TY - CHAP A1 - Rueppel, Uwe A1 - Meißner, Udo F. A1 - Greb, Steffen T1 - A Petri Net based Method for Distributed Process Modelling in Structural Engineering N2 - 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. KW - Ingenieurbau KW - Verteiltes System KW - Planungsprozess KW - Modellierung KW - Petri-Netz Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111215-1338 ER - TY - CHAP A1 - Rueppel, Uwe A1 - Klauer, Thomas T1 - Internet-based Workflow-Management for Civil Engineering Projects N2 - 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. ... KW - Baubetrieb KW - Computerunterstütztes Verfahren KW - Prozessmanagement KW - Internet Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111215-1647 ER - TY - CHAP A1 - Rueppel, Uwe A1 - Gutzke, Thomas T1 - Groundwater-Monitoring based on dynamic co-operative eGovernment-Processes N2 - As a result of the pilot-project “Grundwasser-Online” the supervision and the active controlling of large monitoring- and catchment-areas are realised by a co-operative integration of all related institutions, a synchronisation-process to combine all distributed data into one central server database, and a high-level eGovernment-Service to provide evaluated information over the internet. Based on this software system the local authorities are able to supervise the groundwater-levels and to find adequate decisions, which finally result in official permissions for the usage of groundwater-reservoirs by the water supply companies. KW - Baubetrieb KW - Computerunterstütztes Verfahren KW - Grundwasser KW - Monitorüberwachung Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111215-1611 ER - TY - CHAP A1 - Rudnicki, Andrzej A1 - Wainaina, Simon A1 - Hempel, Lorenz T1 - Optimization of street lane usage N2 - This paper contributes to discussion on introduction of exclusive lane for public transport. Analyses of results have been presented on effectiveness of usage of a 4 - lane and a 6 - lane street with and without an exclusive lane for buses. Two basic sub-models have been applied: - the binary logit model for modal split estimation; it takes into consideration the relation of travel time performed by private cars to public transport, - the polynomial model for predicting link impedance; the real travel time is affected by relation of traffic volume to the design capacity The parameters of both sub-models have been calibrated for the Polish conditions. The relationships are determined between number of person trips and traffic volume of buses/private cars, market share of public transport in motorised trips, average travel time lost in trips, average operation cost. An iterative technique addresses a feedback between the modal split and traffic volumes. Numerical calculations by use of EXCEL and MATLAB were carried out. Typical values of corridor length, occupancy rate of passenger car, design capacity of the bus, access and egress time to and from the parking/bus-stop in urban areas were applied. On the basis of the estimated results, the marginal parameter values: number of people carried at which separated lane for buses is most effective , traffic volume for private cars, traffic volume for buses and share of public transport in trips have been got by consideration of the average travel time lost and operational cost as criteria: Then introduction of street lanes with and without exclusive lane for buses in relation to number of person trips can be optimized. KW - Öffentlicher Personennahverkehr KW - Busspur KW - Transportproblem Y1 - 2003 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111215-3539 ER - TY - CHAP A1 - Romberg, Richard A1 - Treeck, Christioph van A1 - Niggl, Andreas T1 - Numerische Simulation auf Basis des IFC-Bauwerksmodells N2 - Dieser Beitrag zeigt einen Ansatz, verschiedene numerische Simulationsaufgaben auf ein gemeinsames und durchgängig dreidimensionales Geometriemodell zu gründen. Hinsichtlich der physikalischen Modelle reicht die Bandbreite der hier vorgestellten Anwendungen von einer ganzheitlichen Betrachtung der Gebäudestruktur in der Strukturmechanik über die raumbezogene, hochauflösende Modellierung konvektiver Raumluftströmungen bis hin zur Simulation des thermischen Verhaltens eines ganzen Gebäudes. Das jeweils zugrunde liegende numerische Verfahren setzt dabei auf einem stets gleichen Zwischenmodell der realen Geometrie der Struktur auf, ohne dabei vereinfachende dimensionsreduzierte Modelle anzuwenden. Nachfolgende Werkzeuge werden derzeit im Rahmen mehrerer Forschungsprojekte an dieses Geometriemodell angeschlossen: Die p-Version der FEM für die Strukturanalyse, ein sog. Mehrzonenmodell für die thermische Gebäudesimulation sowie ein auf dem sog. hybriden thermischen Gitter-Boltzmann-Verfahren (hTLBE) basierender Strömungssimulationscode. Der Import geometrischer wie semantischer Daten eines Bauwerks in das Simulations-Framework erfolgt nach dem Produktmodell der Industry Foundation Classes (IFC), das sich als Quasi-Standard für den Datenaustausch im Bauwesen etabliert hat. Das IFC-Schema dient dabei nicht als Modell zur internen Speicherung von Daten, sondern wird hier als Schnittstelle zur Anbindung unterschiedlicher Programme wie CAD-Anwendungen für Architekten oder anderen Modellierungstools verwendet. Die Implementierung dieser Schnittstelle erfolgt unter Verwendung einer sog. Toolbox, die das Objektschema der IFC auf ein Klassenmodell einer objektorientierten Programmiersprache abbildet und Werkzeuge für den effizienten Objektzugriff zur Verfügung stellt. Damit werden Grenzen zwischen spezialisierten Softwarepaketen, die maßgeschneidert auf spezielle Erfordernisse ausgerichtet sind, aufgebrochen und der Datenaustausch über die Anwendungsgrenzen hinaus unterstützt. Dies ist eine Konsequenz aus einer dem Wunsch nach vernetzt-kooperativen Planung von Bauwerken.... KW - Bauwerk KW - Dreidimensionales Modell KW - Datenaustausch Y1 - 2003 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111215-3521 ER - TY - CHAP A1 - Rodriguez, Adhamina T1 - Information Exchange in The Construction Industry : The Particular Case of Green Buildings N2 - Construction is a conservative industry that over the last twenty ye ars has experienced drastic changes in the way that interdisciplinary teams interact to design and execute a project. In this article we offer a general overview of how the main participants cooperate in the different phases of a construction project, and which are some of the main areas for communication improvement. We also explore the communication tools used in the exchange of information, and identify the main causes of information breakdown. The general framework of this study is of application to both standard and green projects. At the end of the article we discuss the peculiarities of green buildings. Our goal is to offer a series of industry insights derived from the perspective of a general contractor aimed at identifying the areas where contributions in computing and information exchange could have a greater impact on the successful completion of a project. KW - Architektur KW - Verteiltes System KW - Informationsaustausch Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111215-1757 ER - TY - CHAP A1 - Robert-Nicoud, Yvan A1 - Raphael, Benny A1 - Smith, Ian F. C. T1 - Using entropy to maximize the usefulness of data collection N2 - This paper presents a generic methodology for measurement system configuration when the goal is to identify behaviour models that reasonably explain observations. For such tasks, the best measurement system provides maximum separation between candidate models. In this work, the degree of separation between models is measured using Shannon’s Entropy Function. The location and type of measurement devices are chosen such that the entropy of candidate models is greatest. This methodology is tested on a laboratory structure and, to demonstrate generality, an existing fresh water supply network in a city in Switzerland. In both cases, the methodology suggests an appropriate set of sensors for identifying the state of the system. KW - Mobile Computing KW - Funknetz KW - Entropie Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111215-1177 ER - TY - CHAP A1 - Rickelt, Christian A1 - Reese, Stefanie T1 - A model adaptive and model reduction strategy combining system-theoretical methods and substructuring N2 - This paper focuses on a new three-level discretisation strategy which enables the transition between continuum/structural (I) and structural/black box modelling (II). The transition (I) is realised by means of a model adaptive concept based on an innovative finite element technology. For transition (II) we apply the truncated balanced realisation method (TBR). The latter represents an established system theoretical model reduction technique which is here combined with a novel substructure technique. The approach provides a modular concept to facilitate the computational analysis of complex structures. The final goal is to apply the strategy to life time estimation. KW - Adaptives System Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111215-1516 ER - TY - CHAP A1 - Richter, Katharina A1 - Donath, Dirk T1 - Computernetzwerke als Integrations- und Planungswerkzeuge N2 - Die digitale Unterstützung der Planungsprozesse ist ein aktueller Forschungs- und Arbeitsschwerpunkt der Professur Informatik in der Architektur (InfAR) und der Juniorprofessur Architekturinformatik der Fakultät Architektur an der Bauhaus-Universität Weimar. Verankert in dem DFG Sonderforschungsbereich 524 'Werkzeuge und Konstruktionen für die Revitalisierung von Bauwerken' entstehen Konzepte und Prototypen für eine fachlich orientierte Planungsunterstützung. Vor dem Hintergrund zunehmender Komplexität der Bauaufgaben steigt die Zahl der an einem Projekt Beteiligten und deren örtliche Verteilung. Planungsvorhaben sind dadurch verstärkt gekennzeichnet durch einen erhöhten Aufwand in Planungskoordination, -organisation und Kommunikation. Globale Computernetzwerke - das Internet - bieten Potential zur Lösung dieser Aufgaben. Vor diesem Hintergrund sind in der letzten Zeit eine Vielzahl von Systemen die sich unterschiedlichsten Techniken bedienen entstanden. Allen diesen Systemen gemein ist die Vision der Optimierung des Planungsprozesses, Vereinfachung der Kommunikation und die Verbesserung des Zeitmanagements. Aus Sicht der Architekten stellt sich die Situation derzeit als ambivalent dar: Einerseits sind die Ideen, die den 'IBPM - Systemen' zugrunde liegen, nachvollziehbar und offerieren einen sofort messbaren Nutzen. Auf der anderen Seite stehen vielfältige Aspekte, die den uneingeschränkten Einsatz dieser Systeme augenscheinlich verhindern. Ein Focus bei der Beleuchtung dieser Schwachstellen liegt auf dem omnipräsentem Problem der mangelhaften Unterstützung graphischer Daten als die bedeutendste Informationsgrundlage im Planungsprozess. Aus der konkreten, fachspezifischen Analyse des Planungsprozesses, der Untersuchung potentieller Entwicklungsmöglichkeiten vorhandener Systeme und der intensiven Auseinandersetzung mit neuen Internettechnologien entstand im Zuge dieses Forschungsschwerpunktes eine architekturpraxisnahe Applikation, die das Internet weg vom reinen Präsentationsmedium, über ein reines Kommunikationsmittel hinaus, hin zu einer leistungsfähigen interaktiven Schnittstelle für alle am Entwurfs- und Planungsprozess Beteiligten erschließt. KW - Architektur KW - Planung KW - Netzwerk KW - Kooperatives Informationssystem KW - Internet Y1 - 2003 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111215-93 ER - TY - CHAP A1 - Ren, Aizhu A1 - Shi, Jianyong A1 - Xu, Yun T1 - Modeling of Buildings and Roads for Urban Applications based on 2D Digital Maps N2 - Three-dimensional models of urban objects play an important role in the urban applications such as urban planning, environmental concerning, or urban disaster mitigations. While the modeling of urban objects is time consuming and storage costing. This paper presents solutions for this. Buildings with regular shapes and plane roofs are constructed into computer models by identifying of graphic elements from the digital maps of urban area to get building base plane and building heights. Buildings with irregular shapes and non-plane roofs are constructed into computer models by employment of a specific system developed by the authors. Road objects and topologies are constructed into computer models by employment of specific algorithms. The solutions presented in this paper has been used in the development of urban disaster mitigation system for Shantou, China. KW - Architektur KW - Verteiltes System KW - Geoinformationssystem Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111215-1791 ER -