@inproceedings{ZillerDoering2003, author = {Ziller, Claudia and D{\"o}ring, Bernd}, title = {Influence of the external dynamic wind pressure on the ventilation of double facades}, series = {Research in building physics: proceedings of the Second International Conference on Building Physics : Leuven, Belgium, 14-18 September 2003}, booktitle = {Research in building physics: proceedings of the Second International Conference on Building Physics : Leuven, Belgium, 14-18 September 2003}, editor = {Carmeliet, J. and Hens, H. and Vermeir, G.}, publisher = {Taylor and Francis}, address = {Hoboken}, organization = {International Conference on Building Physics <2, 2003, Leuven>}, isbn = {9058095657, 9789058095657}, pages = {527 -- 533}, year = {2003}, language = {en} } @article{ZillerDoering2004, author = {Ziller, Claudia and D{\"o}ring, Bernd}, title = {Doppelfassaden - vom Experimentalmodell zum Massanzug}, series = {TAB Technik am Bau}, volume = {Bd. 35}, journal = {TAB Technik am Bau}, number = {H. 12}, issn = {0341-2032}, pages = {58 -- 63}, year = {2004}, language = {de} } @article{ThielDoering2001, author = {Thiel, Dieter and D{\"o}ring, Bernd}, title = {Dezentrale Raumklimatisierung durch die Fassade}, series = {TAB Technik am Bau}, volume = {Bd. 32}, journal = {TAB Technik am Bau}, number = {H. 3}, issn = {0341-2032}, pages = {67 -- 76}, year = {2001}, language = {de} } @inproceedings{SpasovDoeringGriffin2007, author = {Spasov, Yulian and D{\"o}ring, Bernd and Griffin, Allan}, title = {Exploiting the thermal mass in an energy efficient building - a comparison exercise between IES Apache and TRNSYS models}, series = {Clima 2007 WellBeing Indoors: 9th Rehva World Congress, 10-14 June 2007, Helsinki, Finland : proceedings}, booktitle = {Clima 2007 WellBeing Indoors: 9th Rehva World Congress, 10-14 June 2007, Helsinki, Finland : proceedings}, address = {Helsinki}, isbn = {978-952-99898-2-9}, pages = {1 -- 7}, year = {2007}, language = {en} } @book{SedlacekZillerWeynandetal.2004, author = {Sedlacek, Gerhard and Ziller, Claudia and Weynand, Klaus and Stark, Sebastian and Thiel, Dieter and Lemke, H.-J. and D{\"o}ring, Bernd and Lenzen, Kersten}, title = {Integration von Tragwerk und Haustechnik in B{\"u}ro- und Produktionsgeb{\"a}uden aus Stahl f{\"u}r eine flexible Nutzung : Forschungsvorhaben. (Forschung f{\"u}r die Praxis : Projekt ; P 447)}, publisher = {Forschungsvereinigung Stahlanwendung e.V. -FOSTA-}, address = {D{\"u}sseldorf}, isbn = {9783937567051}, pages = {103 S.}, year = {2004}, language = {de} } @techreport{SansomLawsonTuchoetal.2016, author = {Sansom, M. and Lawson, R.M. and Tucho, R. and Kendrick, C. and Ogden, R. and Resalati, S. and Garay, R. and D{\"o}ring, Bernd and Reger, V. and Gilbert, J. and Heikkinen, J. and Hemmila, K.}, title = {Building in active thermal mass into steel structures (BATIMASS) - EUR 28166EN}, publisher = {Publications Office of the European Union}, address = {Luxembourg}, organization = {European Commission}, isbn = {978-92-79-63176-4}, issn = {1831-9424}, doi = {10.2777/25999}, pages = {147 Seiten}, year = {2016}, abstract = {The main objective of the BATIMASS project was to address how the energy balance in relatively lightweight steel buildings can be improved by building in 'active thermal mass' (ATM) into the building fabric. This was achieved through concept design, dynamic thermal modelling and testing of a number of potentially viable systems and concepts. A significant programme of thermal simulation modelling was undertaken utilising the thermally equivalent slab (TES) concept to model the passive thermal capacity effect of profiled, composite metal floor decks. It is apparent from the modelling results that thermal mass is a highly complex phenomenon which is highly dependent upon building type, occupancy patterns, climate and many other aspects of the building design and servicing strategy. The ATM systems developed, both conceptually and for prototype testing, focussed on water-cooled composite slabs, the Cofradal floor system and the phase change material (PCM) Energain. In addition to laboratory testing of prototypes, whole building monitoring was undertaken at the Kubik building in Spain and the RWTH test building in Germany. Advanced thermal modelling was also undertaken to estimate the likely benefits of the ATM concept designs developed and for comparison with the test results. In addition to thermal testing, structural tests were conducted on composite floor specimens incorporating embedded water pipes. This Final Report presents the results of the activities carried out under this RFCS contract RFSR CT 2012 00033. The work carried out is reported in six major sections corresponding to the technical Work Packages of the project. Only summaries of the work carried out are provided in this report; all work undertaken is fully reported in the formal project deliverables.}, language = {en} } @article{RegerKuhnhenneHachuletal.2019, author = {Reger, Vitali and Kuhnhenne, Markus and Hachul, Helmut and D{\"o}ring, Bernd and Blanke, Tobias and G{\"o}ttsche, Joachim}, title = {Plusenergiegeb{\"a}ude 2.0 in Stahlleichtbauweise}, series = {Stahlbau}, volume = {88}, journal = {Stahlbau}, number = {6}, publisher = {Ernst \& Sohn}, address = {Berlin}, issn = {1437-1049 (E-journal), 0038-9145 (print)}, doi = {10.1002/stab.201900034}, pages = {522 -- 528}, year = {2019}, language = {de} } @article{RegerKuhnhenneEbbertetal.2020, author = {Reger, Vitali and Kuhnhenne, Markus and Ebbert, Thiemo and Hachul, Helmut and Blanke, Tobias and D{\"o}ring, Bernd}, title = {Nutzung erneuerbarer Energien durch thermische Aktivierung von Komponenten aus Stahl}, series = {Stahlbau}, volume = {2020}, journal = {Stahlbau}, number = {Volume 89, Issue 6512-519}, publisher = {Ernst \& Sohn}, address = {Berlin}, issn = {1437-1049}, doi = {10.1002/stab.202000031}, pages = {512 -- 519}, year = {2020}, abstract = {Die Versorgung von Neubauten soll m{\"o}glichst weitgehend unabh{\"a}ngig von fossilen Energietr{\"a}gern erfolgen. Erneuerbare Energien spielen daf{\"u}r eine gewichtige Rolle. Eine gute M{\"o}glichkeit, erneuerbare Energien ohne viel zus{\"a}tzlichen Aufwand nutzbar zu machen, ist, bereits vorhandenen Komponenten im Geb{\"a}ude zus{\"a}tzliche Funktionen zu geben. Hier kann bspw. die Fassade oder das Dach solarthermisch aktiviert oder durch Fotovoltaikmodule erg{\"a}nzt werden. Auch Tiefgr{\"u}ndungen k{\"o}nnen neben der statischen Funktion noch eine geothermische Funktion zur Aufnahme oder Abgabe von W{\"a}rme erhalten. Neben der Erzeugung bietet sich auch f{\"u}r die Verteilung der W{\"a}rme oder K{\"a}lte im Geb{\"a}ude die Integration in Bauteile an. Hier kann bspw. der Boden durch eine Fußbodenheizung oder die Decke durch Deckenstrahlplatten aktiviert werden. Im Rahmen der Ver{\"o}ffentlichung wird auf die thermische Aktivierung von Stahlkomponenten eingegangen. Es wird eine L{\"o}sung vorgestellt, die vorgeh{\"a}ngte hinterl{\"u}ftete Stahlfassade (VHF) solarthermisch zu aktivieren. Außerdem werden zwei M{\"o}glichkeiten zur geothermischen Aktivierung von Tiefgr{\"u}ndungen mittels Stahlpf{\"a}hlen gezeigt. Zuletzt wird ein System zur thermischen Aktivierung von Stahltrapezprofilen an der Decke erl{\"a}utert, welches W{\"a}rme zuf{\"u}hren oder bei Bedarf abf{\"u}hren kann.}, language = {de} } @article{RegerDoeringKuhnhenne2016, author = {Reger, V. and D{\"o}ring, Bernd and Kuhnhenne, M.}, title = {Passive und aktive Maßnahmen zur Fl{\"a}chenk{\"u}hlung im Stahl(leicht)bau}, series = {Bauingenieur}, volume = {91}, journal = {Bauingenieur}, number = {Jul/Aug}, publisher = {VDI Fachmedien}, address = {D{\"u}sseldorf}, issn = {0005-6650}, doi = {10.37544/0005-6650-2016-07-08-63}, pages = {309 -- 316}, year = {2016}, abstract = {Mit steigenden D{\"a}mmstandards und h{\"o}heren Komfortanforderungen der Nutzer ger{\"a}t die Problematik der sommerlichen {\"U}berhitzung zunehmend in den Fokus. Um die {\"U}berhitzung m{\"o}glichst gering zu halten, sind Maßnahmen und L{\"o}sungen zu entwickeln, die den potenziellen K{\"u}hlbedarf eines Geb{\"a}udes vermeiden sowie reduzieren. Im Rahmen des europ{\"a}ischen Forschungsprojektes BATIMASS wurden Techniken untersucht, die die sommerliche Raumtemperatur ohne zus{\"a}tzliche K{\"u}hlung (passiv) oder aber mit energieeffizienter wasserbasierter Fl{\"a}chenk{\"u}hlung (aktiv) reduzieren und die besonders f{\"u}r Geb{\"a}ude in Stahl(leicht)bauweise geeignet sind. Daf{\"u}r wurde die Methodik der thermisch {\"a}quivalenten Decke weiterentwickelt, um das thermische Verhalten von Profilblechdecken in Geb{\"a}uden f{\"u}r beide L{\"o}sungsans{\"a}tze analysieren zu k{\"o}nnen. Dar{\"u}ber hinaus wurde der Einsatz von Phasenwechselmaterial (PCM) zur Steigerung der Speicherf{\"a}higkeit von leichten Decken mit besonders geringer thermischer Masse in Simulationen sowie im Labor untersucht und bewertet.}, language = {de} } @article{PyschnyDoeringFeldmann2014, author = {Pyschny, D. and D{\"o}ring, Bernd and Feldmann, M.}, title = {Ermittlung der thermischen Leistungsf{\"a}higkeit des neuartigen multifunktionalen Verbunddeckensystems InaDeck}, series = {Bauingenieur : die richtungsweisende Zeitschrift im Bauingenieurswesen}, volume = {89}, journal = {Bauingenieur : die richtungsweisende Zeitschrift im Bauingenieurswesen}, number = {3}, publisher = {VDI Fachmedien}, address = {D{\"u}sseldorf}, issn = {0005-6650}, pages = {116 -- 124}, year = {2014}, language = {de} } @techreport{LawsonBaddooVanieretal.2013, author = {Lawson, R.M. and Baddoo, N.R. and Vanier, G. and D{\"o}ring, Bernd and Kuhnhenne, M. and Nieminen, J. and Beguin, P. and Herbin, S. and Caroli, G. and Adetunji, I. and Kozlowski, A.}, title = {Renovation of buildings using steel technologies (Robust) - EUR 25335}, publisher = {Publications Office of the European Union}, address = {Luxembourg}, organization = {European Commission}, isbn = {978-92-79-24950-1}, issn = {1831-9424}, doi = {10.2777/97860}, pages = {134 Seiten}, year = {2013}, abstract = {Robust addresses the renovation and improvement of existing residential, industrial and commercial buildings using steel-based technologies, focusing on techniques such as over-cladding, over-roofing and roof-top extensions. Steel-intensive renovation techniques currently on the market were reviewed. Performance criteria were developed for over-cladding systems meeting current regulatory standards, with guidelines on how to achieve appropriate levels of air-tightness.}, language = {en} } @techreport{LaboryCajotMeesetal.2008, author = {Labory, F. and Cajot, L. G. and Mees, C. and Delcuve, F. and D{\"o}ring, Bernd and Kuhnhenne, Markus and Kesti, J. and Lawson, M. and Baddoo, N. and Ogden, R. and Griffin, A. and Spasov, Y. and Bonilla, A. and Cagigal, E.}, title = {Energy efficient buildings through innovative systems in steel : final report. Contract No RFSR-CT-2003-00017. EUR 23180 EN}, publisher = {European Communities}, address = {Luxembourg}, organization = {European Commission / Research Fund for Coal and Steel}, isbn = {978-92-79-07681-7}, pages = {151 S.}, year = {2008}, language = {de} } @article{KuhnhenneRegerPyschnyetal.2020, author = {Kuhnhenne, Markus and Reger, Vitali and Pyschny, Dominik and D{\"o}ring, Bernd}, title = {Influence of airtightness of steel sandwich panel joints on heat losses}, series = {E3S Web of Conferences 12th Nordic Symposium on Building Physics (NSB 2020)}, volume = {172}, journal = {E3S Web of Conferences 12th Nordic Symposium on Building Physics (NSB 2020)}, number = {Art. 05008}, publisher = {EDP Sciences}, address = {Les Ulis}, doi = {10.1051/e3sconf/202017205008}, pages = {6}, year = {2020}, abstract = {Energy saving ordinances requires that buildings must be designed in such a way that the heat transfer surface including the joints is permanently air impermeable. The prefabricated roof and wall panels in lightweight steel constructions are airtight in the area of the steel covering layers. The sealing of the panel joints contributes to fulfil the comprehensive requirements for an airtight building envelope. To improve the airtightness of steel sandwich panels, additional sealing tapes can be installed in the panel joint. The influence of these sealing tapes was evaluated by measurements carried out by the RWTH Aachen University - Sustainable Metal Building Envelopes. Different installation situations were evaluated by carrying out airtightness tests for different joint distances. In addition, the influence on the heat transfer coefficient was also evaluated using the Finite Element Method (FEM). The combination of obtained air volume flow and transmission losses enables to create an "effective heat transfer coefficient" due to transmission and infiltration. This summarizes both effects in one value and is particularly helpful for approximate calculations on energy efficiency.}, language = {en} } @inproceedings{KuhnhenneFeldmannDoeringetal.2007, author = {Kuhnhenne, Markus and Feldmann, Markus and D{\"o}ring, Bernd and Spranger, Sascha}, title = {Luftdichtheit im Stahlleichtbau - Geb{\"a}udeh{\"u}llen in Sandwichbauweise}, series = {Dichte Geb{\"a}udeh{\"u}lle, Thermografie und Wohnungsl{\"u}ftung : 2. Europ{\"a}isches BlowerDoor-Symposium : 16.3. - 17.3. 2007, Kassel}, booktitle = {Dichte Geb{\"a}udeh{\"u}lle, Thermografie und Wohnungsl{\"u}ftung : 2. Europ{\"a}isches BlowerDoor-Symposium : 16.3. - 17.3. 2007, Kassel}, publisher = {Energie + Umwelt-Zentrum}, organization = {Europ{\"a}isches BlowerDoor-Symposium <2, 2007, Kassel>}, pages = {121 -- 134}, year = {2007}, language = {de} } @inproceedings{KuhnhenneDoeringPyschnyetal.2012, author = {Kuhnhenne, Markus and D{\"o}ring, Bernd and Pyschny, Dominik and Feldmann, Markus}, title = {Energy efficient sandwich construction}, series = {Proceedings of the VI International Congress on Architectural Envelopes : 20.6. - 22.6.2012, San Sebastian, Spain}, booktitle = {Proceedings of the VI International Congress on Architectural Envelopes : 20.6. - 22.6.2012, San Sebastian, Spain}, publisher = {ICAE}, organization = {International Congress on Architectural Envelopes <6, 2012, San Sebastian>}, pages = {277 -- 285}, year = {2012}, language = {en} } @article{KuhnhenneDoeringKockeretal.2010, author = {Kuhnhenne, Markus and D{\"o}ring, Bernd and Kocker, Ronald and Pyschny, Dominik and Feldmann, Markus}, title = {Die {\"O}kobilanz als Baustein der Nachhaltigkeitsbewertung im Industrie- und Gewerbebau}, series = {Stahlbau}, volume = {79}, journal = {Stahlbau}, number = {6}, publisher = {Ernst \& Sohn}, address = {Berlin}, issn = {1437-1049 (E-Journal); 0038-9145 (Print)}, doi = {10.1002/stab.201001336}, pages = {439 -- 447}, year = {2010}, abstract = {Im Herbst 2009 wurde das "Deutsche G{\"u}tesiegel Nachhaltiges Bauen" f{\"u}r die Geb{\"a}udetypen Industriebauten und Handelsbauten offiziell vorgestellt. Die {\"O}kobilanz als wichtiger Baustein der Nachhaltigkeitsbewertung wird somit auch im Industrie- und Gewerbebau zuk{\"u}nftig stark an Bedeutung gewinnen. Der vorliegende Beitrag beinhaltet einen Vergleich der Umweltleistung verschiedener Bauweisen des Industrie- und Gewerbebaus, die durch die {\"O}kobilanzierung quantifizierbar wird, anhand von momentan verf{\"u}gbaren Daten und Methoden. Es werden ausgew{\"a}hlte Ergebnisse sowie vorhandene Unsicherheiten und daraus resultierender Forschungsbedarf aufgezeigt.}, language = {de} } @article{KuhnhenneDoeringFeldmann2010, author = {Kuhnhenne, Markus and D{\"o}ring, Bernd and Feldmann, Markus}, title = {Grunds{\"a}tze und L{\"o}sungen zur W{\"a}rmebr{\"u}ckenreduktion im Metallleichtbau}, series = {Stahlbau}, volume = {79}, journal = {Stahlbau}, number = {5}, publisher = {Ernst \& Sohn}, address = {Berlin}, issn = {1437-1049 (E-Journal); 0038-9145 (Print)}, doi = {10.1002/stab.201001330}, pages = {345 -- 355}, year = {2010}, abstract = {Die Anforderungen an das energiesparende Bauen sind mit der Einf{\"u}hrung der Energieeinsparverordnung (EnEV) 2009 auch im Industrie- und Gewerbebau deutlich versch{\"a}rft worden. Einen wesentlichen Beitrag zur Energieeinsparung liefert die Minimierung des Transmissionsw{\"a}rmetransfers. Analysiert man Geb{\"a}udeh{\"u}llen in Metallleichtbauweise stellt man fest, dass eine Erh{\"o}hung der W{\"a}rmed{\"a}mmst{\"a}rke allein noch nicht zielf{\"u}hrend ist, zus{\"a}tzlich sind W{\"a}rmebr{\"u}ckeneffekte zu ber{\"u}cksichtigen und deren Einfl{\"u}sse auf die W{\"a}rmetransmission zu reduzieren. Neben der Bedeutung f{\"u}r die Energieeinsparung ist eine w{\"a}rmetechnisch optimierte Detailausbildung auch erforderlich, um einen ausreichenden Feuchteschutz (Vermeidung von Tauwasser und Schimmelpilz) zu realisieren und so Sch{\"a}den zu vermeiden. Ein wichtiges Hilfsmittel stellt hierzu der vom Industrieverband f{\"u}r Bausysteme im Metallleichtbau (IFBS) herausgegebene W{\"a}rmebr{\"u}ckenatlas der Metall-Sandwichbauweise dar.}, language = {de} } @article{KuckDoering1997, author = {Kuck, Herbert and D{\"o}ring, Bernd}, title = {Regenerative Energien in Landesbauten : Land NRW unterst{\"u}tzt Einsatz erneuerbarer Energien 1997 mit 15 Mio. DM}, series = {Die Bauverwaltung mit Bauamt und Gemeindebau}, volume = {Bd. 70}, journal = {Die Bauverwaltung mit Bauamt und Gemeindebau}, number = {H. 8}, issn = {0005-6847}, pages = {384 -- 386}, year = {1997}, language = {de} } @techreport{KestiMononenLautsoetal.2015, author = {Kesti, Jyrki and Mononen, Tarmo and Lautso, Petteri and D{\"o}ring, Bernd and Reger, Vitali and Holopainen, R. and Jung, N. and Shemeikka, J. and Nieminen, J. and Reda, F. and Lawson, Mark and Botti, Andrea and Hall, R. and Zold, A. and Buday, T.}, title = {Zero energy solutions for multifunctional steel intensive commercial buildings (ZEMUSIC) - EUR 27627}, publisher = {Publications Office of the European Union}, address = {Luxembourg}, organization = {European Commission}, isbn = {978-92-79-54071-4}, issn = {1831-9424}, doi = {10.2777/111520}, pages = {146 Seiten}, year = {2015}, abstract = {The broad commercial objective of this project was the sustainable value creation in steel building technology by addressing the ways in which significant energy reductions can be made in the operation phase of multi-storey commercial buildings. A review on energy efficient commercial buildings in Europe has been carried out consisting of several case studies from different countries. The project included development of zero-energy concepts for reducing energy demand as well as concepts for heating, cooling and ventilation systems by utilising renewable energy sources in three different climates. Also alternative structural frame solutions were developed and analyzed in respect of structural and MEP (mechanical, electrical and plumbing solutions) features. An innovative long span floor system with integrated MEP routings promises a cost effective alternative for sophisticated ventilation distribution and radiant heating and cooling systems, allowing for high energy efficiency and high quality interior climate. The report includes also review of best architectural practices for integrated renewable energy solutions including different design strategies for building facades of zero energy buildings. Interesting results and design basis are also presented for steel energy pile concept, where structural foundation piles are utilized for ground energy harvesting. Life cycle cost calculations for near zero energy office building based on developed technologies show that a near zero energy construction is also profitable. The results and work methods of the project have been summarized in the form of design guidance that offers designers the knowledge gained in a form that can be easily understood.}, language = {en} } @techreport{KestiBurstrandKnutssonSalvatoreetal.2008, author = {Kesti, J. and Burstrand Knutsson, H. and Salvatore, W. and Saouridis, C. and Odrieres Mer{\´e}, J. and Georgi, H. and Casajus, A. and Butz, C. and Schneider, R. and D{\"o}ring, Bernd}, title = {Dissemination of knowledge in the use of steel-intensive dry construction systems in housing : final report. Contract No RFS2-CT-2004-00036. EUR 22849 EN}, publisher = {Office for Official Publications of the European Communities}, address = {Luxembourg}, organization = {European Commission / Research Fund for Coal and Steel}, isbn = {978-92-79-05973-5}, pages = {205 S.}, year = {2008}, language = {en} }