Autor: |
Kyung-Am Park, Youn Kyun Oh, Hae-Man Choi, Yong Moon Choi |
Rok vydání: |
2009 |
Předmět: |
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Zdroj: |
Flow Measurement and Instrumentation. 20:200-205 |
ISSN: |
0955-5986 |
DOI: |
10.1016/j.flowmeasinst.2009.06.003 |
Popis: |
Many NMIs (National Measurement Institute) and calibration laboratories are using a mercury sealed piston prover as calibration system for gas flow meter. But it has problems in deciding measuring volume, traveling time of piston and generating low flow rate below 10 cc/min. In this study, a new structure of a piston prover is designed and its flow measurement uncertainty is evaluated according to ISO/IEC 17025. A laser interferometer, instead of optical sensors used in a typical piston prover, is employed to measure testing time and moving distance of the piston, accurately. A new material of the piston is used to eliminate contaminated particles from the material of the piston body. Uncertainty is calculated by evaluating various uncertainty factors which have influence on gas flow measurement. The expanded uncertainty of the piston prover is 0.11% at the confidence level of 95%. The uncertainty evaluation procedure of this study would be useful in flow measurement uncertainty determination of other types of gas flow measurement systems. |
Databáze: |
OpenAIRE |
Externí odkaz: |
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