Static and dynamic behavior of cemented heat storage materials

被引:0
|
作者
Hailemariam, Henok [1 ,3 ]
Blume, Nils [2 ]
Motra, Hem B. [1 ]
Wuttke, Frank [1 ]
机构
[1] Univ Kiel, Geomech & Geotech, Kiel, Germany
[2] Univ Kiel, Kiel, Germany
[3] Univ Kiel, Geomech & Geotech, Ludewig Meyn Str 10, D-24118 Kiel, Germany
关键词
Cemented thermal energy storage; mechanical behavior; seismic velocity; curing period; pressure; temperature; S-WAVE VELOCITIES; TEMPERATURE-DEPENDENCE; COMPRESSIONAL WAVES; P-WAVE; ROCKS; ANISOTROPY; PRESSURE; ECLOGITES; ZONE;
D O I
10.1080/15376494.2023.2283808
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Assessing the mechanical and thermal stability of heat storage media is vital in the design and wellbeing of sensible heat storage systems, which are typically designed below ground level or as part of the sub-structure of buildings with load bearing capabilities. Nevertheless, considering the importance that a mechanically sound heat storage media (especially at elevated temperatures) has on the efficiency and performance of heat storage systems, it has not been given adequate attention in past studies. On this basis, the mechanical performance of two commercial cemented heat storage materials at different curing periods, pressure and temperature is studied in this research. The influence of curing period on the mechanical strength of the materials was studied by performing unconfined compression tests, where as to study the effects of pressure and temperature on seismic velocities, and hence mechanical properties of the materials, laboratory tests on P- and S-wave velocities were performed. Ultrasonic wave velocity studies can be used to estimate many geomechanical properties of materials such as density, elastic modulus, Poisson's ratio etc., thus providing an accurate and reliable estimate of the mechanical properties of rocks and cemented materials. The results presented in this study show a considerable dependence of the mechanical behavior of the investigated materials on curing period, pressure and temperature, which when unaccounted for can result in the inaccurate planning and design of heat storage systems.
引用
收藏
页码:10014 / 10032
页数:19
相关论文
共 50 条
  • [41] Static and dynamic behavior of aggrecan solutions
    Horkay, Ferenc
    Basser, Peter J.
    Geissler, Erik
    MRS ADVANCES, 2020, 5 (17) : 891 - 897
  • [42] STATIC AND DYNAMIC BEHAVIOR OF ZIGZAG DOMAINS
    SOOHOO, RF
    JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 1986, 54-7 : 1651 - 1653
  • [43] Static and dynamic behavior of aggrecan solutions
    Ferenc Horkay
    Peter J. Basser
    Erik Geissler
    MRS Advances, 2020, 5 : 891 - 897
  • [44] The dynamic and static cushioning behavior of the spruces
    Tao Junlin
    Jiang Ping
    ADVANCES IN HETEROGENEOUS MATERIAL MECHANICS 2008, 2008, : 958 - 962
  • [45] STATIC AND DYNAMIC BEHAVIOR OF QUARTZ RESONATORS
    BALLATO, A
    IEEE TRANSACTIONS ON SONICS AND ULTRASONICS, 1979, 26 (04): : 299 - 306
  • [46] ANALYSIS OF DYNAMIC AND STATIC FOAM BEHAVIOR
    LORD, DL
    JOURNAL OF PETROLEUM TECHNOLOGY, 1981, 33 (01): : 39 - 45
  • [47] Dynamic and Static Behavior of Calcareous Sands
    Brandes, Horst G.
    Seidman, Jason
    PROCEEDINGS OF THE EIGHTEENTH (2008) INTERNATIONAL OFFSHORE AND POLAR ENGINEERING CONFERENCE, VOL 2, 2008, : 573 - 578
  • [48] DYNAMIC THERMAL BEHAVIOUR OF BUILDING USING PHASE CHANGE MATERIALS FOR LATENT HEAT STORAGE
    Selka, Ghouti
    Korti, Abdel Illah Nabil
    Abboudi, Said
    THERMAL SCIENCE, 2015, 19 : S603 - S613
  • [49] Melting behavior prediction of latent heat storage materials: A multi-pronged solution
    Nokhosteen, Arman
    Sobhansarbandi, Sarvenaz
    JOURNAL OF ENERGY STORAGE, 2023, 65
  • [50] CORROSION BEHAVIOR OF STEELS IN CONTACT WITH SALT EUTECTICS AS LATENT-HEAT STORAGE MATERIALS
    HEINE, D
    HEAT RECOVERY SYSTEMS & CHP, 1987, 7 (04): : 389 - 394