Fabrication, Modeling, and Testing of a Prototype Thermal Energy Storage Containment

被引:0
|
作者
Gifford, Jeffrey [1 ]
Davenport, Patrick [1 ]
Wang, Xingchao [2 ]
Ma, Zhiwen [1 ]
机构
[1] Natl Renewable Energy Lab, Thermal Syst Grp, Golden, CO 80401 USA
[2] Colorado Sch Mines, Thermal Syst Grp, Golden, CO 80401 USA
关键词
clean energy; heat transfer; finite element analysis; long duration energy storage; thermal energy storage; experimental testing; PERFORMANCE;
D O I
10.1115/1.4065869
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Increasing penetration of variable renewable energy resources requires the deployment of energy storage at a range of durations. Long-duration energy storage (LDES) technologies will fulfill the need to firm variable renewable energy resource output year round; lithium-ion batteries are uneconomical at these durations. Thermal energy storage (TES) is one promising technology for LDES applications because of its siting flexibility and ease of scaling. Particle-based TES systems use low-cost solid particles that have higher temperature limits than the molten salts used in traditional concentrated solar power systems. A key component in particle-based TES systems is the containment silo for the high-temperature (>1100 C-degrees) particles. This study combined experimental testing and computational modeling methods to design and characterize the performance of a particle containment silo for LDES applications. A laboratory-scale silo prototype was built and validated the congruent transient finite element analysis (FEA) model. The performance of a commercial-scale silo was then characterized using the validated model. The commercial-scale model predicted a storage efficiency above 95% after 5 days of storage with a design storage temperature of 1200 C-degrees. Insulation material and concrete temperature limits were considered as well. The validation of the methodology means the FEA model can simulate a range of scenarios for future applications. This work supports the development of a promising LDES technology with implications for grid-scale electrical energy storage, but also for thermal energy storage for industrial process heating applications.
引用
收藏
页数:8
相关论文
共 50 条
  • [41] Modeling and parametric analysis of an adsorber unit for thermal energy storage
    Fernandes, M. S.
    Brites, G. J. V. N.
    Costa, J. J.
    Gaspar, A. R.
    Costa, V. A. F.
    ENERGY, 2016, 102 : 83 - 94
  • [42] Modeling of an ice-on-coil thermal energy storage system
    Lee, AHW
    Jones, JW
    ENERGY CONVERSION AND MANAGEMENT, 1996, 37 (10) : 1493 - 1507
  • [43] THERMAL ENERGY STORAGE AND THERMAL ENERGY STORAGE MATERIALS.
    Kamimoto, Masayuki
    Sakuta, Koichi
    Ozawa, Takeo
    Sakamoto, Ryuzi
    1978, (196):
  • [44] Optical design, fabrication and testing a prototype of the NIRSpec IFU
    Laurent, F
    Christophe, BB
    Ferruit, P
    Hénault, F
    Lemonnier, JP
    Moreaux, G
    Prieto, E
    Robert, D
    OPTICAL FABRICATION, TESTING, AND METROLOGY, 2004, 5252 : 443 - 453
  • [45] Development and experimental testing of an integrated prototype based on Stirling, ORC and a latent thermal energy storage system for waste heat recovery in naval application
    Catapano, F.
    Frazzica, A.
    Freni, A.
    Manzan, M.
    Micheli, D.
    Palomba, V.
    Sementa, P.
    Vaglieco, B. M.
    APPLIED ENERGY, 2022, 311
  • [46] Development and experimental testing of an integrated prototype based on Stirling, ORC and a latent thermal energy storage system for waste heat recovery in naval application
    Catapano, F.
    Frazzica, A.
    Freni, A.
    Manzan, M.
    Micheli, D.
    Palomba, V.
    Sementa, P.
    Vaglieco, B.M.
    Applied Energy, 2022, 311
  • [47] Development and evaluation of a prototype concentrating solar collector with thermocline based thermal energy storage for residential thermal usage
    Kumar, Vinod
    Afrin, Samia
    Ortega, Jesus
    Sepulveda, Arturo
    Delgado, Paul M.
    Aguilar, Dante
    Avila, Jesus M.
    Loya, Juan D.
    Lu, Huanmin
    JOURNAL OF RENEWABLE AND SUSTAINABLE ENERGY, 2013, 5 (05)
  • [48] Modeling and Energy Efficiency Analysis of Thermal Power Plant with High Temperature Thermal Energy Storage (HTTES)
    Hongwei Zhang
    Wenbin Liang
    Junqing Liu
    Jie Wang
    Journal of Thermal Science, 2020, 29 : 1025 - 1035
  • [49] Modeling and Energy Efficiency Analysis of Thermal Power Plant with High Temperature Thermal Energy Storage(HTTES)
    ZHANG Hongwei
    LIANG Wenbin
    LIU Junqing
    WANG Jie
    Journal of Thermal Science, 2020, 29 (04) : 1025 - 1035
  • [50] Modeling and Energy Efficiency Analysis of Thermal Power Plant with High Temperature Thermal Energy Storage (HTTES)
    Zhang Hongwei
    Liang Wenbin
    Liu Junqing
    Wang Jie
    JOURNAL OF THERMAL SCIENCE, 2020, 29 (04) : 1025 - 1035