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Heat Transfer Research
Impact-faktor: 0.404 5-jähriger Impact-Faktor: 0.8 SJR: 0.264 SNIP: 0.504 CiteScore™: 0.88

ISSN Druckformat: 1064-2285
ISSN Online: 2162-6561

Volumes:
Volumen 50, 2019 Volumen 49, 2018 Volumen 48, 2017 Volumen 47, 2016 Volumen 46, 2015 Volumen 45, 2014 Volumen 44, 2013 Volumen 43, 2012 Volumen 42, 2011 Volumen 41, 2010 Volumen 40, 2009 Volumen 39, 2008 Volumen 38, 2007 Volumen 37, 2006 Volumen 36, 2005 Volumen 35, 2004 Volumen 34, 2003 Volumen 33, 2002 Volumen 32, 2001 Volumen 31, 2000 Volumen 30, 1999 Volumen 29, 1998 Volumen 28, 1997

Heat Transfer Research

DOI: 10.1615/HeatTransRes.v39.i7.10
pages 559-570

Numerical Simulation of the Turbine Gas Meter Behavior in the Pulsating Flow

Jurij Tonkonogij
Lithuanian Energy Institute, Heat Equipment Research and Testing Laboratory, Breslaujos 3, LT-44403 Kaunas-35, Lithuania
Antanas Pedisius
Lithuanian Energy Institute, Siluminø árenginiø tyrimo ir bandymø laboratorija, Breslaujos str. 3, LT-44403 Kaunas, Lithuania

ABSTRAKT

The facility for investigation of transient processes in turbine gas meters has been developed. The facility ensures instant switching of the turbine meter under test from one channel to another channel with different flow rate and measuring the meter response. The obtained results have been used for evaluating and predicting the meter dynamic errors at flow pulsation of any law. For this purpose, original combined computational-experimental method has been developed. The meter response and dynamic error have been evaluated as a function of frequency, amplitude, law of flow pulsation, and meter time constant of inertia.


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