Optimization of a heat pipe-radiator assembly coupled to a recuperated closed Brayton cycle for compact space power plants

被引:21
|
作者
Romano, Luis F. R. [1 ]
Ribeiro, Guilherme B. [1 ]
机构
[1] Aeronaut Inst Technol, Sao Jose Dos Campos, Brazil
关键词
Brayton; Heat pipe; Radiator; Space; Optimization; GENERATION;
D O I
10.1016/j.applthermaleng.2021.117355
中图分类号
O414.1 [热力学];
学科分类号
摘要
Compact and efficient energy conversion systems for space applications enable the appearance of new mission opportunities and technological discoveries resulted from space exploration. Besides energy availability, another crucial factor of any energy conversion system for space purposes is its total mass and size. Focusing on a recuperated closed Brayton cycle (CBC), thermodynamic modeling of a CBC is proposed. Moreover, a thermal model is carried out to predict the overall properties of the cold side of the system (i.e., heat pipes and radiator) for different CBC conditions. Both models are coupled and their conjunct solution provides operational data for the design of the heat rejection system, such as the number of heat pipes (HP), total assembly mass, length, and second-law efficiency. Furthermore, by means of this coupling, the heat source temperature and the cold heat exchanger (CHE) inlet temperature are defined, using an optimization procedure where the specific mass (i.e., radiator mass to cycle power ratio) is minimized. Based on this objective variable, the optimized heat source temperature of 1200 K is achieved, while the CHE inlet temperature of 513.2 K is obtained. Such temperature conditions ensure the future design of a space energy conversion system that aligns good efficiency and compactness.
引用
收藏
页数:13
相关论文
共 30 条
  • [21] Power density optimization of an endoreversible Brayton cycle coupled to variable-temperature heat reservoirs
    Zheng, J.L.
    Chen, L.G.
    Sun, F.R.
    Jia, Y.
    Tuijin Jishu/Journal of Propulsion Technology, 2001, 22 (02): : 143 - 146
  • [22] Optimization and simulation of startup control for space nuclear power systems with closed brayton cycle based on NuHeXSys
    Li, Chengyuan
    Guo, Leran
    Huang, Shanfang
    Deng, Jian
    PROGRESS IN NUCLEAR ENERGY, 2025, 180
  • [23] Power density analysis and optimization of a regenerated closed variable-temperature heat reservoir Brayton cycle
    Chen, LG
    Zheng, JL
    Sun, FR
    Wu, C
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2001, 34 (11) : 1727 - 1739
  • [24] Power optimization and comparison between simple recuperated and recompressing supercritical carbon dioxide Closed-Brayton-Cycle with finite cold source on hypersonic vehicles
    Cheng, Kunlin
    Qin, Jiang
    Sun, Hongchuang
    Li, Heng
    He, Shuai
    Zhang, Silong
    Bao, Wen
    ENERGY, 2019, 181 : 1189 - 1201
  • [25] OPTIMIZATION OF INVENTORY CONTROL STRATEGY FOR PART LOAD OPERATION IN A SCO2 RECUPERATED BRAYTON CYCLE FOR A 5 MWTH HEAT PIPE MICRO MODULAR REACTOR
    Peiretti, Matthias
    Hofer, Markus
    Buck, Michael
    Meucci, Ruggero
    Starflinger, Joerg
    PROCEEDINGS OF 2024 31ST INTERNATIONAL CONFERENCE ON NUCLEAR ENGINEERING, VOL 4, ICONE31 2024, 2024,
  • [26] Study on control characteristics of a nuclear power plant with coupled heat-pipe reactor and sCO2 Brayton cycle
    Jiang, Qingfeng
    Li, Jiawen
    Wang, Pengfei
    NUCLEAR ENGINEERING AND DESIGN, 2025, 432
  • [27] Evaluation of start-up characteristics for heat pipe-cooled nuclear reactor coupled with recuperated open-air brayton cycle using hardware-in-the-loop
    Deng, Jiaolong
    Guan, Chaoran
    Wang, Tianshi
    Liu, Xiaojing
    Chai, Xiang
    ENERGY, 2024, 301
  • [28] Temperature fluctuation mitigation of heat pipe cooled reactor with closed Brayton cycle during load-following dynamic power regulation
    Li, Jingkang
    Hu, Zunyan
    Li, Zeguang
    Xu, Liangfei
    Li, Jianqiu
    ANNALS OF NUCLEAR ENERGY, 2025, 211
  • [29] Power Optimization of a Modified Closed Binary Brayton Cycle with Two Isothermal Heating Processes and Coupled to Variable-Temperature Reservoirs
    Tang, Chenqi
    Chen, Lingen
    Feng, Huijun
    Wang, Wenhua
    Ge, Yanlin
    ENERGIES, 2020, 13 (12)
  • [30] Conceptual design of a novel megawatt portable nuclear power system by supercritical carbon dioxide brayton cycle coupled with heat pipe cooled reactor
    Guo S.
    Guo X.
    Wang G.
    Guo Y.
    Wang Z.
    Leng J.
    Yang W.
    Tang B.
    Liu Y.
    Qian D.
    International Journal of Advanced Nuclear Reactor Design and Technology, 2023, 5 (04): : 168 - 188