TY - JOUR
T1 - Experimental study on the direct contact condensation of the steam jet in subcooled water flow in a rectangular channel
T2 - Flow patterns and flow field
AU - Yang, Xiao ping
AU - Liu, Ji ping
AU - Zong, Xiao
AU - Chong, Dao tong
AU - Yan, Jun jie
N1 - Publisher Copyright:
© 2015 Elsevier Inc.
PY - 2015/12/1
Y1 - 2015/12/1
N2 - Direct contact condensation (DCC) of steam jet in subcooled water flow in a channel was experimentally studied. The main inlet parameters, including steam mass flux, water mass flux and water temperature were tested in the ranges of 200-600kg/(m2s), 7-18×103kg/(m2s), 288-333K, respectively. Two unstable flow patterns and two stable flow patterns were observed via visualization window by a high speed camera. The flow patterns were determined by steam mass flux, water mass flux and water temperature, and the relationship between flow patterns and flow field parameters was discussed. The results indicated that whether pressure or temperature distributions on the bottom wall of channel could represent different flow patterns. And the position of pressure peak on the bottom wall could almost represent the condensation length. The upper wall pressure distributions were mainly dependent on steam and water mass flux; and the upper wall temperature distributions were affected by the three main inlet parameters. Moreover, the bottom wall pressure and temperature distributions of different unstable flow patterns had similar characteristics while those of stable flow patterns were affected by shock and expansion waves. The underlying cause of transition between different flow patterns under different inlet parameters was reflected and discussed based on pressure distributions.
AB - Direct contact condensation (DCC) of steam jet in subcooled water flow in a channel was experimentally studied. The main inlet parameters, including steam mass flux, water mass flux and water temperature were tested in the ranges of 200-600kg/(m2s), 7-18×103kg/(m2s), 288-333K, respectively. Two unstable flow patterns and two stable flow patterns were observed via visualization window by a high speed camera. The flow patterns were determined by steam mass flux, water mass flux and water temperature, and the relationship between flow patterns and flow field parameters was discussed. The results indicated that whether pressure or temperature distributions on the bottom wall of channel could represent different flow patterns. And the position of pressure peak on the bottom wall could almost represent the condensation length. The upper wall pressure distributions were mainly dependent on steam and water mass flux; and the upper wall temperature distributions were affected by the three main inlet parameters. Moreover, the bottom wall pressure and temperature distributions of different unstable flow patterns had similar characteristics while those of stable flow patterns were affected by shock and expansion waves. The underlying cause of transition between different flow patterns under different inlet parameters was reflected and discussed based on pressure distributions.
KW - Direct contact condensation
KW - Flow patterns
KW - Pressure distributions
KW - Temperature distributions
UR - https://www.scopus.com/pages/publications/84938767311
U2 - 10.1016/j.ijheatfluidflow.2015.07.021
DO - 10.1016/j.ijheatfluidflow.2015.07.021
M3 - 文章
AN - SCOPUS:84938767311
SN - 0142-727X
VL - 56
SP - 172
EP - 181
JO - International Journal of Heat and Fluid Flow
JF - International Journal of Heat and Fluid Flow
ER -