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地面辐射供暖系统相变蓄能地板热工性能研究 被引量:10

Study on Thermal Performance of Phase-change Energy Storage Floor of Floor Panel Heating System
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摘要 介绍了层状、条状两种结构的相变蓄能地板。建立了相变蓄能地板的计算模型,数值模拟了不同供水温度下两种结构相变蓄能地板的表面平均温度随加热时间的变化,相变材料的填充量及地面装饰材料对条状相变蓄能地板表面平均温度的影响。在满足同样供热需求的前提下,采用条状相变蓄能地板更经济、实用。当供水温度为50~55℃时,条状相变蓄能地板表面温度达25~29℃,符合人体热舒适性的要求。 The phase-change energy storage floor with layer and strip structures is introduced. The calculation model of phase-change energy storage floor is established. The variation of average surface temperature of phase-change energy storage floor with two structures with heating time at different water supply temperatures, and the influence of filling quantity of phase-change material and decorative floor materials on average surface temperature of phase-change energy storage floor with strip structure are simulated numerically. On the premise of meeting the same heat-supply demand, the application of phasechange energy storage floor with strip structure is more economic and practical. When water supply temperature varies from 50 ℃ to 55 ℃, the average surface temperature of phase-change energy storage floor with strip structure reaches 25 ℃ to 29℃ meeting the requirement for human thermal comfortableness.
出处 《煤气与热力》 2007年第2期79-82,共4页 Gas & Heat
基金 建设部科技项目(05-k3-23) 北京市人才强教资助项目(2005)
关键词 相变蓄能地板 热水地板辐射供暖 数值模拟 phase-change energy storage floor hot water floor panel heating numerical simulation
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  • 1Feldman D, Shapiro M M, Banu D. Organic phase change materials for thermal energy storage [J]. Solar Energy Materials, 1986, 13: 1-10.
  • 2Son Chang H. Morehouse Jeffrey H, An experimental investigation of solid-state phase change materials for solar thermal storage [J]. Trans Of the ASME, J of Solar Energy Engineering, 1991, 113: 244-249.
  • 3Tashfeen Syed M, Kumar Sunil, Moallemi Karim M, et al. Thermal storage using form-stable phase-change materials [J]. ASHRAEJournal, 1997, 39:45-50.
  • 4Abe Y, Takahashi Y, Sakamoto R, et al. Charge and discharge characteristics of a direct contact latent thermal energy storage unit using form-stable highdensity polyethylene [J]. Journal of Solar Energy Engineering, 1984, 106: 465-474.
  • 5Salyer I O, Sircar A K, A review of phase change materials research for thermal energy storage in heating and cooling applications at the University of Dayton from 1982 to 1996 [J]. Int J Global Energy Issues, 1997, 9: 183-198.
  • 6Kamimoto M, Abe Y Sawata , S et al. Latent thermal storage unit using form-stable high density polyethylene;part Ⅰ: performance of the storage unit [J]. Transactions of the ASME, 1986, 108:282-289.
  • 7Ye Hong, Ge Xinshi. Preparation of polyethyleneparaffin compound as a form-stable solid-liquid phase change material [J]. Solar Energy Materials & Solar Ceils, 2000, 64: 37-44.

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