Geometry extraction for high resolution building energy modelling applications from Point Cloud data : a case study of a factory facility
Garwood, Tom Lloyd and Hughes, Ben Richard and O'Connor, Dominic and Calautit, John K and Oates, Michael R and Hodgson, Thomas (2017) Geometry extraction for high resolution building energy modelling applications from Point Cloud data : a case study of a factory facility. Energy Procedia, 142. pp. 1805-1810. ISSN 1876-6102 (https://doi.org/10.1016/j.egypro.2017.12.567)
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Abstract
The industrial sector accounts for 17% of end-use energy in the UK, and 54% globally. Therefore, there is substantial scope for simulating and assessing potential energy retrofit options for industrial buildings. Building Energy Modelling (BEM) applied to industrial buildings poses a complex but important opportunity for reducing global energy demand, due to years of renovation and expansion. Large and complex industrial buildings make modelling existing geometry for BEM difficult and time consuming. This paper presents a potential solution for quickly capturing and processing as-built geometry of a factory to be utilized in BEM. Laser scans were captured from the interior of an industrial facility to produce a Point Cloud. The existing capabilities of a Point Cloud processing software were assessed to identify the potential development opportunities to automate the conversion of Point Clouds to building geometry for BEM applications. In conclusion, scope exists for increasing the speed of 3D geometry creation of an existing industrial building for application in BEM and subsequent thermal simulation.
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Item type: Article ID code: 67884 Dates: DateEvent31 December 2017Published30 May 2017AcceptedSubjects: Technology > Mechanical engineering and machinery
Technology > Building constructionDepartment: Faculty of Engineering > Mechanical and Aerospace Engineering Depositing user: Pure Administrator Date deposited: 16 May 2019 11:26 Last modified: 11 Nov 2024 12:18 Related URLs: URI: https://strathprints.strath.ac.uk/id/eprint/67884