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A method for correcting the high-frequency mechanical vibration effects in the dynamic calibration of pressure measurement systems using a shock tube
ID
Svete, Andrej
(
Author
),
ID
Amer, Eynas
(
Author
),
ID
Jönsson, Gustav
(
Author
),
ID
Kutin, Jože
(
Author
),
ID
Arrhén, Fredrik
(
Author
)
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https://www.sciencedirect.com/science/article/pii/S088832702300153X
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Abstract
The extremely rapid reflection of a shock wave from the end wall generated in the shock tube, in addition to the high-frequency content of pressure, inevitably also excites mechanical vibrations. These can potentially produce acceleration-induced spurious signals as part of the dynamic output of the pressure measurement system being calibrated. This paper proposes and evaluates a method for correcting the frequency response of a pressure measurement system obtained with a calibration using a shock tube for the acceleration-induced errors due to vibrations. The proposed method is based on the predetermined frequency response of the pressure measurement system to the accelerations and simultaneous measurements of the vibration accelerations of the pressure sensor during its calibration in the shock tube. The acceleration-induced errors were corrected for a piezoelectric pressure measurement system calibrated in a diaphragmless shock tube developed at the National laboratory for pressure and vacuum at RISE Research Institutes of Sweden, where different vibrational conditions were induced by changing the initial driver pressure, while keeping the initial driven pressure constant. The uncertainty of the correction of the frequency response of the piezoelectric pressure measurement system being calibrated was determined by considering the uncertainty contributions of the measured acceleration frequency response of the pressure measurement system, the measured acceleration of the pressure sensor during its calibration in the shock tube, the generated reference end-wall step pressure and the repeatability of the correction. The results show that the proposed method effectively eliminates acceleration-induced errors in the sensitivity and phase frequency responses of an acceleration-sensitive piezoelectric pressure measurement system being calibrated with a shock tube.
Language:
English
Keywords:
shock tubes
,
piezoelectric pressure measurement systems
,
vibrations
,
acceleration-induced error
,
frequency response
,
uncertainty analysis
Work type:
Article
Typology:
1.01 - Original Scientific Article
Organization:
FS - Faculty of Mechanical Engineering
Publication status:
Published
Publication version:
Version of Record
Year:
2023
Number of pages:
13 str.
Numbering:
Vol. 193, art. 110246
PID:
20.500.12556/RUL-144655
UDC:
531.787
ISSN on article:
1096-1216
DOI:
10.1016/j.ymssp.2023.110246
COBISS.SI-ID:
144267011
Publication date in RUL:
07.03.2023
Views:
1283
Downloads:
123
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Record is a part of a journal
Title:
Mechanical systems and signal processing
Shortened title:
Mech. syst. signal process.
Publisher:
Elsevier
ISSN:
1096-1216
COBISS.SI-ID:
15296283
Licences
License:
CC BY 4.0, Creative Commons Attribution 4.0 International
Link:
http://creativecommons.org/licenses/by/4.0/
Description:
This is the standard Creative Commons license that gives others maximum freedom to do what they want with the work as long as they credit the author.
Secondary language
Language:
Slovenian
Keywords:
udarne cevi
,
piezoelektrični merilni sistemi za tlak
,
vibracije
,
pogrešek zaradi pospeška
,
frekvenčni odziv
,
analiza negotovosti
Projects
Funder:
ARRS - Slovenian Research Agency
Project number:
J2-3054
Name:
Napredni sistem udarne cevi za visokofrekvenčno primarno dinamično tlačno umerjanje
Funder:
ARRS - Slovenian Research Agency
Project number:
P2-0223
Name:
Prenos toplote in snovi
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