EXPERIMENTS ON THE EFFECTS OF A SPACER GRID IN AIR-WATER TWO-PHASE FLOW

被引:7
|
作者
Wheeler, Joshua [1 ]
Worosz, Ted [1 ]
Kim, Seungjint [1 ]
机构
[1] Penn State Univ, Dept Mech & Nucl Engn, University Pk, PA 16802 USA
关键词
spacer grid; two-phase flow; interfacial area concentration; ROD BUNDLES; CONDUCTIVITY PROBE;
D O I
10.13182/NT14-69
中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
Understanding the effects of spacer grids on the coolant flow through a nuclear reactor core is required for best-estimate design and analysis of the plant. The impact of a spacer grid on two-phase flows is of particular importance because the geometric effects of the grid can alter the two-phase flow structure and, consequently, the mass, momentum, and energy transfer characteristics. Therefore, a scaled separate-effects test facility is constructed to investigate the effects of a spacer grid on the hydrodynamics of air-water two-phase flow through a rod bundle. The test facility is scaled to maintain hydrodynamic and geometric similarity to single- and two-phase flows in a conventional pressurized water reactor and to facilitate detailed local measurements of two-phase flow parameters around the simulant fuel rods with a four-sensor conductivity probe. This paper presents measurements of local time-averaged two-phase flow parameters acquired upstream and downstream of the spacer grid with the conductivity probe in a representative subchannel of a 1x3 rod bundle for eight flow conditions. Characteristic features of the development of the two-phase flow parameters along the test section are discussed.
引用
收藏
页码:215 / 224
页数:10
相关论文
共 50 条
  • [41] Numerical simulation of air-water two-phase flow over stepped spillways
    Xiangju Cheng
    Yongcan Chen
    Lin Luo
    Science in China Series E: Technological Sciences, 2006, 49 : 674 - 684
  • [42] A Wire-Mesh Sensor for Air-Water Two-Phase Flow Imaging
    Liu, Weiling
    Tan, Chao
    Dong, Feng
    2015 IEEE INTERNATIONAL INSTRUMENTATION AND MEASUREMENT TECHNOLOGY CONFERENCE (I2MTC), 2015, : 364 - 369
  • [43] Interfacial structure of air-water two-phase flow in a relatively large pipe
    Sun, X
    Smith, TR
    Kim, S
    Ishii, M
    Uhle, J
    EXPERIMENTS IN FLUIDS, 2003, 34 (02) : 206 - 219
  • [44] HEAT TRANSFER IN AIR-WATER TWO-PHASE FLOW IN A CONCENTRIC ANNULUS.
    Michiyoshi, Itaru
    1978,
  • [45] WALL SHEAR PREDICTION FOR WAVY AND ANNULAR AIR-WATER TWO-PHASE FLOW
    Schubring, DuWayne
    Ashwood, Andrea C.
    Shedd, Timothy A.
    ICONE16: PROCEEDING OF THE 16TH INTERNATIONAL CONFERENCE ON NUCLEAR ENGINEERING - 2008, VOL 3, 2008, : 107 - 115
  • [46] Analysis of two-phase air-water annular flow in U-bends
    Lopez, J.
    Ratkovich, N.
    Pereyra, E.
    HELIYON, 2020, 6 (12)
  • [47] Experimental investigation of a vertically downward two-phase air-water slug flow
    Bouyahiaoui, Hiba
    Azzi, Abdelwahid
    Zeghloul, Ammar
    Hasan, Abbas
    Berrouk, Abdallah Sofiane
    JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2018, 162 : 12 - 21
  • [48] Air-water two-phase flow and heat transfer in a plate heat exchanger
    Vlasogiannis, P
    Karagiannis, G
    Argyropoulos, P
    Bontozoglou, V
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2002, 28 (05) : 757 - 772
  • [49] An experimental investigation into the effect of surfactants on air-water two-phase flow in minichannels
    English, NJ
    Kandlikar, SG
    HEAT TRANSFER ENGINEERING, 2006, 27 (04) : 99 - 109
  • [50] Multi-layered Bubble Identification in an Air-Water Two-Phase Flow
    Abusah, Johnson Lorlornyo
    Qiao, Shouxu
    Ala, Ayodeji
    Bo, Wang
    Tan, Sichiao
    CHALLENGES AND RECENT ADVANCEMENTS IN NUCLEAR ENERGY SYSTEMS, SCOPE 2023, 2024, : 402 - 410