Zugriffsnummer 48779
Dokumenttyp Konferenzartikel Open Access Gold
Peer Review unbekannt
Sprache Englisch
Titel Acceleration sensitivity of piezoelectric pressure sensors and the influence on the measurement of explosion pressures
Autor(in); Institution
Krause, Tim; 3.5, Explosionsschutz in der Energietechnik, PTB-Braunschweig
Kanbur, Harun; 3.5, Explosionsschutz in der Energietechnik, PTB-Braunschweig
Springer, Niels; 3.5, Explosionsschutz in der Energietechnik, PTB-Braunschweig
Brunzendorf, Jens; 3.5, Explosionsschutz in der Energietechnik, PTB-Braunschweig
Markus, Detlev; 3.5, Explosionsschutz in der Energietechnik, PTB-Braunschweig
Walch, Otto; R. STAHL Schaltgeräte GmbH, Waldenburg, GERMANY
Herr, Christian; Kistler Instrumente AG, Winterthur, SWITZERLAND
Quelle/Jahr Proceedings of the 14th International Symposium on Hazards, Prevention and Mitigation of Industrial Explosions:(2022), 128 - 147
Availability [online only]
DOI
Verlag PTB Open Access Repository
Konferenzangaben 14th International Symposium on Hazards, Prevention and Mitigation of Industrial Explosions ; ISHPMIE, Braunschweig, 11-15, July, 2022, Germany
Freie Schlagworte flameproof enclosures ; explosion pressure ; piezoelectric pressure sensor ; acceleration sensitivity
Zusammenfassung To measure the explosion pressure inside an enclosure, it is common to install a piezoelectric pressure sensor in the enclosure wall. The pressure wave of the internal explosion inevitably leads to vibrations of the enclosure walls. This unwanted but naturally occurring motion is also transmitted to the pressure sensor mounted in the enclosure wall and results in inertial forces affecting the piezoelectric element. During the measurement of the explosion pressure, this affects the output signal of the pressure sensor since an undesired signal due to the acceleration of the pressure sensor is superimposed on the desired pressure signal. This behaviour of the sensor is described as acceleration sensitivity. The level of acceleration sensitivity depends on the type and construction design of the pressure sensor. Even though this sensor behaviour is basically not a new phenomenon, the evaluation of an international comparison between Ex testing laboratories in the field of flameproof enclosures has shown that the consideration of this issue is a major challenge in daily practice concerning the measurement of explosion pressures and is even often completely neglected. This work evaluates the behaviour of various piezoelectric pressure sensors with respect to the influence of acceleration and investigates the specific impact on the explosion pressure measurement in the field of flameproof enclosures. For this purpose, explosions from typically used explosive mixtures such as hydrogen, propane and ethyne in air are examined. These investigations involve simple model enclosures with various specifications as well as a commercially available equipment for hazardous areas. By using blind holes and specially designed adapters, a practical method is applied to be able to detect the effect of acceleration on the sensor signal separately from the pressure signal. For this purpose, both the discrete-time pressure curves and the frequency components are analysed using Fast Fourier Transform. The use of signal filters as a practical and fast approach to address these unwanted signal components is discussed and evaluated. This paper provides guidelines for typical end-users in the field of flameproof enclosures how to handle acceleration of piezoelectric pressure sensors and the influence on the measurement of explosion pressures correctly.
Kostenfreier Zugang Open Access Gold
Rechteinformation CC BY-ND 4.0 ; Creative Commons Attribution NoDerivatives 4.0 License
Themenbereich der Metrologie Physikalische Sicherheitstechnik, Explosionsschutz

Zitierung

Krause, T., Kanbur, H., Springer, N., Brunzendorf, J., Markus, D., Walch, O., & Herr, C. (2022). Acceleration sensitivity of piezoelectric pressure sensors and the influence on the measurement of explosion pressures. 14th International Symposium on Hazards, Prevention and Mitigation of Industrial Explosions ; ISHPMIE, Braunschweig, 11-15, July, 2022, Germany. https://doi.org/10.7795/810.20221124

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