Spara och bevara* bibliographic database
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Group by: Creators | Item Type
Number of items at this level: 46.

Article

UNSPECIFIED (1961) Problems in heating old churches. Heating and ventilation engineer (London) (35). p. 95.

Beck, Walter and Koller, Manfred (1980) Problems of Heating within Historic Buildings of Austria. Conservation within historic buildings. Preprints of the contributions to the vienna congress, 7-13 sept. 1980 . pp. 22-29.

Bencs, L and Spolnik, Z and Limpens-Nielen, D and Schellen, H L and Jütte, B and Van Grieken, R (2007) Comparison of hot-air and low-radiant pew heating systems on the distribution and transport of gaseous air pollutants in the mountain church of Rocca Pietore from artwork conservation points of view. Journal of Cultural Heritage, 8 (3). pp. 264-271. ISSN 12962074

Bichlmair, Stefan and Raffler, Susanne and Kilian, Ralf (2014) The Temperierung heating systems as a retrofitting tool for the preventive conservation of historic museums buildings and exhibits. Energy and Buildings.

Blades, Nigel and Jessep, Hazel and Lithgow, Katy (2013) The role of historic house heating systems in collections climate control at the National Trust. Climate for Collections - Standards and Uncertainties. Postprints of the Munich Climate Conference 7 to 9 November 2012. pp. 127-140.

Blumberga, Andra and Vanaga, Ruta and Freimanis, Ritvars and Blumberga, Dagnija and Antužs, Juris and Krastiņš, Artūrs and Jankovskis, Ivars and Bondars, Edgars and Treija, Sandra (2020) Transition from traditional historic urban block to positive energy block. Energy, 202. ISSN 0360-5442

Cabeza, Luisa F. and de Gracia, Alvaro and Pisello, Anna Laura (2018) Integration of renewable technologies in historical and heritage buildings: A review. Energy and Buildings, 177. pp. 96-111.

Camuffo, D and Sturaro, G and Valentino, A and Camuffo, M (1999) The Conservation of Artworks and Hot Air Heating Systems in Churches: Are They Compatible? The Case of Rocca Pietore, Italian Alps. Studies in Conservation, 44 (3). pp. 209-216. ISSN 00393630

Francis, R J (1959) Church heating by infra-red radiation. Electrical review (London) (5). pp. 225-226.

Kerschner, R L (1992) A Practical Approach to Environmental Requirements for Collections in Historic Buildings. Journal of the American Institute for Conservation, 31 (1). pp. 65-76. ISSN 01971360

Lafontaine, R H (1982) Humidistatically controlled heating: a new approach to relative humidity control in museums closed for the winter season. Journal of the International Institute for Conservation, Canadian Group , 7 (1-2). pp. 35-41.

Legnér, Mattias (2019) Not Just a Summer Temple: The Development of Conservation and Indoor Climate in Nationalmuseum, Sweden. Addressing the Climate in Modern Age's Construction History: Between Architecture and Building Services Engineering.

Limpens-Nielen, D and Schoffelen, M and Schellen, H L (2005) The influence of a local heating system on the indoor climate of a large room. 7th symposium on Building Physics in the Nordic Countries, June 13-15th, 2005.

Livingstone, F C (1968) Heating Britain´s cathedrals and churches. Heating and ventilation engineer (42). pp. 117-125.

Lo Basso, Gianluigi and Rosa, Flavio and Astiaso Garcia, Davide and Cumo, Fabrizio (2018) Hybrid systems adoption for lowering historic buildings PFEC (primary fossil energy consumption) - A comparative energy analysis. Renewable Energy, 117. ISSN 09601481

Lodi, Chiara and Magli, Susanna and Contini, Francesco Maria and Muscio, Alberto and Tartarini, Paolo (2017) Improvement of thermal comfort and energy efficiency in historical and monumental buildings by means of localized heating based on non-invasive electric radiant panels. Applied Thermal Engineering, 126. ISSN 13594311

Lowex, (2002) LOW EXERGY SYSTEMS IN EXISTING BUILDINGS. Lowex Newsletter (6). pp. 1-8.

Neuhaus, E and Schellen, H L (2007) Conservation Heating to Control Relative Humidity and Create Museum Indoor Conditions in a Monumental Building. Proceedings of the 10th Conference on the Thermal Performance of the Exterior Envelopes of Whole Buildings, Clearwater Beach Florida, 2-7 December 2007.

Neuhaus, E and Schellen, H L (2007) Humidistat-controlled heating and ventilation systems to create preservation conditions in historic buildings in the Dutch climate. Proceedings of the 9th Clima World Congress Wellbeing Indoors, Helsinki Finland, 10-14 June 2007.

Samek, L and De Maeyer-Worobiec, A and Spolnik, Z and Bencs, L and Kontozova, V and Bratasz, L and Kozłowski, R and Van Grieken, R (2007) The impact of electric overhead radiant heating on the indoor environment of historic churches. Journal of Cultural Heritage, 8 (4). pp. 361-369. ISSN 12962074

Spolnik, Z and Bencs, L and Worobiec, A and Kontozova, V and Van Grieken, R (2005) Application of EDXRF and Thin Window EPMA for the Investigation of the Influence of Hot Air Heating on the Generation and Deposition of Particulate Matter. Microchimica Acta, 149 (1-2). pp. 79-85. ISSN 00263672

Spolnik, Z and Worobiec, A and Samek, L and Bencs, L and Belikov, K and Van Grieken, R (2007) Influence of different types of heating systems on particulate air pollutant deposition: The case of churches situated in a cold climate. Journal of Cultural Heritage, 8 (1). pp. 7-12. ISSN 12962074

Troi, A and Hausladen, G (2006) Hot air heating in churches – the influence of operation mode. Proceedings of SAVEUR. (In Press)

Troi, A and Hausladen, G (2006) Indoor Climate and damage risk due to heating systems in South Tyrolean churches. Heritage Protection - Construction Aspects. Zagreb: second HDGK.

Varas-Muriel, M.J. and Martínez-Garrido, M.I. and Fort, R. (2014) Monitoring the thermal–hygrometric conditions induced by traditional heating systems in a historic Spanish church (12th–16th C). Energy and Buildings, 75. pp. 119-132.

Wessberg, Magnus and Vyhlídal, Tomas and Broström, Tor (2019) A model-based method to control temperature and humidity in intermittently heated massive historic buildings. Building and Environment, 159. ISSN 0360-1323

de Rubeis, Tullio and Nardi, Iole and Muttillo, Mirco and Paoletti, Domenica (2020) The restoration of severely damaged churches – Implications and opportunities on cultural heritage conservation, thermal comfort and energy efficiency. Journal of Cultural Heritage, 43. ISSN 12962074

Book Section

Broström, T and Leijonhufvud, G (2008) Heat pumps for conservation heating. In: Proceedings of the 8th Symposium on Building Physics in the Nordic Countries. Dept. of Civil Engineering, Technical University of Denmark, pp. 1143-1150. ISBN 978-87-7877-265-7

Hooijschuur, J (2002) Low temperature systems in historic and existing buildings in the Netherlands. In: OPET Workshop, Low Exx, Maastricht, March 7-8, 2002. Novem.

Malovrh, M and Praznik, M (2002) Overview of knowledge on and experiences with low temperature heating in historical buildings in Slovenia. In: OPET Workshop, Low Exx, Maastricht, March 7-8, 2002. Novem.

Schellen, H L and Diepens, J and van Schijndel, A W M (2002) Building physical impact of infrared gas heating on monumental churches and their interior. In: Proceedings of the 6th Symposium on Building Physics in the Nordic Countries. Norwegian University of Science and Technology, Trondheim, Norway, pp. 881-888. ISBN 82-91412-02-2

Schellen, H L and van Aarle, M A P (2005) Contamination of a church ceiling due to the burning of candles in combination with floor heating. In: The 7th symposium on Building Physics in the Nordic Countries, June 13-15th, 2005. Royal Institute of Technology, Stockholm.

Sijanec Zavrl, M and Zarnic, R (2002) Indoor climate control in building heritage in Slovenia by low temperature wall heating. In: OPET Workshop, Low Exx, Maastricht, March 7-8, 2002. Novem.

Šijanec Zavrl, M (2004) Analysing indoor Climate in Building Heritage in Slovenia. In: European Research on Cultural Heritage, State-of-the-Art Studies. ITAM, pp. 389-403. ISBN 80-86246-23-X

Monograph

Goddard, H (1970) Heating your church. Manual. Council for the care of churches.

Conference or Workshop Item

Blades, Nigel and Rice, Kirsty (2011) Conservation Heating and Energy Efficiency at the National Trust: Theory and Practice. In: Developments in Climate Control of Historic Buildings. Proceedings from the International Conference "Climatization of Historic Buildings, State of the Art", December 2, 2010, Linderhof Palace.

Broström, Tor and Linden, Elisabet and Lindström, Svante and Mattsson, Magnus and Sandberg, Mats (2009) Convective heating in historic buildings – Effects of incorporating heat pumps in the air distribution system. In: Roomvent 2009, 2009, Busan, South Korea.

Camuffo, Dario (2011) The Friendly Heating Project and the Conservation of the Cultural Heritage Preserved in Churches. In: Developments in Climate Control of Historic Buildings. Proceedings from the International Conference "Climatization of Historic Buildings, State of the Art", December 2, 2010, Linderhof Palace.

Krus, Martin and Kilian, Ralf (2011) Calculative Investigations on the "Temperierung" Wall Heating system - Hygric and Thermal Aspects. In: Developments in Climate Control of Historic Buildings. Proceedings from the International Conference "Climatization of Historic Buildings, State of the Art", December 2, 2010, Linderhof Palace.

Schellen, Henk L and Neuhaus, Edgar (2011) Conservation Heating in Historical Building: Results from an Experimental and Simulation Study. In: Developments in Climate Control of Historic Buildings. Proceedings from the International Conference "Climatization of Historic Buildings, State of the Art", December 2, 2010, Linderhof Palace.

Wessberg, Magnus and Broström, Tor and Vyhlídal, Tomas (2017) A method to determine heating power and heat up time for intermittent heating of churches. In: Energy Procedia.

Wessberg, Magnus and Leijonhufvud, Gustaf and Broström, Tor (2016) An evaluation of three different methods for energy efficient indoor climate control in Skokloster Castle. In: EECHB2016.

Book

Camuffo, D, ed. (2006) Church Heating and the Preservation of the Cultural Heritage. Guide to the Analysis of the Pros and Cons of Various Heating Systems. Mondadori Electa S.p.A., Milano. ISBN 88-370-5034-8

Olstad, T and Haugen, A (1997) Climates in stave churches: Localised heating of the congregation in Kaupanger Stave church. NIKU Fagrapport (4). Riksantikvaren. ISBN 0805-4703

Olstad, T and Stein, M (1996) Saving art by saving energy. NIKU - Norwegian Institute for Cultural Heritage Research . ISBN 82-426-681-1

Thesis

Wessberg, Magnus (2019) Indoor climate analysis and model based control of massive construction historic buildings. Doctoral thesis, Czech Technical University in Prague.

This list was generated on Thu Mar 28 11:41:53 2024 UTC.