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Erschienen in: Fire Technology 4/2020

22.01.2020

Effects of the Coupling of Insulating and Conductive Materials to Limit the Temperature at Chimney-Roof Penetration

verfasst von: M. Neri, P. Leppanen, M. Alanen, D. Luscietti, S. Bani, M. Pilotelli

Erschienen in: Fire Technology | Ausgabe 4/2020

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Abstract

Recently, many roof fires have occured in Europe due to the presence of a chimney. Since also certified chimneys were involved in the fires, chimneys producers have attempted to propose some solutions. However, these latter may sometimes not be effective, especially if the chimney operating conditions are more severe than those in the chimney certification procedure. Consequently, given the relevance of the problem, the scientific community was asked to identify the causes of the fires, and many studies presented in the literature have shown some points to be taken into account when designing and testing a chimney. Since heat transfer at chimney-roof penetration depends on many variables, recently, it was proposed to limit the temperature at this point by means of a device. The device should limit the temperature in very thick and insulated roofs, and in any chimney operating condition, that is, in normal chimney operating conditions and during soot fire events. Such a device is called CEIL and its features were identified in a numerical study presented in the literature. Differently from the device in the market, the CEIL device is made of conductive elements and insulating materials. The function of the insulating layer is the limitation of the heat flux from the chimney to the roof, whereas the function of the conductive elements is the facilitation of the heat transfer from the device to the surrounding. In other words, the conductive elements act like fins that dissipate heat to the ambient. Given that no experimental test was performed, this paper presents the results of an experimental campaign performed to assess the efficacy of the CEIL device and to investigate aspects not taken into account in the preliminary numerical investigation. The experimental campaign has taken into account the most critical chimney operating conditions identified in the literature and it has consisted into three phases. Firstly, it has been investigated whether a device of fixed dimension can effectively be installed in any roof. In the second phase it has been investigated whether a conductive element installed in the clearance can actually limit the roof temperature in very critical operating conditions represented by high exhaust gas temperature in the chimney and small air infiltration in the materials at the chimney-roof penetration. Finally, the effectiveness of a device 200 mm thick in height and 100 mm thick in width has been assessed in different operating conditions. Results show that the coupling of an appropriate number of conductive elements and insulating layers can limit the roof temperature effectively. For example, the presence of a conductive element reduces the roof temperature from 140°C to \(70\,^{\circ }\hbox {C}\) with a device 5 cm thick when the exhaust gas temperature is \(500\,^{\circ }\hbox {C}\). A device made of an insulating layer 100 mm width and two conductive elements keeps the roof temperature at \(61\,^{\circ }\hbox {C}\) when the exhaust gas temperature is maintained at \(650\,^{\circ }\hbox {C}\) until the achievement of the steady condition and it is risen at \(970\,^{\circ }\hbox {C}\) for 30 min.

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Fußnoten
1
CE marking ensures that products are in compliance with legislation in force in the European Community.
 
Literatur
1.
Zurück zum Zitat EN 1859 (2013) Chimneys—Metal Chimneys—Test Methods, Milano EN 1859 (2013) Chimneys—Metal Chimneys—Test Methods, Milano
2.
Zurück zum Zitat Ministry of the Environment of Finland (2011) Finnish concern on fire safety risk due to CE marking of appliances fired by solid fuel and chimney products Ministry of the Environment of Finland (2011) Finnish concern on fire safety risk due to CE marking of appliances fired by solid fuel and chimney products
3.
Zurück zum Zitat Dadone PN (2009) Analisi 00. Casi Verificatisi sul Territorio della Provincia di Brescia e Statistica delle Cause, Incendi tetto e Canne Fumarie Proceeding Conference, Brescia (in Italian) Dadone PN (2009) Analisi 00. Casi Verificatisi sul Territorio della Provincia di Brescia e Statistica delle Cause, Incendi tetto e Canne Fumarie Proceeding Conference, Brescia (in Italian)
4.
Zurück zum Zitat Hakala VM (2013) Fire investigations, thematic investigation 3: chimney and fireplace as causes of fire, p 14 (in Finnish) Hakala VM (2013) Fire investigations, thematic investigation 3: chimney and fireplace as causes of fire, p 14 (in Finnish)
5.
Zurück zum Zitat International partnership for the investigation of fires, explosions and other major incidents. www.burgoynes.com. Accessed 31st October 2018 International partnership for the investigation of fires, explosions and other major incidents. www.​burgoynes.​com. Accessed 31st October 2018
7.
Zurück zum Zitat Peacock RD (1986) Chimney fires: intensity and duration. Fire Technol 22:243–252CrossRef Peacock RD (1986) Chimney fires: intensity and duration. Fire Technol 22:243–252CrossRef
9.
Zurück zum Zitat Voigt GQ (1933) Fire hazard of domestic heating installations, National Bureau of Standards (U.S.) Voigt GQ (1933) Fire hazard of domestic heating installations, National Bureau of Standards (U.S.)
12.
Zurück zum Zitat Jopek T (2015) Chimney fires. Fire Rev 10:24–29 Jopek T (2015) Chimney fires. Fire Rev 10:24–29
15.
Zurück zum Zitat Leppänen P (2010) Fire safety of metal chimneys. Master’s Thesis. Tampere 2010. Tampere University of Technology, Department of Civil Engineering, p 51 (in Finnish) Leppänen P (2010) Fire safety of metal chimneys. Master’s Thesis. Tampere 2010. Tampere University of Technology, Department of Civil Engineering, p 51 (in Finnish)
20.
Zurück zum Zitat Leppänen P, Neri M, Mäkinen J (2015) Heat release caused by the smouldering combustion of the binder of rockwool. J Struct Mech 48(1): 68–82 Leppänen P, Neri M, Mäkinen J (2015) Heat release caused by the smouldering combustion of the binder of rockwool. J Struct Mech 48(1): 68–82
28.
Zurück zum Zitat Voigt Q (1933) Fire hazard of domestic heating installations, National Bureau of Standards (U.S.) Voigt Q (1933) Fire hazard of domestic heating installations, National Bureau of Standards (U.S.)
29.
Zurück zum Zitat Maclean JD (1951) Effect of heat on properties and serviceability of wood: experiments on thin wood specimens, Madison Maclean JD (1951) Effect of heat on properties and serviceability of wood: experiments on thin wood specimens, Madison
30.
Zurück zum Zitat Maclean JD (1951) Rate of disintegration of wood under different heating conditions, American wood-preserves association Maclean JD (1951) Rate of disintegration of wood under different heating conditions, American wood-preserves association
31.
Zurück zum Zitat Mc Guire JH (1969) Limiting safe temperature of combustible materials. Fire Technol 5: 237–241CrossRef Mc Guire JH (1969) Limiting safe temperature of combustible materials. Fire Technol 5: 237–241CrossRef
32.
Zurück zum Zitat Akita K (1959) Report of Fire Research Institute of Japan SHKHB, vol. 9 Akita K (1959) Report of Fire Research Institute of Japan SHKHB, vol. 9
33.
Zurück zum Zitat Hurley MJ, Gottuk DT, Hall JR Jr, Harada K, Kuligowski ED, Puchovsky M, Torero JL, Watts JM Jr, Wieczorek CJ (eds) (2016) SFPE handbook of fire protection engineering. Springer Hurley MJ, Gottuk DT, Hall JR Jr, Harada K, Kuligowski ED, Puchovsky M, Torero JL, Watts JM Jr, Wieczorek CJ (eds) (2016) SFPE handbook of fire protection engineering. Springer
34.
Zurück zum Zitat Graf SH (1949) Ignition temperatures of various papers, woods, and fabrics, Bulletin No. 26, Engineering Experiment Station, Oregon State System of Higher Education, Oregon State College Graf SH (1949) Ignition temperatures of various papers, woods, and fabrics, Bulletin No. 26, Engineering Experiment Station, Oregon State System of Higher Education, Oregon State College
35.
Zurück zum Zitat Setchkin NP (1949) A method and apparatus for determining the ignition characteristics of plastics, U.S. Department of Commerce, National Bureau of Standards, Research Paper RP2052, Part of the Journal of Research of the National Bureau of Standards Setchkin NP (1949) A method and apparatus for determining the ignition characteristics of plastics, U.S. Department of Commerce, National Bureau of Standards, Research Paper RP2052, Part of the Journal of Research of the National Bureau of Standards
37.
Zurück zum Zitat Polonini LF, Petrocelli D, Parmigiani SP, Lezzi AM (2018) Experimental study of PM emissions from wood pellet stoves with innovative burning pots. In: EUBCE 2018: 26th European biomass conference & exhibition, Copenhagen Polonini LF, Petrocelli D, Parmigiani SP, Lezzi AM (2018) Experimental study of PM emissions from wood pellet stoves with innovative burning pots. In: EUBCE 2018: 26th European biomass conference & exhibition, Copenhagen
38.
Zurück zum Zitat Polonini LF, Petrocelli D, Parmigiani S, Lezzi AM (2019) Influence on CO and PM emissions of an innovative burner pot for pellet stoves: an experimental study. Energies 12(4): 590CrossRef Polonini LF, Petrocelli D, Parmigiani S, Lezzi AM (2019) Influence on CO and PM emissions of an innovative burner pot for pellet stoves: an experimental study. Energies 12(4): 590CrossRef
39.
Zurück zum Zitat Polonini LF, Petrocelli D, Parmigiani S, Lezzi AM (2018) Experimental study of pm emissions from wood pellet stoves with innovative burning pots. In: European biomass conference and exhibition proceedings, 2018 (26thEUBCE), pp 1525–1531 Polonini LF, Petrocelli D, Parmigiani S, Lezzi AM (2018) Experimental study of pm emissions from wood pellet stoves with innovative burning pots. In: European biomass conference and exhibition proceedings, 2018 (26thEUBCE), pp 1525–1531
42.
Zurück zum Zitat Kererekes Z, Lublóy E, Elek B Restás A (2018) Standard fire testing of chimney linings from composite materials. J Build Eng 19: 530–538CrossRef Kererekes Z, Lublóy E, Elek B Restás A (2018) Standard fire testing of chimney linings from composite materials. J Build Eng 19: 530–538CrossRef
49.
Zurück zum Zitat Setchkin NP (1949) A method and apparatus for determining the ignition characteristics of plastics, US Department of Commerce, National Bureau of Standards, Research Paper RP2052, Part of the Journal of Research of the National Bureau of Standards Setchkin NP (1949) A method and apparatus for determining the ignition characteristics of plastics, US Department of Commerce, National Bureau of Standards, Research Paper RP2052, Part of the Journal of Research of the National Bureau of Standards
50.
Zurück zum Zitat Lantschner N (2009) La Mia Casa Clima, Raetia Edition, Bolzano (in Italian) Lantschner N (2009) La Mia Casa Clima, Raetia Edition, Bolzano (in Italian)
51.
Zurück zum Zitat Chadiarakou S, Santamouris M, Papadopoulos A (2006) The importance of insulation on the buildings thermal losses. In: Proceedings of the CLIMAMED Congress, Lyon, November 20–21, 2006, pp 325–332 Chadiarakou S, Santamouris M, Papadopoulos A (2006) The importance of insulation on the buildings thermal losses. In: Proceedings of the CLIMAMED Congress, Lyon, November 20–21, 2006, pp 325–332
52.
Zurück zum Zitat Šal J, Štroufová D, Bednářová P (2018) Point thermal bridges of insulated pitched roof structures, MATEC Web of Conferences, p 146 Šal J, Štroufová D, Bednářová P (2018) Point thermal bridges of insulated pitched roof structures, MATEC Web of Conferences, p 146
Metadaten
Titel
Effects of the Coupling of Insulating and Conductive Materials to Limit the Temperature at Chimney-Roof Penetration
verfasst von
M. Neri
P. Leppanen
M. Alanen
D. Luscietti
S. Bani
M. Pilotelli
Publikationsdatum
22.01.2020
Verlag
Springer US
Erschienen in
Fire Technology / Ausgabe 4/2020
Print ISSN: 0015-2684
Elektronische ISSN: 1572-8099
DOI
https://doi.org/10.1007/s10694-020-00947-5

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