Computer visualisation support for buildability

Ganah, A A M (2003) Computer visualisation support for buildability. PhD thesis, Loughborough University, UK.

Abstract

The construction industry has a reputation for low productivity, waste, low use of new technologies, and poor quality (Egan, 1998; Wakefield & Damrienant, 1999). It is estimated that up to 30% of construction is rework, and recognised that site teams spend too much time and effort making designs work in practice (Egan, 1998). The aim of the research project was to develop a visualisation and communication environment that would assist design teams in communicating design details that may be problematic for construction teams. The investigation was based on the need for a tool that facilitates detail design information communication. The VISCON (computer visualisation support for buildability) environment provides support for general information sharing in the context of a collaborative building project. This prototype is Web based and can be accessed from any location. This will allow for construction information to be readily communicated and shared between head offices and construction sites and any other locations to provide better visualisation of design details. Three scenarios were developed as case studies for demonstration purposes based on real projects. These case studies used a paper factory, a bay barrage building and a swimming pool recently constructed at Loughborough University. In the development of the case studies, 3D models were produced using components from the selected prototype buildings that may inherently be difficult to assemble. The VISCON prototype demonstrates the various functionalities of the system in creating intricate design details that can be animated or interacted with in real time. The main achievements of the research are: The review of buildability problems and their causes during the construction stage of a facility; The development of an architecture for a computer visualisation tool for buildability (VISCON); Implementation and validation of the proposed system (VISCON) through the use of a number of case studies. The system was found to be useful and demonstrated that computer visualisation tools provide considerable potential in improving clarity of information and also a new way of visualising and solving design problems that arise during the construction stage of a project. It also demonstrated the ease of use of the proposed system, and its efficiency and application to the construction industry. The research concludes that the use of computer visualisation can improve the construction project delivery process by providing guidance on how components are assembled together and how buildability problems can be solved during the construction stage. Furthermore, the use of effective communication tools will improve collaboration between construction and design practitioners.

Item Type: Thesis (Doctoral)
Uncontrolled Keywords: architect; barrage; buildability; collaboration; communication; components; construction project; construction site; construction sites; construction stage; construction team; efficiency; productivity; university; validation; visualisation; waste
Index terms: buildability, construction project delivery, prototype, functionality, construction site, rework, design team, practitioner, validation, collaboration, construction project, visualization, case study, new technology, efficiency, productivity, 3D model, construction team, architect, information sharing, investigation, real time, construction industry, implementation
Subjects: data collection methods, computational design, profession, practitioner, work location, operations management, design features, modelling and simulation, professional practice, innovation and technology management, contractual arrangements, project delivery, design practice, management, performance management, data exchange, production management, professional development, project controls, design efficiency, industry analysis
Topics: Procurement, Engineering Principles, Project Management, Quality Management, Roles and Professions, Business Strategy, Information Management, Research Practice, Time Control, Organizational Design, Site Management, Digital Applications, Design Practice
Descriptive scope: 5 PCTEA

N.B. Descriptive scope is a count of how many of the five facets of empirical research are indicated by the words used in title, abstract and keywords. It is not intended as a judgement on the research; merely a count of the kind of word we would expect to indicate Phenomenon, Concepts, Theoretical framing, Empirical techniques, Analytical techniques. If all five are present, then a code of “5 PCTEA” will indicate this. If you feel the coding for this record is questionable, we welcome discussion around the terms we matched or the way we categorized them. The facet you would expect may not be coded, or a facet may be coded inappropriately. This can also bear on a larger question, of which facets should be treated as defining in construction management research. Please get in touch, and we will look at it. More details here