Pressurizer surge line Counter Current Flow Limitation during AP600 Mode 5 Cold Shutdown

Counter Current Flow Limitation (CCFL) was observed in the pressurizer surge line of the Oregon State University APEX facility during test NRC-10. This test simulated a one-inch diameter cold leg break with a failure of three of four of the fourth-stage Automatic Depressurization System (ADS) valves...

Full description

Bibliographic Details
Main Author: Colpo, Sarah E.
Other Authors: Reyes, Jose N. Jr
Language:en_US
Published: 2012
Subjects:
Online Access:http://hdl.handle.net/1957/33578
id ndltd-ORGSU-oai-ir.library.oregonstate.edu-1957-33578
record_format oai_dc
spelling ndltd-ORGSU-oai-ir.library.oregonstate.edu-1957-335782012-09-18T04:10:37ZPressurizer surge line Counter Current Flow Limitation during AP600 Mode 5 Cold ShutdownColpo, Sarah E.Pressurized water reactors -- Oregon -- TestingPressurized water reactors -- Emergency core cooling systems -- OregonCounter Current Flow Limitation (CCFL) was observed in the pressurizer surge line of the Oregon State University APEX facility during test NRC-10. This test simulated a one-inch diameter cold leg break with a failure of three of four of the fourth-stage Automatic Depressurization System (ADS) valves. The result was a high vapor flow rate through ADS 1-3, that caused CCFL in the pressurizer surge line and liquid holdup in the pressurizer. Because this liquid was not available for core cooling, further study of the passive safety systems in the AP600 under Mode 5 Cold Shutdown conditions was deemed necessary. An analysis of the AP600 geometry and the existing CCFL database determined that Kutateladze scaling is appropriate for the APEX and AP600 surge lines. The Kutateladze CCFL correlation was used to assess CCFL in the APEX and AP600 pressurizer surge lines under Mode 5 Cold Shutdown conditions. The results indicate that CCFL would be expected in the pressurizer surge lines at low pressures and decay powers prior to ADS 4 actuation. Test NRC-35 examined CCFL and provided data to benchmark NRC's thermal hydraulic analysis codes. This thesis presents the results of test NRC-35 and the supporting CCFL calculations.Graduation date: 1999Reyes, Jose N. Jr2012-09-17T18:08:34Z2012-09-17T18:08:34Z1999-03-091999-03-09Thesis/Dissertationhttp://hdl.handle.net/1957/33578en_US
collection NDLTD
language en_US
sources NDLTD
topic Pressurized water reactors -- Oregon -- Testing
Pressurized water reactors -- Emergency core cooling systems -- Oregon
spellingShingle Pressurized water reactors -- Oregon -- Testing
Pressurized water reactors -- Emergency core cooling systems -- Oregon
Colpo, Sarah E.
Pressurizer surge line Counter Current Flow Limitation during AP600 Mode 5 Cold Shutdown
description Counter Current Flow Limitation (CCFL) was observed in the pressurizer surge line of the Oregon State University APEX facility during test NRC-10. This test simulated a one-inch diameter cold leg break with a failure of three of four of the fourth-stage Automatic Depressurization System (ADS) valves. The result was a high vapor flow rate through ADS 1-3, that caused CCFL in the pressurizer surge line and liquid holdup in the pressurizer. Because this liquid was not available for core cooling, further study of the passive safety systems in the AP600 under Mode 5 Cold Shutdown conditions was deemed necessary. An analysis of the AP600 geometry and the existing CCFL database determined that Kutateladze scaling is appropriate for the APEX and AP600 surge lines. The Kutateladze CCFL correlation was used to assess CCFL in the APEX and AP600 pressurizer surge lines under Mode 5 Cold Shutdown conditions. The results indicate that CCFL would be expected in the pressurizer surge lines at low pressures and decay powers prior to ADS 4 actuation. Test NRC-35 examined CCFL and provided data to benchmark NRC's thermal hydraulic analysis codes. This thesis presents the results of test NRC-35 and the supporting CCFL calculations. === Graduation date: 1999
author2 Reyes, Jose N. Jr
author_facet Reyes, Jose N. Jr
Colpo, Sarah E.
author Colpo, Sarah E.
author_sort Colpo, Sarah E.
title Pressurizer surge line Counter Current Flow Limitation during AP600 Mode 5 Cold Shutdown
title_short Pressurizer surge line Counter Current Flow Limitation during AP600 Mode 5 Cold Shutdown
title_full Pressurizer surge line Counter Current Flow Limitation during AP600 Mode 5 Cold Shutdown
title_fullStr Pressurizer surge line Counter Current Flow Limitation during AP600 Mode 5 Cold Shutdown
title_full_unstemmed Pressurizer surge line Counter Current Flow Limitation during AP600 Mode 5 Cold Shutdown
title_sort pressurizer surge line counter current flow limitation during ap600 mode 5 cold shutdown
publishDate 2012
url http://hdl.handle.net/1957/33578
work_keys_str_mv AT colposarahe pressurizersurgelinecountercurrentflowlimitationduringap600mode5coldshutdown
_version_ 1716392943521103872