Direct Numerical Simulation of Low and Unitary Prandtl Number Fluids in Reactor Downcomer Geometry

被引:2
|
作者
Tai, Cheng-Kai [1 ]
Nguyen, Tri [2 ]
Iskhakov, Arsen S. [1 ]
Merzari, Elia [2 ]
Dinh, Nam T. [1 ]
Bolotnov, Igor A. [1 ]
机构
[1] North Carolina State Univ, Campus Box 7909, Raleigh, NC 27695 USA
[2] Penn State Univ, 206 Hallowell Bldg, University Pk, PA 16802 USA
关键词
Direct numerical simulation; vertical mixed convection; low-Prandtl-number fluids; downcomer; TURBULENT MIXED CONVECTION; HEAT-TRANSFER; CHANNEL FLOW; BUOYANCY; DNS; MODEL; PIPE;
D O I
10.1080/00295450.2023.2213286
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
Mixed convection of low and unitary Prandtl fluids in a vertical passage is fundamental to passive heat removal in liquid metal and gas-cooled advanced reactor designs. Capturing the influence of buoyancy in flow and heat transfer in engineering analysis is hence a cornerstone to the safety of the next-generation reactor. However, accurate prediction of the mixed convection phenomenon has eluded current turbulence and heat transfer modeling approaches, yet further development and validation of modeling methods is limited by a scarcity of high-fidelity data pertaining to reactor heat transfer. In this work, a series of direct numerical simulations was conducted to investigate the influence of buoyancy on descending flow of liquid sodium, lead, and unitary Prandtl fluid in a differentially heated channel that represents the reactor downcomer region. From time-averaged statistics, flow-opposing/aiding buoyant plumes near the heated/cooled wall distort the mean velocity distribution, which gives rise to promotion/suppression of turbulence intensity and modification of turbulent shear stress and heat flux distribution. Frequency analysis of time series also suggests the existence of large-scale convective and thermal structures rising from the heated wall. As a general trend, fluids of lower Prandtl number were found to be more susceptible to the buoyancy effect due to stronger differential buoyancy across the channel. On the other hand, the effectiveness of convective heat transfer of the three studied fluids showed a distinct trend against the influence of buoyancy. Physical reasoning on observation of the Nusselt number trend is also discussed.
引用
收藏
页码:1097 / 1118
页数:22
相关论文
共 50 条
  • [41] Numerical investigation of helical baffles heat exchanger with different Prandtl number fluids
    Xiao, Xiaoming
    Zhang, Luhong
    Li, Xingang
    Jiang, Bing
    Yang, Xiaoling
    Xia, Youmei
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2013, 63 : 434 - 444
  • [42] Direct Numerical Simulation of Turbulent Heat Transfer at Low Prandtl Numbers in Planar Impinging Jets
    Duponcheel, M.
    Bartosiewicz, Y.
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2021, 173 (173)
  • [43] MRT-LATTICE BOLTZMANN SIMULATION OF HIGH SCHMIDT AND LOW PRANDTL NUMBER FLUIDS WITH HETEROGENEOUS REACTION ON SURFACES
    Kermani, Emad Pouryazdanpanah
    Chen, Yi-Tung
    HEAT TRANSFER RESEARCH, 2020, 51 (05) : 433 - 445
  • [44] Direct numerical simulation of high Rayleigh number convection in a rotating and non-rotating spherical shell: The Prandtl number dependence
    Tilgner, A
    Busse, FH
    ADVANCES IN TURBULENCES VI, 1996, 36 : 389 - 390
  • [45] Numerical prediction of turbulent heat transfer at low Prandtl number
    Bricteux, L.
    Dunponcheel, M.
    Manconi, M.
    Bartosiewicz, Y.
    6TH EUROPEAN THERMAL SCIENCES CONFERENCE (EUROTHERM 2012), 2012, 395
  • [46] Direct numerical simulation of turbulent free-surface high Prandtl number fluid flows in fusion reactors
    Kunugi, T
    Satake, S
    Sagara, A
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2001, 464 (1-3): : 165 - 171
  • [47] Two- and three-dimensional numerical simulations of the transition to oscillatory convection in low-Prandtl-number fluids
    Henry, D
    Buffat, M
    JOURNAL OF FLUID MECHANICS, 1998, 374 : 145 - 171
  • [48] NUMERICAL SIMULATION OF PRANDTL NUMBER EFFECT ON ENTROPY GENERATION IN A SQUARE CAVITY
    Ferroudj, Nawal
    Koten, Hasan
    Kachi, Sacia
    Boudebous, Saadoun
    JOURNAL OF THERMAL ENGINEERING, 2021, 7 (04): : 1016 - 1029
  • [49] Thermocapillary Convection of Low Prandtl Number Fluids Under Uniform Magnetic Fields
    Liang, Ruquan
    Bei, Di
    Yan, Fusheng
    Geng, Dianqiao
    ADVANCES IN CIVIL AND INDUSTRIAL ENGINEERING IV, 2014, 580-583 : 2970 - 2973
  • [50] 2-DIMENSIONAL CONVECTION ROLLS AND THEIR INSTABILITIES IN LOW PRANDTL NUMBER FLUIDS
    CLEVER, RM
    BUSSE, FH
    BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, 1978, 23 (08): : 993 - 993