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A Feasibility Assessment of Photovoltaic Power Systems in Ireland; a Case Study for the Dublin Region

机译:爱尔兰光伏发电系统的可行性评估;都柏林地区的案例研究

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摘要

Photovoltaic (PV) power generation is one of the cleanest sources for producing renewable energy; however uptake on the Irish renewable energy market to date has been low. There is a lack of support for solar PV systems in Ireland; there is currently no solar PV energy feed-in-tariff as there are for other renewable energy systems in Ireland. Despite the current lack of support, the Government has indicated that support for the uptake of solar PV installations will be provided through the provision of a feed-in tariff in the future. The aim of this study was to determine the feasibility of installing PV systems under Irish climatic conditions at a location based in Dublin, Ireland, from a technical, environmental and economic point of view. This was achieved by carrying out a life cycle assessment of potential environmental impacts, and analysis of energy and economic payback times relating to the proposed PV system. Four possible renewable feed-in-tariffs (based on existing feed-in-tariffs for other renewable energy systems) were considered to determine the effect of such tariffs on the overall economics of the proposed PV system. Results show that life cycle GHG emissions are 69 g CO2-eq per kWh generated by the system, significantly lower than the current electricity grid mix emissions of 469 g CO2-eq per kWh. It will take 5.23 years of operation of the solar plant to generate the same amount of energy (in terms of primary energy equivalent) that was used to produce the system itself. The economic payback time varies from 19.3 and 34.4 years depending on the rate of renewable energy feed-in-tariff applied. The costs for the production of PV electricity in this study are higher than is usual in countries where the solar PV market is more developed, e.g., Germany, due to constraints with building integration and lack of experienced PV installers. As more PV is deployed, the Irish PV installer base will increase and ‘learning by doing’ effects will allow installers to install projects more efficiently and quickly under Irish conditions, leading to significantly reduced costs.
机译:光伏发电是生产可再生能源的最清洁能源之一。然而,迄今为止,爱尔兰可再生能源市场的吸收率很低。爱尔兰缺乏对太阳能光伏系统的支持;目前没有像爱尔兰其他可再生能源系统那样的太阳能光伏能源上网电价。尽管目前缺乏支持,但政府表示,将来将通过提供上网电价来支持购买太阳能光伏装置。这项研究的目的是从技术,环境和经济角度确定在爱尔兰气候条件下在爱尔兰都柏林的位置安装光伏系统的可行性。通过对潜在的环境影响进行生命周期评估,并分析与拟议的光伏系统相关的能源和经济投资回报时间,可以实现这一目标。考虑了四种可能的可再生能源上网电价(基于其他可再生能源系统的现有上网电价),以确定此类电价对拟议光伏系统整体经济的影响。结果表明,系统在整个生命周期中产生的温室气体排放量为69 g CO2当量/千瓦时,大大低于当前的电网混合排放量469 g CO2当量/千瓦时。太阳能发电厂的运行将需要5.23年才能产生与用于生产系统本身的能量相同的能量(按一次能源当量计)。经济回收期从19.3年到34.4年不等,具体取决于可再生能源上网电价的税率。由于建筑物整合的限制和缺乏经验丰富的光伏安装人员,本研究中光伏发电的成本高于太阳能光伏市场较为发达的国家(例如德国)的通常成本。随着更多PV的部署,爱尔兰PV安装人员的基础将增加,“边做边学”的效果将使安装人员可以在爱尔兰条件下更高效,更快速地安装项目,从而显着降低成本。

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