮汐发电系统中水锤的潜力:一项实验研究

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The tidal energy within the seas surrounding the United Kingdom offers a vast renewable resource that is perfectly predictable over long timescales. Currently, the bulk of tidal energy research is focused on developing large devices for the most resource rich locations, which can be many miles from populated areas. The potential of small-scale tidal power from sub-optimal shallow water sites, close to populated regions, has so far been overlooked. Such generation would benefit from reduced transmission losses and contribute towards a distributed electricity grid, helping to overcome the variability of other renewables. This work presents a novel method for generating hydropower using the water hammer effect: a pressure surge that can occur in a pipeline following the abrupt closure of a valve. These pressure surges are used to produce vertical oscillations from horizontally flowing water, allowing power to be generated in a manner analogous to a wave energy convertor. A non-optimised scale model was found experimentally to have a peak available power density of 1.08 ± 0.25 kW/m2 and a mean of 0.07 ± 0.02 kW/m2. In comparison, the MCT SeaGen S (arguably the most well-developed tidal energy device) is capable of generating 3.18 kW/m2. With further development, a water hammer device may therefore be useful for generating pico-scale tidal power in slow, shallow water flows.
机译:英国周围海洋中的潮汐能提供了巨大的可再生资源,这在很长的时间范围内都是可以完全预测的。当前,大部分潮汐能研究集中在为资源最丰富的地区开发大型设备,这些地区可能距人口稠密地区数英里。迄今为止,来自人口稠密地区附近次优浅水场的小规模潮汐发电潜力一直被人们忽略。这样的发电将受益于减少的传输损耗,并有助于建立分布式电网,从而有助于克服其他可再生能源的可变性。这项工作提出了一种利用水锤效应产生水力发电的新颖方法:在突然关闭阀门之后,管道中可能发生压力波动。这些压力波动用于从水平流动的水中产生垂直振荡,从而允许以类似于波能转换器的方式来产生功率。通过实验发现,非最佳比例模型的可用峰值功率密度为1.08±0.25 kW / m2,平均值为0.07±0.02 kW / m2。相比之下,MCT SeaGen S(可以说是最先进的潮汐能设备)能够产生3.18 kW / m2的功率。随着进一步的发展,水锤装置因此可用于在缓慢的浅水流中产生皮克级的潮汐能。

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