
doi: 10.2172/850016
This report describes a three-year project to investigate the major factors of horizontal heat exchanger performance in passive containment heat removal from a light water reactor following a design basis accident LOCA (Loss of Coolant Accident). The heat exchanger studied in this work may be used in advanced and innovative reactors, in which passive heat removal systems are adopted to improve safety and reliability The application of horizontal tube-bundle condensers to passive containment heat removal is new. In order to show the feasibility of horizontal heat exchangers for passive containment cooling, the following aspects were investigated: 1. the condensation heat transfer characteristics when the incoming fluid contains noncondensable gases 2. the effectiveness of condensate draining in the horizontal orientation 3. the conditions that may lead to unstable condenser operation or highly degraded performance 4. multi-tube behavior with the associated secondary-side effects This project consisted of two experimental investigations and analytical model development for incorporation into industry safety codes such as TRAC and RELAP. A physical understanding of the flow and heat transfer phenomena was obtained and reflected in the analysis models. Two gradute students (one funded by the program) and seven undergraduate students obtained research experience as a part of this program.
Reactor Safety, 22 General Studies Of Nuclear Reactors, Design, Coolants, Condensation, Design Basis Accidents, Heat Exchanger, Performance, Containment, Heat Exchangers, Passive, Heat Transfer, Reliability, Water Reactor Safety, Condensates, Orientation, Gases, Safety, Removal
Reactor Safety, 22 General Studies Of Nuclear Reactors, Design, Coolants, Condensation, Design Basis Accidents, Heat Exchanger, Performance, Containment, Heat Exchangers, Passive, Heat Transfer, Reliability, Water Reactor Safety, Condensates, Orientation, Gases, Safety, Removal
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