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Erschienen in: Fire Technology 5/2016

01.09.2016

Photoacoustic Compound Fire Alarm System for Detecting Particles and Carbon Monoxide in Smoke

verfasst von: Yalong Jiang, Gai Li, Jinjun Wang

Erschienen in: Fire Technology | Ausgabe 5/2016

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Abstract

In view of the high sensitivity and high selectivity of photoacoustic technology, a compound fire alarm system used for detecting smoke particles and carbon monoxide was designed on the basis of the photoacoustic spectrometry principle. The system uses an infrared laser with a central wavelength of 1579 nm as the light source, adopts wavelength modulation technology to modulate the continuous light source, and moves the inspection frequency to high frequency with lower noise by integrating harmonic detection technology, thus realizing a measurement of the photoacoustic signal. Concurrently, the system obtains the CO concentration and extinction coefficient of smoke particles via inversion by using the measured scattered light intensity data combined with a certain algorithm. A test was carried out on the system by using three small-scale experiments, namely, cotton rope smoldering fire, polyurethane foam fire and sandalwood smoldering fire. The results show that the CO gas concentrations and extinction coefficient of smoke particles produced by these three experiments are well detected. The CO detection limit of the system was 2.98 ppm. The test results also show that pure powder (used for simulating particles) or pure CO gas will not trigger the system alarm, so unnecessary alarms caused by traditional fire detectors can be avoided and the reliability of the fire alarm can be improved.

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Literatur
1.
Zurück zum Zitat Barillo DJ, Goode R (1996) Fire fatality study: demographics of fire victims. Burns 22(2):85–88.CrossRef Barillo DJ, Goode R (1996) Fire fatality study: demographics of fire victims. Burns 22(2):85–88.CrossRef
2.
Zurück zum Zitat Karter MJ (2014) Fire loss in the United States during 2013. National Fire Protection Association Fire Analysis and Research Division. Karter MJ (2014) Fire loss in the United States during 2013. National Fire Protection Association Fire Analysis and Research Division.
3.
Zurück zum Zitat Hagen B, Milke JA (2000) The use of gaseous fire signatures as a means to detect fires. Fire Saf J 34:55–67.CrossRef Hagen B, Milke JA (2000) The use of gaseous fire signatures as a means to detect fires. Fire Saf J 34:55–67.CrossRef
4.
Zurück zum Zitat Besson JP, Schilt S, Thevenaz L (2004) Multi-gas sensing based on photoacoustic spectroscopy using tunable laser diodes. Spectrochim Acta A 60:3449–3456.CrossRef Besson JP, Schilt S, Thevenaz L (2004) Multi-gas sensing based on photoacoustic spectroscopy using tunable laser diodes. Spectrochim Acta A 60:3449–3456.CrossRef
5.
Zurück zum Zitat Jackson MA, Robins I (1994) Gas sensing for fire detection: measurements of CO, CO2, H2, O2 and smoke density in European standard fire tests. Fire Saf J 22:181–205.CrossRef Jackson MA, Robins I (1994) Gas sensing for fire detection: measurements of CO, CO2, H2, O2 and smoke density in European standard fire tests. Fire Saf J 22:181–205.CrossRef
6.
Zurück zum Zitat Nebiker PW, Pleisch RE (2001) Photoacoustic gas detection for fire warning. Fire Saf J 36: 173–180.CrossRef Nebiker PW, Pleisch RE (2001) Photoacoustic gas detection for fire warning. Fire Saf J 36: 173–180.CrossRef
7.
Zurück zum Zitat Chen T, Su GF, Yuan HY (2005) In situ gas filter correlation: photoacoustic CO detection method for fire warning. Sensor Actuat B 109:233–237.CrossRef Chen T, Su GF, Yuan HY (2005) In situ gas filter correlation: photoacoustic CO detection method for fire warning. Sensor Actuat B 109:233–237.CrossRef
8.
Zurück zum Zitat Wang JW, Wang HL (2014) Tunable fiber laser based photoacoustic gas sensor for early fire detection. Infrared Phys Technol 65:1–4.CrossRef Wang JW, Wang HL (2014) Tunable fiber laser based photoacoustic gas sensor for early fire detection. Infrared Phys Technol 65:1–4.CrossRef
9.
Zurück zum Zitat Keller A, Ruegg M, Forster M et al. (2005) Open photoacoustic sensor as smoke detector. Sensor Actuat B 104:1–7.CrossRef Keller A, Ruegg M, Forster M et al. (2005) Open photoacoustic sensor as smoke detector. Sensor Actuat B 104:1–7.CrossRef
10.
Zurück zum Zitat Tavakoli M, Tavakoli A, Taheri M et al. (2010) Design, simulation and structural optimization of a longitudinal acoustic resonator for trace gas detection using laser photoacoustic spectroscopy (LPAS). Opt Laser Technol 42:828–838.CrossRef Tavakoli M, Tavakoli A, Taheri M et al. (2010) Design, simulation and structural optimization of a longitudinal acoustic resonator for trace gas detection using laser photoacoustic spectroscopy (LPAS). Opt Laser Technol 42:828–838.CrossRef
11.
Zurück zum Zitat Fischer C, Sorokin E, Sorokina IT et al. (2005) Photoacoustic monitoring of gases using a novel laser source tunable around 2.5 μm. Opt Laesr Eng 43:573–582.CrossRef Fischer C, Sorokin E, Sorokina IT et al. (2005) Photoacoustic monitoring of gases using a novel laser source tunable around 2.5 μm. Opt Laesr Eng 43:573–582.CrossRef
12.
Zurück zum Zitat Kuusela T, Peura J, Matveev BA et al. (2009) Photoacoustic gas detection using a cantilever microphone and III–V mid-IR LEDs. Vib Spectrosc 51:289–293.CrossRef Kuusela T, Peura J, Matveev BA et al. (2009) Photoacoustic gas detection using a cantilever microphone and III–V mid-IR LEDs. Vib Spectrosc 51:289–293.CrossRef
13.
Zurück zum Zitat Hirschmann CB, Sinisalo S, Uotila J et al. (2013) Trace gas detection of benzene, toluene, p-,m-and o-xylene with a compact measurement system using cantilever enhanced photoacoustic spectroscopy and optical parametric oscillator. Vib Spectrosc 68:70–176.CrossRef Hirschmann CB, Sinisalo S, Uotila J et al. (2013) Trace gas detection of benzene, toluene, p-,m-and o-xylene with a compact measurement system using cantilever enhanced photoacoustic spectroscopy and optical parametric oscillator. Vib Spectrosc 68:70–176.CrossRef
14.
Zurück zum Zitat Wang QY, Wang JW, Li L et al. (2011) An all-optical photoacoustic spectrometer for trace gas detection. Sensor Actuat B 153:214–218.CrossRef Wang QY, Wang JW, Li L et al. (2011) An all-optical photoacoustic spectrometer for trace gas detection. Sensor Actuat B 153:214–218.CrossRef
15.
Zurück zum Zitat Wu ZY, Gong YH, Yu QX (2013) Photoacoustic spectroscopy detection and extraction of discharge feature gases in transformer oil based on 1.5μ tunable fiber laser. Infrared Phys Technol 58:86–90.CrossRef Wu ZY, Gong YH, Yu QX (2013) Photoacoustic spectroscopy detection and extraction of discharge feature gases in transformer oil based on 1.5μ tunable fiber laser. Infrared Phys Technol 58:86–90.CrossRef
16.
Zurück zum Zitat Ulasevich AL, Gorelik AV, Kouzmouk AA (2013) A miniaturized prototype of resonant banana-shaped photoacoustic cell for gas sensing. Infrared Phys Technol 60:174–182.CrossRef Ulasevich AL, Gorelik AV, Kouzmouk AA (2013) A miniaturized prototype of resonant banana-shaped photoacoustic cell for gas sensing. Infrared Phys Technol 60:174–182.CrossRef
17.
Zurück zum Zitat Mammez D, Stoeffler C, Cousin J, Vallon R, Mammez MH, Joly L, Parvitte B, Zéninari V (2013) Photoacoustic gas sensing with a commercial external cavity-quantum cascade laser at 10.5 μm. Infrared Phys Technol 61:14–19.CrossRef Mammez D, Stoeffler C, Cousin J, Vallon R, Mammez MH, Joly L, Parvitte B, Zéninari V (2013) Photoacoustic gas sensing with a commercial external cavity-quantum cascade laser at 10.5 μm. Infrared Phys Technol 61:14–19.CrossRef
18.
Zurück zum Zitat Mohebbifar MR, Khalilzadeh J, Dibaee B, Parvin P (2014) Effect of buffer gases on the performance of SO2 trace measurement based on photoacoustic spectroscopy. Infrared Phys Technol 65: 61–66.CrossRef Mohebbifar MR, Khalilzadeh J, Dibaee B, Parvin P (2014) Effect of buffer gases on the performance of SO2 trace measurement based on photoacoustic spectroscopy. Infrared Phys Technol 65: 61–66.CrossRef
19.
Zurück zum Zitat Filus Z, Tóth N, Gulyás G et al. (2013) Carrier gas flow arrangement based photoacoustic detection method for measuring gas permeability of polymer membranes. Polym Test 32:1099–1104.CrossRef Filus Z, Tóth N, Gulyás G et al. (2013) Carrier gas flow arrangement based photoacoustic detection method for measuring gas permeability of polymer membranes. Polym Test 32:1099–1104.CrossRef
20.
Zurück zum Zitat Schmitt K, Müller A, Huber J et al. (2011) Compact photoacoustic gas sensor based on broadband IR source. Procedia Eng 25:1081–1084.CrossRef Schmitt K, Müller A, Huber J et al. (2011) Compact photoacoustic gas sensor based on broadband IR source. Procedia Eng 25:1081–1084.CrossRef
25.
Zurück zum Zitat Kerker M (1969) The scattering of light and other electromagnetic radiation. Academic Press, New York. Kerker M (1969) The scattering of light and other electromagnetic radiation. Academic Press, New York.
26.
Zurück zum Zitat Lentz WJ (1976) Generating Bessel functions in Mie scattering calculations using continued fractions. Appl Opt 15:668–671.CrossRef Lentz WJ (1976) Generating Bessel functions in Mie scattering calculations using continued fractions. Appl Opt 15:668–671.CrossRef
27.
Zurück zum Zitat Dobbins RA, Mulholland GW, Bryner NP (1994). Comparison of a fractal smoke optics model with light extinction measurements. Atmos Environ 28(5):889–897.CrossRef Dobbins RA, Mulholland GW, Bryner NP (1994). Comparison of a fractal smoke optics model with light extinction measurements. Atmos Environ 28(5):889–897.CrossRef
28.
Zurück zum Zitat John de Ris (1979) Fire radiation—a review. Symposium (International) on Combustion vol. 17, no. 1, pp. 1003–1016. John de Ris (1979) Fire radiation—a review. Symposium (International) on Combustion vol. 17, no. 1, pp. 1003–1016.
Metadaten
Titel
Photoacoustic Compound Fire Alarm System for Detecting Particles and Carbon Monoxide in Smoke
verfasst von
Yalong Jiang
Gai Li
Jinjun Wang
Publikationsdatum
01.09.2016
Verlag
Springer US
Erschienen in
Fire Technology / Ausgabe 5/2016
Print ISSN: 0015-2684
Elektronische ISSN: 1572-8099
DOI
https://doi.org/10.1007/s10694-015-0542-6

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