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A study on transformation of multi-purpose dams into pumped storage hydroelectric power plants by using GIS model

机译:用GIS模型研究泵送蓄能水电站多功能大坝的研究

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Nowadays, the continuity of all activities related to industrial production is essential for the sustainability of modern life. In order to achieve this, it is necessary to ensure the continuity of energy demand. For an energy supply to be considered as reliable, a fast and reliable response should always be provided to changing demand. Pumped storage systems can meet these needs due to their ability to store energy at times of high demand. Therefore, in recent years, many countries have increased their investments to transform existing hydroelectric power plants into pumping storage hydroelectric power plants (PHS). In this study, a GIS-based model for the transformation of an existing dam into a PHS system has been developed. The aim of this model is to determine the most suitable second reservoir location for the PHS transformation and to calculate the theoretical hydroelectric energy potential. According to the results of the study, the second reservoir location with a volume of 6,5x10(6) m(3) was determined by transforming the Porsuk dam, which was examined as a pilot area, into a PHS. It is calculated that this reservoir can store 0.664 GWh of energy. This study will make an important contribution to the literature by presenting a holistic model approach by determining the most suitable second reservoir location and by calculating the energy potential on the transformation of existing dams into a PHS.
机译:如今,与工业生产相关的所有活动的连续性对于现代生活的可持续性至关重要。为了实现这一目标,有必要确保能源需求的连续性。对于被认为可靠的能源供应,应始终提供快速可靠的响应以改变需求。由于它们在高需求时代的能力存储能量,泵送的存储系统可以满足这些需求。因此,近年来,许多国家增加了他们的投资,将现有的水力发电设备转化为泵送储存水力发电设备(PHS)。在本研究中,已经开发出用于将现有坝体转换成PHS系统的GIS基础模型。该模型的目的是确定PHS转换的最合适的第二储层位置,并计算理论水电能电位。根据该研究的结果,通过将被检查为试验区域的荷库坝转化为pH,通过将载体大坝转化为pHS来确定具有6,5×10(6)(3)的第二储存位置。计算出该水库可以存储0.664 GWH的能量。本研究将通过确定最合适的第二储层位置并通过计算现有水坝转化为pHS的能源潜力来对文献进行重要贡献。

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