@article{PoettgenEdererAltherretal.2015, author = {P{\"o}ttgen, Philipp and Ederer, Thorsten and Altherr, Lena C. and Pelz, P. F.}, title = {Developing a Control Strategy for Booster Stations under Uncertain Load}, series = {Applied Mechanics and Materials}, volume = {807}, journal = {Applied Mechanics and Materials}, publisher = {Trans Tech Publications, Switzerland}, issn = {1660-9336}, pages = {241 -- 246}, year = {2015}, language = {en} } @incollection{AltherrEdererPoettgenetal.2015, author = {Altherr, Lena C. and Ederer, Thorsten and P{\"o}ttgen, Philipp and Lorenz, Ulf and Pelz, Peter F.}, title = {Multicriterial Optimization of Technical Systems Considering Multiple Load and Availability Scenarios}, series = {Uncertainty in mechanical engineering}, booktitle = {Uncertainty in mechanical engineering}, editor = {Pelz, Peter F. and Groche, Peter}, publisher = {Trans Tech Publications}, address = {Uetikon-Z{\"u}rich}, isbn = {978-3-03835-652-3}, publisher = {FH M{\"u}nster - University of Applied Sciences}, pages = {247 -- 256}, year = {2015}, language = {en} } @article{PoettgenEdererAltherretal.2015, author = {P{\"o}ttgen, Philipp and Ederer, Thorsten and Altherr, Lena C. and Lorenz, Ulf and Pelz, P. F.}, title = {Examination and Optimization of a Heating Circuit for Energy-Efficient Buildings}, series = {Energy Technology}, volume = {Vol. 4}, journal = {Energy Technology}, publisher = {WILEY-VCH Verlag}, issn = {2194-4296}, pages = {136 -- 144}, year = {2015}, language = {en} } @inproceedings{AltherrEdererSchaenzleetal.2015, author = {Altherr, Lena C. and Ederer, Thorsten and Sch{\"a}nzle, Christian and Lorenz, Ulf and Pelz, P. F.}, title = {Algorithmic System Design Using Scaling and Affinity Laws}, series = {Operations Research Proceedings 2015: Selected Papers of the International Conference on Operations Research}, booktitle = {Operations Research Proceedings 2015: Selected Papers of the International Conference on Operations Research}, publisher = {Springer}, year = {2015}, language = {en} } @inproceedings{AltherrEdererFarnetaneetal.2015, author = {Altherr, Lena C. and Ederer, Thorsten and Farnetane, Lucas S. and Verg{\´e}, Angela and P{\"o}ttgen, Philipp and Pelz, Peter F.}, title = {Multi-criterial Design of a Hydrostatic Transmission System by Mixed-Integer Programming}, series = {Operations Research Proceedings 2015: Selected Papers of the International Conference on Operations Research}, booktitle = {Operations Research Proceedings 2015: Selected Papers of the International Conference on Operations Research}, publisher = {Springer}, year = {2015}, language = {en} } @inproceedings{SchaenzleAltherrEdereretal.2015, author = {Sch{\"a}nzle, Christian and Altherr, Lena C. and Ederer, Thorsten and Pelz, P. F.}, title = {TOR - Towards the Energetically Optimal Ventilation System}, series = {EST 2015, Karlsruhe, 19-21 Mai 2015}, booktitle = {EST 2015, Karlsruhe, 19-21 Mai 2015}, year = {2015}, language = {en} } @inproceedings{SchaenzleAltherrEdereretal.2015, author = {Sch{\"a}nzle, Christian and Altherr, Lena C. and Ederer, Thorsten and Lorenz, U. and Pelz, P. F.}, title = {As Good As It Can Be - Ventilation System Design By A Combined Scaling And Discrete Optimization Method}, series = {Proceedings of FAN 2015, Lyon (France), 15 - 17 April 2015}, booktitle = {Proceedings of FAN 2015, Lyon (France), 15 - 17 April 2015}, year = {2015}, language = {en} } @article{WeinrichNelles2015, author = {Weinrich, S{\"o}ren and Nelles, Michael}, title = {Critical comparison of different model structures for the applied simulation of the anaerobic digestion of agricultural energy crops}, series = {Bioresource Technology}, volume = {178}, journal = {Bioresource Technology}, issn = {0960-8524}, doi = {10.1016/j.biortech.2014.10.138}, pages = {306 -- 312}, year = {2015}, abstract = {Different model structures were compared to simulate the characteristic process variables of the anaerobic digestion of maize, sugar beet and grain silage. Depending on the type and number of the required components, it can be shown that in comparison to the complex Anaerobic Digestion Model No. 1 (ADM1) different simplified model structures can describe the gas production rate, ammonia nitrogen and acetate concentration or pH value equally well. Since the reduction of the predominantly fast kinetics of the methanogenesis, acetogenesis or acidogenesis will only have little effect on the simulation of the specific gas production, it can be proven that the hydrolysis is the rate-limiting step during the uninhibited anaerobic digestion of complex particulate substrates. However, the stoichiometric comparison reveals that the model protein gelatine is not suitable for a representative characterization of agricultural energy crops.}, language = {en} }