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A review of key environmental and energy performance indicators for the case of renewable energy systems when integrated with storage solutions

机译:与存储解决方案集成时,对可再生能源系统的关键环境和能源绩效指标进行了审查

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During the last years a variety of numerical tools and algorithms have been developed aiming at quantifying and measuring the environmental impact of multiple types of energy systems, as those based on Renewable Energy Sources. Plenty of studies have proposed the use of a Life Cycle Assessment methodology, to determine the environmental impact of renewable installations when coupled with storage solutions, based on a pre-selected repository of Key Performance Indicators. The main scope of this paper is to propose a limited number of best fitting, and at the same time easily adaptable to various configurations, list of Key Performance Indicators for the case of renewable energy systems. This is done by capitalizing on the environmental and energy performance indicators tracked in the open literature (e.g. "Global Warming Potential", "Energy Payback Time", "Battery Total Degradation", "Energy Stored on Invested", "Cumulative Energy Demand") and/or other proposing new simple, scalable and adaptable ones, (e.g. "Embodied Energy for Infrastructure of Materials and for the building system", "Life Cycle CO2 Emissions", "Reduction of the Direct CO2 emissions", "Avoided CO2 Emissions", "CO2 equivalent Payback Time"). Moreover, the proposed indicators are distributed according to the individual phases of the entire life-cycle of a related component of a renewable energy system, each time the environmental impact refers to, i.e. manufacturing, operational and end-of-life. Apart from that, the current paper presents a necessary base grounded approach, which can be followed for a holistic approach in environmental point of view of renewable-based technologies, by addressing the potential competing interests of the relevant stakeholders (e.g. profit for the market operator in contrast to low-cost services for the consumer). All in all, the scalar quantification of the environmental impact of multiple energy systems, through a list of proposed assessment criteria, being evaluated in terms of the selected repository of indicators, enables the comparison on a fair basis of the available energy systems, irrespective if they are fossil-fuel or renewable based ones. As a typical example, a simple standard model of a photovoltaic integrated with an electric battery is selected, for which indicative indicators are provided.
机译:在过去的几年中,已经开发了多种数值工具和算法,旨在量化和衡量多种类型的能源系统对环境的影响,例如那些基于可再生能源的系统。基于预先选择的关键绩效指标存储库,大量研究建议使用生命周期评估方法来确定可再生能源装置与存储解决方案结合时对环境的影响。本文的主要范围是提出数量有限的最佳拟合方法,同时又容易适应各种配置,这是可再生能源系统案例的关键绩效指标列表。这是通过利用公开文献中跟踪的环境和能源绩效指标来完成的(例如“全球变暖潜势”,“能源回收时间”,“电池总降级”,“投资时存储的能量”,“累积能源需求”)和/或其他提出新的简单,可扩展和适应性建议的提案(例如“用于材料基础设施和建筑系统的嵌入式能源”,“生命周期的二氧化碳排放量”,“直接二氧化碳排放量的减少”,“避免的二氧化碳排放量” ,“二氧化碳当量回收时间”)。此外,每当环境影响指的是制造,运营和报废时,建议的指标将根据可再生能源系统相关组件的整个生命周期的各个阶段进行分配。除此之外,本白皮书提出了一种必要的基础方法,对于可再生技术的环境观点而言,可以采用整体方法,通过解决相关利益相关者的潜在竞争利益(例如,市场运营商的利润)与面向消费者的低成本服务相反)。总而言之,通过一系列拟议的评估标准对多种能源系统的环境影响进行标量量化,并根据选定的指标库进行评估,从而可以公平地比较可用能源系统,无论是否它们是化石燃料或可再生燃料。作为典型示例,选择集成有电池的光伏的简单标准模型,为此提供指示性指示。

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