Spara och bevara* bibliographic database
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Group by: Creators | Item Type
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Number of items at this level: 18.

.

., . (2016) EeB PPP Project Review 2016. Project Report. The Energy-efficient Buildings (EeB).

A

Akander, Jan and Cehlin, Mathias and Moshfegh, Bahram (2017) Assessing the Myths on Energy Efficiency When Retrofitting Multifamily Buildings in a Northern Region - What is true and what is not? In: Sustainable High Rise Buildings in Urban Zones. Springer International Publishing.

B

Brown, D (1996) Alternatives to Modern Air-Conditioning Systems: Using Natural Ventilation and Other Techniques. APT Bulletin, 27 (3). pp. 46-49. ISSN 08488525

G

Garskof, Josh (1997) Cold Comfort, Specifying Mini-Duct Air Conditioning for an Old House. Old House Journal, XXV (4). pp. 41-45.

H

Hayati, Abolfazl (2017) Natural Ventilation and Air Infiltration in Large Single‑Zone Buildings: Measurements and Modelling with Reference to Historical Churches. Doctoral thesis, Högskolan i Gävle.

I

Int-Hout, D and Klostra, L (1999) Practical Guide: Air distribution for large spaces. ASHRAE Journal, 41 (4). pp. 57-64.

K

Knight, B and Thickett, D (2007) Determination of response rates of wooden objects to fluctuating relative humidity in historic properties. In: Museum Microclimates. National Museum of Denmark. ISBN 978-87-7602-080-4

L

Little, Joseph and Arregi, Beñat (2016) Hygrothermal Risk Evaluation for the Retrofit of a Typical Solid-walled Dwelling. Journal of Sustainable Design & Applied Research, 4 (1).

Little, Joseph and Ferraro, Calina and Arregi, Beñat (2015) Historic Environment Scotland Technical Paper 15: Assessing risks in insulation retrofits using hygrothermal software tools: Heat and moisture transport in internally insulated stone walls. Technical Report. Historic Environment Scotland.

Liu, Linn (2017) A systematic approach for major renovation of residential buildings. Doctoral thesis, Linköping University.

M

May, Neil and Sanders, Chris (2017) Moisture in buildings: an integrated approach to risk assessment and guidance. Other. British Standards Institution.

Mecklenburg, M F (2007) Determining the Acceptable Ranges of Relative Humidity And Temperature in Museums and Galleries: Part 2, Structural Response to Temperature. Smithsonian Museum Conservation Institute.

Mecklenburg, M F (2007) Determining the Acceptable Ranges of Relative Humidity And Temperature in Museums and Galleries: Part 1, Structural Response to Relative Humidity. Smithsonian Museum Conservation Institute.

O

O'Sullivan , P and Oreszczyn, T (1992) Environmental Control in Historic Galleries and Museums. Indoor and Built Environment, 1 (6). pp. 363-366. ISSN 1420326X

P

Pisello, Anna Laura and Petrozzi, Alessandro and Castaldo, Veronica Lucia and Cotana, Franco (2016) On an innovative integrated technique for energy refurbishment of historical buildings: Thermal-energy, economic and environmental analysis of a case study. Applied Energy, 162. pp. 1313-1322. ISSN 03062619

V

Valentín, N and García, R and De Luis, O and Maekawa, S (1998) Microbial control in archives, libraries and museums by ventilation systems. Restaurator, 19 (2). pp. 85-107. ISSN 0034-5806

von Reden, Anna (2013) Uncertainties in the interaction between a canvas painting support and moisture. Climate for Collections - Standards and Uncertainties. Postprints of the Munich Climate Conference 7 to 9 November 2012. pp. 247-256.

W

Webb, Amanda L. (2017) Energy retrofits in historic and traditional buildings: A review of problems and methods. Renewable and Sustainable Energy Reviews, 77. pp. 748-759.

This list was generated on Mon Dec 11 15:20:15 2017 UTC.