@inproceedings{ButenwegGellertReindl2008, author = {Butenweg, Christoph and Gellert, Christoph and Reindl, Lukas}, title = {Capacity design of masonry buildings under cyclic loading}, series = {Seismic Risk : Earthquakes in North-Western Europe ; international colloquium ; Li{\`e}ge on 11 and 12 September 2008 / Belgian Seismic Group (BeSeiG). Ed.: T. Camlebeeck ...}, booktitle = {Seismic Risk : Earthquakes in North-Western Europe ; international colloquium ; Li{\`e}ge on 11 and 12 September 2008 / Belgian Seismic Group (BeSeiG). Ed.: T. Camlebeeck ...}, publisher = {Editions de l'Universit{\´e} de Li{\`e}ge}, address = {Li{\`e}ge}, organization = {Belgian Seismic Group}, isbn = {978-2-87456-063-7}, pages = {201 -- 208}, year = {2008}, language = {en} } @inproceedings{KalkerTollHolleretal.2004, author = {Kalker, Ines and Toll, B. and Holler, Stefan and Butenweg, Christoph and Topping, B. H. V. and Mota Soares, C. A.}, title = {Capacity analysis of textile retrofitted unreinforced masonry}, series = {Proceedings of the Seventh International Conference on Computational Structures Technology : [Lisbon, Portugal, 7 - 9 September 2004] / ed. by B. H. V. Topping ...}, booktitle = {Proceedings of the Seventh International Conference on Computational Structures Technology : [Lisbon, Portugal, 7 - 9 September 2004] / ed. by B. H. V. Topping ...}, publisher = {Civil-Comp Press}, address = {Stirling}, organization = {International Conference on Computational Structures Technology <7, 2004, Lissabon>}, isbn = {0-948749-95-4}, doi = {10.4203/ccp.79.194}, pages = {431 -- 432}, year = {2004}, language = {en} } @inproceedings{KernBeierlZischank2009, author = {Kern, Alexander and Beierl, Ottmar and Zischank, Wolfgang}, title = {Calculation of the separation distance according to IEC 62305-3: 2006-10 - Remarks for the application and simplified methods}, year = {2009}, abstract = {[Paper of the X International Symposium on Lightning Protection 9th - 13th November, 2009 - Curitiba, Brazil. 6 pages] The international standard IEC 62305-3, published in 2006, requires as an integral part of the lightning protection system (LPS) the consideration of a separation distance between the conductors of the LPS and metal and electrical installations inside the structure to be protected. IEC 62305-3 gives two different methods for this calculation: a standard, simplified approach and a more detailed approach, which differ especially regarding the treatment of the current sharing effect on the LPS conductors. Hence, different results for the separation distance are possible, leading to some discrepancies in the use of the standard. The standard approach defined in the main part (Clause 6.3) and in Annex C of the standard in some cases may lead to a severe oversizing of the required separation distance. The detailed approach described in Annex E naturally gives more correct results. However, a calculation of the current sharing amongst all parts of the air-termination and downconductor network is necessary, in many cases requiring the use of network analysis programs. In this paper simplified methods for the assessment of the current sharing are presented, which are easy to use as well as sufficiently adequate.}, subject = {Blitzschutz}, language = {de} } @inproceedings{Wahle1983, author = {Wahle, Michael}, title = {Calculation of the response of heat exchanger tubes with regard to nonlinear and prestressing effects}, series = {Vibration in nuclear plant : proceedings of the 3rd International Conference on Vibration in Nuclear Plant held on 11 - 14 May 1982, Keswick ; vol. 1}, booktitle = {Vibration in nuclear plant : proceedings of the 3rd International Conference on Vibration in Nuclear Plant held on 11 - 14 May 1982, Keswick ; vol. 1}, publisher = {British Nuclear Energy Society}, address = {London}, isbn = {0-7277-0192-4 (Druckausg.)}, pages = {162 -- 183}, year = {1983}, language = {en} } @inproceedings{PfundtVogelsangGerling1988, author = {Pfundt, H. and Vogelsang, D. and Gerling, Ulrich}, title = {Calculation of the crust profile in aluminium reduction cells by thermal computer modelling}, series = {Light metals 1989 : 118th annual meeting of the Minerals, Metals and Materials Society, Las Vegas, NV, Feb. 27 - Mar. 03. 1989}, booktitle = {Light metals 1989 : 118th annual meeting of the Minerals, Metals and Materials Society, Las Vegas, NV, Feb. 27 - Mar. 03. 1989}, publisher = {Minerals, Metals and Materials Soc.}, address = {Warrendale, Pa.}, pages = {371 -- 377}, year = {1988}, language = {en} } @inproceedings{BirgelLeschingerWegmannetal.2017, author = {Birgel, Stefan and Leschinger, Tim and Wegmann, Kilian and Staat, Manfred}, title = {Calculation of muscle forces and joint reaction loads in shoulder area via an OpenSim based computer calculation}, series = {2nd YRA MedTech Symposium 2017 : June 8th - 9th / 2017 / Hochschule Ruhr-West}, booktitle = {2nd YRA MedTech Symposium 2017 : June 8th - 9th / 2017 / Hochschule Ruhr-West}, editor = {Erni, Daniel and Fischerauer, Alice and Himmel, J{\"o}rg and Seeger, Thomas and Thelen, Klaus}, publisher = {Universit{\"a}t Duisburg-Essen}, address = {Duisburg}, organization = {MedTech Symposium}, isbn = {978-3-9814801-9-1}, doi = {10.17185/duepublico/43984}, pages = {116 -- 117}, year = {2017}, language = {en} } @inproceedings{TranStaatKreissig2007, author = {Tran, Thanh Ngoc and Staat, Manfred and Kreißig, R.}, title = {Calculation of load carrying capacity of shell structures with elasto-plastic material by direct methods}, year = {2007}, abstract = {Proceedings of the International Conference on Material Theory and Nonlinear Dynamics. MatDyn. Hanoi, Vietnam, Sept. 24-26, 2007, 8 p. In this paper, a method is introduced to determine the limit load of general shells using the finite element method. The method is based on an upper bound limit and shakedown analysis with elastic-perfectly plastic material model. A non-linear constrained optimisation problem is solved by using Newton's method in conjunction with a penalty method and the Lagrangean dual method. Numerical investigation of a pipe bend subjected to bending moments proves the effectiveness of the algorithm.}, subject = {Finite-Elemente-Methode}, language = {en} } @inproceedings{KernSchelthoffMathieu2012, author = {Kern, Alexander and Schelthoff, Christof and Mathieu, Moritz}, title = {Calculation of interception efficiencies for mesh-type air-terminations according to IEC 62305-3 using a dynamic electro-geometrical model}, series = {International Conference on Lightning Protection (ICLP) : 2 - 7 Sept. 2012, Vienna}, booktitle = {International Conference on Lightning Protection (ICLP) : 2 - 7 Sept. 2012, Vienna}, publisher = {IEEE}, address = {Piscataway, NJ}, organization = {International Conference on Lightning Protection <2012, Wien>}, isbn = {978-1-4673-1896-9 (E-Book) ; 978-1-4673-1898-3 (Print)}, pages = {1 -- 6}, year = {2012}, language = {en} } @inproceedings{ChristenBarteltKowalskietal.2008, author = {Christen, Marc and Bartelt, Perry and Kowalski, Julia and Stoffel, Lukus}, title = {Calculation of dense snow avalanches in three-dimensional terrain with the numerical simulation programm RAMMS}, series = {Proceedings ISSW 2008 ; International Snow Science Workshop. Whistler 2008}, booktitle = {Proceedings ISSW 2008 ; International Snow Science Workshop. Whistler 2008}, pages = {709 -- 716}, year = {2008}, abstract = {Numerical models have become an essential part of snow avalanche engineering. Recent advances in understanding the rheology of flowing snow and the mechanics of entrainment and deposition have made numerical models more reliable. Coupled with field observations and historical records, they are especially helpful in understanding avalanche flow in complex terrain. However, the application of numerical models poses several new challenges to avalanche engineers. A detailed understanding of the avalanche phenomena is required to specify initial conditions (release zone dimensions and snowcover entrainment rates) as well as the friction parameters, which are no longer based on empirical back-calculations, rather terrain roughness, vegetation and snow properties. In this paper we discuss these problems by presenting the computer model RAMMS, which was specially designed by the SLF as a practical tool for avalanche engineers. RAMMS solves the depth-averaged equations governing avalanche flow with first and second-order numerical solution schemes. A tremendous effort has been invested in the implementation of advanced input and output features. Simulation results are therefore clearly and easily visualized to simplify their interpretation. More importantly, RAMMS has been applied to a series of well-documented avalanches to gauge model performance. In this paper we present the governing differential equations, highlight some of the input and output features of RAMMS and then discuss the simulation of the Gatschiefer avalanche that occurred in April 2008, near Klosters/Monbiel, Switzerland.}, language = {en} } @inproceedings{GorzalkaDahlkeGoettscheetal.2018, author = {Gorzalka, Philip and Dahlke, Dennis and G{\"o}ttsche, Joachim and Israel, Martin and Patel, Dhruvkumar and Prahl, Christoph and Schmiedt, Jacob Estevam and Frommholz, Dirk and Hoffschmidt, Bernhard and Linkiewicz, Magdalena}, title = {Building Tomograph-From Remote Sensing Data of Existing Buildings to Building Energy Simulation Input}, series = {EBC, Annex 71, Fifth expert meeting, October 17-19, 2018, Innsbruck, Austria}, booktitle = {EBC, Annex 71, Fifth expert meeting, October 17-19, 2018, Innsbruck, Austria}, pages = {17 Seiten}, year = {2018}, language = {en} } @inproceedings{SiegertIdingBaumannetal.2000, author = {Siegert, Petra and Iding, Hans and Baumann, Martin and McLeish, Michael J. and Kenyon, George L. and Pohl, Martina}, title = {Broadening of the substrate spectra of two ThDP-dependent decarboxylases using site-directed-mutagenesis}, series = {Proceedings of the 4th International Congress on Biochemical Engineering : 17 and 18 February 2000, Stuttgart}, booktitle = {Proceedings of the 4th International Congress on Biochemical Engineering : 17 and 18 February 2000, Stuttgart}, organization = {International Congress on Biochemical Engineering <4, 2000, Stuttgart>}, isbn = {3-8167-5570-4}, pages = {38 -- 42}, year = {2000}, language = {en} } @inproceedings{SajatovicRihacekHaindletal.2007, author = {Sajatovic, Miodrag and Rihacek, Christoph and Haindl, Bernhard and Schnell, Michael and Brandes, Sinja and Gligorevic, Snjezana}, title = {Broadband VHF (B-VHF) project achievements and follow-on activities}, series = {Integrated Communications, Navigation and Surveillance Conference : Herndon, VA, 1 - 3 May 2007}, booktitle = {Integrated Communications, Navigation and Surveillance Conference : Herndon, VA, 1 - 3 May 2007}, organization = {Institute of Electrical and Electronics Engineers}, isbn = {1-4244-1216-1}, pages = {1 -- 8}, year = {2007}, language = {en} } @inproceedings{Uibel2007, author = {Uibel, Thomas}, title = {Brettsperrholz - Verbindungen mit mechanischen Verbindungsmitteln}, series = {Ingenieurholzbau, Karlsruher Tage 2007 : Forschung f{\"u}r die Praxis; 4. und 5. Oktober 2007; Tagungsband / Universit{\"a}t Karlsruhe (TH), Lehrstuhl f{\"u}r Ingenieurholzbau und Baukonstruktionen}, booktitle = {Ingenieurholzbau, Karlsruher Tage 2007 : Forschung f{\"u}r die Praxis; 4. und 5. Oktober 2007; Tagungsband / Universit{\"a}t Karlsruhe (TH), Lehrstuhl f{\"u}r Ingenieurholzbau und Baukonstruktionen}, publisher = {Bruder-Verlag}, address = {K{\"o}ln}, pages = {62 -- 73}, year = {2007}, language = {de} } @inproceedings{SteuerDankertBergLeichtScholten2015, author = {Steuer-Dankert, Linda and Berg, Tobias and Leicht-Scholten, Carmen}, title = {Breaking the habit - new approaches in engineering education}, series = {Proceedings of the 43rd Annual Conference of the European Society for Engineering Education}, booktitle = {Proceedings of the 43rd Annual Conference of the European Society for Engineering Education}, isbn = {978-2-87352-012-0}, pages = {11}, year = {2015}, abstract = {Within the framework of the project a genderand diversity-oriented teaching evaluation and modern, media-supported blended learning approaches were used in order to achieve the intended goals. First research results of the literature and status quo analysis were already implemented and tested in newly designed teaching approaches, for example in a multidisciplinary introductory lecture of civil engineering at RWTH Aachen University.}, language = {en} } @inproceedings{EdipGarevskiButenwegetal.2014, author = {Edip, Kemal and Garevski, Mihail and Butenweg, Christoph and Sesov, Vlatko and Bojadjieva, Julijana and Gjorgjiev, Igor}, title = {Boundary effects on seismic analysis of multi-storey frames considering soil structure interaction phenomenon}, series = {Seismic design of industrial facilities : proceedings of the International Conference on Seismic Design of Industrial Facilities (SeDIF-Conference) ; [Aachen, 26. - 27. September 2013] / Chair of Structural Statics and Dynamics, RWTH Aachen. Sven Klinkel ..., ed}, booktitle = {Seismic design of industrial facilities : proceedings of the International Conference on Seismic Design of Industrial Facilities (SeDIF-Conference) ; [Aachen, 26. - 27. September 2013] / Chair of Structural Statics and Dynamics, RWTH Aachen. Sven Klinkel ..., ed}, publisher = {Springer Vieweg}, address = {Wiesbaden}, organization = {International Conference on Seismic Design of Industrial Facilities <2013, Aachen>}, isbn = {978-3-658-02809-1 (Print) ; 978-3-658-02810-7}, doi = {10.1007/978-3-658-02810-7_47}, pages = {569 -- 576}, year = {2014}, language = {en} } @inproceedings{BungHildebrandtOerteletal.2008, author = {Bung, Daniel Bernhard and Hildebrandt, Arndt and Oertel, Mario and Schlenkhoff, Andreas and Schlurmann, Torsten}, title = {Bore propagation over a submerged horizontal plate by physical and numerical simulation}, series = {Coastal engineering 2008 : proceedings of the 31st international conference; Hamburg, Germany, 31 August - 5 September 2008 ; Vol. 4}, booktitle = {Coastal engineering 2008 : proceedings of the 31st international conference; Hamburg, Germany, 31 August - 5 September 2008 ; Vol. 4}, editor = {McKee Smith, Jane}, isbn = {9814277401 ; 9789814277402}, pages = {3542 -- 3553}, year = {2008}, language = {en} } @inproceedings{Wollert2002, author = {Wollert, J{\"o}rg}, title = {Bluetooth in Embedded-Anwendungen in der Automatisierungstechnik}, series = {Tagungsband / SPS IPC Drives 2002 : 13. Fachmesse und Kongress, 26. - 28. November 2002 N{\"u}rnberg; elektrische Automatisierung - Systeme und Komponenten. (Praxiswissen IEE - Automatisierung)}, booktitle = {Tagungsband / SPS IPC Drives 2002 : 13. Fachmesse und Kongress, 26. - 28. November 2002 N{\"u}rnberg; elektrische Automatisierung - Systeme und Komponenten. (Praxiswissen IEE - Automatisierung)}, publisher = {H{\"u}thig}, address = {Heidelberg}, isbn = {3-7785-2863-7}, pages = {28 -- 37}, year = {2002}, language = {de} } @inproceedings{WollertVedral2005, author = {Wollert, J{\"o}rg and Vedral, Andreas}, title = {Bluetooth - Integrationstechnologie f{\"u}r automotive Anwendungen}, series = {Begleittexte zum Entwicklerforum ZigBee \& Co. - Drahtlose Nahbereichsnetzwerke : 20. April 2005, M{\"u}nchen-Dornach}, booktitle = {Begleittexte zum Entwicklerforum ZigBee \& Co. - Drahtlose Nahbereichsnetzwerke : 20. April 2005, M{\"u}nchen-Dornach}, organization = {Entwicklerforum ZigBee \& Co. - Drahtlose Nahbereichsnetzwerke <2005, Aschheim-Dornach>}, year = {2005}, language = {de} } @inproceedings{OertelBungSchlenkhoff2012, author = {Oertel, Mario and Bung, Daniel Bernhard and Schlenkhoff, Andreas}, title = {Blocksteinrampen in Riegelbauweise : Neue Bemessungsans{\"a}tze}, series = {Staubauwerke : planen, bauen, betreiben; 35. Dresdner Wasserbaukolloquium 2012, 08. - 09. M{\"a}rz 2012}, booktitle = {Staubauwerke : planen, bauen, betreiben; 35. Dresdner Wasserbaukolloquium 2012, 08. - 09. M{\"a}rz 2012}, editor = {Carstensen, Dirk}, publisher = {Selbstverl. der Techn. Univ.}, address = {Dresden}, organization = {Technische Universit{\"a}t Dresden, Fakult{\"a}t Bauingenieurwesen}, isbn = {978-3-86780-261-1}, pages = {317 -- 326}, year = {2012}, language = {de} } @inproceedings{KrichelKernKraemeretal.2003, author = {Krichel, Frank and Kern, Alexander and Kr{\"a}mer, Heinz-Josef and Wettingfeld, J{\"u}rgen and Reetz, Josef and Kienlein, Manfred}, title = {Blitzschutzmaßnahmen f{\"u}r Photovoltaik- und kleine Windenergieanlagen - Einige Beispiele}, year = {2003}, abstract = {Ein von der Arbeitsgemeinschaft (AG) Solar NRW und diversen Industriepartnern gef{\"o}rdertes und an der Fachhochschule Aachen, Abt. J{\"u}lich durchgef{\"u}hrtes Forschungsprojekt „Blitzschutz f{\"u}r netz-autarke Hybridanlagen" machte es m{\"o}glich, sich mit dem Blitzschutz speziell solcher Anlagen n{\"a}her zu besch{\"a}ftigen. Vermehrt bekannt gewordene Schadensf{\"a}lle an nicht netz-gekoppelten Hybridanlagen waren der Ausl{\"o}ser, den Schutz zu {\"u}berdenken. Definiertes Ziel war es, f{\"u}r netz-autarke energietechnische Anlagen ein Konzept zum Schutz vor Blitzeinwirkungen zu erstellen. Diese Anlagen bestehen {\"u}blicherweise aus einer oder mehreren Photovoltaikanlagen, ggf. auch Solarthermieanlagen und einem oder mehreren kleineren Windgeneratoren (sie werden deshalb auch als Hybridanlagen bezeichnet). Zur Erh{\"o}hung der Versorgungssicherheit kann noch ein Dieselaggregat dazukommen. Hybridanlagen werden vor allem in Gebieten mit sehr schlechter {\"o}ffentlicher Energieversorgung eingesetzt, d.h. insbesondere in relativ d{\"u}nn bewohnten Gebieten und in Entwicklungsl{\"a}ndern. Dem Blitzschutz von Hybridanlagen kommt dabei eine steigende Bedeutung zu. Besonderes Augenmerk in dem genannten Forschungsprojekt sollte dabei auf die technisch/wirtschaftliche Ausgewogenheit des Schutzes gelegt werden: • die Schutzmaßnahmen sollen nur in solchen F{\"a}llen eingesetzt werden, wo dies als Ergebnis von Risikoanalysen sinnvoll erscheint; • f{\"u}r typische netz-autarke Hybridanlagen sollen die Schutzmaßnahmen ohne deutliche Verteuerung realisierbar sein (es soll also kein absoluter Schutz realisiert werden; ggf. soll lediglich der auftretende Schaden soweit m{\"o}glich minimiert werden). Dazu wurde in einem ersten Schritt zun{\"a}chst eine Aufnahme des Iststandes einiger typischer netz-autarker Hybridanlagen und deren einzelnen Komponenten durchgef{\"u}hrt. Aufgrund dessen wurde eine umfassende Risikoanalyse zur Blitzbedrohung dieser Anlagen auf der Basis von VDE V 0185 Teil 2:2002-11 [1] erstellt. Die Ergebnisse m{\"u}ndeten in ein technisch/wirtschaftlich ausgewogenes Konzept f{\"u}r den Anlagen- Blitzschutz (d.h. insbesondere dem Schutz vor direkten Blitzeinschl{\"a}gen und deren unmittelbaren Auswirkungen) nach VDE V 0185 Teil 3:2002-11 [2] und f{\"u}r den Elektronik-Blitzschutz (d.h. f{\"u}r den Schutz vor {\"U}berspannungen durch direkte, insbesondere aber auch indirekte Blitzeinschl{\"a}ge) nach VDE V 0185 Teil 4:2002-11 [3]. Aufgrund der gesammelten Ergebnisse konnten dabei allgemeine Empfehlungen f{\"u}r den {\"A}ußeren und Inneren Blitzschutz von regenerativen Energieerzeugungssystemen erstellt werden. Diese sollen in Schulungen einm{\"u}nden, die f{\"u}r Hersteller und Betreiber von Hybridanlagen angeboten werden. Durch die Anwendung wird der Schutz der Anlagen vor Blitzeinwirkung und elektromagnetischen St{\"o}rungen verbessert, was sich in einer reduzierten Ausfallwahrscheinlichkeit bzw. erh{\"o}hten Verf{\"u}gbarkeit wiederspiegelt. An einigen ausgew{\"a}hlten Anlagen werden mit Hilfe der im Projekt involvierten Industriepartner die Schutzmaßnahmen realisiert. Hierbei entstanden den Eigent{\"u}mern bzw. Betreibern der Anlagen keine Kosten. In diesem Beitrag werden beispielhaft drei Anlagenprojekte detailliert gezeigt. Es handelt sich dabei um eine Schweinezuchtfarm in Magall{\´o}n (Spanien, Zaragozza), das bioklimatische Haus (Kreta, Heraklion) und die Tegernseer- H{\"u}tte (Deutschland, Lenggries).}, language = {de} }