56.03 Methoden im Bauingenieurwesen
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Communication software and distributed applications for control and building performance simulation software must be reliable, efficient, flexible, and reusable. This paper reports on progress of a project, which aims to achieve better integrated building and systems control modeling in building performance simulation by run-time coupling of distributed computer programs. These requirements motivate the use of the Common Object Request Broker Architecture (CORBA), which offers sufficient advantage than communication within simple abstraction. However, set up highly available applications with CORBA is hard. Neither control modeling software nor building performance environments have simple interface with CORBA objects. Therefore, this paper describes an architectural solution to distributed control and building performance software tools with CORBA objects. Then, it explains how much the developement of CORBA based distributed building control simulation applications is difficult. The paper finishes by giving some recommendations.
The contribution introduces a method for the distributed process modelling in order to support the process orientation in Structural Engineering, i.e., the modelling, analysis and management of planning processes. The approach is based on the Petri Net theory for the modelling of planning processes and workflows in Structural Engineering. Firstly, a central and coarse process model serves as a pre-structuring system for the detailed modelling of the technical planning activities. Secondly, the involved planning participants generate distributed process models with detailed technical workflow information. Finally, these distributed process models will be combined in the central workflow net. The final net is of great importance for the process orientation in Structural Engineering, i.e., the identification, publication, analysis, optimization and finally the management of planning processes.
This paper describes an ongoing research on the representation and reasoning about construction specifications, which is part of a bigger research project that aims at developing a formalism for automating the identification of deviations and defects on construction sites. We specifically describe the requirements on product and process models and an approach for representing and reasoning about construction specifications to enable automated detection and assessment of construction deviations and defects. This research builds on the previous research on modeling design specifications and extends and elaborates concept of contexts developed in that domain. The paper provides an overview of how the construction specifications are being modele d in this research and points out future steps that need to be accomplished to develop the envisioned automated deviation and defect detection system.
Den Gegenstand der Dissertation bilden die Konzeption und die exemplarische Realisierung eines verknüpfungsbasierten Bauwerksmodellierungsansatzes zur Schaffung einer integrierenden Arbeits- und Planungsumgebung für den Lebenszyklus von Bauwerken. Die Basis der Integration bildet ein deklarativ ausgerichteter Bauwerksmodellverbund bestehend aus abstrahierten, domänenspezifischen Partialmodellen. Auf Grund der de facto existierenden Dynamik im Bauwerkslebenszyklus werden sowohl der Bauwerksmodellverbund als auch die einzelnen Partialmodelle dynamisch modifizierbar konzipiert und auf Basis spezieller Modellverwaltungssysteme technisch realisiert. Die Verständigung innerhalb der vorgeschlagenen Gesamtbauwerksmodellarchitektur basiert auf anwenderspezifisch zu erstellenden Verknüpfungen zwischen den Partialmodellen und wird im Sinne einer hybriden Modellarchitektur durch eine zentrale, die Verknüpfungen verwaltende Komponente koordiniert. Zur Verwaltung und Abarbeitung der Verknüpfungen wird der Einsatz von Softwareagenten im Rahmen eines Multiagentensystems vorgeschlagen und diskutiert.
Limit state design of hybrid structures with meshless methods using mathematical optimization
(2003)
The revitalization of existing structures belongs to the frequently tasks in urban reconstruction processes. The adaptation for new requirements will commonly affect substantial changes in the general configuration of structures. The resulting revitalized structures are characterized by a hybrid design, where old and new, identical or diverse materials and members will be coupled in different ways. In the planning stage the treatment of these systems leads to application of complex and hybrid mechanical models respectively. High performance numerical instruments have to be applied for solving not only analysis but also targeted design problems. Because of the hybrid character of mechanical models in revitalization planning processes the use of hybrid technologies is advantageous. In this paper mixed domain technique will be used for connecting EFG and FE. The models derived will be adopted for design purposes of non-linear loaded hybrid structures. The investigations show a good adaptability of the meshless methods to the design of hybrid structures by using optimization strategies. With this method the advantages of both finite element and meshless methods can be utilized most suitable. With the property of a minimum amount of unknowns by maintaining an adequate quality of the results the application of mixed finite element and meshless methods is a promising alternative to traditional methods in structural analysis and optimization.