Application of European Union directives on energy efficiency of building systems in practical training of students in RES technologies

2021 ◽  
Author(s):  
Kamen D. Seymenliyski ◽  
Radostin S. Dolchinkov ◽  
Radoslav R. Simionov
2008 ◽  
pp. 55-61 ◽  
Author(s):  
Bojana Prodanic ◽  
Aleksandar Jokic ◽  
Jelena Markovic ◽  
Zoltan Zavargo

General trend of free trade at the regional level as well as in the direction of European Union has motivated sugar factories located in Serbia to invest into technologies that are more efficient in order to make their products more competitive in the markets of Europe. Until 2005, the project of energy efficiency improvement in Serbian sugar factories was conducted in Crvenka and Zabalj. Now, they have energy consumption around 1 MJ/kg beet, in contrast to the previous consumption of 1.2 up to 1.5 MJ/kg beet. Further improvements are possible but investments would be high. A result of measurements taken during 2006, after the sugar factory "Donji Srem" - Pecinci was reconstructed showed that a considerable saving has been achieved. The first set of measurements showed that the energy consumption was 1.01 MJ/kg beet, which was 20% higher than intended, but at the same time energy savings were about 30% lower with respect to the values before the reconstruction.


IG ◽  
2021 ◽  
Vol 44 (4) ◽  
pp. 287-300
Author(s):  
Michèle Knodt ◽  
Rainer Müller ◽  
Sabine Schlacke ◽  
Marc Ringel

The European Commission's “Fit for 55” package of July 2021 provides for a significant increase in renewable energy and energy efficiency targets in the European Union (EU). However, the EU’s competences in the energy sector are severely limited and subject to sovereignty. Already in 2018, the EU adopted a Governance Regulation that provides for a hardening of the otherwise only soft governance in the areas of renewable energies and energy efficiency due to the lack of European competences. It is intended to ensure that the Commission's recommendations for improving national energy and climate plans are implemented by the member states. An analysis of the quality of implementation of these recommendations now shows that this has a positive effect in areas with harder soft governance but still needs improvement. Increasing the targets of regulatory action cannot be successful without revising the Governance Regulation and hardening soft governance along with it. Otherwise, the EU is not fit for its 55 percent target in 2030.


Energies ◽  
2019 ◽  
Vol 13 (1) ◽  
pp. 80 ◽  
Author(s):  
Ricardo Ramírez-Villegas ◽  
Ola Eriksson ◽  
Thomas Olofsson

The aim of this study is to assess how the use of fossil and nuclear power in different renovation scenarios affects the environmental impacts of a multi-family dwelling in Sweden, and how changes in the electricity production with different energy carriers affect the environmental impact. In line with the Paris Agreement, the European Union has set an agenda to reduce greenhouse gas emissions by means of energy efficiency in buildings. It is estimated that by the year 2050, 80% of Europe’s population will be living in buildings that already exist. This means it is important for the European Union to renovate buildings to improve energy efficiency. In this study, eight renovation scenarios, using six different Northern European electricity mixes, were analyzed using the standard of the European Committee for Standardization for life cycle assessment of buildings. This study covers all life cycle steps from cradle to grave. The renovation scenarios include combinations of photovoltaics, geothermal heat pumps, heat recovery ventilation, and improvement of the building envelope. The results show that while in some electricity mixes a reduction in the global warming potential can be achieved, it can be at the expense of an increase in radioactive waste production, and, in mixes with a high share of fossil fuels, the global warming potential of the scenarios increases with time, compared with that of the original building. It also shows that in most electricity mixes, scenarios that reduce the active heat demand of the building end up in reducing both the global warming potential and radioactive waste, making them less sensitive to changes in the energy system.


Computation ◽  
2020 ◽  
Vol 8 (1) ◽  
pp. 20 ◽  
Author(s):  
Enrico Calore ◽  
Alessandro Gabbana ◽  
Sebastiano Fabio Schifano ◽  
Raffaele Tripiccione

In the last years, the energy efficiency of HPC systems is increasingly becoming of paramount importance for environmental, technical, and economical reasons. Several projects have investigated the use of different processors and accelerators in the quest of building systems able to achieve high energy efficiency levels for data centers and HPC installations. In this context, Arm CPU architecture has received a lot of attention given its wide use in low-power and energy-limited applications, but server grade processors have appeared on the market just recently. In this study, we targeted the Marvell ThunderX2, one of the latest Arm-based processors developed to fit the requirements of high performance computing applications. Our interest is mainly focused on the assessment in the context of large HPC installations, and thus we evaluated both computing performance and energy efficiency, using the ERT benchmark and two HPC production ready applications. We finally compared the results with other processors commonly used in large parallel systems and highlight the characteristics of applications which could benefit from the ThunderX2 architecture, in terms of both computing performance and energy efficiency. Pursuing this aim, we also describe how ERT has been modified and optimized for ThunderX2, and how to monitor power drain while running applications on this processor.


Author(s):  
Norina Forna ◽  
◽  
Gheorghe Tibirna ◽  
Claudiu Topoliceanu ◽  
Doriana Agop-Forna ◽  
...  

Theoretical and practical training program for complex cases in implantology, dento-alveolar surgery, OMF and complex oral rehabilitation. With Romania’s accession to the European Union, the opportunity arose to finance through non-reimbursable funds theoretical and practical training programs for teachers of Romanian dental faculties. Faculty of Dentistry, U.M.F. „Grigore T. Popa” Iași won, through POSDRU programs, a series of projects for obtaining European funds that allowed the initiation of training courses in the field of oral rehabilitation (prosthetics, implantology, dental-alveolar surgery, OMF surgery, oral rehabilitation complex). The courses included training and advanced training programs in the latest information and innovative technologies in the areas listed. Also, through these projects, the Faculty of Dentistry was equipped with a series of updated equipment and technologies.


2021 ◽  
Vol 25 (1) ◽  
pp. 42-57
Author(s):  
Kristaps Locmelis ◽  
Andra Blumberga ◽  
Uldis Bariss ◽  
Dagnija Blumberga ◽  
Lauma Balode

Abstract Energy efficiency policy has been one of the European Union top priorities for decades and will continue to play a vital role in the next 10 years with the introduction of The Clean energy for all Europeans. Likewise, in Latvia energy efficiency has been given high priority; however, the energy efficiency targets for industry has lacked ambitions. This research focuses on evaluating the Latvian industrial energy efficiency policy using top-down approach and benchmarking energy intensity of Latvian industry to the average of the European Union’s. Results confirm that on average Latvian industry consumes 2.6 times more energy to produce the same amount of value added compared to the average in the European Union; however, every saved energy unit in Latvia would save twice less CO2 emissions considering already largely decarbonized energy mix. In the spotlights of the Green Deal proposed by the European Commission, much higher contribution in terms of CO2 reduction and energy efficiency will be expected from the industry. Nevertheless, energy efficiency targets for Latvian industry should be sector-specific, separately addressing CO2 intensive sectors, and non-intensive CO2 sectors with low added value.


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