Study of functional characteristics for safety system check valve using scaled model

The paper provides results of experimental scale model studies of functional characteristics of a check valve used in the safety system of a liquid metal cooled reactor. The proposed check valve design with a hollow ball as a blocking element has a number of substantial advantages compared with the...

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Main Authors: D.E. Baluyev, D.V. Gusev, S.I. Meshkov, O.L. Nikanorov, S.L. Osipov, S.A. Rogozhkin, S.V. Rukhlin, S.F. Shepelev
Format: Article
Language:English
Published: National Research Nuclear University (MEPhI) 2015-10-01
Series:Nuclear Energy and Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2452303815000217
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spelling doaj-a4197c40024c4abb90f5390c741a35a52020-11-25T01:52:46ZengNational Research Nuclear University (MEPhI)Nuclear Energy and Technology2452-30382015-10-01129910210.1016/j.nucet.2015.11.020Study of functional characteristics for safety system check valve using scaled modelD.E. BaluyevD.V. GusevS.I. MeshkovO.L. NikanorovS.L. OsipovS.A. RogozhkinS.V. RukhlinS.F. ShepelevThe paper provides results of experimental scale model studies of functional characteristics of a check valve used in the safety system of a liquid metal cooled reactor. The proposed check valve design with a hollow ball as a blocking element has a number of substantial advantages compared with the most widely spread valves with disc type flaps used as blocking elements. The advantages are valve operation independent of functioning of other safety systems and absence of friction pairs. The need to conduct experimental studies is determined both by the novelty of the proposed check valve design and by absence of verified computational validation methods for functioning of this type of valves. In this connection, the paper presents a computational validation method for hydrodynamic parameters of the proposed check valve design and similitude parameters describing hydrodynamic characteristics of the check valve – numeric values of the similitude parameters were obtained through calculations made by the ANSYSCFX commercial hydrodynamic code. The paper describes the experimental model of the check valve with two alternative options for the blocking element – one in the form of a hollow ball in a support bowl; and another one, in the form of a semi sphere on a guide rod going through the support sleeve on the valve spindle. Provided is a brief description of the test facility. Hydrodynamic characteristics of the check valve model obtained in experimental studies are shown in diagrams as functions of some design and operation parameters of the model.http://www.sciencedirect.com/science/article/pii/S2452303815000217Liquid metal cooled reactorSafety systemCheck valveHydrodynamic forceSimilarity criteriaCheck valve modelTest facility
collection DOAJ
language English
format Article
sources DOAJ
author D.E. Baluyev
D.V. Gusev
S.I. Meshkov
O.L. Nikanorov
S.L. Osipov
S.A. Rogozhkin
S.V. Rukhlin
S.F. Shepelev
spellingShingle D.E. Baluyev
D.V. Gusev
S.I. Meshkov
O.L. Nikanorov
S.L. Osipov
S.A. Rogozhkin
S.V. Rukhlin
S.F. Shepelev
Study of functional characteristics for safety system check valve using scaled model
Nuclear Energy and Technology
Liquid metal cooled reactor
Safety system
Check valve
Hydrodynamic force
Similarity criteria
Check valve model
Test facility
author_facet D.E. Baluyev
D.V. Gusev
S.I. Meshkov
O.L. Nikanorov
S.L. Osipov
S.A. Rogozhkin
S.V. Rukhlin
S.F. Shepelev
author_sort D.E. Baluyev
title Study of functional characteristics for safety system check valve using scaled model
title_short Study of functional characteristics for safety system check valve using scaled model
title_full Study of functional characteristics for safety system check valve using scaled model
title_fullStr Study of functional characteristics for safety system check valve using scaled model
title_full_unstemmed Study of functional characteristics for safety system check valve using scaled model
title_sort study of functional characteristics for safety system check valve using scaled model
publisher National Research Nuclear University (MEPhI)
series Nuclear Energy and Technology
issn 2452-3038
publishDate 2015-10-01
description The paper provides results of experimental scale model studies of functional characteristics of a check valve used in the safety system of a liquid metal cooled reactor. The proposed check valve design with a hollow ball as a blocking element has a number of substantial advantages compared with the most widely spread valves with disc type flaps used as blocking elements. The advantages are valve operation independent of functioning of other safety systems and absence of friction pairs. The need to conduct experimental studies is determined both by the novelty of the proposed check valve design and by absence of verified computational validation methods for functioning of this type of valves. In this connection, the paper presents a computational validation method for hydrodynamic parameters of the proposed check valve design and similitude parameters describing hydrodynamic characteristics of the check valve – numeric values of the similitude parameters were obtained through calculations made by the ANSYSCFX commercial hydrodynamic code. The paper describes the experimental model of the check valve with two alternative options for the blocking element – one in the form of a hollow ball in a support bowl; and another one, in the form of a semi sphere on a guide rod going through the support sleeve on the valve spindle. Provided is a brief description of the test facility. Hydrodynamic characteristics of the check valve model obtained in experimental studies are shown in diagrams as functions of some design and operation parameters of the model.
topic Liquid metal cooled reactor
Safety system
Check valve
Hydrodynamic force
Similarity criteria
Check valve model
Test facility
url http://www.sciencedirect.com/science/article/pii/S2452303815000217
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