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Erschienen in: Fire Technology 2/2016

01.03.2016

Fire Safety of Grounded Corrugating Stainless Steel Tubing in a Structure Energized by Lightning

verfasst von: Bryan Haslam, Donald Galler, Thomas W. Eagar

Erschienen in: Fire Technology | Ausgabe 2/2016

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Abstract

Corrugated stainless steel tubing (CSST) has been used for more than 20 years as a replacement for conventional black iron gas piping. CSST has a thinner tubing wall and is susceptible to damage from lightning activity when discharges enter a structure, potentially resulting in perforation of the CSST wall and fire ignition. Grounding has been promoted by CSST manufacturers as a solution to this problem. We use modeling and simulation of voltage potentials and arc currents to evaluate the effects of grounding on the voltage potential across CSST, which can result in arc initiation, and charge through the arc, which can result in melting and perforation of the CSST wall. Our results show multiple scenarios where a 10 kA 10 × 350  s current waveform with 1 \(\Omega \) grounding of the CSST still results in voltages greater than the arc initiation threshold of 25 kV and charge through the arc greater than 1.2 C, the perforation threshold we measured. For the case where lightning enters the structure through an outdoor light fixture or chimney, the presence of a grounding wire increases the charge through the arc from 0.13 C to 2.22 C. These results indicate that good grounding of CSST will not necessarily prevent arc initiation nor perforation of the CSST wall by lightning. Good grounding may in fact exacerbate the problem of lightning damage to CSST depending on where lightning enters the building and the electrical parameters of the path to ground.

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Literatur
1.
Zurück zum Zitat American Gas Association (1991) Interior fuel gas piping system using corrugated stainless steel tubing. ANSI/AGA LC-1-1991. American National Standards Institute American Gas Association (1991) Interior fuel gas piping system using corrugated stainless steel tubing. ANSI/AGA LC-1-1991. American National Standards Institute
2.
Zurück zum Zitat Durham RA, Durham MO (2012) Does corrugated tubing + lightning = catastrophic failure? IEEE Trans Ind Appl 48(4):1243–1250CrossRef Durham RA, Durham MO (2012) Does corrugated tubing + lightning = catastrophic failure? IEEE Trans Ind Appl 48(4):1243–1250CrossRef
3.
Zurück zum Zitat Rivest DW (2006) Conductive jacket for tubing. US Patent 7,044,167, 16 May 2006 Rivest DW (2006) Conductive jacket for tubing. US Patent 7,044,167, 16 May 2006
4.
Zurück zum Zitat Lightning Protection Institute (2008) NFPA 54 (National Fuel Gas Code) to include bonding requirements. LPI Tech Lett 10(10) Lightning Protection Institute (2008) NFPA 54 (National Fuel Gas Code) to include bonding requirements. LPI Tech Lett 10(10)
5.
Zurück zum Zitat National Fire Protection Agency (2015) NFPA 54: national fuel gas code National Fire Protection Agency (2015) NFPA 54: national fuel gas code
6.
Zurück zum Zitat National Association of State Fire Marshals (2012) NASFM launches nationwide yellow CSST safety campaign National Association of State Fire Marshals (2012) NASFM launches nationwide yellow CSST safety campaign
7.
Zurück zum Zitat United States Senate (2012) Senate resolution 483: commending efforts to promote and enhance public safety on the need for yellow corrugated stainless steel tubing bonding United States Senate (2012) Senate resolution 483: commending efforts to promote and enhance public safety on the need for yellow corrugated stainless steel tubing bonding
8.
Zurück zum Zitat Hammerschmidt A, Ziolkowski CJ (2013) Validation of installation methods for CSST gas piping to mitigate indirect lightning related damage. Technical report, Gas Technologies Institute Hammerschmidt A, Ziolkowski CJ (2013) Validation of installation methods for CSST gas piping to mitigate indirect lightning related damage. Technical report, Gas Technologies Institute
9.
Zurück zum Zitat Stringfellow MF (2013) Validation of installation methods for CSST gas piping to mitigate indirect lightning related damage: computer simulations of bonding effectiveness. Technical report, PowerCET Stringfellow MF (2013) Validation of installation methods for CSST gas piping to mitigate indirect lightning related damage: computer simulations of bonding effectiveness. Technical report, PowerCET
10.
Zurück zum Zitat Rakov VA, Uman MA (2003) Lightning: physics and effects. Cambridge University Press, Cambridge, MACrossRef Rakov VA, Uman MA (2003) Lightning: physics and effects. Cambridge University Press, Cambridge, MACrossRef
11.
Zurück zum Zitat Berger K, Anderson RB, Droninger H (1975) Parameters of lightning flashes. Electra 41:23–37 Berger K, Anderson RB, Droninger H (1975) Parameters of lightning flashes. Electra 41:23–37
12.
Zurück zum Zitat Anderson RB, Eriksson AJ (1980) Lightning parameters for engineering application. Electrica 69:65–102 Anderson RB, Eriksson AJ (1980) Lightning parameters for engineering application. Electrica 69:65–102
13.
Zurück zum Zitat Heidler F, Zischank W, Flisowski Z, Bouquegneau C, Mazzetti C (2008) Parameters of lightning current given in IEC 62305—background, experience and outlook. In: 29th international conference on lightning protection, Uppsala Heidler F, Zischank W, Flisowski Z, Bouquegneau C, Mazzetti C (2008) Parameters of lightning current given in IEC 62305—background, experience and outlook. In: 29th international conference on lightning protection, Uppsala
14.
Zurück zum Zitat International Electrotechnical Commission (2010) IEC 62305–1: protection against lightning. American National Standards Institute International Electrotechnical Commission (2010) IEC 62305–1: protection against lightning. American National Standards Institute
15.
Zurück zum Zitat Rakov VA (2012) Lightning discharge and fundamentals of lightning protection. J Light Res 4:3–11CrossRef Rakov VA (2012) Lightning discharge and fundamentals of lightning protection. J Light Res 4:3–11CrossRef
16.
Zurück zum Zitat Gamerota WR, Elisme JO, Uman MA, Rakov VA (2012) Current waveforms for lightning simulation. IEEE Trans Electromagn Compat 54(4):880–888CrossRef Gamerota WR, Elisme JO, Uman MA, Rakov VA (2012) Current waveforms for lightning simulation. IEEE Trans Electromagn Compat 54(4):880–888CrossRef
17.
Zurück zum Zitat Rakov VA, Borghetti A, Bouquegneau C, Chisholm WA, Cooray V, Cummins K, Diendorfer G, Heidler AF, Hussein, Ishii M, Nucci CA, Piantini A Jr, Pinto O, Qie X, Rachidi F, Saba MMF, Shindo T, Schulz W, Thottappillil R, Visacro S, Zischank W (2013) Cigre technical brochure on lightning parameters for engineering applications. In: International symposium on lightning protection (XII SIPDA), Belo Horizonte Rakov VA, Borghetti A, Bouquegneau C, Chisholm WA, Cooray V, Cummins K, Diendorfer G, Heidler AF, Hussein, Ishii M, Nucci CA, Piantini A Jr, Pinto O, Qie X, Rachidi F, Saba MMF, Shindo T, Schulz W, Thottappillil R, Visacro S, Zischank W (2013) Cigre technical brochure on lightning parameters for engineering applications. In: International symposium on lightning protection (XII SIPDA), Belo Horizonte
18.
Zurück zum Zitat Bazelyan EM, Raizer YP (2000) Lightning physics and lightning protection. CRC Press, Boca Raton, FLCrossRef Bazelyan EM, Raizer YP (2000) Lightning physics and lightning protection. CRC Press, Boca Raton, FLCrossRef
19.
Zurück zum Zitat Fisher RJ, Schnetzer GH (1993) 1993 triggered lightning test program: Environments within 20 meters of the lightning channel and small area. Technical report, Sandia National Laboratories Fisher RJ, Schnetzer GH (1993) 1993 triggered lightning test program: Environments within 20 meters of the lightning channel and small area. Technical report, Sandia National Laboratories
20.
Zurück zum Zitat ASM International (1990) The ASM handbook, vol 1, 10th edn. ASM International ASM International (1990) The ASM handbook, vol 1, 10th edn. ASM International
21.
Zurück zum Zitat Uman M (2010) The art and science of lightning protection. Cambridge University Press, New York, NY Uman M (2010) The art and science of lightning protection. Cambridge University Press, New York, NY
22.
Zurück zum Zitat Hagenguth JH (1949) Lightning stroke damage to aircraft. Trans Am Inst Electr Eng 68(2):1036–1046CrossRef Hagenguth JH (1949) Lightning stroke damage to aircraft. Trans Am Inst Electr Eng 68(2):1036–1046CrossRef
23.
Zurück zum Zitat Brick RO (1968) A method for establishing lightning-resistance, skin-thickness requirements for aircraft. In: Proceedings, (1968) lightning and static electricity conference, AFAL-TR-68-290 PART II. Florida, Miami Brick RO (1968) A method for establishing lightning-resistance, skin-thickness requirements for aircraft. In: Proceedings, (1968) lightning and static electricity conference, AFAL-TR-68-290 PART II. Florida, Miami
24.
Zurück zum Zitat Chemartin L, Lalande P, Peyrou B, Chazottes A, Elias PQ, Delalondre C, Cheron BG, Lago F (2012) Direct effects of lightning on aircraft structure: Analysis of the thermal, electrical and mechanical constraints. Aerosp Lab J AL05-09 Chemartin L, Lalande P, Peyrou B, Chazottes A, Elias PQ, Delalondre C, Cheron BG, Lago F (2012) Direct effects of lightning on aircraft structure: Analysis of the thermal, electrical and mechanical constraints. Aerosp Lab J AL05-09
25.
Zurück zum Zitat Pereira CE, Snow SC, Dargi MM (2014) LT-14-3900: test report of lightning direct effects tests on CSST samples. Lightning Technologies, an NTS Company, Technical report Pereira CE, Snow SC, Dargi MM (2014) LT-14-3900: test report of lightning direct effects tests on CSST samples. Lightning Technologies, an NTS Company, Technical report
26.
Zurück zum Zitat Guthrie M, Rousseau A (2011) Design of a low impedance grounding system for telecom applications. In: BICSI winter conference, Orlando, Florida Guthrie M, Rousseau A (2011) Design of a low impedance grounding system for telecom applications. In: BICSI winter conference, Orlando, Florida
27.
Zurück zum Zitat Joffe EB, Lock K-S (2010) Grounds for grounding: A circuit to system handbook. Wiley, New York Joffe EB, Lock K-S (2010) Grounds for grounding: A circuit to system handbook. Wiley, New York
28.
Zurück zum Zitat Rousseau A, Guthrie M, Rakov V (2010) High frequency earthing impedance measurements at Camp Blinding, Florida. In: 30th international conference on lightning protection, Cagliari Rousseau A, Guthrie M, Rakov V (2010) High frequency earthing impedance measurements at Camp Blinding, Florida. In: 30th international conference on lightning protection, Cagliari
29.
Zurück zum Zitat Lim SC, Choun LW, Gomes C, Ab Kadir MZA (2013) Environmental effects on the performance of electrical grounding systems. In: 7th International power engineering and optimization conference, Langkawi Lim SC, Choun LW, Gomes C, Ab Kadir MZA (2013) Environmental effects on the performance of electrical grounding systems. In: 7th International power engineering and optimization conference, Langkawi
Metadaten
Titel
Fire Safety of Grounded Corrugating Stainless Steel Tubing in a Structure Energized by Lightning
verfasst von
Bryan Haslam
Donald Galler
Thomas W. Eagar
Publikationsdatum
01.03.2016
Verlag
Springer US
Erschienen in
Fire Technology / Ausgabe 2/2016
Print ISSN: 0015-2684
Elektronische ISSN: 1572-8099
DOI
https://doi.org/10.1007/s10694-015-0557-z

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