Hygrothermal simulation of building performance: data for Scottish masonry materials

Author:

Banfill P. F. G.ORCID

Abstract

AbstractRetrofitting thermal insulation to solid masonry walls alters their hygrothermal behaviour, which can be modelled by hygrothermal simulation software. However, such software needs values of key material properties to ensure satisfactory results and until now data has not been available for Scottish masonry buildings. This work aims to contribute to a Scotland-specific dataset of material properties for use by designers working on such buildings. Thermal conductivity, water vapour permeability, sorptivity, water absorption coefficient, hygroscopic sorption, density and porosity were all determined experimentally for selected historic and contemporary masonry materials. Within the range of materials tested three groups of materials properties emerge. Natural hydraulic lime mortars, hot-mixed quicklime mortar and earth mortar all show comparatively low density, high porosity, low thermal conductivity, high water vapour permeability and variable but generally high hygroscopic sorption. Craigleith, Hailes and Giffnock sandstones, no longer available but obtained from conservation works on historic buildings, and Locharbriggs and Hazeldean sandstones, obtained from current production, all show intermediate values of these properties. Crathes granodiorite and Scottish whinstone (from current production) show high density, low porosity, high thermal conductivity, low water vapour permeability and low hygroscopic sorption. It is shown that these materials are all relevant to Scottish buildings constructed in traditional masonry and this paper presents the first comprehensive set of hygrothermal property data for them.

Funder

Historic Environment Scotland

Publisher

Springer Science and Business Media LLC

Subject

Mechanics of Materials,General Materials Science,Building and Construction,Civil and Structural Engineering

Reference69 articles.

1. May N, Sanders C (2016) Moisture in buildings: an integrated approach to risk assessment and guidance White Paper BSI/UK/899/ST/0816/EN/HL. British Standards Institution, London

2. Hall MR, Allinson D (2010) Heat and mass transport processes in building materials. In: Hall MR (ed) Materials for energy efficiency and thermal comfort in buildings. Woodhead Publishing, Cambridge UK, pp 3–53

3. Heritage E (2011) Energy efficiency and historic buildings. English Heritage, London

4. Jenkins M, Curtis R (2014) Improving energy efficiency in traditional buildings. Inform Guide. Historic Scotland, Edinburgh

5. May N, Rye C (2012) Responsible retrofit of traditional buildings. Sustainable Traditional Buildings Alliance, London

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