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Proof-of-principle demonstration of a virtual flow meter-based transducer for gaseous helium monitoring in particle accelerator cryogenics.

作者信息

Arpaia P, Blanco E, Girone M, Inglese V, Pezzetti M, Piccinelli F, Serio L

机构信息

Department of Electrical Engineering and Information Technologies, University of Napoli Federico II, Napoli, Italy.

Technology Department, European Organization for Nuclear Research (CERN), Geneva, Switzerland.

出版信息

Rev Sci Instrum. 2015 Jul;86(7):075004. doi: 10.1063/1.4923466.

Abstract

A transducer based on a virtual flow meter is proposed for monitoring helium distribution and consumption in cryogenic systems for particle accelerators. The virtual flow meter allows technical and economical constraints, preventing installation of physical instruments in all the needed measurement points, to be overcome. Virtual flow meter performance for the alternative models of Samson [ http://www.samson.de (2015)] and Sereg-Schlumberger [ http://www.slb.com/ (2015)] is compared with the standard IEC 60534-2-1 [Industrial-process control valves-Part 2-1: Flow capacity-sizing equations for fluid flow under installed conditions (2011), https://webstore.iec.ch/publication/2461], for a large temperature range, for both gaseous and liquid helium phases, and for different pressure drops. Then, the calibration function of the transducer is derived. Finally, the experimental validation for the helium gaseous state on the test station for superconducting magnets in the laboratory SM18 [Pirotte et al., AIP Conf. Proc. 1573, 187 (2014)] at CERN is reported.

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