On 5 April 2016 the JRC presented the interactive and collaborative online European Energy Efficiency Platform. This beta platform is conceived to fill the gap opened by scattered data and fragmented knowledge resulting from a rapidly growing energy efficiency market. It is expected to be both a one-stop shop for information retrieval and a meeting point for experts to exchange data and reduce redundant activities.
Economics and Financing
Energy Generation and Distribution
Energy efficiency is not a single market: it covers measures in a diverse range of end-user sectors, end-use equipment and technologies and consists of very large numbers of small, dispersed projects with a dispersed range of decision makers. Overall, many EE technologies are proven and economic: if properly financed, the investment costs are paid back over short periods from energy cost savings.
Created the 10 Dec 202010 Dec 2020Total Views 236236
Buildings
The “One-stop-shops for energy renovations of buildings” report is the exploratory review of case studies of past and current one-stop-shops (OSS) with a primary focus on the EU Member States. One-stop-shops are transparent and accessible advisory tools from the client perspective and new, innovative business models from the supplier perspective.
Created the 12 Nov 201812 Nov 2018Total Views 41124112
Energy Generation and Distribution
This report reviews the current status of European Member States’ regulation supporting Demand Response and Aggregation in the wholesale, balancing and ancillary electricity markets, as stipulated in Article 15 of the Energy Efficiency Directive.
Created the 17 Oct 201817 Oct 2018Total Views 7979
This paper analyses the role of barriers preventing the worldwide take-up of a clean technology: the electrical arc furnace. It also identifies which barriers affect a parameter that summarises the combined effect of all of them. The first step, determination of the combined effect of the barriers, is carried out using a novel approach to model the diffusion of innovations.
Created the 18 Jan 201718 Jan 2017Total Views 7979
This paper analyses the role of barriers preventing the worldwide take-up of a clean technology: the electrical arc furnace. It also identifies which barriers affect a parameter that summarises the combined effect of all of them. The first step, determination of the combined effect of the barriers, is carried out using a novel approach to model the diffusion of innovations.
Created the 18 Jan 201718 Jan 2017Total Views 6565
This peer review paper presents a new mathematical approach to the diffusion of energy-efficient technologies using the diffusion of natural processes as an analogy. This approach is applied to the diffusion of the electric arc furnace in Japan. The main advantage offered by the new approach is the incorporation of an average effect of barriers to, and support measures for, innovation.
Created the 01 Jul 201601 Jul 2016Total Views 133133
This peer-review paper presents a new mathematical approach to the diffusion of energy efficient technologies using the diffusion of natural processes as an analogy. This approach is applied to the diffusion of the electric arc furnace in Japan. The main advantage offered by the new approach, is the incorporation of an average effect of barriers to, and support measures for, innovation.
Created the 01 Jul 201601 Jul 2016Total Views 8787
Industry
Results from this recent JRC study show that, in 2050, the energy consumption and direct greenhouse gas (GHG) emissions of the European aluminium industry could be decreased by 21% and 66%, respectively, if the sector adopts innovative technological solutions instead of following a conservative technology deployment path.
Created the 30 Mar 201630 Mar 2016Total Views 219219
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Thematic Areas
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The European Energy Efficiency Platform is an open collaborative tool for a strong and connected energy efficiency community.
The content in it is divided in six thematic and four cross-thematic areas.
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The present report aims to provide an overview of the main issues at stake with the calculation methods for energy savings generated by measures implemented by EU Member States under Article 7 of the Directive 2012/27/EU on Energy Efficiency (EED).
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