@article{SchwarzerMuellerVieiradaSilva2004, author = {Schwarzer, Klemens and M{\"u}ller, C. and Vieira da Silva, E.}, title = {Solare Meerwasser-Entsalzungsanlagen mit mehrstufiger W{\"a}rmer{\"u}ckgewinnung / C. M{\"u}ller ; K. Schwarzer ; E. Vieira da Silva ...}, series = {14. Symposium Thermische Solarenergie : 12. bis 14. Mai, 2004, Kloster Banz / [Veranst.: OTTI Energie-Kolleg]}, journal = {14. Symposium Thermische Solarenergie : 12. bis 14. Mai, 2004, Kloster Banz / [Veranst.: OTTI Energie-Kolleg]}, publisher = {Ostbayerisches Technologie-Transfer-Institut}, address = {Regensburg}, isbn = {3-934681-33-6}, pages = {154 -- 159}, year = {2004}, language = {en} } @article{HoffschmidtPitzPaalHennecke1999, author = {Hoffschmidt, Bernhard and Pitz-Paal, R. and Hennecke, K.}, title = {Solare Heißlufterzeugung f{\"u}r Temperaturen bis {\"u}ber 250 Grad C}, series = {Tagung M{\"u}nchen, 16. und 17. M{\"a}rz 1999 . 1999. - (VDI-Berichte ; 1457)}, journal = {Tagung M{\"u}nchen, 16. und 17. M{\"a}rz 1999 . 1999. - (VDI-Berichte ; 1457)}, publisher = {VDI-Verl.}, address = {D{\"u}sseldorf}, isbn = {3-18-091457-2}, pages = {323 -- 332}, year = {1999}, language = {de} } @article{AlexopoulosHoffschmidt2010, author = {Alexopoulos, Spiros and Hoffschmidt, Bernhard}, title = {Solar tower power plant in Germany and future perspectives of the development of the technology in Greece and Cyprus}, series = {Renewable Energy . 35 (2010), H. 7}, journal = {Renewable Energy . 35 (2010), H. 7}, isbn = {0960-1481}, pages = {1352 -- 1356}, year = {2010}, language = {en} } @article{SchwarzerMuellerMertes2004, author = {Schwarzer, Klemens and M{\"u}ller, C. and Mertes, C.}, title = {Solar thermal desalination systems with multi-layer heat recovery / C. M{\"u}ller ; K. Schwarzer ; C. Mertes ...}, series = {Proceedings / organised by: ISES Europe ... [Ed.: Deutsche Gesellschaft f{\"u}r Sonnenenergie e.V. - DGS, Munich ; PSE GmbH - Forschung Entwicklung Marketing, Freiburg]. - Vol 1}, journal = {Proceedings / organised by: ISES Europe ... [Ed.: Deutsche Gesellschaft f{\"u}r Sonnenenergie e.V. - DGS, Munich ; PSE GmbH - Forschung Entwicklung Marketing, Freiburg]. - Vol 1}, publisher = {PSE}, address = {Freiburg [Breisgau]}, isbn = {3-9809656-1-9}, pages = {1-647-1-652}, year = {2004}, language = {en} } @article{SchwarzerSilvaFaberetal.2001, author = {Schwarzer, Klemens and Silva, Maria Eug{\^e}nia Vieira da and Faber, Christian and M{\"u}ller, Christoph}, title = {Solar thermal desalination system with heat recovery}, series = {Desalination. 137 (2001), H. 1-3}, journal = {Desalination. 137 (2001), H. 1-3}, isbn = {0011-9164}, pages = {23 -- 29}, year = {2001}, language = {en} } @article{SchwarzerSilva2003, author = {Schwarzer, Klemens and Silva, Maria Eug{\^e}nia Vieira da}, title = {Solar cooking system with or without heat storage for families and institutions}, series = {Solar energy. 75 (2003), H. 1}, journal = {Solar energy. 75 (2003), H. 1}, isbn = {0038-092x}, pages = {34 -- 41}, year = {2003}, language = {en} } @inproceedings{MichelRosinButenwegetal.2020, author = {Michel, Philipp and Rosin, Julia and Butenweg, Christoph and Klinkel, Sven}, title = {Soil-dependent earthquake spectra in the analysis of liquid-storage-tanks on compliant soil}, series = {Seismic design of industrial facilities 2020}, booktitle = {Seismic design of industrial facilities 2020}, publisher = {Apprimus Verlag}, address = {Aachen}, isbn = {978-3-86359-729-0}, pages = {245 -- 254}, year = {2020}, abstract = {A further development of the Added-Mass-Method allows the combined representation of the effects of both soil-structure-interaction and fluid-structure interaction on a liquid-filled-tank in one model. This results in a practical method for describing the dynamic fluid pressure on the tank shell during joint movement. The fluid pressure is calculated on the basis of the tank's eigenform and the earthquake acceleration and represented by additional masses on the shell. The bearing on compliant ground is represented by replacement springs, which are calculated dependent on the local soil composition. The influence of the shear modulus of the compliant soil is clearly visible in the pressure curves and the stress distribution in the shell. The acceleration spectra are also dependent on soil stiffness. According to Eurocode-8 the acceleration spectra are determined for fixed soil-classes, instead of calculating the accelerations for each site in direct dependence on the soil composition. This leads to unrealistic sudden changes in the system's response. Therefore, earthquake spectra are calculated for different soil models in direct dependence of the shear modulus. Thus, both the acceleration spectra and the replacement springs match the soil composition. This enables a reasonable and consistent calculation of the system response for the actual conditions at each site.}, language = {en} } @inproceedings{AugensteinKuperjans2001, author = {Augenstein, Eckardt and Kuperjans, Isabel}, title = {Softwaregest{\"u}tzte Analyse und Konzeption betrieblicher Energieversorgungsanlagen}, series = {Fortschrittliche Energiewandlung und -anwendung : Schwerpunkt: dezentrale Energiesysteme ; Tagung Bochum, 13. und 14. M{\"a}rz 2001. - (VDI-Berichte ; 1594)}, booktitle = {Fortschrittliche Energiewandlung und -anwendung : Schwerpunkt: dezentrale Energiesysteme ; Tagung Bochum, 13. und 14. M{\"a}rz 2001. - (VDI-Berichte ; 1594)}, publisher = {VDI-Verl.}, address = {D{\"u}sseldorf}, isbn = {3-18-091594-3}, pages = {313 -- 322}, year = {2001}, language = {de} } @misc{NobisrathZuendorfGeorgeetal.2017, author = {Nobisrath, Ulrich and Z{\"u}ndorf, Albert and George, Tobias and Ruben, Jubeh and Kraft, Bodo}, title = {Software Stories Guide}, pages = {21}, year = {2017}, abstract = {Software Stories are a simple graphical notation for requirements analysis and design in agile software projects. Software Stories are based on example scenarios. Example scenarios facilitate the communication between lay people or domain experts and software experts.}, language = {en} } @inproceedings{SteuerDankertLeichtScholten2016, author = {Steuer-Dankert, Linda and Leicht-Scholten, Carmen}, title = {Social responsibility and innovation - Key competencies for engineers}, series = {ICERI 2016: 9th International Conference of Education, Research and Innovation: Conference Proceedings : Seville (Spain), 14-16 November}, booktitle = {ICERI 2016: 9th International Conference of Education, Research and Innovation: Conference Proceedings : Seville (Spain), 14-16 November}, isbn = {978-84-617-5895-1}, issn = {2340-1095}, doi = {10.21125/iceri.2016.0353}, pages = {5967 -- 5976}, year = {2016}, abstract = {Engineers are of particular importance for the societies of tomorrow. The big social challenges society has to cope with in future, can only be mastered, if engineers link the development and innovation process closely with the requirements of people. As a result, in the frame of the innovation process engineers have to design and develop products for diverse users. Therefore, the consideration of diversity in this process is a core competence engineers should have. Implementing the consideration of diverse requirements into product design is also linked to the development of sustainable products and thus leads to social responsible research and development, the core concept formulated by the EU. For this reason, future engineers should be educated to look at the technical perspectives of a problem embedded in the related questions within societies they are developing their artefacts for. As a result, the aim of teaching engineering should be to prepare engineers for these requirements and to draw attention to the diverse needs in a globalized world. To match the competence profiles of future engineers to the global challenges and the resulting social responsibility, RWTH Aachen University, one of the leading technical universities in Germany, has established the bridging professorship "Gender and Diversity in Engineering" (GDI) which educates engineers with an interdisciplinary approach to expand engineering limits. The interdisciplinary teaching concept of the research group pursues an approach which imparts an application oriented Gender and Diversity expertise to future engineers. In the frame of an established teaching concept, which is a result of experiences and expertise of the research group, students gain theoretical knowledge about Gender and Diversity and learn how to transfer their knowledge into their later field of action. In the frame of the conference the institutional approach will be presented as well as the teaching concept which will be introduced by concrete course examples.}, language = {en} }