@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{LoPiparoKernMazzetti2012, author = {Lo Piparo, G. B. and Kern, Alexander and Mazzetti, C.}, title = {Some masterpoints about risk due to lightning}, 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} } @techreport{DielmannErtl2013, author = {Dielmann, Klaus-Peter and Ertl, Karl-Heinz}, title = {MAK-Energie: Reinigung und energetische Verwertung von Kl{\"a}rgas durch den Einsatz einer Mikrogasturbine gekoppelt mit einer Adsorptionsk{\"a}ltemaschine : Abschlussbericht}, publisher = {Institut NOWUM-Energy}, address = {J{\"u}lich}, pages = {47, [1] Bl. : Ill., graph. Darst.}, year = {2013}, language = {de} } @inproceedings{HellmannsFischerDilgeretal.2014, author = {Hellmanns, Mark and Fischer, F. and Dilger, K. and Wittor, B. and Hildebrand, J. and Werner, F.}, title = {Applikation und Einsatz von faserverst{\"a}rkten Klebstoffen im Bauwesen abgeschlossenes IGF-Projekt Nr. 16956 B (DVS 08.072, Laufzeit 01.02.2011 - 31.01.2013)}, series = {Tagungsband / 14. Kolloquium Gemeinsame Forschung in der Klebtechnik : 18. und 19. Februar 2014, DECHEMA-Haus, Frankfurt am Main}, booktitle = {Tagungsband / 14. Kolloquium Gemeinsame Forschung in der Klebtechnik : 18. und 19. Februar 2014, DECHEMA-Haus, Frankfurt am Main}, organization = {DECHEMA, Gesellschaft f{\"u}r Chemische Technik und Biotechnologie}, pages = {26 -- 27}, year = {2014}, language = {de} } @inproceedings{RousseauKern2014, author = {Rousseau, Alain and Kern, Alexander}, title = {How to deal with environmental risk in IEC 62305-2}, series = {2014 International Conference on Lightning Protection (ICLP), Shanghai, China}, booktitle = {2014 International Conference on Lightning Protection (ICLP), Shanghai, China}, organization = {International Conference on Lightning Protection <2014, Shanghai>}, pages = {521 -- 527}, year = {2014}, abstract = {The 2nd edition of the lightning risk management standard (IEC 62305-2) considers structures, which may endanger environment. In these cases, the loss is not limited to the structure itself, which is valid for usual structures. In the past (Edition 1) this danger was simply taken into account by a special hazard factor, multiplying the existing risk for the structure with a number. Now, in the edition 2, we add to the risk for the structure itself a "second risk" due to the losses outside the structure. The losses outside can be treated independently from what occurs inside. This is a major advantage to analyze the risk for sensitive structures, like chemical plants, nuclear plants, or structures containing explosives, etc. In this paper, the existing procedure given by the European version EN 62305-2 Ed.2 is further developed and applied to a few structures.}, language = {en} } @inproceedings{KernBraun2014, author = {Kern, Alexander and Braun, Christian}, title = {Risk management according to IEC 62305-2 edition 2: 2010-12 assessment of structures with a risk of explosion}, series = {2014 International Conference on Lightning Protection (ICLP), Shanghai, China}, booktitle = {2014 International Conference on Lightning Protection (ICLP), Shanghai, China}, organization = {International Conference on Lightning Protection <2014, Shanghai>}, pages = {1237 -- 1242}, year = {2014}, abstract = {Risk management for structures with a risk of explosion should be considered very carefully when performing a risk analysis according to IEC 62305-2. In contrast to the 2006 edition of the standard, the 2010 edition describes the topic "Structures with a risk of explosion" in more detail. Moreover, in Germany separate procedures and parameters are defined for the risk analysis of structures with a risk of explosion (Supplement 3 of the German DIN EN 62305-2 standard). This paper describes the contents and the relevant calculations of this Supplement 3, together with a numerical example.}, language = {en} } @misc{ReyesOchoa2014, type = {Master Thesis}, author = {Reyes Ochoa, Leonel}, title = {Engineering aspects of a parabolic trough collector field with direct steam generation and an organic rankine cycle}, publisher = {Fachhochschule Aachen}, address = {Aachen}, pages = {X, 72 S.}, year = {2014}, language = {en} } @book{KernWettingfeld2014, author = {Kern, Alexander and Wettingfeld, J{\"u}rgen}, title = {Blitzschutzsysteme 1 : allgemeine Grunds{\"a}tze, Risikomanagement, Schutz von baulichen Anlagen und Personen ; Erl{\"a}uterungen zu den Normen DIN EN 62305-1 (VDE 0185-305-1):2011-10, DIN EN 62305-2 (VDE 0185-305-2):2013-02, DIN EN 62305-3 (VDE 0185-305-3):2011-10. (VDE-Schriftenreihe Normen verst{\"a}ndlich ; 44)}, publisher = {VDE-Verl.}, address = {Berlin [u.a.]}, isbn = {978-3-8007-3511-2}, pages = {308 S.}, year = {2014}, language = {de} } @book{KernWettingfeld2015, author = {Kern, Alexander and Wettingfeld, J{\"u}rgen}, title = {Blitzschutzsysteme 2 : Schutz f{\"u}r besondere bauliche Anlagen ; Schutz f{\"u}r elektrische und elektronische Systeme in baulichen Anlagen ; Erl{\"a}uterungen zu den Normen DIN EN 62305-3 (VDE 0185-305-3):2011-10, DIN EN 62305-4 (VDE 0185-305-4):2011-10. (VDE-Schriftenreihe Normen verst{\"a}ndlich ; 160)}, publisher = {VDE-Verl.}, address = {Berlin [u.a.]}, isbn = {978-3-8007-3653-9}, pages = {247 S.}, year = {2015}, language = {de} } @book{BorchertSchemmKorth2006, author = {Borchert, J{\"o}rg and Schemm, Ralf and Korth, Swen}, title = {Stromhandel: Institutionen, Marktmodelle, Pricing und Risikomanagement}, publisher = {Sch{\"a}ffer-Poeschel}, address = {Stuttgart}, isbn = {978-3-7910-2542-1}, pages = {XXIII, 426 S. : Ill., graph. Darst.}, year = {2006}, language = {de} } @phdthesis{Borchert2003, author = {Borchert, J{\"o}rg}, title = {Analyse von Determinanten der Großhandelspreise f{\"u}r Elektrizit{\"a}t anhand einer Systemstudie des deutschen Marktes}, year = {2003}, language = {de} } @article{BorchertHasenbeckJungbluthetal.2009, author = {Borchert, J{\"o}rg and Hasenbeck, Marc and Jungbluth, Christian and Schemm, Ralf}, title = {Bewertung und Steuerung von Gasspeichern bzw. Gasspeicherscheiben}, series = {Zeitschrift f{\"u}r Energiewirtschaft}, volume = {33}, journal = {Zeitschrift f{\"u}r Energiewirtschaft}, number = {4}, publisher = {Springer}, address = {Berlin}, issn = {1866-2765}, doi = {10.1007/s12398-009-0033-x}, pages = {279 -- 293}, year = {2009}, abstract = {In diesem Artikel werden zun{\"a}chst einleitend der Gasmarkt Deutschland und der sich daraus ergebende Speicherbedarf skizziert. Folgend wird auf verschiedene Speichernutzen aus betriebswirtschaftlicher Perspektive eingegangen und die in diesem Artikel vorgestellten Bewertungsverfahren einleitend beschrieben. In diesem Artikel werden stochastische Optimierungsmethoden aufgegriffen, die sowohl eine Bewertung der Speicher gegen{\"u}ber einem Spotpreis, als auch gegen{\"u}ber einer gesamten Forwardcurve erm{\"o}glichen. Hierzu werden zun{\"a}chst Modelle zur Beschreibung der Marktpreise vorgestellt und anhand empirischer Daten kalibriert. Dann wird eine beispielhafte Speicherscheibe zun{\"a}chst auf Basis der LeastSquareMonteCarloTechnik gegen{\"u}ber dem stochastischen mehrfaktoriellen Spotpreismodell bewertet. Hieran schließt sich die Vorstellung der Bewertung sowie des Hedgings gegen{\"u}ber der Forwardcurve an. Abschließend erfolgt eine vergleichende Gegen{\"u}berstellung beider Verfahren.}, language = {de} } @article{BorchertHasenbeck2009, author = {Borchert, J{\"o}rg and Hasenbeck, Marc}, title = {Bewertung und Steuerung von Kraftwerksscheiben}, series = {Zeitschrift f{\"u}r Energiewirtschaft}, volume = {33}, journal = {Zeitschrift f{\"u}r Energiewirtschaft}, number = {2}, publisher = {Vieweg}, address = {Wiesbaden}, issn = {1866-2765}, doi = {10.1007/s12398-009-0014-0}, pages = {115 -- 126}, year = {2009}, language = {de} } @article{BorchertSchemm2007, author = {Borchert, J{\"o}rg and Schemm, R.}, title = {Einsatz der Portfoliotheorie im Asset Allokations-Prozess am Beispiel eines fiktiven Anlageraumes von Windkraftstandorten}, series = {Zeitschrift f{\"u}r Energiewirtschaft}, volume = {31}, journal = {Zeitschrift f{\"u}r Energiewirtschaft}, number = {4}, issn = {0343-5377}, pages = {311}, year = {2007}, language = {de} } @article{JungbluthBorchert2008, author = {Jungbluth, Christian and Borchert, J{\"o}rg}, title = {M{\"o}glichkeiten der Strompreisbeeinflussung im oligopolistischen Markt}, series = {ZNER Zeitschrift f{\"u}r Neues Energierecht}, journal = {ZNER Zeitschrift f{\"u}r Neues Energierecht}, number = {4}, pages = {314 -- 323}, year = {2008}, language = {de} } @article{WalterBorchert2002, author = {Walter, G. and Borchert, J{\"o}rg}, title = {Der Einsatz von Realoptionen in der Elektrizit{\"a}tswirtschaft}, series = {M \& A Review}, journal = {M \& A Review}, number = {4}, issn = {1616-0878}, pages = {198}, year = {2002}, language = {de} } @incollection{BorchertBremen2014, author = {Borchert, J{\"o}rg and Bremen, Frank}, title = {Gesch{\"a}fts- und Organisationsmodelle f{\"u}r ein Strom- und Gas-Portfoliomanagement}, series = {Optimierte Strom- und Gasbeschaffung in der Energiewirtschaftsbranche}, booktitle = {Optimierte Strom- und Gasbeschaffung in der Energiewirtschaftsbranche}, publisher = {KS-Energy-Verl.}, address = {Berlin}, isbn = {978-3-9813142-9-8}, pages = {11 -- 28}, year = {2014}, language = {de} } @incollection{BorchertLintzel2012, author = {Borchert, J{\"o}rg and Lintzel, P.}, title = {Risiken des Handels}, series = {Energiehandel in Europa}, booktitle = {Energiehandel in Europa}, editor = {Zenke, Ines}, edition = {3. Aufl.}, publisher = {Beck}, address = {M{\"u}nchen}, isbn = {978-3-9813142-9-8}, pages = {303 -- 312}, year = {2012}, language = {de} } @incollection{Borchert2012, author = {Borchert, J{\"o}rg}, title = {Aufbau von Handelseinheiten}, series = {Energiehandel in Europa}, booktitle = {Energiehandel in Europa}, editor = {Zenke, Ines}, edition = {3. Aufl.}, publisher = {Beck}, address = {M{\"u}nchen}, isbn = {978-3-406-63237-2}, pages = {467 -- 479}, year = {2012}, language = {de} } @incollection{BorchertMichels2012, author = {Borchert, J{\"o}rg and Michels, A.}, title = {Beschaffungsstrategien an der Schnittstelle Energiehandel / Vertrieb}, series = {Energiehandel in Europa}, booktitle = {Energiehandel in Europa}, editor = {Zenke, ines}, edition = {3. Aufl.}, publisher = {Beck}, address = {M{\"u}nchen}, isbn = {978-3-406-63237-2}, pages = {508 -- 522}, year = {2012}, language = {de} } @incollection{LintzelBorchert2009, author = {Lintzel, P. and Borchert, J{\"o}rg}, title = {Risiken des Handels}, series = {Energiehandel in Europa}, booktitle = {Energiehandel in Europa}, editor = {Zenke, Ines}, edition = {2. Aufl.}, publisher = {Beck}, address = {M{\"u}nchen}, isbn = {978-3-406-58373-5}, pages = {239 -- 247}, year = {2009}, language = {de} } @incollection{BorchertHintze2009, author = {Borchert, J{\"o}rg and Hintze, D.}, title = {Der Aufbau von Handelseinheiten}, series = {Energiehandel in Europa}, booktitle = {Energiehandel in Europa}, editor = {Zenke, Ines}, edition = {2. Aufl.}, publisher = {Beck}, address = {M{\"u}nchen}, isbn = {978-3-406-58373-5}, pages = {393 -- 410}, year = {2009}, language = {de} } @incollection{MichelsBorchert2009, author = {Michels, A. and Borchert, J{\"o}rg}, title = {Beschaffungsstrategien an der Schnittstelle Energiehandel/Vertrieb}, series = {Energiehandel in Europa}, booktitle = {Energiehandel in Europa}, editor = {Zenke, Ines}, edition = {2. Aufl.}, publisher = {Beck}, address = {M{\"u}nchen}, isbn = {978-3-406-58373-5}, pages = {467 -- 481}, year = {2009}, language = {de} } @incollection{SchemmLintzelBorchert2005, author = {Schemm, R. and Lintzel, P. and Borchert, J{\"o}rg}, title = {Typische Elemente des Handelsmarktes}, series = {Energiehandel in Europa}, booktitle = {Energiehandel in Europa}, editor = {Zenke, Ines}, publisher = {Beck}, address = {M{\"u}nchen}, isbn = {3-406-52443-5}, pages = {195 -- 216}, year = {2005}, language = {de} } @incollection{BorchertSchemmLintzel2005, author = {Borchert, J{\"o}rg and Schemm, R. and Lintzel, P.}, title = {Risiken des Handelsgesch{\"a}ftes}, series = {Energiehandel in Europa}, booktitle = {Energiehandel in Europa}, editor = {Zenke, Ines}, publisher = {Beck}, address = {M{\"u}nchen}, isbn = {3-406-52443-5}, pages = {218 -- 235}, year = {2005}, language = {de} } @incollection{Borchert2008, author = {Borchert, J{\"o}rg}, title = {Risikomanagement in der Energiewirtschaft : Eine Risikoanalyse der elektrizit{\"a}tswirtschaftlichen Wertsch{\"o}pfungskette}, series = {Rechtliche Grundlagen des Risikomanagements : Haftungs- und Strafvermeidung f{\"u}r Corporate Complience}, booktitle = {Rechtliche Grundlagen des Risikomanagements : Haftungs- und Strafvermeidung f{\"u}r Corporate Complience}, editor = {Romeike, Frank}, publisher = {Erich Schmidt}, address = {Berlin}, isbn = {978-350-310647-9}, pages = {231 -- 270}, year = {2008}, language = {de} } @inproceedings{NabeBorchert1999, author = {Nabe, C. and Borchert, J{\"o}rg}, title = {Risikomanagement von EVU in liberalisierten Stromm{\"a}rkten}, series = {Liberalisierung des Energiemarktes : Vortragsmanuskripte des 5. Ferienkurses "Energieforschung" vom 27. September - 1. Oktober 1999 im Congrescentrum Rolduc und im Forschungszentrum J{\"u}lich}, booktitle = {Liberalisierung des Energiemarktes : Vortragsmanuskripte des 5. Ferienkurses "Energieforschung" vom 27. September - 1. Oktober 1999 im Congrescentrum Rolduc und im Forschungszentrum J{\"u}lich}, editor = {Hake, J{\"u}rgen-Friedrich}, publisher = {Forschungszentrum}, address = {J{\"u}lich}, isbn = {3-89336-248-7}, pages = {203 -- 216}, year = {1999}, language = {de} } @incollection{Borchert1997, author = {Borchert, J{\"o}rg}, title = {Der Elektrizit{\"a}tsmarkt in Indonesien und Beteiligungsm{\"o}glichkeiten privater Unternehmen}, series = {Investitionsf{\"u}hrer ASEAN, Indochina, 1997 : Brunei, Indonesien, Kambodscha, Laos, Malaysia, Myanmar, Philippinen, Singapur, Thailand, Vietnam}, booktitle = {Investitionsf{\"u}hrer ASEAN, Indochina, 1997 : Brunei, Indonesien, Kambodscha, Laos, Malaysia, Myanmar, Philippinen, Singapur, Thailand, Vietnam}, edition = {Stand: Mai 1997}, publisher = {Berliner Bank AG}, address = {Berlin}, pages = {42 -- 52}, year = {1997}, language = {de} } @article{KuperjansWeitzel2015, author = {Kuperjans, Isabel and Weitzel, J.}, title = {Energiedesign 2020 : Sichere Strom- und W{\"a}rmeversorgung f{\"u}r die Industrie}, series = {TAB: das Fachmedium der TGA-Branche}, journal = {TAB: das Fachmedium der TGA-Branche}, number = {3}, publisher = {Bauverlag}, address = {G{\"u}tersloh}, issn = {0341-2032}, pages = {105 -- 107}, year = {2015}, language = {de} } @article{KahmannRauschPluemeretal.2022, author = {Kahmann, Stephanie L. and Rausch, Valentin and Pl{\"u}mer, Jonathan and M{\"u}ller, Lars P. and Pieper, Martin and Wegmann, Kilian}, title = {The automized fracture edge detection and generation of three-dimensional fracture probability heat maps}, series = {Medical Engineering \& Physics}, volume = {2022}, journal = {Medical Engineering \& Physics}, number = {110}, publisher = {Elsevier}, address = {Amsterdam}, issn = {1350-4533}, pages = {7 Seiten}, year = {2022}, abstract = {With proven impact of statistical fracture analysis on fracture classifications, it is desirable to minimize the manual work and to maximize repeatability of this approach. We address this with an algorithm that reduces the manual effort to segmentation, fragment identification and reduction. The fracture edge detection and heat map generation are performed automatically. With the same input, the algorithm always delivers the same output. The tool transforms one intact template consecutively onto each fractured specimen by linear least square optimization, detects the fragment edges in the template and then superimposes them to generate a fracture probability heat map. We hypothesized that the algorithm runs faster than the manual evaluation and with low (< 5 mm) deviation. We tested the hypothesis in 10 fractured proximal humeri and found that it performs with good accuracy (2.5 mm ± 2.4 mm averaged Euclidean distance) and speed (23 times faster). When applied to a distal humerus, a tibia plateau, and a scaphoid fracture, the run times were low (1-2 min), and the detected edges correct by visual judgement. In the geometrically complex acetabulum, at a run time of 78 min some outliers were considered acceptable. An automatically generated fracture probability heat map based on 50 proximal humerus fractures matches the areas of high risk of fracture reported in medical literature. Such automation of the fracture analysis method is advantageous and could be extended to reduce the manual effort even further.}, language = {en} } @article{BlockViebahnJungbluth2024, author = {Block, Simon and Viebahn, Peter and Jungbluth, Christian}, title = {Analysing direct air capture for enabling negative emissions in Germany: an assessment of the resource requirements and costs of a potential rollout in 2045}, series = {Frontiers in Climate}, volume = {6}, journal = {Frontiers in Climate}, publisher = {Frontiers}, address = {Lausanne}, issn = {2624-9553}, doi = {10.3389/fclim.2024.1353939}, pages = {18 Seiten}, year = {2024}, abstract = {Direct air capture (DAC) combined with subsequent storage (DACCS) is discussed as one promising carbon dioxide removal option. The aim of this paper is to analyse and comparatively classify the resource consumption (land use, renewable energy and water) and costs of possible DAC implementation pathways for Germany. The paths are based on a selected, existing climate neutrality scenario that requires the removal of 20 Mt of carbon dioxide (CO2) per year by DACCS from 2045. The analysis focuses on the so-called "low-temperature" DAC process, which might be more advantageous for Germany than the "high-temperature" one. In four case studies, we examine potential sites in northern, central and southern Germany, thereby using the most suitable renewable energies for electricity and heat generation. We show that the deployment of DAC results in large-scale land use and high energy needs. The land use in the range of 167-353 km2 results mainly from the area required for renewable energy generation. The total electrical energy demand of 14.4 TWh per year, of which 46\% is needed to operate heat pumps to supply the heat demand of the DAC process, corresponds to around 1.4\% of Germany's envisaged electricity demand in 2045. 20 Mt of water are provided yearly, corresponding to 40\% of the city of Cologne's water demand (1.1 million inhabitants). The capture of CO2 (DAC) incurs levelised costs of 125-138 EUR per tonne of CO2, whereby the provision of the required energy via photovoltaics in southern Germany represents the lowest value of the four case studies. This does not include the costs associated with balancing its volatility. Taking into account transporting the CO2 via pipeline to the port of Wilhelmshaven, followed by transporting and sequestering the CO2 in geological storage sites in the Norwegian North Sea (DACCS), the levelised costs increase to 161-176 EUR/tCO2. Due to the longer transport distances from southern and central Germany, a northern German site using wind turbines would be the most favourable.}, language = {en} } @inproceedings{ButenwegMarinkovićPaveseetal.2021, author = {Butenweg, Christoph and Marinković, Marko and Pavese, Alberto and Lanese, Igor and Hoffmeister, Benno and Pinkawa, Marius and Vulcu, Mihai-Cristian and Bursi, Oreste and Nardin, Chiara and Paolacci, Fabrizio and Quinci, Gianluca and Fragiadakis, Michalis and Weber, Felix and Huber, Peter and Renault, Philippe and G{\"u}ndel, Max and Dyke, Shirley and Ciucci, M. and Marino, A.}, title = {Seismic performance of multi-component systems in special risk industrial facilities}, series = {Proceedings of the seventeenth world conference on earthquake engineering}, booktitle = {Proceedings of the seventeenth world conference on earthquake engineering}, year = {2021}, abstract = {Past earthquakes demonstrated the high vulnerability of industrial facilities equipped with complex process technologies leading to serious damage of the process equipment and multiple and simultaneous release of hazardous substances in industrial facilities. Nevertheless, the design of industrial plants is inadequately described in recent codes and guidelines, as they do not consider the dynamic interaction between the structure and the installations and thus the effect of seismic response of the installations on the response of the structure and vice versa. The current code-based approach for the seismic design of industrial facilities is considered not enough for ensure proper safety conditions against exceptional event entailing loss of content and related consequences. Accordingly, SPIF project (Seismic Performance of Multi- Component Systems in Special Risk Industrial Facilities) was proposed within the framework of the European H2020 - SERA funding scheme (Seismology and Earthquake Engineering Research Infrastructure Alliance for Europe). The objective of the SPIF project is the investigation of the seismic behavior of a representative industrial structure equipped with complex process technology by means of shaking table tests. The test structure is a three-story moment resisting steel frame with vertical and horizontal vessels and cabinets, arranged on the three levels and connected by pipes. The dynamic behavior of the test structure and installations is investigated with and without base isolation. Furthermore, both firmly anchored and isolated components are taken into account to compare their dynamic behavior and interactions with each other. Artificial and synthetic ground motions are applied to study the seismic response at different PGA levels. After each test, dynamic identification measurements are carried out to characterize the system condition. The contribution presents the numerical simulations to calibrate the tests on the prototype, the experimental setup of the investigated structure and installations, selected measurement data and finally describes preliminary experimental results.}, language = {en} } @inproceedings{RosinKubalskiButenweg2014, author = {Rosin, Julia and Kubalski, Thomas and Butenweg, Christoph}, title = {Seismic Design of cylindrical liquid storage tanks}, 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 = {978-3-658-02810-7 (E-Book) ; 978-3-658-02809-1 (Print)}, doi = {10.1007/978-3-658-02810-7_36}, pages = {429 -- 440}, year = {2014}, language = {en} } @inproceedings{AltayButenwegKlinkel2014, author = {Altay, Okyay and Butenweg, Christoph and Klinkel, Sven}, title = {Vibration mitigation of wind turbine towers by a new semiactive Tuned Liquid Column Damper}, series = {6. Word Congress on Structural Control and Monitoring, 15 - 17 July, 2014 Barcelona,Spain}, booktitle = {6. Word Congress on Structural Control and Monitoring, 15 - 17 July, 2014 Barcelona,Spain}, year = {2014}, language = {en} } @inproceedings{ButenwegBursiNardinetal.2021, author = {Butenweg, Christoph and Bursi, Oreste S. and Nardin, Chiara and Lanese, Igor and Pavese, Alberto and Marinković, Marko and Paolacci, Fabrizio and Quinci, Gianluca}, title = {Experimental investigation on the seismic performance of a multi-component system for major-hazard industrial facilities}, series = {Conference Proceedings: Pressure Vessels \& Piping Conference Vol.5}, booktitle = {Conference Proceedings: Pressure Vessels \& Piping Conference Vol.5}, publisher = {American Society of Mechanical Engineers (ASME)}, address = {New York}, isbn = {9780791885352}, doi = {10.1115/PVP2021-61696}, pages = {8 Seiten}, year = {2021}, abstract = {Past earthquakes demonstrated the high vulnerability of industrial facilities equipped with complex process technologies leading to serious damage of the process equipment and multiple and simultaneous release of hazardous substances in industrial facilities. Nevertheless, the design of industrial plants is inadequately described in recent codes and guidelines, as they do not consider the dynamic interaction between the structure and the installations and thus the effect of seismic response of the installations on the response of the structure and vice versa. The current code-based approach for the seismic design of industrial facilities is considered not enough for ensure proper safety conditions against exceptional event entailing loss of content and related consequences. Accordingly, SPIF project (Seismic Performance of Multi-Component Systems in Special Risk Industrial Facilities) was proposed within the framework of the European H2020 - SERA funding scheme (Seismology and Earthquake Engineering Research Infrastructure Alliance for Europe). The objective of the SPIF project is the investigation of the seismic behaviour of a representative industrial structure equipped with complex process technology by means of shaking table tests. The test structure is a three-story moment resisting steel frame with vertical and horizontal vessels and cabinets, arranged on the three levels and connected by pipes. The dynamic behaviour of the test structure and of its relative several installations is investigated. Furthermore, both process components and primary structure interactions are considered and analyzed. Several PGA-scaled artificial ground motions are applied to study the seismic response at different levels. After each test, dynamic identification measurements are carried out to characterize the system condition. The contribution presents the experimental setup of the investigated structure and installations, selected measurement data and describes the obtained damage. Furthermore, important findings for the definition of performance limits, the effectiveness of floor response spectra in industrial facilities will be presented and discussed.}, language = {en} } @incollection{ButenwegGellert2009, author = {Butenweg, Christoph and Gellert, Christoph}, title = {Erdbebenberechnung von Mauerwerksbauten nach DIN EN 1998-1 (12.2010)}, series = {Mauerwerksbau-Praxis / Schubert; Schneider; Schoch (Hrsg.)}, booktitle = {Mauerwerksbau-Praxis / Schubert; Schneider; Schoch (Hrsg.)}, publisher = {Bauwerk}, address = {Berlin}, isbn = {978-3-89932-217-0}, pages = {299 -- 343}, year = {2009}, language = {de} } @incollection{ButenwegBollenbeck2003, author = {Butenweg, Christoph and Bollenbeck, S.}, title = {Mauerwerksbauten unter Erdbebenbelastung}, series = {Bauwerke und Erdbeben}, booktitle = {Bauwerke und Erdbeben}, publisher = {Vieweg}, address = {Wiesbaden}, isbn = {3-528-02574-3}, pages = {385 -- 397}, year = {2003}, language = {de} } @article{EdipSesovButenwegetal.2018, author = {Edip, K. and Sesov, V. and Butenweg, Christoph and Bojadjieva, J.}, title = {Development of coupled numerical model for simulation of multiphase soil}, series = {Computers and Geotechnics}, volume = {96}, journal = {Computers and Geotechnics}, publisher = {Elsevier}, address = {Amsterdam}, issn = {0266-352X}, doi = {10.1016/j.compgeo.2017.08.016}, pages = {118 -- 131}, year = {2018}, abstract = {In this paper, a coupled multiphase model considering both non-linearities of water retention curves and solid state modeling is proposed. The solid displacements and the pressures of both water and air phases are unknowns of the proposed model. The finite element method is used to solve the governing differential equations. The proposed method is demonstrated through simulation of seepage test and partially consolidation problem. Then, implementation of the model is done by using hypoplasticity for the solid phase and analyzing the fully saturated triaxial experiments. In integration of the constitutive law error controlling is improved and comparisons done accordingly. In this work, the advantages and limitations of the numerical model are discussed.}, language = {en} } @techreport{ButenwegDargelHoechstetal.2012, author = {Butenweg, Christoph and Dargel, H.-J. and H{\"o}chst, T. and Holtschoppen, B. and Schwarz, R. and Sippel, M.}, title = {Der Lastfall Erdbeben im Anlagenbau : Leitfaden : Entwurf, Bemessung und Konstruktion von Tragwerken und Komponenten in der chemischen Industrie in Anlehnung an die DIN EN 1998-1}, publisher = {Verband der Chemischen Industrie e.V.}, address = {Frankfurt}, pages = {20 S.}, year = {2012}, language = {de} } @inproceedings{AltayButenweg2013, author = {Altay, Okyay and Butenweg, Christoph}, title = {Ermittlung der optimalen Geometrie von Fl{\"u}ssigkeitss{\"a}ulend{\"a}mpfern auf Grundlage neuer Optimierungsans{\"a}tze}, series = {13. D-A-CH Tagung f{\"u}r Erdbebeningenieurwesen und Baudynamik (D-A-CH 2013) : 29.-30. August 2013, Wien, {\"O}sterreich}, booktitle = {13. D-A-CH Tagung f{\"u}r Erdbebeningenieurwesen und Baudynamik (D-A-CH 2013) : 29.-30. August 2013, Wien, {\"O}sterreich}, organization = {D-A-CH Tagung f{\"u}r Erdbebeningenieurwesen und Baudynamik <13, 2013, Wien>}, pages = {1 -- 10}, year = {2013}, language = {de} } @inproceedings{RajanKubalskiAltayetal.2017, author = {Rajan, Sreelakshmy and Kubalski, Thomas and Altay, Okyay and Dalguer, Luis A and Butenweg, Christoph}, title = {Multi-dimensional fragility analysis of a RC building with components using response surface method}, series = {24th International Conference on Structural Mechanics in Reactor Technology, Busan, Korea, 20-25 August, 2017}, booktitle = {24th International Conference on Structural Mechanics in Reactor Technology, Busan, Korea, 20-25 August, 2017}, publisher = {International Assn for Structural Mechanics in Reactor Technology (IASMiRT)}, address = {Raleigh, USA}, isbn = {9781510856776}, pages = {3126 -- 3135}, year = {2017}, abstract = {Conventional fragility curves describe the vulnerability of the main structure under external hazards. However, in complex structures such as nuclear power plants, the safety or the risk depends also on the components associated with a system. The classical fault tree analysis gives an overall view of the failure and contains several subsystems to the main event, however, the interactions in the subsystems are not well represented. In order to represent the interaction of the components, a method suggested by Cimellaro et al. (2006) using multidimensional performance limit state functions to obtain the system fragility curves is adopted. This approach gives the possibility of deriving the cumulative fragility taking into account the interaction of the response of different components. In this paper, this approach is used to evaluate seismic risk of a representative electrical building infrastructure, including the component, of a nuclear power plant. A simplified model of the structure, with nonlinear material behavior is employed for the analysis in Abaqus©. The input variables considered are the material parameters, boundary conditions and the seismic input. The variability of the seismic input is obtained from selected ground motion time histories of spectrum compatible synthetic ccelerograms. Unlike the usual Monte Carlo methods used for the probabilistic analysis of the structure, a computationally effective response surface method is used. This method reduces the computational effort of the calculations by reducing the required number of samples.}, language = {en} } @inproceedings{MilijašŠakićMarinkovićetal.2021, author = {Milijaš, Aleksa and Šakić, Bogdan and Marinković, Marko and Butenweg, Christoph}, title = {Experimental investigation of behaviour of masonry infilled RC frames under out-of-plane loading}, series = {Proceedings of COMPDYN 2021}, booktitle = {Proceedings of COMPDYN 2021}, editor = {Papadrakakis, Manolis and Fragiadakis, Michalis}, publisher = {National Technical University of Athens}, address = {Athen}, isbn = {978-618-85072-5-8}, issn = {2623-3347}, doi = {10.7712/120121.8528.18914}, pages = {829 -- 846}, year = {2021}, abstract = {Masonry infills are commonly used as exterior or interior walls in reinforced concrete (RC) frame structures and they can be encountered all over the world, including earthquake prone regions. Since the middle of the 20th century the behaviour of these non-structural elements under seismic loading has been studied in numerous experimental campaigns. However, most of the studies were carried out by means of in-plane tests, while there is a lack of out-of-plane experimental investigations. In this paper, the out-of-plane tests carried out on full scale masonry infilled frames are described. The results of the out-of-plane tests are presented in terms of force-displacement curves and measured out-of-plane displacements. Finally, the reliability of existing analytical approaches developed to estimate the out-of-plane strength of masonry infills is examined on presented experimental results.}, language = {en} } @inproceedings{GellertParkButenweg2010, author = {Gellert, Christoph and Park, Jin and Butenweg, Christoph}, title = {Seismic safety verification of masonry structures}, series = {Proceedings of the Eight International Masonry Conference : held in Dresden from 4th to 7th of July 2010 / [International Masonry Society ; Technische Universit{\"a}t Dresden]. Ed. by: Wolfram J{\"a}ger ... Volume 1. (Masonry / International Masonry Society Special Publication ; 11)}, booktitle = {Proceedings of the Eight International Masonry Conference : held in Dresden from 4th to 7th of July 2010 / [International Masonry Society ; Technische Universit{\"a}t Dresden]. Ed. by: Wolfram J{\"a}ger ... Volume 1. (Masonry / International Masonry Society Special Publication ; 11)}, publisher = {ARGE 8IMC Dresden}, address = {Radebeul}, organization = {International Masonry Conference <8, 2010, Dresden>}, isbn = {978-3-00-031381-3}, pages = {813 -- 822}, year = {2010}, language = {en} } @article{MarinkovicButenweg2022, author = {Marinkovic, Marko and Butenweg, Christoph}, title = {Numerical analysis of the in-plane behaviour of decoupled masonry infilled RC frames}, series = {Engineering Structures}, volume = {272}, journal = {Engineering Structures}, number = {1}, publisher = {Elsevier}, address = {Amsterdam}, issn = {0141-0296}, doi = {10.1016/j.engstruct.2022.114959}, pages = {18 Seiten}, year = {2022}, abstract = {Damage of reinforced concrete (RC) frames with masonry infill walls has been observed after many earthquakes. Brittle behaviour of the masonry infills in combination with the ductile behaviour of the RC frames makes infill walls prone to damage during earthquakes. Interstory deformations lead to an interaction between the infill and the RC frame, which affects the structural response. The result of this interaction is significant damage to the infill wall and sometimes to the surrounding structural system too. In most design codes, infill walls are considered as non-structural elements and neglected in the design process, because taking into account the infills and considering the interaction between frame and infill in software packages can be complicated and impractical. A good way to avoid negative aspects arising from this behavior is to ensure no or low-interaction of the frame and infill wall, for instance by decoupling the infill from the frame. This paper presents the numerical study performed to investigate new connection system called INODIS (Innovative Decoupled Infill System) for decoupling infill walls from surrounding frame with the aim to postpone infill activation to high interstory drifts thus reducing infill/frame interaction and minimizing damage to both infills and frames. The experimental results are first used for calibration and validation of the numerical model, which is then employed for investigating the influence of the material parameters as well as infill's and frame's geometry on the in-plane behaviour of the infilled frames with the INODIS system. For all the investigated situations, simulation results show significant improvements in behaviour for decoupled infilled RC frames in comparison to the traditionally infilled frames.}, language = {en} } @incollection{MeskourisNordaButenweg2011, author = {Meskouris, Konstantin and Norda, Hannah and Butenweg, Christoph}, title = {Aktuelle Nachweiskonzepte von Mauerwerk unter Erdbebenbeanspruchung}, series = {Wie wollen wir in Zukunft bauen? : Festschrift zum 60. Geburtstag von Prof. Dr.-Ing. Wolfram J{\"a}ger, Dresden, 19.04.2011. (Bauforschung und Baupraxis ; H. 10)}, booktitle = {Wie wollen wir in Zukunft bauen? : Festschrift zum 60. Geburtstag von Prof. Dr.-Ing. Wolfram J{\"a}ger, Dresden, 19.04.2011. (Bauforschung und Baupraxis ; H. 10)}, publisher = {Techn. Univ., Lehrstuhl Tragwerksplanung}, address = {Dresden}, isbn = {978-3-86780-216-1}, pages = {233 -- 238}, year = {2011}, language = {de} } @article{MichelButenwegKlinkel2020, author = {Michel, P. and Butenweg, Christoph and Klinkel, S.}, title = {Einfluss der dynamischen Steifigkeit von Flach-und Pfahlgr{\"u}ndungen auf die Dynamik von Onshore-Windenergieanlagen}, series = {Bauingenieur}, volume = {95}, journal = {Bauingenieur}, number = {4}, publisher = {VDI Fachmedien}, address = {D{\"u}sseldorf}, issn = {0005-6650}, pages = {139 -- 146}, year = {2020}, language = {de} } @inproceedings{HoltschoppenCornelissenButenwegetal.2011, author = {Holtschoppen, Britta and Cornelissen, Philipp and Butenweg, Christoph and Meskouris, Konstantin}, title = {Vereinfachtes Berechnungsverfahren zur Ber{\"u}cksichtigung der Interaktionsschwingung bei fl{\"u}ssigkeitsgef{\"u}llten Tankbauwerken unter seismischer Belastung}, series = {Berichte der Fachtagung Baustatik-Baupraxis 11 : am 21. und 22. Februar 2011 an der Universit{\"a}t Innsbruck / Hrsg. Gernot Beer ...}, booktitle = {Berichte der Fachtagung Baustatik-Baupraxis 11 : am 21. und 22. Februar 2011 an der Universit{\"a}t Innsbruck / Hrsg. Gernot Beer ...}, publisher = {Inst. f{\"u}r Baustatik, Techn. Univ. Graz}, address = {Graz}, organization = {Fachtagung Baustatik, Baupraxis <11, 2011, Innsbruck>}, isbn = {978-3-85125-115-9}, pages = {155 -- 162}, year = {2011}, language = {de} } @article{BaumgartnerFidlerWethetal.2008, author = {Baumgartner, Werner and Fidler, Florian and Weth, Agnes and Habbecke, Martin and Jakob, Peter and Butenweg, Christoph and B{\"o}hme, Wolfgang}, title = {Investigating the locomotion of the sandfish in desert sand using NMR-Imaging}, series = {PLOS ONE}, volume = {3}, journal = {PLOS ONE}, number = {10}, publisher = {Plos}, address = {San Francisco, California, US}, issn = {1932-6203}, doi = {10.1371/journal.pone.0003309}, pages = {e3309}, year = {2008}, abstract = {The sandfish (Scincus scincus) is a lizard having the remarkable ability to move through desert sand for significant distances. It is well adapted to living in loose sand by virtue of a combination of morphological and behavioural specializations. We investigated the bodyform of the sandfish using 3D-laserscanning and explored its locomotion in loose desert sand using fast nuclear magnetic resonance (NMR) imaging. The sandfish exhibits an in-plane meandering motion with a frequency of about 3 Hz and an amplitude of about half its body length accompanied by swimming-like (or trotting) movements of its limbs. No torsion of the body was observed, a movement required for a digging-behaviour. Simple calculations based on the Janssen model for granular material related to our findings on bodyform and locomotor behaviour render a local decompaction of the sand surrounding the moving sandfish very likely. Thus the sand locally behaves as a viscous fluid and not as a solid material. In this fluidised sand the sandfish is able to "swim" using its limbs.}, language = {en} } @inproceedings{TaddeiLozanaMicheletal.2015, author = {Taddei, Francesca and Lozana, Lara and Michel, Philipp and Butenweg, Christoph and Klinkel, Sven}, title = {Practical recommendations for the foundation design of onshore wind turbines including soil-structure interaction}, series = {5th International Conference on Computational Methods in Structural , Hersonissos, Greece Dynamics and Earthquake Engineering, COMPDYN 2015, 25.05.2015-27.05.2015, Hersonissos, Greece.}, booktitle = {5th International Conference on Computational Methods in Structural , Hersonissos, Greece Dynamics and Earthquake Engineering, COMPDYN 2015, 25.05.2015-27.05.2015, Hersonissos, Greece.}, editor = {Papadrakakis, Manolis and Papadrakakis, M. and Papadopoulos, V. and Plevris, V.}, year = {2015}, language = {en} } @article{ButenwegHeuerWenk2015, author = {Butenweg, Christoph and Heuer, R. and Wenk, T.}, title = {Erdbebeningenieurwesen und Baudynamik}, series = {Bauingenieur}, volume = {90}, journal = {Bauingenieur}, number = {10}, publisher = {VDI Fachmedien}, address = {D{\"u}sseldorf}, issn = {00056650}, pages = {S1}, year = {2015}, language = {de} }