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LOKALENERGI HANDEL

AURA RADGIVNING AS
Country: Denmark

LOKALENERGI HANDEL

2 Projects, page 1 of 1
  • Funder: European Commission Project Code: 649867
    Overall Budget: 1,528,660 EURFunder Contribution: 1,528,650 EUR

    The industrial sector could reduce its energy use by at least 13%. 75% of the potential savings can be found in steam and electric motor systems. Actions to tap the full potential in steam systems have been taken in the past but without success since findings from energy audits were not, or partly, implemented. The following barriers have been identified:  There is no business case for steam saving measures for enterprise decision makers;  There is a lack of technical (steam) expertise of energy auditors and within enterprises generally;  There is no formal organisational structure for dealing with energy efficiency (energy management). The objectives and goals of the STEAM-UP proposal are: • Bridging the gap between audit results and implementation by developing an in-depth steam audit covering:  state of the art steam expertise;  involvement of all stakeholders in the enterprise;  identification of non-energy benefits to strengthen business cases;  energy management to secure prolongation. • Reducing the effort for measure implementation by developing an integrated solution for business case reporting and energy management implementation. • Achieve energy savings during this action of 55,6 GWh/a through piloting 75 of the in-depth steam audits. • Building capacity amongst 400 energy auditors for the use of the in-depth steam audit methodology in their daily practise. • Building capacity amongst stakeholders in 75 enterprises on steam and the business benefits to increase steam efficiency. • Building capacity amongst 40 energy management training providers to enable integration of the in-depth steam audit methodology in regular energy training programmes. • Promote knowledge transfer on steam and the benefits to increase steam efficiency. This project focuses on the large, energy-intensive industry but the methodology will also be applicable for SMEs. The developed methodology can be made applicable for a wide range of utilities and processes.

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  • Funder: European Commission Project Code: 768619
    Overall Budget: 3,645,040 EURFunder Contribution: 3,044,570 EUR

    RESPOND will aim to deploy and demonstrate an interoperable, cost effective, user centred solution, entailing energy automation, control and monitoring tools, for a seamless integration of cooperative DR programs into the legacy energy management systems. In this endeavour, RESPOND will be leveraged upon an integrated approach for real-time optimal energy dispatching, taking into account both supply and demand side, while exploiting all energy assets available at the site. Owing to its flexibility and scalability, RESPOND solution will be capable of delivering a cooperative demand response at both building and district level. To provide a seamless integration of all DR enabling elements and ensure a high replication potential, RESPOND will be leveraged upon open standards for interoperability with smart home devices and automation systems, connectivity and extendibility towards smart grid and third party services such as for provision of energy prices, weather forecasts, etc. Underpinned by the smart energy monitoring infrastructure, RESPOND will be able to perform reliable energy data analytics and forecasting in order to detect potential energy conservation opportunities, and to adapt, in real time, to the operational environment considering indoor and outdoor conditions, while retaining the requested comfort levels. Through the interaction with the end users, RESPOND will aim to raise their awareness by delivering measurement driven suggestions for energy demand reduction and influence their behaviour making them an active indispensable part of DR loop. In order to demonstrate the high replication potential, RESPOND will target different types of residential buildings, situated in different climate zones, having different forms of ownership (both rental as well as home-owners), population densities and underlying energy systems.

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