Published December 2007 | Version v1
Journal article

On the occurrence of burnout downstream of a flow obstacle in boiling two-phase upward flow within a vertical annular channel

  • 1. Yokohama National University, Yokohama 240-8501 (Japan)
  • 2. Ube National College of Technology, Ube 755-8555 (Japan)
  • 3. Kurume Institute of University, Fukuoka 830-0052 (Japan)

Description

If a flow obstacle, such as a spacer is placed in a boiling two-phase flow within a channel, the temperature on the surface of the heating tube is severely affected by the existence of the spacer. Under certain conditions, a spacer has a cooling effect, and under other conditions, the spacer causes dryout of the cooling water film on the heating surface. The burnout mechanism, which always occurs upstream of a spacer, however, remains unclear. In a previous paper [Fukano, T., Mori, S., Akamatsu, S., Baba, A., 2002. Relation between temperature fluctuation of a heating surface and generation of drypatch caused by a cylindrical spacer in a vertical boiling two-phase upward flow in a narrow annular channel. Nucl. Eng. Des. 217, 81-90], we reported that the disturbance wave has a significant effect on dryout and burnout occurrence and that a spacer greatly affects the behavior of the liquid film downstream of the spacer. In the present study, we examined in detail the influences of a spacer on the heat transfer and film thickness characteristics downstream of the spacer by considering the result in steam-water and air-water systems. The main results are summarized as follows: (1)The spacer averages the liquid film in the disturbance wave flow. As a result, dryout tends not to occur downstream of the spacer. This means that large temperature increases do not occur there. However, traces of disturbance waves remain, even if the disturbance waves are averaged by the spacer. (2)There is a high probability that the location at which burnout occurs is upstream of the downstream spacer, irrespective of the spacer spacing. (3)The newly proposed burnout occurrence model can explain the phenomena that burnout does occur upstream of the downstream spacer, even if the liquid film thickness tFm is approximately the same before and behind the spacer

Availability note (English)

Available from http://dx.doi.org/10.1016/j.nucengdes.2007.03.044

Additional details

Identifiers

DOI
10.1016/j.nucengdes.2007.03.044;
PII
S0029-5493(07)00259-2;

Publishing Information

Journal Title
Nuclear Engineering and Design
Journal Volume
237
Journal Issue
23
Journal Page Range
p. 2240-2249
ISSN
0029-5493
CODEN
NEDEAU

INIS

Country of Publication
Netherlands
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
39049018
Subject category
S42: ENGINEERING;
Descriptors DEI
AIR; BOILING; BURNOUT; COOLING; CYLINDRICAL CONFIGURATION; DISTURBANCES; DRYOUT; FILMS; HEAT TRANSFER; HEATING; LIQUIDS; SPACERS; STEAM; SURFACES; THICKNESS; TUBES; TWO-PHASE FLOW; WATER
Descriptors DEC
CONFIGURATION; DIMENSIONS; ENERGY TRANSFER; FLUID FLOW; FLUIDS; GASES; HYDROGEN COMPOUNDS; OXYGEN COMPOUNDS; PHASE TRANSFORMATIONS

Optional Information

Copyright
Copyright (c) 2007 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.