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The problem of data interoperability is now very important. The formal description of construction systems and objects must base upon the modeling for the description of construction data domain. The XML-language was selected as a basis of a universal data format, ensuring natural hierarchy of objects, flexibility, good layout and expandability. The language, developed by the author, is called Building Object Description Extensible Markup Language (bodXML). The types of all objects used by data transfer should be definite beforehand with existing methods of programming. It limits the possibilities of IT in application of new types. But the recipient software must recognize the building objects even if the kind of object is unknown at the outset. The author offers a set of main topological and geometric properties being sufficient for recognition of main three-dimensional building constructions with flat edges. The tests of artificial neuron network have shown that the recognition of a kind of the constructions represented as a set of indicated parameters happens enough confidently.
Advances in construction data analysis techniques have provided useful tools to discover explicit knowledge on historical databases supporting project managers’ decision making. However, in many situations, historical data are extracted and preprocessed for knowledge discovery based on time-consuming and problem-specific data preparation solutions, which often results in inefficiencies and inconsistencies. To overcome the problem, we are working on the development of a new data fusion methodology, which is designed to provide timely and consistent access to historical data for efficient and effective management knowledge discovery. The methodology is intended to be a new bridge between historical databases and data analysis techniques, which shields project managers from complex data preparation solutions, and enables them to use discovered knowledge for decision making more conveniently. This paper briefly describes the motivation, the background and the initial results of the ongoing research.
All construction project are constrained by their schedules, budgets and specifications, and safety and environmental regulations. These constraints made construction management more complex and difficult. At the same time, many historical data that can support the decisions in the future are kept in construction enterprises,. To use the historical data effectively and efficiently, it is essential to apply the data warehouse and data mining technologies. This paper introduces a research which aims to develop a data warehouse system according to the requirements of construction enterprises and use data mining technology to learn useful information and knowledge from the data warehouse system. The design, the development and the application of this system are detailedly introduced in this paper.
This paper will present a number of technical aspects for one of the most elaborate instrumentation and data acquisition projects ever undertaken in Canada. Confederation Bridge, the longest bridge built over ice covered seawater has been equipped with the state of the art data acquistition devices and systems as well as data transfer networks. The Bridge has been providing a fixed surface connection between Prince Edward Island and Province of New Brunswick in Canada since its opening in 1997. The Bridge has a rather long design service life of 100 years. Because of its large size and long span length, its design is not covered by any existing codes or standards worldwide. The focus of the paper is to introduce the data acquisition, transfer, processing and management systems. The instrumentation and communications infrastructure and devices will be presented in some details along with the data processing and management systems and techniques. Teams of engineers and researchers use the collected data to verify the analysis and design assumptions and parameters as well as investigate the short-term and long-term behaviour and health of the Bridge. The collected data are also used in furthering research activities in the field of bridge engineering and in elevating our knowledge about behaviour, reliability and durability of such complex structures, their components and materials.
There are many construction projects in China and mass documents are exchanged among the multi-party, including the owner, the contractor and the engineer in the projects. Based on previous studies, an approach to the utilization of the exchanged documents is established by using data warehouse technology and a prototype system called EXPLYZER is developed. The approach and the prototype system are verified through their application in a construction project. It is concluded that the approach can support the decision-making in project management.
The development of a life cycle structured cooperation platform is described, which is based on an integrated process and goal-oriented project model. Furthermore the structure of a life cycle oriented object structure model and its implementation in the platform are documented. The complete conceptual model is described, which represents the basis of a lifecycle -oriented structuring of the planning object and supports the thematic classification of the object and project management data.
Business and engineering knowledge in AEC/FM is captured mainly implicitly in project and corporate document repositories. Even with the increasing integration of model-based systems with project information spaces, a large percentage of the information exchange will further on rely on isolated and rather poorly structured text documents. In this paper we propose an approach enabling the use of product model data as a primary source of engineering knowledge to support information externalisation from relevant construction documents, to provide for domain-specific information retrieval, and to help in re-organising and re-contextualising documents in accordance to the user’s discipline-specific tasks and information needs. Suggested is a retrieval and mining framework combining methods for analysing text documents, filtering product models and reasoning on Bayesian networks to explicitly represent the content of text repositories in personalisable semantic content networks. We describe the proposed basic network that can be realised on short-term using minimal product model information as well as various extensions towards a full-fledged added value integration of document-based and model-based information.
The evolution of data exchange and integration standards within the Architectural, Engineering and Construction industry is gradually making the long-held vision of computer-integratedconstruction a reality. The Industry Foundations Classes and CIMSteel Integration Standards are two such standards that have seen remarkable successes over the past few years. Despite successes, these standards support the exchange of product data more than they do process data, especially those processes that are loosely coupled with product models. This paper reports on on-going research to evaluate the adequacy of the IFC and CIS/2 standards to support process modeling in the steel supply chain. Some initial recommendations are made regarding enhancements to the data standards to better support processes.
This paper describes the concept, implementation and application of the Web-based Information System ‘Turtle’ for data monitoring, analysis, reporting and management in engineering projects. The system uses a generalised object-oriented approach for information modelling of physical state variables from measurements and simulations by sets of tensor objects and is implemented platform-independently as a Web application. This leads to a more flexible handling of measurement and simulation information in distributed and interdisciplinary engineering projects based on the concept of information sharing. The potential and advantages of Web-based information systems like ‘Turtle’ are described for one selected application example: a measurement programme dealing with the physical limnology of Lake Constance.
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.
The design of mobile IT systems, especially the design of wearable computer systems, is a complex task that requires computer science knowledge, such as that related to hardware configuration and software development, in addition to knowledge of the domain in which the system is intended to be used. Particularly in the AEC sector, it is necessary that the support from mobile information technology fit the work situation at hand. Ideally, the domain expert alone can adjust the wearable computer system to achieve this fit without having to consult IT experts. In this paper, we describe a model that helps in transferring existing design knowledge from non-AEC domains to new projects in the construction area. The base for this is a model and a methodology that describes the usage scenarios of said computer systems in an application-neutral and domain-independent way. Thus, the actual design information and experience will be transferable between different applications and domains.
Site superintendents performing project management tasks on construction sites need to access project documents and need to collect information that they observe while inspecting the site. Often, information that is observed on a construction site needs to be integrated into electronic documents or project control systems. In the future, we expect integrated product and process models to be the medium for storing and handling construction project management information. Even though mobile computing devices today are already capable of storing and handling such integrated product and process data models, the user interaction with such large and complex models is difficult and not adequately addressed in the existing research. In this paper, we introduce a system that supports project management tasks on construction sites effectively and efficiently by making integrated product and process models accessible. In order to effectively and efficiently enter or access information, site superintendents need visual representations of the project data that are flexible with respect to the level of detail, the decomposition structure, and the type of visual representation. Based on this understanding of the information and data collection needs, we developed the navigational model framework and the application Site Data Collection System (SiDaCoS), which implements that framework. The navigational model framework allows site superintendents to create customized representations of information contained in a product and process model that correspond to their data access and data collection needs on site.
A distributed geotechnical remote analysis of data system (Distributed G-RAD) can benefit both owners and contractors in providing better quality control and assurance on geotechnical projects. The Distributed G-RAD approach involves efficient data acquisition using PDAs with GPS capability, radio frequency identification (RFID) tags for labeling soil samples, laser scanning for measuring lift thickness and volumes of stockpiles and borrow pits. Spatial data storage is provided using a geographic information system (GIS). Portions of this system are already developed while other parts are still being considered. This paper also describes how RFID and laser scanning technologies can be used in the larger Distributed G-RAD system.
This paper describes monitoring of the in-valley discharge and underground water level at the place where the tunnel will be constructed and also, the numerical analysis for prediction applying the Tank Model and Linear Filter Method to calculate the prediction. The application of these analyses has actually allowed the change of underground water level to be grasped and more effective information system to be established by comparing the real-time monitoring data with the real-time calculation of prediction.
A vast growth of advanced information technology systems and tools nowadays is opening new ways to collect accurate as-built data. Since the turn of the millennium, new technology developments enable for the first time to gather accurate as-built information. Accurate as-built data will be of great usage to construction management as well as to designers and engineers. Given that most of the planned data are already digitally available, as-built data remains on paper forms. Information technology developments are opening new ways to digitize construction field data in order to develop intelligent tools for construction management allowing design engineers to update as-planned data. 3D Laser scanning, digital close-range photogrammetry and mobile computing are among the promising data collection technologies, which are auspicious to create new opportunities to develop advanced construction management and engineering tools. Primarily, accurate collected as-built data will be highly beneficial for the process of updating as-planned data.
With the speedy development of transportation of China, especially construction of many high-grade highways, some information technology successes have been achieved in the highway and bridge engineering, such as survey, design, construction and maintenance etc. In this paper, some applications about information technology in the highway engineering were introduced and some bridge professional software developed by RIOH (Research Institute Of Highways) in recent years was also introduced.
The AEC industry is conscious of the potentials arising from the usage of mobile computer systems to increase productivity by streamlining their business processes. Discussions are no longer on whether or not to use a mobile computer solution, but rather, on how it should be used. However, the implantation process of this new technology in Architecture, Engineering and Construction (AEC) and Facility Management (FM) practise is very slow and should be improved. One way to encourage and ease the usage of mobile computer systems in AEC is a more process-oriented usability and context appropriateness of mobile computer solutions. Context-sensitivity is defined as a crucial feature to be taken into account for further research in the area of Mobile Computing. Context-sensitive, mobile IT-solutions depend on two features: (1) flexible definitions of (construction) processes describing the context and (2) tools for flexible, multi-dimensional information management representing the context. It is on this premise that the authors propose the n-dimensional data management approach for the implementation of mobile computing solutions. In this paper, we analyse working scenarios in the AEC and FM sector, defining context aspects which are transformed and formalized as dimension hierarchies of the envisaged context model.
The paper describes further developments of the interactive evolutionary design concept relating to the emergence of mutually inclusive regions of high performance design solutions. These solutions are generated from cluster-oriented genetic algorithm (COGAs) output and relate to a number of objectives introduced during the preliminary design of military airframes. The data-mining of multi-objective COGA (moCOGA) output further defines these regions through the application of clustering algorithms, data reduction and variable attribute relevance analyses. A number of visual representations of the COGA output projected onto both variable and objective space are presented. The multi-objective output of the COGA is compared to output from a Strength Pareto Evolutionary Algorithm (SPEA-II) to illustrate the manner in which moCOGAs can generate good approximations to Pareto frontiers.
The optimization of continuous structures requires careful attention to discretization errors. Compared to ordinary low order formulation (h-elements) in conjunction with an adaptive mesh refinement in each optimization step, the use of high order finite elements (so called p-elements) has several advantages. However, compared to the h-method a higher order finite element analysis program poses higher demands from a software engineering point of view. In this article the basics of an object oriented higher order finite element system especially tailored to the use in structural optimization is presented. Besides the design of the system, aspects related to the employed implementation language Java are discussed.
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.
This paper describes a couple of new truss structures based on fractal geometry. One is the famous Sierpinski Gasket and another is a fractal triangle derived by means of applying a process forming leaves of a cedar tree using M. F. Barnsley’s contraction mapping theory. Therefore a pair of x-y coordinates of an arbitrary nodal point on the structures are generated easily if IFS(Iterated Function System) codes and a scale of them are specified. Structural members are defined similarly. Thus data for frame analysis can be generated automatically, which is significant if the objective structure has complex configuration. Next analytical results under vertical and wind loadings in Japanese Building Code are shown. Here members are assumed to be timber and to have cross section of 15cm×15cm. Finally authors conclude that geometrically new truss structures were developed and automatic data generation for frame analysis was attained using IFS. Analytical results show they contribute to saving material when compared it with King-post truss.
In this contribution the software design and implementation of an analysis server for the computation of failure probabilities in structural engineering is presented. The structures considered are described in terms of an equivalent Finite Element model, the stochastic properties, like e.g. the scatter of the material behavior or the incoming load, are represented using suitable random variables. Within the software framework, a Client-Server-Architecture has been implemented, employing the middleware CORBA for the communication between the distributed modules. The analysis server offers the possibility to compute failure probabilities for stochastically defined structures. Therefore, several different approximation (FORM, SORM) and simulation methods (Monte Carlo Simulation and Importance Sampling) have been implemented. This paper closes in showing several examples computed on the analysis server.
The paper gives a general overview and concerns with a specified set of computer-aided analysis modules for hybrid structures loaded by extreme excitations. All problems are solved by methods of linear, quadratic or nonlinear mathematical optimization, that leads to very effective and economic design solutions. All approaches are derived from general optimization problem that can be easily altered to conform to specific design tasks. Some advantages and possibilities of hybrid structural modeling (single or mixed model-supported) are discussed. The methods will be illustrated by an example structure and optimization schemes.
This paper describes a framework for computer-aided conceptual design of building structures that results from building architectural considerations. The central task that is carried out during conceptual design is the synthesis of the structural system. This paper proposes a methodology for the synthesis of structural solutions. Given the nature of architectural constraints, user-model interactivity is devised as the most suitable computer methodology for driving the structural synthesis process. Taking advantage of the hierarchical organization of the structural system, this research proposes a top-down approach for structural synthesis. Through hierarchical refinement, the approach lends itself to the synthesis of global and local structural solutions. The components required for implementing the proposed methodology are briefly described. The main components have been incorporated in a proof-of-concept prototype that is being tested and validated with actual buildings.
This paper introduces the current development of electronic catalogues of construction products. The common system architecture of Web-based electronic products catalogues are discussed, followed by a discussion on construction products information standardization and latest distributed-systems technologies for communicating construction products information. Finally, this paper presents an implementation of Web service in e-commerce systems to enable sharing of construction products information.
The construction management has been under pressure to reduce operating costs and to improve productivity using innovative information technologe (IT) solutions conformed to structural characteristics, site conditions and past experiences. Given the growing emphasis on effectiveness and efficiency in construction projects, there is an imminent need to develop a formal procedure to select the best IT application for each proposed construction project and research and development (R&D) project. As there are numerous factors that have to be considered in selecting appropriate IT in a given situation, decision-makers need to have multicriteria decision-making ability. To enable them to make the most appropriate decision in any situation, it is important that effective tools incorporating multicriteria decision-making techniques are available. In this paper, an Analytic Network Process (ANP) model is conducted for the selection of appropriate IT application for innovative construction management prior to construction or research. The paper concludes that the ANP is a viable and capable tool for conducting IT application selection in multicriteria decision-making environment.
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.
A simulation system has been developed as a computer aided design tool to evaluate the effect of proposed design on the thermal environment during the designing process. This system calculates outdoor surface temperatures in order to evaluate the thermal impact of a design factor in outdoor space. In this study, the previous heat balance simulation system was improved to predict the surface temperature of a proposed design using 3D-CAD. This system is able to input the complicated outdoor spatial forms efficiently and also to evaluate the surface temperature distribution from any viewpoint.
Current software solutions for real estate planning, construction and use, do not model the complete life cycle of a building. Well-integrated software tools exist for the planning and construction phases. Data integrity exists throughout the planning and construction phases, but problems occur at the transition to the use-phase. At this interface, the complete data set of planning and execution gets lost. Another software deficiency is that current software solutions don’t handle construction work and maintenance work equally. This is why a new software generation is demanded, which continuously covers the entire workflow process from the planning phase to the demolition of a building. New data concepts have to be developed, which allow bringing work items for construction together with work items for real estate use.
The paper presents the abstraction of process relevant information in order to enable the workflow management based on semantic data. It is shown for three examples, how the standards define the information needed to perform a certain planning activity. Abstraction of process relevant information is discussed for different granularities of the underlying processmodel. As one possible application ProMiSE is introduced, which uses process relevant data in individual tokens in a petri-net based process-model.
The contribution introduces an adaptable process model to meet the special requirements of the coordination of planning activities in AEC (Architecture, Engineering, Construction). The process model is based on the concept of Coloured Petri-Nets and uses metainformation to characterize process-relevant information and to enable process-control based on the actual results of the planning.
The presented work focuses on collaboration- experiences gathered with complex design and engineering projects, using the learning platform POLE- Europe. Within the POLE environment student-teams from different universities, disciplines and cultural backgrounds are assigned to real-world projects with clearly defined design - tasks, usually to be accomplished within one semester while working in a virtual environment for most of the time. The concept of POLE and the information and collaboration technology is described.
On Computer-Aided Instruction Tools for Teaching College Engineering Mechanics Related Courses
(2004)
In this research, questionnaires are designed to survey among teachers and students the current situation of applying Computer-Aided Instruction (CAI) tools to teaching and learning of college engineering mechanics related courses in Taiwan. The needs for CAI tools for teaching these mechanics related courses are investigated in the survey. Several prototypes of interactive multimedia tools are designed and implemented using information technologies. The applicability and effectiveness of these tools on assisting teaching of engineering mechanics related courses are discussed and evaluated. Moreover, a website for managing and sharing collected and developed CAI resources is constructed.
In the focus of the Bologna-contract of the European secretaries of education the universities are invited to aim a unification and comparability of certificates and to offer compatible and cooperative models of education. Among existing lectures in the Internet there will arise a new competition between the universities in netbased teaching and learning environments. For the use of distributed sources of information and for the possibility to generate free configurable sequences of education modules you need management systems which are able to handle different formats of documents and to assemble it to consistent and valid lessons. Beside elementar viewing-functions, fusion of information also administrative tasks are needed, e.g. automated efficiency controls, adaptive learning surroundings. This paper attends to three aspects: - netbased teaching and learning in the area of the instruction of civil engineers - netbased information assembling and fusion of knowledge bases to higher level documents - netbased learning with international coordinated projects
In the field of Civil Engineering, the content of reinforcement concrete design course (RC course) has complicated design procedures and many difficult specifications to recognize, so most of the students regard the RC course a tough course, and teachers very often find the class time insufficient. Also, teachers of the RC course usually spend a lot of time in organizing the examinations for handling tedious calculations and complicated logical reasoning. Furthermore, correcting examination papers with partial scoring takes even more time of the teacher’s. Therefore, the objective of this research is to design and develop a partial scoring assessment system to meet the needs in engineering design courses, such as the RC course. This assessment system can generate test items with variable parameters. It also supports inference diagnosis on the examinee’s misconceptions and gives partial scores in grading the examination. In this research, the example test subject is the analysis of rectangular reinforced concrete beam with single layer steel bars.
PKPM series CAD software is an integrated CAD system for building design, which integrated the following parts: architectural design, structural design, building service design and statistic analysis of quantity and budget. These four parts share the same database with high efficiency. Over 80% of design corporation in China are using PKPM series CAD software. The detailed information and some key modules of PKPM series CAD software are mainly introduced in this paper.
The main objective of the present work is to establish a link between the scientific fields of engineering seismology and structural engineering. Substantially it deals with the application and enhancements of methods coming from engineering seismology as well as their junctions to the fields of structural engineering respectively earthquake engineering. Based on real occurred earthquake damage inflicted to multistoried reinforced-concrete frame buildings, the influence of local site effects on the grade of structural damage is worked out. This relying on comprehensive investigations conducted during numerous field missions of German TaskForce after damaging earthquakes in Venezuela and Türkiye. Instrumental investigations on both the structure and its local subsoil in order to identify the damage potential of seismic ground motion take center stage of the thesis. Thereby it is examined whether or not an estimated seismic demand representative in amplitude level and frequency characteristics is able to cause structural damage considering the vulnerability of the structure itself as well as the local site and subsoil conditions. Investigations are concentrated on selected RC frame structures with or without masonry infill walls.
Das Pionierlager Artek. Realität und Utopie in der sowjetischen Architektur der sechziger Jahre
(2004)
Das in den 1960er Jahren gebaute, internationale Pionierlager Artek an der Schwarzmeerküste der Krim war das größte Kinderferienlager der Sowjetunion. Als Prestigeobjekt und Vorzeigeinstitution steht Artek für die Architektur der Ära Chruschtschows, des sogenannten „Tauwetters“. Anhand des dialektischen Prinzips von Präsentation und Repräsentation werden vier Aspekte des Lagers untersucht: Architektur, städtebauliche Struktur, Erziehung und Gesamtkunstwerk. Durch dieses Prinzip, das sich aus der Widerspiegelungstheorie ableiten läßt, kann jedem dieser Aspekte die Kongruenz zur ideologischen Zielsetzung und damit die gestalterische Kohärenz der Ferienanlage nachgewiesen werden. In Abgrenzung zur modernen Architektur der westlichen Industrienationen wurde in Artek eine spezifisch „sozialistische Moderne“ für die Sowjetunion und die übrigen Staaten des Ostblocks definiert. Diese war eng verbunden mit dem Städtebau auf der Grundlage von Mikrorayons und der Ausgestaltung von Stadt- und Subzentren. Artek ist mit seiner idealtypischen, architektonischen und städtebaulichen Gestaltung ein Denkmal für die frühere Sowjetunion.
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.
Beside the standard calculation programs for civil engineering buildings mathematical programs have been lately established for the solution of differential equations for the analysis of mechanical and static systems. Programs like Maple, Matlab, MathCAD and Mathematica are popular in this field. To the knowledge of the authors, the widest application functionality offers the program Maple. Its advantages are, e.g. the alternatively symbolic or numerical solution of differential equation systems, the easy handling of parameter studies, the immediate visualization of results, the definition of macros for selected calculation steps and their export in other computer languages and, not least, the automatically generated, very clear documentation of the matehematical calculus.
Recent research shows that current learning strategies in construction industry have not been effective in implementing lean principles in construction. With that in mind the researchers set to investigate an alternative learning strategy in order to promote learning at the international level. A web-based environment, was developed for this project with the intent of promoting learning and knowledge exchange on the theory and practice of "process transparency" across different countries.
Die Energieversorgung auf der Erde wird zukünftig zu einem Problem. Bedingt ist dies durch eine fortschreitende Verknappung der natürlichen Ressourcen, wie Kohle, Gas und Öl sowie einer Zunahme der CO2-Konzentration und anderer Schadstoffe in der Atmosphäre. Regenerative Energiequellen müssen genutzt werden, um den steigenden Energiebedarf zu sichern. Eine interessante Möglichkeit zur Nutzung der Solarenergie stellt das Aufwindkraftwerk dar. Das Aufwindkraftwerk besteht aus einem Kamin, um den ein Glasdachkollektor auf dem Erdboden angeordnet ist. Am Fuße des Kamins befinden sich Turbinen und Generatoren. Die einfallende Solarenergie wird hauptsächlich über die Wechselwirkung mit dem Erdreich in thermische Energie, in kinetische Energie, in Rotationsenergie und in elektrische Energie umgewandelt. Das Ziel der Arbeit bestand in der physikalisch-mathematischen Modellierung, der genaueren Erkennung des Wirkprinzips und der Diskussion der Anlagenparameter Leistung und Wirkungsgrad. Im Rahmen dieser Aufgabe wurden dazu stationäre und instationäre Computational Fluid Dynamic (CFD) Modelle und stationäre und instationäre vereinfachte Modelle entwickelt, diskutiert und miteinander verglichen. Grundlegend neue Erkenntnisse wurden bei den Verläufen der Temperaturen im Kollektor, insbesondere der Erdoberflächentemperatur erreicht. Parameteranpassungen im Wärmeübergangsmodell und Widerstandsmodell führten für vier ausgewählte, stationäre Sonnenenergien auf eine gute Übereinstimmung zwischen den Ergebnissen (Temperaturhub, Druckentnahme, Leistung und Wirkungsgrad) des stationären, hybriden Modells und des stationären CFD-Modells. Weiterhin stimmen die lokalen Größen Wärmeübergangskoeffizient, Erdoberflächentemperatur, Lufttemperatur und Glasdachtemperatur gut zwischen den Modellen überein. Mit dem CFD Modell wurden der Prototyp und 3 Großkraftwerke berechnet. Mit dem entwickelten instationären FDM-Modell wurden erstmalig numerische Langzeitsimulationen (1 Jahr) durchgeführt. Zur Überprüfung des Modells wurden die Ergebnisse mit Messwerten aus Manzanares verglichen, wobei eine gute Übereinstimmung erreicht werden konnte. Das Verständnis für die stattfindenden thermodynamischen und strömungsmechanischen Prozesse in einem Aufwindkraftwerk konnte durch die Arbeit maßgeblich verbessert werden.
Entscheidungshilfen für die Planung von Anlagen zum naßmechanischen Recycling von Betonrestmassen
(2004)
Trotz der weiten Verbreitung erfolgt die Planung der Restbetonrecyclinganlagen immer noch durch learnig-by-doing, da verfahrenstechnisches Grundlagenwissen nicht vorliegt. Wer an verantwortlicher Stelle die Investition in eine neue oder in die Verbesserung einer bestehenden Restbetonrecyclinganlage beurteilen soll, steht vor einer komplexen Entscheidung, die unter Berücksichtigung unterschiedlichster Kriterien getroffen werden muss. In der Praxis besteht hinsichtlich der Qualitätssicherung der Recyclingprodukte, der Ablagerungen der noch reaktiven Zementpartikel, der Bemessung der eingesetzten Maschinen, der praktikablen Handhabung hinsichtlich einiger Detailprobleme sowie der Anordnung der verfahrenstechnischen Komponenten in Bezug zur Geländeoberkante weitgehend Unklarheit. Das allgemeine Verlangen nach einer durchdachten Entscheidungshilfe und die Notwendigkeit, zu einem sachlich begründeten Urteil zu kommen, macht Entscheidungshilfen für die Planung von Restbetonrecyclinganlagen erforderlich. Insbesondere da Fehlentscheidungen nicht nur mit großem Aufwand rückgängig gemacht werden können. Hierfür wurden 18 maßgebliche Entscheidungskriterien entwickelt. Diese Entscheidungskriterien wurden im Rahmen der Nutzwertanalyse als Projektziele entwickelt. Die erarbeiteten Kriterien einteilen: - Kriterien zur Qualitätssicherung bei der Verwendung der Recyclingprodukte Für die Wiederverwendung der Recyclingprodukte Restwasser und Restbetonzu- schlag sind im technischen Regelwerk Verfahrensweisen vorgechrieben. Hinsichtlich der Prozesse bei der Wiederverwendung konnten deutliche Ver- besserungspotentiale aufgezeigt werden. Besonders die Anwendung von online- Dichtemessverfahren im Vergleich zur Aräometermessung verbessert die Len- kungsprozesse zur Qualitätssicherung. Aber auch die weitere Klassierung oder das getrennte Lagern und Dosieren des Restbetonzuschlags im Vergleich zu der im technischen Regelwerk vorgeschriebenen Verfahrensweise des volumetrischen Abschätzens bringt Verbesserungspotential. - Kriterien zur Minimierung von Ablagerungen Noch reaktive Zementpartikel kommen zeitweise permanent mit Anlagen- komponenten, Leitungen und Beckeninnenflächen der Recyclinganlage in Be- rührung. Ablagerungen von Zementpartikeln, die den Betrieb der Anlage be- hindern, verschlechtern oder sogar verhindern, sind unvermeidbar. Aller- dings kann, wie im Rahmen dieser Arbeit gezeigt wurde, eine Minimierung der Ablagerungen durch geeignete Maßnahmen herbeigeführt werden. Die Ablage- rungen im Suspensionsbeckenlassen sich durch den Zustand der homogenen Suspension sowie durch das Strömungsbild angepasste Formgebung minimieren. Durch die geeignete Gefällewahl und vor allem durch die korrekte Wahl der Pumpenart können die Ablagerungen in Leitungen minimiert werden. - Kriterien zur Bemessung der verfahrenstechnischen Apparate Die Auslegung der Recyclinganlage hinsichtlich der Auswaschleistung, der Rührerleistung und der Größe des Suspendierraumes erfolgt bisher anhand von praktischen Erfahrungswerten. In dieser Arbeit wurde für die Auswasch- leistung ein allgemeingültiges Berechnungsmodel hergeleitet. Darüber hinaus wurde gezeigt, dass die Rührerleistung für das Suspendieren von Restwasser berechnet werden kann. Die Größe des Suspendierraumes kann unter Be- rücksichtigung der zu- und abfließenden Materialströme berechnet werden. Das Trennverhalten des mechanischen Klassierers wurde im Rahmen einer Ver- suchsreihe mit folgenden Ergebnissen ermittelt: a. Die Klassierdurchsätze steigen mit größer werdendem Entleerdurchsatz. ufgrund der Pufferwirkung des mechanischen Klassierers, bei der die diskontinuierlich in den Aufgabetrichter gefüllte Restbetontrübe (Ent- leeren) in einem kontinuerlichen Prozess (Klassieren) durch den Trog gefördert wird, nähert sich der Klassierdurchsatz asymtotisch einem Grenzwert an. b. Das Masseausbringen rbz wird signifikant vom Klassierdurchsatz und weniger vom Entleerdurchsatz beeinflusst. c. Die Korngrößenverteilung des Restbetons, des Restbetonzuschlags und des Restwassers belegen anschaulich den erreichten Trenneffekt. d. Die Trennkorngröße steigt mit zunehmendem Klassierdurchsatz an. Diese Tendenz ist allerdings nur bei Betrachtung des "nassen" Klassier- durchsatzes signifikant erkennbar. Bei Betrachtung des "trockenen" Durchsatzes ergibt sich keine Abhängigkeit. Die Ursache hierfür ist, dass in den "nassen" Durchsatz Prozesse wie Trübeagitation und Feinkorn- konzentration indirekt eingehen. e. Der Fehlkornanteil < 125 µm im Restbetonzuschlag steigt ebenfalls mit "nassem" Klassiersatz an. f. Im Unterschied dazu bestehen für den Fehlkornanteil > 125 µm im Rest- wasser signifikante Abhängigkeiten zu Entleer- und Klassierdurchsätzen. Ursache ist der tote Fluss. - Kriterien zur Praktikabilität des Anlagenberiebes - Interdependenzen zwischen Anlagenkomponenten
Das Ziel der vorliegenden Arbeit besteht in der Entwicklung einer Strategie zur physikalisch nichtlinearen Analyse von Aussteifungssystemen. Der Anwendungsschwerpunkt umfasst neben dem traditionellen Aufgabenumfang zur Analyse neu zu errichtender Tragwerke gleichzeitig auch Planungsaufgaben, die mit Umbau- und Sanierungsmaßnahmen verbunden sind. Veränderungen, die sich während der Nutzungsgeschichte oder im Revitalisierungsprozess ergeben, werden in den Berechnungsmodellen berücksichtigt. In vielen Fällen ist es aus planerischer Sicht zweckmäßig, die Nichtlinearität des Materialverhaltens zur Erschließung von Tragreserven in den normativen Nachweiskonzepten mit einzubeziehen. Der damit verbundene numerische Aufwand wird durch die Verwendung separater Modelle zur Erfassung des Querschnitts- und des Systemtragverhaltens begrenzt, ohne die Komplexität der Aufgabenstellung zu reduzieren. Aus detaillierten Querschnittsuntersuchungen der Tragwände werden integrale Materialbeziehungen abgeleitet, welche die Grundlage für die nichtlineare Tragwerksanalyse darstellen. Die Modellbildung gegliederter Aussteifungswände basiert auf deren Zerlegung in ebene finite Stabsegmente, die sich durch die Diskretisierung in Längs- und in Querrichtung ergeben. Zusätzlich zu den an den Stabenden angreifenden Normalkräften, Querkräften und Biegemomenten werden an den Elementlängsrändern Schubbeanspruchungen erfasst. Die physikalische Nichtlinearität wird durch die Einbeziehung integraler Materialbeziehungen an den Segmenträndern berücksichtigt. Die numerische Umsetzung erfolgt mit Methoden der mathematischen Optimierung. Die Leistungsfähigkeit der Berechnungsstrategie wird exemplarisch anhand von Untersuchungen an Aussteifungssystemen in Großtafelbauweise nachgewiesen.
Neben dem Schwerpunkt der Verflüssigung werden auch Zusatzmittel benötigt, die extrem lange Verarbeitbarkeitszeiten des Betons ermöglichen. Eine neue Wirkungsgruppe, durch die Verarbeitbarkeitszeiten von über 90 Stunden er-reicht werden können, sind Langzeitverzögerer (LVZ) auf der Basis von Phosphonsäure. In systematischen Versuchen wurden grundlegende Erkenntnisse über die Wirkungsmechanismen von LVZ auf die Hydratation gewonnen. Es hat sich gezeigt, dass die verzögernde Wirkung von LVZ auf die Bildung von schwer löslichem Calciumphosphonat zurückzuführen ist, welches die Partikeloberflächen žabdichtetœ. Vom Angebot an gelöstem Calcium hängt es ab, ob sich das žabdichtendeœ Calciumphosphonat direkt bildet oder ob durch den Calciumanspruch des LVZ eine kurzzeitig verstärkte Hydratation reaktiver Klin-kerphasen hervorgerufen wird. Sulfatoptimierte Zemente wiesen aufgrund der Anteile an Sulfatträger genüge! nd Calcium-Ionen für eine sofortige Bildung von Calciumphosphonat auf. In Verbindung mit der Bildung von primärem Ettringit bildet die Sulfatträgeroptimierung die Grundlage für die erwünschte Wirkungsweise des Zusatzmittels.