Two-phase flow behaviour during a medium size cold leg LOCA test on PMK-2 (IAEA - SPE-4)

The experiment to the IAEA standard problem exercise No. 4 was carried out in April 1993 on the integral test facility PMK-2 in Budapest. It was a 3.2 mm break on the downcomer head. The high pressure injection cooling was assumed to be not available. As an accident management measure bleed and feed...

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Main Authors: Ézsöl, Gy., Schäfer, Frank, Krepper, Eckhard, Prasser, Horst-Michael, Szabados, L., Perneczky, L.
Other Authors: Forschungszentrum Rossendorf, Institut für Sicherheitsforschung
Format: Others
Language:English
Published: Forschungszentrum Dresden 2010
Online Access:http://nbn-resolving.de/urn:nbn:de:bsz:d120-qucosa-31867
http://nbn-resolving.de/urn:nbn:de:bsz:d120-qucosa-31867
http://www.qucosa.de/fileadmin/data/qucosa/documents/3186/410.pdf
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spelling ndltd-DRESDEN-oai-qucosa.de-bsz-d120-qucosa-318672013-01-07T19:53:09Z Two-phase flow behaviour during a medium size cold leg LOCA test on PMK-2 (IAEA - SPE-4) Ézsöl, Gy. Schäfer, Frank Krepper, Eckhard Prasser, Horst-Michael Szabados, L. Perneczky, L. The experiment to the IAEA standard problem exercise No. 4 was carried out in April 1993 on the integral test facility PMK-2 in Budapest. It was a 3.2 mm break on the downcomer head. The high pressure injection cooling was assumed to be not available. As an accident management measure bleed and feed on the secondary side of the steam generator was applied. Research Center Rossendorf contributed to the experiment of SPE-4 by supplying needle shaped conductivity probes for the measurement of local void fractions in the primary circuit of the PMK-II test facility. In the course of the standard problem exercise No. 4 RCR contributed with posttest calculations using the thermalhydraulic code ATHLET. The report comprises a description of the initial and boundary conditions of the test and a phenomenological description of the thermalhydraulic events during the transient. The void fraction probe signals yields valuable information for deeper understanding of the thermalhydraulic occurrences and for code validation. This was the case particularly for correction of the level measurement. A description of the thermalhydraulic occurrences from the viewpoint of code verification is given and the results of RELAP5 (KFKI-AEKI) and of ATHLET-calculations (RCR) are compared. Referring to this description, the sensitivity of the result to main influences is investigated using the ATHLET-code. Forschungszentrum Dresden Forschungszentrum Rossendorf, Institut für Sicherheitsforschung 2010-03-31 doc-type:report application/pdf http://nbn-resolving.de/urn:nbn:de:bsz:d120-qucosa-31867 urn:nbn:de:bsz:d120-qucosa-31867 http://www.qucosa.de/fileadmin/data/qucosa/documents/3186/410.pdf Forschungszentrum Rossendorf; FZR-101 August 1995 eng dcterms:isPartOf:Wissenschaftlich-technische Berichte ; FZR-101
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language English
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description The experiment to the IAEA standard problem exercise No. 4 was carried out in April 1993 on the integral test facility PMK-2 in Budapest. It was a 3.2 mm break on the downcomer head. The high pressure injection cooling was assumed to be not available. As an accident management measure bleed and feed on the secondary side of the steam generator was applied. Research Center Rossendorf contributed to the experiment of SPE-4 by supplying needle shaped conductivity probes for the measurement of local void fractions in the primary circuit of the PMK-II test facility. In the course of the standard problem exercise No. 4 RCR contributed with posttest calculations using the thermalhydraulic code ATHLET. The report comprises a description of the initial and boundary conditions of the test and a phenomenological description of the thermalhydraulic events during the transient. The void fraction probe signals yields valuable information for deeper understanding of the thermalhydraulic occurrences and for code validation. This was the case particularly for correction of the level measurement. A description of the thermalhydraulic occurrences from the viewpoint of code verification is given and the results of RELAP5 (KFKI-AEKI) and of ATHLET-calculations (RCR) are compared. Referring to this description, the sensitivity of the result to main influences is investigated using the ATHLET-code.
author2 Forschungszentrum Rossendorf, Institut für Sicherheitsforschung
author_facet Forschungszentrum Rossendorf, Institut für Sicherheitsforschung
Ézsöl, Gy.
Schäfer, Frank
Krepper, Eckhard
Prasser, Horst-Michael
Szabados, L.
Perneczky, L.
author Ézsöl, Gy.
Schäfer, Frank
Krepper, Eckhard
Prasser, Horst-Michael
Szabados, L.
Perneczky, L.
spellingShingle Ézsöl, Gy.
Schäfer, Frank
Krepper, Eckhard
Prasser, Horst-Michael
Szabados, L.
Perneczky, L.
Two-phase flow behaviour during a medium size cold leg LOCA test on PMK-2 (IAEA - SPE-4)
author_sort Ézsöl, Gy.
title Two-phase flow behaviour during a medium size cold leg LOCA test on PMK-2 (IAEA - SPE-4)
title_short Two-phase flow behaviour during a medium size cold leg LOCA test on PMK-2 (IAEA - SPE-4)
title_full Two-phase flow behaviour during a medium size cold leg LOCA test on PMK-2 (IAEA - SPE-4)
title_fullStr Two-phase flow behaviour during a medium size cold leg LOCA test on PMK-2 (IAEA - SPE-4)
title_full_unstemmed Two-phase flow behaviour during a medium size cold leg LOCA test on PMK-2 (IAEA - SPE-4)
title_sort two-phase flow behaviour during a medium size cold leg loca test on pmk-2 (iaea - spe-4)
publisher Forschungszentrum Dresden
publishDate 2010
url http://nbn-resolving.de/urn:nbn:de:bsz:d120-qucosa-31867
http://nbn-resolving.de/urn:nbn:de:bsz:d120-qucosa-31867
http://www.qucosa.de/fileadmin/data/qucosa/documents/3186/410.pdf
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