Kontakt
QR-Code für die aktuelle URL

Story Box-ID: 652198

Engineering System International GmbH Siemensstr. 12 70565 Stuttgart, Deutschland http://www.esi-group.com
Ansprechpartner:in Frau Céline Gallerne +33 1 41 73 58 46
Logo der Firma Engineering System International GmbH
Engineering System International GmbH

ESI participates in European Project directed at energy saving technologies

A joint research project to develop energy efficient HVAC components

(PresseBox) (Paris, France, )
ESI Group, pioneer and world-leading solution provider in Virtual Prototyping for manufacturing industries, announces the development of new simulation technologies to achieve more energy efficient heating, ventilation and air conditioning systems (HVAC). This research activity will take place as part of the EnE-HVAC project, granted by the European Commission under the Seventh Framework Program.

Heating, Ventilation, and Air Conditioning (HVAC) systems account for approximately 35% of the total energy consumption in residential and commercial buildings. Although today most of the energy consumed is spent on heating, there is an increasing demand for cooling solutions. The demand is expected to escalate in the coming years due to climate change. To reduce overall energy consumption, the European Commission has identified a compelling need to seek new and innovative technologies able to increase the efficiency of HVAC systems.

With this in mind, the European Commission funded the EnE-HVAC project that was launched in October 2012. The project is expected to enable the achievement of significant energy savings in future HVAC systems through use of new and innovative technologies. These technologies include nano-technological coatings and surface treatments for improved heat transfer; new nano-materials and micro-materials for improved efficiency of the refrigerants; and, improved efficiency and heat transfer capabilities of coolants via new nano-technological additives.

The ESI research team based at the CFD & Multiphysics Center of Excellence in Essen, Germany is working on the development of new methodologies for Computational Fluid Dynamics (CFD) and Multiphysics applications, particularly focusing on coupling multidisciplinary software tools.

Using the ESI advanced CFD & Multiphysics solution, the ACE+ Suite, ESI team is developing nano-technology simulation approaches for modeling specific parts of HVAC components, including anti-freezing / anti-ice surfaces, condensation drainage systems, evaporation systems and heat transfer systems.

"A well-orchestrated synergy between simulation and experimental tests helps reduce the number of physical experiments needed as part of the EnE-HVAC project," says project coordinator Jacob Ask Hansen from the Danish Technological Institute. "Running multiple iterations of synthesis and surface manufacturing followed by laboratory tests require numerous man hours. By using initial experimental input from small scale tests and feeding this information into large scale numerical models, we gain extremely valuable input for selecting optimal surfaces for large scale physical tests. This iterative process between experiments and modeling is very valuable for getting the most accurate end results in shorter time scales".

The project engages a consortium consisting of 8 European partners, including 6 industry partners (LuVe S.p.a. (Italy), EXHAUSTO A/S (Denmark), ESI GmbH (Germany), Dansk Varmepumpe Industri A/S (Denmark), Carbodeon Ltd. Oy. (Finland) and Vahterus Oy (Finland) and, two research institutions (the Danish Technological Institute, (Denmark), and IK4 Tekniker, (Spain)).

For more news or information about the En-HVAC project, please visit www.ene-hvac.eu

For more news or information about ESI's CFD & Multiphysics solution ACE+ Suite, please visit www.esi-group.com/ACE-Suite

For more news or information about ESI solutions, please visit www.esi-group.com

Website Promotion

Website Promotion

Engineering System International GmbH

ESI is a pioneer and world-leading provider in Virtual Prototyping that takes into account the physics of materials. ESI boasts a unique know-how in Virtual Product Engineering, based on an integrated suite of coherent, industry-oriented applications. Addressing manufacturing industries, Virtual Product Engineering aims to replace physical prototypes by realistically simulating a product's behavior during testing, to fine-tune fabrication and assembly processes in accordance with desired product performance, and to evaluate the impact on product use under normal or accidental conditions. ESI's solutions fit into a single collaborative and open environment for End-to-End Virtual Prototyping. These solutions are delivered using the latest technologies, including immersive Virtual Reality, to bring products to life in 3D; helping customers make the right decisions throughout product development. The company employs about 1000 high-level specialists worldwide covering more than 40 countries. ESI Group is listed in compartment C of NYSE Euronext Paris.

Für die oben stehenden Stories, das angezeigte Event bzw. das Stellenangebot sowie für das angezeigte Bild- und Tonmaterial ist allein der jeweils angegebene Herausgeber (siehe Firmeninfo bei Klick auf Bild/Titel oder Firmeninfo rechte Spalte) verantwortlich. Dieser ist in der Regel auch Urheber der Texte sowie der angehängten Bild-, Ton- und Informationsmaterialien. Die Nutzung von hier veröffentlichten Informationen zur Eigeninformation und redaktionellen Weiterverarbeitung ist in der Regel kostenfrei. Bitte klären Sie vor einer Weiterverwendung urheberrechtliche Fragen mit dem angegebenen Herausgeber. Bei Veröffentlichung senden Sie bitte ein Belegexemplar an service@pressebox.de.
Wichtiger Hinweis:

Eine systematische Speicherung dieser Daten sowie die Verwendung auch von Teilen dieses Datenbankwerks sind nur mit schriftlicher Genehmigung durch die unn | UNITED NEWS NETWORK GmbH gestattet.

unn | UNITED NEWS NETWORK GmbH 2002–2024, Alle Rechte vorbehalten

Für die oben stehenden Stories, das angezeigte Event bzw. das Stellenangebot sowie für das angezeigte Bild- und Tonmaterial ist allein der jeweils angegebene Herausgeber (siehe Firmeninfo bei Klick auf Bild/Titel oder Firmeninfo rechte Spalte) verantwortlich. Dieser ist in der Regel auch Urheber der Texte sowie der angehängten Bild-, Ton- und Informationsmaterialien. Die Nutzung von hier veröffentlichten Informationen zur Eigeninformation und redaktionellen Weiterverarbeitung ist in der Regel kostenfrei. Bitte klären Sie vor einer Weiterverwendung urheberrechtliche Fragen mit dem angegebenen Herausgeber. Bei Veröffentlichung senden Sie bitte ein Belegexemplar an service@pressebox.de.