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Application of Floating Tidal Current Power System in Cooling Water Channel

机译:浮潮式电力系统在冷却水通道中的应用

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Being surrounded by ocean except the north where bothering with the orth Korea, the South Korea has many suitable sites for ocean energy retraction. Having a high tidal range of up to 9.7m on the west coast of Korea, the tidal current and the tidal barrage powers are practical applications. However due to the great environmental impact to the costal and estuary by construction of tremendous dam structure to preserve water that can paralyze the circulation of water, the tidal barrage should be carefully considered since the purpose of developing renewable energies is to minimize the environmental impact and to maximize the utilization of clean energy. Also due to the uneven sea floor and narrow channels between islands on the south coast, there are many locations with high current speed. Therefore tidal current power would be the most applicable and practical energy source in Korea. Using the tidal current power technologies, the application in the cooling water channel has been considered since there are many power stations circulating and draining seawater. Some of cooling water weir has more than 3.3m/s of discharging water that attracts the recycle of water. Not like the ocean current, the discharging water has little variation in speed and orientation. To investigate the application of tidal current power technology in the cooling water weir, series of experiments have been carried out in the CWC (Circulating Water Channel) and the findings in the rotor design, floating body stability, power delivery, device maintenance, etc. are introduced in the paper.
机译:除了北部困扰着朝鲜,韩国被大洋包围,韩国拥有许多合适的海洋能量回收地点。在韩国西海岸,潮汐范围高达9.7m,因此潮流和拦河坝的弹力非常实用。但是,由于建造巨大的水坝结构对水和河口造成了巨大的环境影响,可能会破坏水的循环,因此应谨慎考虑潮汐拦河坝,因为开发可再生能源的目的是最大程度地减少对环境和环境的影响。最大限度地利用清洁能源。另外,由于海底不平坦,南海岸各岛之间的航道狭窄,因此许多地方的海流速度很高。因此,潮流电力将成为韩国最适用和最实用的能源。使用潮流发电技术,已经考虑了在冷却水通道中的应用,因为有许多发电站都在循环和排放海水。某些冷却水堰的排水量超过3.3m / s,从而吸引了水的再循环。与洋流不同,排出的水在速度和方向上几乎没有变化。为了研究潮流电源技术在冷却水堰中的应用,已在CWC(循环水通道)中进行了一系列实验,并发现了转子设计,浮体稳定性,功率传输,设备维护等方面的发现。本文介绍。

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