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The growing competition pressure in the building industry increases the demands on the design and construction processes in respect to economical, technical and time aspects. These demands require efficient improvements of the value-added chain, which can be realized mainly with the usage of innovative information- and communication-technologies. To support the collaboration of all participants involved in a certain building project the Workflow-Management-System “BauKom-Online” has been developed. In the focus of the system is to support the coordination of the participants and their information exchange. Such a software-method is well suited to ensure a high quality planning process. The modelling of business-processes enables a better self-comprehension of the participants work and helps to enhance the project performance. The system architecture of BauKom-Online contains two basic components: the processmodelling tool and the workflow-engine. The process-model contains of activities and states of the planning and construction processes and their relations. These connected processes compose the workflow. Such a process-model for engineering purposes has to satisfy several needs, e.g., the consideration of planning and building alternatives, dynamic changes of the model during execution of the project and the linkage to further technical objects like costs, building structure, specifications and documentmanagement. Furthermore, the scheduling of the project can be done within the process-model and can be visualized as a Gantt-diagram. ...
This paper describes an Internet-enabled software model that could facilitate the development and utilization of nonlinear structural analysis programs. The software model allows users easy access to the analysis core program and the analysis results by using a web-browser or other application programs. In addition, new and legacy codes can be incorporated as distributed services and be integrated with the software framework from disparate sites. A distributed project management system, taking advantages of Internet and database technologies, is implemented to store and manage model information and simulation results. Nonlinear dynamic analysis and simulations of a bridge structure is performed to illustrate the facilities of the Internet-enabled software model.
The design of building projects involves several types of resources such as architects, structural engineers, mechanical engineers, electrical engineers, and draftsmen, among others. For design firms to stay in business in this very competitive market, they need to manage their resources in a way that improves productivity and cost effectiveness. This task, however, is not simple and requires thorough analysis of process-level operations, resource use, and productivity. Typically, these operational aspects are the responsibility of the design office manager who assigns available resources to the different design projects to save time and lower design expenses. It is noted that limited studies have been carried out in the literature to model overall organizational operations and behavioral aspects, particularly in firms specialized in the design of building projects. In an effort to simplify the modeling process, a simplified modeling and simulation tool is used in this research. A simulation model representing an actual design office was developed assuming that the office performs designs for small, medium, and large size building projects. The developed model was used to simulate several alternatives and examine various resource assignment strategies. The simulation was conducted over ten years and the resulting productivity and income was measured.
Today’s building industry not only demands more and more reduced construction time on building site, but also an advanced and mostly construction attendant design phase. Even though there is software available to support design processes in distributed environments, most applications only support simple document based exchange of information. In this paper a knowledge based system is presented to support cooperative, comprehensive design processes in distributed environments. The presented research project is financially supported by the German Research Community (DFG – Deutsche Forschungsgemeinschaft).
Effective knowledge management is increasingly considered as a cornerstone of sustainable business success. Knowledge management systems are strategically valuable for both ensuring consistency and continuous improvement of various aspects such as quality delivery, productivity and competitiveness. The small and medium enterprises (SMEs) in the construction industry are mostly operating under tighter timeframes, narrower profit margins and more constrained resources. Hence the recently commenced SMILE-SMC (Strategic Management with Information Leveraged Excellece for Small and Medium Contractors) project aims to support the information and knowledge management needs of the small and medium contractors in Hong Kong. This paper presents some snapshots on the SMILE-SMC project, and its conceptualized deliverables with some highlights of recent developments.
Das Langzeittragverhalten von Stützen aus Holz wird entscheidend von der Größe der Dauerlast und dem umgebenden Klima beeinflusst. Im Gegensatz zu Biegeträgern haben diese Effekte auch Einfluss auf den Grenzzustand der Tragfähigkeit und sind unmittelbar Gegenstand von Sicherheitsaspekten. Der Eurocode 5 beachtet dies überhaupt nicht, während in DIN 1052 (2004:08) Hinweise zur Bemessung gegeben sind. Da der Baustoff Holz infolge seines Wuchscharakters stark streuende Materialparameter aufweist, ist es kaum möglich, Experimente in ausreichendem Umfang durchzuführen. Gegen eine solche experimentelle Untersuchung sprechen auch die zu erwartenden hohen Kosten sowie die langandauernden Versuche unter Klimabeanspruchung. Aus diesem Grund wird auf virtuelle Versuche mit Hilfe des Computerprogramms ISOBEAM zurückgegriffen. Dazu sind allerdings abgesicherte Materialmodelle wichtig, die hier an Experimenten mit Klein- und Kleinstproben sowie mit Versuchkörpern baupraktisch relevanter Abmessungen angepasst wurden. Mit diesem verifizierten Modell war es möglich, gezielt Parameterstudien durchzuführen. Der Einfluss der Einbauholzfeuchte auf das hygrothermische Langzeittragverhalten wurde genauso untersucht wie der der Nutzungsklasse und der Querschnittsabmessungen. Die Ergebnisse der virtuellen Versuche dienten zum einen der Überprüfung der Vorgehensweise nach DIN 1052 (2004:08) und zum anderen zur Anpassung neuer Vorschläge zur Bemessung. Es wurde Wert darauf gelegt, dass sich die Vorschläge neuer Bemessungskonzepte an die bestehenden normativen Bemessungsregeln anlehnen. Zum einen wurde das Bemessungsverfahren nach Theorie II. Ordnung um eine weitere Ausmitte zur Berücksichtigung des Kriechens ergänzt, zum anderen wurde beim Ersatzstabverfahren der Beiwert entsprechend modifiziert. Alternativ ist es möglich, den Modifikationsbeiwert neu an die virtuellen Versuchsergebnisse anzupassen. Die Einbauholzfeuchte wurde ebenfalls über einen zusätzlichen Modifikationsfaktor berücksichtigt.
A large-scale computer modeling and simulation method is presented for environmental flows in urban area. Several GIS and CAD data were used for the preparation of shape model and an automatic mesh generation method based on Delaunay method was developed. Parallel finite element method based on domain decomposition method was employed for the numerical simulation of natural phenomena. The present method was applied to the simulation of flood flow and wind flow in urban area. The present method is shown to be a useful planning and design tool for the natural disasters and the change of environments.
Information and Communication Technologies (ITC) in education have been extensively discussed nowadays. In this e-learning scenario, the construction and use of environments that support teaching and learning is a reality. Therefore, for time and general resource savings it is crucial the access to hypermedia contents with great interactivity and with high reusability. Substantial efforts have been centered in the search for a metadata proposal (metadata is a generic term used to describe data that can be used to identify and to describe common characteristics among different documents) that can be standardized and is system independent for the so called learning objects.
The objective of the joint project 'Life cycle optimised system solutions for densified housing with massive wood technology', short form Basys, was the development and application of an open building system for sustainable construction in a virtual enterprise. Four partners coming from building economy and a university institute developed the building system in a comprehensive planning process. By applying massive wood technology, most requirements of densified housing can be met and individual buildings can be produced on demand.
The influence of vortex-induces vibrations on vertical tie rods has been proved as a determinant load factor in the lifetime-oriented dimensioning of arched steel bridges. Particularly, the welded connection plates between the suspenders and the arches often exhibit cracks induced primarily rods. In this context, the synchronization of the vortex-shedding to the rod motion in a critical wind velocity range, the so-called lock-in effect, is of essential interest.