A conceptual study of a natural circulation cooling loop for a PWR containment / Jacobs L.E.

The removal of heat from the containment building is an important consideration in the design of a nuclear power plant. In this investigation a simple rectangular natural circulation loop was simulated to determine whether it could possibly be used to remove usable quantities of heat from a containm...

Full description

Bibliographic Details
Main Author: Jacobs, Louis Egbert.
Published: North-West University 2012
Subjects:
Online Access:http://hdl.handle.net/10394/7608
id ndltd-netd.ac.za-oai-union.ndltd.org-nwu-oai-dspace.nwu.ac.za-10394-7608
record_format oai_dc
spelling ndltd-netd.ac.za-oai-union.ndltd.org-nwu-oai-dspace.nwu.ac.za-10394-76082014-04-16T03:53:12ZA conceptual study of a natural circulation cooling loop for a PWR containment / Jacobs L.E.Jacobs, Louis Egbert.Natural circulation loopSimulationContainment building coolingSingle phaseTwo phaseThe removal of heat from the containment building is an important consideration in the design of a nuclear power plant. In this investigation a simple rectangular natural circulation loop was simulated to determine whether it could possibly be used to remove usable quantities of heat from a containment building. The loop had a vertical pipe on the inside and outside of the containment building. These pipes acted as heat exchangers. Single phase and two phase cases were simulated by imposing a temperature on the respective vertical leg pipe walls and determining the heat absorption from the containment building. The heat was conveyed from the inside of the building to the outside via the natural circulation phenomenon. A literature study was done to cover topics relevant to this investigation. A theoretical model using conservation equations and control volumes was derived. This model was based largely on knowledge gleaned from the literature study. The theoretical model was a simple homogenous model, which was sufficiently detailed for a conceptual investigation. The theoretical model was then manipulated into a form suitable for use in a computer simulation program. Simplifications were made to the simulation model and underlying theory due to the nature of the investigation. The simulation model was validated against published experimental results. During the simulation phase a number of cases were investigated. These cases were divided into base cases and parametric studies. During the base case simulations the change of key fluid variables along the loop was examined. During the parametric studies the hot and cold leg inside wall temperatures, loop geometry and pipe diameter were varied. The effect of these parameters on the heat absorption from the containment was determined. The simulations showed that with the current assumptions about 75 to 120 of the natural circulation loops are needed depending on their geometry and containment conditions. The heat removal rates that were calculated varied from 50 kW to 600 kW for a single loop. As explained in the final chapter, there are many factors that influence the results obtained. The natural circulation concept was deemed to be able to remove usable quantities of heat from the containment building.Thesis (M.Ing. (Nuclear Engineering))--North-West University, Potchefstroom Campus, 2012.North-West University2012-10-23T13:21:35Z2012-10-23T13:21:35Z2011Thesishttp://hdl.handle.net/10394/7608
collection NDLTD
sources NDLTD
topic Natural circulation loop
Simulation
Containment building cooling
Single phase
Two phase
spellingShingle Natural circulation loop
Simulation
Containment building cooling
Single phase
Two phase
Jacobs, Louis Egbert.
A conceptual study of a natural circulation cooling loop for a PWR containment / Jacobs L.E.
description The removal of heat from the containment building is an important consideration in the design of a nuclear power plant. In this investigation a simple rectangular natural circulation loop was simulated to determine whether it could possibly be used to remove usable quantities of heat from a containment building. The loop had a vertical pipe on the inside and outside of the containment building. These pipes acted as heat exchangers. Single phase and two phase cases were simulated by imposing a temperature on the respective vertical leg pipe walls and determining the heat absorption from the containment building. The heat was conveyed from the inside of the building to the outside via the natural circulation phenomenon. A literature study was done to cover topics relevant to this investigation. A theoretical model using conservation equations and control volumes was derived. This model was based largely on knowledge gleaned from the literature study. The theoretical model was a simple homogenous model, which was sufficiently detailed for a conceptual investigation. The theoretical model was then manipulated into a form suitable for use in a computer simulation program. Simplifications were made to the simulation model and underlying theory due to the nature of the investigation. The simulation model was validated against published experimental results. During the simulation phase a number of cases were investigated. These cases were divided into base cases and parametric studies. During the base case simulations the change of key fluid variables along the loop was examined. During the parametric studies the hot and cold leg inside wall temperatures, loop geometry and pipe diameter were varied. The effect of these parameters on the heat absorption from the containment was determined. The simulations showed that with the current assumptions about 75 to 120 of the natural circulation loops are needed depending on their geometry and containment conditions. The heat removal rates that were calculated varied from 50 kW to 600 kW for a single loop. As explained in the final chapter, there are many factors that influence the results obtained. The natural circulation concept was deemed to be able to remove usable quantities of heat from the containment building. === Thesis (M.Ing. (Nuclear Engineering))--North-West University, Potchefstroom Campus, 2012.
author Jacobs, Louis Egbert.
author_facet Jacobs, Louis Egbert.
author_sort Jacobs, Louis Egbert.
title A conceptual study of a natural circulation cooling loop for a PWR containment / Jacobs L.E.
title_short A conceptual study of a natural circulation cooling loop for a PWR containment / Jacobs L.E.
title_full A conceptual study of a natural circulation cooling loop for a PWR containment / Jacobs L.E.
title_fullStr A conceptual study of a natural circulation cooling loop for a PWR containment / Jacobs L.E.
title_full_unstemmed A conceptual study of a natural circulation cooling loop for a PWR containment / Jacobs L.E.
title_sort conceptual study of a natural circulation cooling loop for a pwr containment / jacobs l.e.
publisher North-West University
publishDate 2012
url http://hdl.handle.net/10394/7608
work_keys_str_mv AT jacobslouisegbert aconceptualstudyofanaturalcirculationcoolingloopforapwrcontainmentjacobsle
AT jacobslouisegbert conceptualstudyofanaturalcirculationcoolingloopforapwrcontainmentjacobsle
_version_ 1716664238914666496