Numerical investigation of natural circulation loop with supercritical CO2 on the thermal control system of micro spacecrafts

被引:4
|
作者
Gao, Zhigang [1 ,2 ]
Qiao, Keqiang [1 ,2 ]
Bai, Junhua [3 ]
Wang, Zhiqiang [1 ,2 ]
Liu, Hang [1 ,2 ]
Li, Peng [1 ,2 ]
机构
[1] Northwestern Polytech Univ, Inst Precis Guidance & Control, Xian 710072, Peoples R China
[2] Natl Local Joint Engn Lab Microsatellite Technol &, Xian 710072, Peoples R China
[3] Xian Shiyou Univ, Coll Petr Engn, Xian 710065, Peoples R China
关键词
Micro spacecraft; Variable gravities; Natural circulation loop; Supercritical CO 2; Thermal performance; Friction factor; Flow correlation; HEAT-TRANSFER; STEADY-STATE; FLOW; CUBESAT; FLUIDS;
D O I
10.1016/j.ijheatmasstransfer.2023.124661
中图分类号
O414.1 [热力学];
学科分类号
摘要
Aiming at the heat dissipation problem under the strict constraints of mass, volume, and power consumption in micro spacecrafts, the feasibility of applying a natural circulation loop (NCL) to the thermal control system is performed for the CubeSats (Cube satellites) of orbiting operations or the micro-rovers of extraterrestrial explorations. A 3-dimensional NCL model under variable gravity conditions corresponding the environment of aerospace is established, and the supercritical CO2 as the coolant. The heat transfer and thermal performance of NCL under gravity range of 10-6 g to 10 g are analyzed numerically, including the Earth orbit, the surface of the Moon and the Mars etc. The calculation results present that the gravity has a great influence on the flow circulation characteristics and thermal performance of the NCL. The applicability of employing NCL on the thermal control system of micro spacecrafts is validated with the gravity no less than 0.05 g. It is worth noting that, by designing the range of temperature from inlet to outlet of the heated tube covering the large specific heat region, the superior thermal performance can be obtained on account of the strong heat-carrying capacity of supercritical fluid, even under the low gravity with a small mass flow rate. Finally, a flow correlation is proposed considering the effect of gravity, flow regime, buoyancy force, and geometric factors, which is suitable on the NCL in the thermal control system of micro spacecrafts, and the R2 is 99.77%.
引用
收藏
页数:11
相关论文
共 50 条
  • [1] Numerical modeling of supercritical CO2 natural circulation loop
    Archana, V.
    Vaidya, A. M.
    Vijayan, P. K.
    NUCLEAR ENGINEERING AND DESIGN, 2015, 293 : 330 - 345
  • [2] Numerical Investigation of Thermohydraulic Characteristics in Supercritical CO2 Natural Circulation Loop with Spatially Varying Temperature
    Boopalan, Vignesh
    Kanna, Parthasarathy Rajesh
    Arumugam, Senthil Kumar
    HEAT TRANSFER ENGINEERING, 2024,
  • [3] Experimental investigation on natural circulation heat transfer of supercritical CO2 in a closed loop
    Li, Yuanlu
    Xin, Gongming
    Yuan, Baoqiang
    Zhang, Shuangxing
    Du, Wenjing
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2023, 200
  • [4] Flow Transients in Supercritical CO2 Natural Circulation Loop
    Archana, V
    Vaidya, A. M.
    Vijayan, P. K.
    INTERNATIONAL CONFERENCE ON COMPUTATIONAL HEAT AND MASS TRANSFER (ICCHMT) - 2015, 2015, 127 : 1189 - 1196
  • [5] Numerical investigation on the impact of circumferentially varying temperature on the buoyancy and heat transfer characteristics of supercritical CO2 natural circulation loop
    Boopalan, Vignesh
    Arumugam, Senthil Kumar
    Kanna, P. Rajesh
    APPLIED THERMAL ENGINEERING, 2024, 248
  • [6] Supercritical CO2 flow instability in natural circulation loop: CFD analysis
    Wahidi, Tabish
    Chandavar, Rajat Arunachala
    Yadav, Ajay Kumar
    ANNALS OF NUCLEAR ENERGY, 2021, 160 (160)
  • [7] Flow and heat transfer characteristics of supercritical CO2 in a natural circulation loop
    Cao, Yuhui
    Zhang, Xin-Rong
    INTERNATIONAL JOURNAL OF THERMAL SCIENCES, 2012, 58 : 52 - 60
  • [8] The flow transition characteristics of supercritical CO2 based closed natural circulation loop (NCL) system
    Deng, Bili
    Chen, Lin
    Zhang, Xinrong
    Jin, Licong
    ANNALS OF NUCLEAR ENERGY, 2019, 132 : 134 - 148
  • [9] Natural convective flow and heat transfer of supercritical CO2 in a rectangular circulation loop
    Zhang, Xin-Rong
    Chen, Lin
    Yamaguchi, Hiroshi
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2010, 53 (19-20) : 4112 - 4122
  • [10] Influence of geometric parameters on thermalhydraulic characteristics of supercritical CO2 in natural circulation loop
    Sarkar, Milan K. S.
    Basu, Dipankar N.
    NUCLEAR ENGINEERING AND DESIGN, 2017, 324 : 402 - 415