TY - THES A1 - Abeltshauser, Rainer T1 - Identification and separation of physical effects of coupled systems by using defined model abstractions N2 - The thesis investigates at the computer aided simulation process for operational vibration analysis of complex coupled systems. As part of the internal methods project “Absolute Values” of the BMW Group, the thesis deals with the analysis of the structural dynamic interactions and excitation interactions. The overarching aim of the methods project is to predict the operational vibrations of engines. Simulations are usually used to analyze technical aspects (e. g. operational vibrations, strength, ...) of single components in the industrial development. The boundary conditions of submodels are mostly based on experiences. So the interactions with neighboring components and systems are neglected. To get physically more realistic results but still efficient simulations, this work wants to support the engineer during the preprocessing phase by useful criteria. At first suitable abstraction levels based on the existing literature are defined to identify structural dynamic interactions and excitation interactions of coupled systems. So it is possible to separate different effects of the coupled subsystems. On this basis, criteria are derived to assess the influence of interactions between the considered systems. These criteria can be used during the preprocessing phase and help the engineer to build up efficient models with respect to the interactions with neighboring systems. The method was developed by using several models with different complexity levels. Furthermore, the method is proved for the application in the industrial environment by using the example of a current combustion engine. T2 - Identifikation und Separation physikalischer Effekte von gekoppelten Systemen mittels definierter Modellabstraktionen T3 - ISM-Bericht // Institut für Strukturmechanik, Bauhaus-Universität Weimar - 2017,1 KW - Strukturdynamik KW - Wechselwirkung KW - Schwingung KW - Berechnung KW - Numerische Berechnung KW - Modellbildung KW - Schwingungsanalyse KW - Simulationsprozess Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20170314-28600 ER - TY - THES A1 - Bubner, André T1 - Datenmodelle zur Bearbeitung von Ingenieuraufgaben am Beispiel von Wohnhäusern in Stahlbauweise T1 - Data Models for Processing of Engineering Tasks at the Example of Residential Buildings in Steel Construction Method N2 - Modelle bilden die Grundlage der Planung. Sie repräsentieren die zur Bearbeitung erforderlichen Eigenschaften eines Bauwerks in einer an die spezifische Aufgabe angepassten Form. Zwischen den verschiedenen zur Abbildung des Bauwerks eingesetzten Modellen bestehen fachliche Zusammenhänge bezüglich der darin abgebildeten Aspekte. Diese Abhängigkeiten werden in der praktischen Planungsbearbeitung gegenwärtig auf Grundlage von Erfahrungswerten, normativen Vorgaben und vereinfachenden Annahmen berücksichtigt. Die detailliertere Modellierung von Bauwerkseigenschaften führt zu einer engeren Verzahnung der verschiedenen Modelle. Um eine fachliche Inselbildung zu vermeiden, ist eine entsprechend angepasste Abbildung der zwischen den einzelnen Modellen bestehenden Beziehungen erforderlich. Mit den steigenden Ansprüchen an eine Bearbeitung von Ingenieuraufgaben gewinnt eine über den Zweck der Bereitstellung ausgewählter Informationen zum Bauwerk und der Unterstützung eines Datenaustauschs zwischen verschiedenen Fachplanern hinausgehende datentechnische Abbildung an Bedeutung. Dies setzt eine Diskussion der Anforderungen an eine solche Beschreibung aus fachlicher Sicht voraus. Die Untersuchung der fachlichen Anforderungen wird am Beispiel von Wohnhäusern in Stahlbauweise geführt. N2 - Models form the basis of the planning. They represent the characteristics necessary for the processing of a building in a form suited to the specific task. Between the different models, which are used for the representation of the building, there exist engineer-technical interrelations with regard to the illustrated aspects. At present these dependences are taken into consideration in the practical planning on basis of empirical values, normative guidelines and simplifying assumptions. The more detailed modelling of the building characteristics leads to a more defined linkage of the different models. To avoid an engineering island formation, there is an accordingly adapted representation of the relations existing between the single models necessary. With the rising demands on the processing of engineering tasks a data-technical representation wins in importance which realises more than a supply of selected information about the building and the support of a data exchange between different planners. This requires a discussion of the requirements for such a description from an engineer-technical view. The investigation of these technical requirements is carried out by the example of residential buildings in steel construction method. KW - Modellierung KW - Stahlbau KW - Wohnungsbau KW - Datenmodell KW - Modellbildung KW - Wohnhäuser in Stahlbauweise KW - fachliche Integration KW - Bearbeitung von Ingenieuraufgaben KW - modelling KW - residential buildings KW - engineer-technical integration KW - processing of engineering tasks Y1 - 2006 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20070423-8580 ER -