ICE THERMAL STORAGE: SYSTEM SELECTION AND DESIGN.

被引:0
|
作者
McCullough, J.M. [1 ]
机构
[1] Baltimore Aircoil Co, Baltimore, MD,, USA, Baltimore Aircoil Co, Baltimore, MD, USA
关键词
AIR CONDITIONING - BUILDINGS - Cooling - CHURCHES - Air Conditioning - REFRIGERATION - THEATERS - Air Conditioning;
D O I
暂无
中图分类号
学科分类号
摘要
Major changes in rate structures in the electric power industry are making ice thermal storage applications more attractive to engineers and building owners. Thermal storage systems minimize energy cost by generating cooling capacity at off-peak times and storing it for future use. Cooling load applications that can benefit from thermal storage are office buildings, schools and college buildings, religious institutions, laboratories, large retail stores, libraries, museums, and public use areas of hotels (such as meeting rooms). Thermal storage also can be used for many industrial processes, such as occur in dairies, breweries and other plants with batch cooling cycles. Another thermal storage concept involving phase change materials holds promise for the future. Ice storage has an advantage over chilled water storage since the basis for storage is the latent heat of fusion of water, which is 144 Btu/lb. 'Full storage' and 'partial storage' systems are described.
引用
收藏
页码:70 / 77
相关论文
共 50 条
  • [21] Study on the performance enhancement of ice storage and melting processes in an ice-on-coil thermal energy storage system
    Yan, Wei-Mon
    Huang, Chu-Yeh
    Gao, Kai-En
    Amani, Mohammad
    Chien, Liang-Han
    Homayooni, Ahmad
    JOURNAL OF ENERGY STORAGE, 2023, 72
  • [22] THERMAL GREASE MODULE CAP DESIGN.
    Anon
    IBM technical disclosure bulletin, 1986, 29 (04): : 1469 - 1470
  • [23] MODELING AND SIMULATION IN MECHANICAL AND THERMAL DESIGN.
    Enstrom, Ron E.
    RCA engineer, 1982, 27 (06): : 71 - 79
  • [24] The ICE spectrograph for PEPSI at the LBT:: preliminary optical design.
    Pallavicini, R
    Zerbi, FM
    Spanò, P
    Conconi, P
    Mazzoleni, R
    Molinari, E
    Strassmeier, KG
    INSTRUMENT DESIGN AND PERFORMANCE FOR OPTICAL/INFRARED GROUND-BASED TELESCOPES, PTS 1-3, 2003, 4841 : 1345 - 1356
  • [25] SMALL MICROCOMPUTER SYSTEM DESIGN.
    Depledge, P.G.
    IEE Colloquium (Digest), 1980, (1980 /11):
  • [26] CONSIDERATION OF SNOW REMOVAL AND ICE CONTROL IN HIGHWAY DESIGN.
    Byrd, L.G.
    Public Works, 1977, 108 (08): : 72 - 75
  • [27] Design for a Solar Thermal Energy Storage System
    Gutierrez Razo, Ramn
    Cardenas Castaneda, Bruno
    Leon Rovira, Noel
    PROCEEDINGS OF THE ISES SOLAR WORLD CONFERENCE 2015, 2015, : 1456 - 1467
  • [28] Conception and design of a thermal energy, storage system
    Adinberg, R.
    Epstein, M.
    HTE'07: PROCEEDINGS OF THE 5TH IASME / WSEAS INTERNATIONAL CONFERENCE ON HEAT TRANSFER, THERMAL ENGINEERING AND ENVIRONMENT, 2007, : 141 - +
  • [29] HINTS FOR COMPUTER SYSTEM DESIGN.
    Lampson, Butler W.
    1600, (17):
  • [30] VEHICLE COOLING SYSTEM DESIGN.
    Bridger, John
    Engineering materials and design, 1988, 32 (01):