开发评估潮汐能提取潜力的原型模型

Myisha Ahmad, G. Hasan, A. Khatun
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摘要

随着有限的矿物燃料资源迅速耗竭所引起的全球气候变化问题日益引起关注,全世界对可再生能源的潜力和可能性的关注日益加强。就孟加拉国而言,在多种可再生能源(太阳能、风能、生物质能、潮汐能和海浪能以及海洋热能)中,利用既有动能又有势能的潮汐能是一种很有前途的选择。前者涉及潮流能量转换技术,后者侧重于潮汐拦河坝方法-类似于水力发电技术。本文通过开发实验室规模的原型模型,对潮汐拦河坝技术的潜力进行了评估。为了研究和验证潮汐坝技术的单向发电方法,构建了原型能量提取器。该模型按比例缩小到实际生产。利用实验室水槽产生水头穿过水闸,考虑上游为盆地侧,下游为海边。水池一侧的水被水闸保留,产生最大水头差,从而在穿过涡轮机和旋转发电机时发电。下游端产生的功率由电流表测量。然后将通过涡轮机产生的能量与理论能量产生进行比较。讨论了这项研究的结果与潮汐能的前景有关,并确定这项技术是在孟加拉湾适当地点发电的较好选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a prototype model for assessing tidal energy extraction potential
With the rising concerns over global climate change associated with rapid depletion of limited fossil fuel resources, worldwide attention has intensified towards the potentials and possibilities of renewable energy sources. In the context of Bangladesh, among multifarious sources of renewables (solar, wind, biomass, tidal and wave power and ocean thermal energy) harnessing of energy from ocean tides, that cogitates both kinetic and potential energy, is a promising option. The former deals with tidal current energy conversion technologies while the latter concept focuses on the tidal barrage approach-similar to hydropower technique. This paper presents an assessment of the potential of tidal barrage technology through the development of a laboratory scale prototype model. The prototype energy extractor is constructed to study and verify the one-way generation method of tidal barrage technology. The model is scaled down to actual generation. A laboratory flume is used to generate a hydraulic head across a sluice gate, considering the upstream as basin side and downstream as the seaside. Water on the basin side is retained by the sluice, creating maximum head difference and thereby generates electricity while traversing through the turbine and rotating the generator. The generated power in the downstream end is measured by an ammeter. The amount of energy generated through the turbine is then compared to the theoretical energy generation. The findings of this study are discussed in relation to the prospects of tidal potential energy and identifies this technology as a preferable option for electricity generation in the suitable locations of the Bay of Bengal.
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