{"c0546a91c9ee2de9cecdc06d2621cc76wolfganghauser":{"DOI":"10.18419/OPUS-5647","ISBN":"","ISSN":"","URL":"http://elib.uni-stuttgart.de/handle/11682/5664","abstract":"","annote":"","author":[{"family":"Hauser","given":"Wolfgang"}],"citation-label":"https://doi.org/10.18419/opus-5647","collection-editor":[],"collection-title":"","container-author":[],"container-title":"","documents":[],"edition":"","editor":[],"event-date":{"date-parts":[["2013"]],"literal":"2013"},"event-place":"","id":"c0546a91c9ee2de9cecdc06d2621cc76wolfganghauser","interhash":"2d34f196c45b9e834362fb294a142943","intrahash":"c0546a91c9ee2de9cecdc06d2621cc76","issue":"","issued":{"date-parts":[["2013"]],"literal":"2013"},"keyword":", 300, Agent-based Agentenbasierte Elektrizitätsverbrauch Energieverbrauch Internationaler Lastkurven Lebensstil Lifestyle Modelling Simulation Simulation, Vergleich, curve demand energy load residential","misc":{"language":"en","doi":"10.18419/OPUS-5647"},"note":"","number":"","page":"","page-first":"","publisher":"Universität Stuttgart","publisher-place":"","status":"","title":"Analysis and agent-based modelling of lifestyle aspects influencing the residential energy demand in France and Germany","type":"article","username":"wolfganghauser","version":"","volume":""},"74acca7a06807f4b7176b027cf7d6070itke":{"DOI":"","ISBN":"978-3-922302-46-9","ISSN":"","URL":"","abstract":"The inherent relation between aesthetic qualities and structural efficiency inherent on bending-active and textile hybrid structures is associated with a vast range of design opportunities for generating innovative architectural solutions. Exploring\r\nthose opportunities is a non-trivial task demanding to expand outside current geometric modeling paradigms and develop an insightful and methodological simulation-based design practice. Considering that dynamic methods, such as Particle Systems (PS) and Dynamic Relaxation (DR), have become an important research trend with major advances only focused on speeding up numerical convergence, the main focus of this work is to develop a comprehensive approach for enabling topologic transformations with real-time physics named topology-driven form-finding that, during conceptual stages, can serve to extend design spaces by improving modeling freedom. \r\nA general introduction to bending-active and textile hybrid structures is presented in chapter 2. The following chapter then serves to introduce basic principles of PS and DR methods with an overview of mechanical formulations and integration schemes\r\nused throughout this work. Chapter 4 introduces the theoretical framework regarding the development of a generic topologic model with geometric and mechanic embeddings for the implementation of PS models supporting topologic transformations on the fly. Chapter 5 proceeds with the presentation of implementations along with a description of design and modeling implications. Different case studies in which the conceptual design development has been conducted via topology-driven form-finding approaches are presented in chapter 6. 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Exploring\r\nthose opportunities is a non-trivial task demanding to expand outside current geometric modeling paradigms and develop an insightful and methodological simulation-based design practice. Considering that dynamic methods, such as Particle Systems (PS) and Dynamic Relaxation (DR), have become an important research trend with major advances only focused on speeding up numerical convergence, the main focus of this work is to develop a comprehensive approach for enabling topologic transformations with real-time physics named topology-driven form-finding that, during conceptual stages, can serve to extend design spaces by improving modeling freedom. \r\nA general introduction to bending-active and textile hybrid structures is presented in chapter 2. The following chapter then serves to introduce basic principles of PS and DR methods with an overview of mechanical formulations and integration schemes\r\nused throughout this work. Chapter 4 introduces the theoretical framework regarding the development of a generic topologic model with geometric and mechanic embeddings for the implementation of PS models supporting topologic transformations on the fly. Chapter 5 proceeds with the presentation of implementations along with a description of design and modeling implications. Different case studies in which the conceptual design development has been conducted via topology-driven form-finding approaches are presented in chapter 6. 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The experiments are performed by Ti:sapphire laser at pulse duration τp=0.1 ps. The ablation rate and the surface structures are determined. Different regimes of the process at low and high laser fluences are observed. At fluences above several joules per square centimeter, the ablation is accompanied by the formation of significant amount of molten material. Molecular dynamics simulation technique is used to describe the process. Different mechanisms of material ejection are observed. The role of the electron heat diffusion in the process of dissipation of the energy is also estimated. 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The experiments are performed by Ti:sapphire laser at pulse duration τp=0.1 ps. The ablation rate and the surface structures are determined. Different regimes of the process at low and high laser fluences are observed. At fluences above several joules per square centimeter, the ablation is accompanied by the formation of significant amount of molten material. Molecular dynamics simulation technique is used to describe the process. Different mechanisms of material ejection are observed. The role of the electron heat diffusion in the process of dissipation of the energy is also estimated. Good coincidence is obtained between the model and experimental results.","annote":"","author":[{"family":"Nedialkov","given":"Nikolay N."},{"family":"Imamova","given":"S.E."},{"family":"Atanasov","given":"Petar A."},{"family":"Heusel","given":"Gerhard"},{"family":"Breitling","given":"Detlef"},{"family":"Ruf","given":"Andreas"},{"family":"Hügel","given":"Helmut"},{"family":"Dausinger","given":"Friedrich"},{"family":"Berger","given":"Peter"}],"citation-label":"Nedialkov.2004.Laser","collection-editor":[],"collection-title":"","container-author":[],"container-title":"Thin Solid Films","documents":[],"edition":"","editor":[],"event-date":{"date-parts":[["2004","apr"]],"literal":"2004"},"event-place":"","id":"b6c0b3b1cf36ddf86b86104230eb85c1ifsw","interhash":"f8c0d870b0f022815c9a6a95bb16665e","intrahash":"b6c0b3b1cf36ddf86b86104230eb85c1","issue":"","issued":{"date-parts":[["2004","apr"]],"literal":"2004"},"keyword":"myown Simulation Laser Modelling Ablation 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