TY - BOOK A1 - Labisch, Susanna A1 - Wählisch, Georg T1 - Technisches Zeichnen: Eigenständig lernen und effektiv üben Y1 - 2017 SN - 978-3-658-18313-4 U6 - https://doi.org/10.1007/978-3-658-18313-4 N1 - auch gedruckt in der Bereichsbibliothek Jülich unter der Signatur 61 WBA 6(5) PB - Springer Fachmedien CY - Wiesbaden ET - 5. Aufl. ER - TY - BOOK A1 - Renckly, Sven A1 - Wählisch, Georg T1 - Technisches Zeichnen für Dummies Y1 - 2017 SN - 978-3-527-70966-3 PB - Wiley CY - Weinheim ER - TY - BOOK A1 - Wählisch, Georg T1 - Technisches Zeichnen : Vorlesung und Übungen Y1 - 2009 SN - 978-3-8322-8044-4 PB - Shaker CY - Aachen ER - TY - BOOK A1 - Wählisch, Georg T1 - Technisches Zeichnen : Lösungsvorschläge für das Selbststudium. (Berichte aus dem Maschinenbau) Y1 - 2012 SN - 978-3-8440-1159-3 PB - Shaker CY - Aachen ER - TY - CHAP A1 - Butenweg, Christoph A1 - Meskouris, Konstantin A1 - Meister, Sylvia A1 - Dreyer, Stephan A1 - Schulte-Althoff, Christoph T1 - Technisches Informationssystem für die Entwicklung textilbewehrten Betons T2 - Textilbeton in Theorie und Praxis : Tagungsband zum 6. Kolloquium zu Textilbewehrten Tragwerken (CTRS6) in Berlin am 19. und 20.9.2011 / Technische Universität Dresden, Sonderforschungsbereich 528, herausgegeben von Manfred Curbach und Regine Ortlepp Y1 - 2011 SN - 978-3-86780-122-5 SP - 257 EP - 268 PB - Technische Universität CY - Dresden ER - TY - JOUR A1 - Helsper, Christoph A1 - Fißan, H. J. T1 - Techniken zur Kalibrierung von Staubmeßgeräten / Fißan, H. J.; Helsper, C. JF - Schwebstoffe und Stäube : analyt. u. techn. Aspekte ; Kolloquium Nürnberg 1981 Y1 - 1982 SN - 3-18-090429-1 N1 - VDI Berichte; 429 SP - 59 EP - 64 PB - VDI-Verl. CY - Düsseldorf ER - TY - JOUR A1 - Chudoba, Rostislav A1 - Butenweg, Christoph A1 - Peiffer, F. T1 - Technical information system for collaborative material research JF - Advances in engineering software Y1 - 2004 U6 - https://doi.org/10.1016/j.advengsoft.2004.03.021 SN - 1873-5339 (E-Journal); 0965-9978 (Print) VL - Volume 35 IS - Issue 10-11 SP - 747 EP - 756 ER - TY - CHAP A1 - Chudoba, Rostislav A1 - Butenweg, Christoph A1 - Kuhlmann, Wolfram T1 - Technical information system for collaborative material research T2 - Sixth International Conference on Computational Structures Technology : [Prague, Czech Republic, 4 - 6 September 2002] Y1 - 2002 SP - 1 EP - 11 ER - TY - CHAP A1 - Mahdi, Zahra A1 - Dersch, Jürgen A1 - Schmitz, Pascal A1 - Dieckmann, Simon A1 - Chico Caminos, Ricardo Alexander A1 - Teixeira Boura, Cristiano José A1 - Herrmann, Ulf A1 - Schwager, Christian A1 - Schmitz, Mark A1 - Gielen, Hans A1 - Gedle, Yibekal A1 - Büscher, Rauno T1 - Technical assessment of Brayton cycle heat pumps for the integration in hybrid PV-CSP power plants T2 - SOLARPACES 2020 N2 - The hybridization of Concentrated Solar Power (CSP) and Photovoltaics (PV) systems is a promising approach to reduce costs of solar power plants, while increasing dispatchability and flexibility of power generation. High temperature heat pumps (HT HP) can be utilized to boost the salt temperature in the thermal energy storage (TES) of a Parabolic Trough Collector (PTC) system from 385 °C up to 565 °C. A PV field can supply the power for the HT HP, thus effectively storing the PV power as thermal energy. Besides cost-efficiently storing energy from the PV field, the power block efficiency of the overall system is improved due to the higher steam parameters. This paper presents a technical assessment of Brayton cycle heat pumps to be integrated in hybrid PV-CSP power plants. As a first step, a theoretical analysis was carried out to find the most suitable working fluid. The analysis included the fluids Air, Argon (Ar), Nitrogen (N2) and Carbon dioxide (CO2). N2 has been chosen as the optimal working fluid for the system. After the selection of the ideal working medium, different concepts for the arrangement of a HT HP in a PV-CSP hybrid power plant were developed and simulated in EBSILON®Professional. The concepts were evaluated technically by comparing the number of components required, pressure losses and coefficient of performance (COP). KW - Solar thermal technologies KW - Hybrid energy system KW - Concentrated solar power KW - Power plants KW - Energy storage Y1 - 2022 SN - 978-0-7354-4195-8 U6 - https://doi.org/10.1063/5.0086269 SN - 1551-7616 (online) SN - 0094-243X (print) N1 - SOLARPACES 2020: 26th International Conference on Concentrating Solar Power and Chemical Energy Systems, 28 September–2 October 2020, Freiburg, Germany IS - 2445 / 1 PB - AIP conference proceedings / American Institute of Physics CY - Melville, NY ER - TY - CHAP A1 - Pieper, Martin A1 - Schulz, Silvia T1 - Teaching Simulation Methods with COMSOL Multiphysics N2 - This paper describes two courses on simulation methods for graduate students: “Simulation Methods” and “Simulation and Optimization in Virtual Engineering” The courses were planned to teach young engineers how to work with simulation software as well as to understand the necessary mathematical background. As simulation software COMSOL is used. The main philosophy was to combine theory and praxis in a way that motivates the students. In addition “soft skills” should be improved. This was achieved by project work as final examination. As underlying didactical principle the ideas of Bloom’s revised taxonomy were followed. The paper basically focusses on educational aspects, e.g. how to structure the course, plan the exercises, organize the project work and include practical COMSOL examples. KW - COMSOL Multiphysics KW - Optimization module KW - LiveLink for MATLAB KW - Bloom Taxonomy KW - education Y1 - 2014 ER -