Providakis, Stylianos (2021). An integrated information modelling system for assessing urban geohazard risk. University of Birmingham. Ph.D.
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Providakis2021PhD.pdf
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Abstract
Over the years, the continuous expansion of cities has drawn the attention of engineers and researchers to the need to support sustainable planning. As cities expand, they would be more prone to geohazard risk, which could cause severe costs. Therefore, a system to provide information of geohazard risk could support sustainable urban planning. A suggested application is proposed in this thesis to assess settlement risk caused by tunnelling.
A framework methodology is proposed to aid the assessment of urban geohazard risk. The settlement risk assessment analyses and the associated building damage and cost assessment form the structure of the framework. Building Information Modelling (BIM) provided and supported the information for the data processes used in the whole analysis and the 3D geology-tunnel-building model creation.
The resulting risk assessments are presented using 3D visualisations. From these visualisations, further investigations could be focused on the ‘higher-risk’ outcomes presented. This forms a preliminary assessment a tool.
The final oucome of this research is an integrated information system based on advanced analysis and 3D modelling tools for urban geohazard risk. The research also provides information which contributes to knowledge and understanding for relevant associated problems and supports sustainable decision-making.
Type of Work: | Thesis (Doctorates > Ph.D.) | |||||||||
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Award Type: | Doctorates > Ph.D. | |||||||||
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Licence: | All rights reserved | |||||||||
College/Faculty: | Colleges (2008 onwards) > College of Engineering & Physical Sciences | |||||||||
School or Department: | School of Engineering, Department of Civil Engineering | |||||||||
Funders: | Other | |||||||||
Other Funders: | School of Engineering, University of Birmingham | |||||||||
Subjects: | Q Science > QE Geology T Technology > TA Engineering (General). Civil engineering (General) |
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URI: | http://etheses.bham.ac.uk/id/eprint/11703 |
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