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Electricity supply in Ghana: The implications of climate-induced distortions in the water-energy equilibrium and system losses

机译:加纳的电力供应:气候导致的水能平衡失衡和系统损耗的影响

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摘要

An important synergy exists between electricity supply security and sustainable economic development. However, distortions in the water-energy equilibrium (especially for electricity systems that heavily depend on hydropower renewable energy) and operational inefficiency in the transmission and distribution networks can affect electricity supply negatively and distort this synergy. Given the irreversible nature of capital investments and the time-dependent nature of learning abilities and information flow, it is critical to delineate the short- and long-run effects of system losses and distortions in the water energy equilibrium on electricity availability. This study applies an econometric approach to study the case of Ghana from 1970 to 2016. Distortions in the water-energy equilibrium negatively affect electricity supply in the short- and long-run. Investment in storage renewable hydro will ensure operational flexibility and compensate for the variability in water flow. Moreover, storage hydropower is a vital asset for the development of non-flexible renewables (i.e. wind and solar) due to the synergy that exists between them. System losses have a concave effect on electricity supply, with the tolerable rate determined as 6.65%. Current levels suggest that the country should cut down on system losses by 13.35%; this requires a significant investment in transmission and distribution networks and meters. (C) 2018 Elsevier Ltd. All rights reserved.
机译:电力供应安全与可持续经济发展之间存在重要的协同作用。但是,水能平衡的扭曲(尤其是严重依赖水电可再生能源的电力系统)以及输配电网络的运营效率低下会对电力供应产生负面影响,并扭曲这种协同作用。考虑到资本投资的不可逆性以及学习能力和信息流的时间依赖性,必须描述系统损失和水能平衡的扭曲对电力供应的短期和长期影响。这项研究采用计量经济学方法研究了1970年至2016年的加纳案例。短期内,长期来看,水能平衡失常会对电力供应产生负面影响。储存可再生水电方面的投资将确保运营灵活性并补偿水流量的变化。此外,由于水力发电之间存在协同作用,因此它们是发展非柔性可再生能源(即风能和太阳能)的重要资产。系统损耗对电力供应有隐性影响,可容忍率确定为6.65%。当前的水平表明,该国应减少系统损耗的13.35%。这就需要在输配电网络和仪表上进行大量投资。 (C)2018 Elsevier Ltd.保留所有权利。

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