[1] 康艳兵, 张寅平, 朱颖秋, 等. 相变蓄热同心套管传热模型和性能分析[J]. 太阳能学报, 1999(1):21-26. KANG Yanbin, ZHAN Yanping, ZHU Yinqiu, et al. A simple model for heat transfer analysis of shell-and-tube with phase change material and its performance simulation[J]. Acta Energiae solaris Sinica, 1999(1):21-26.
[2] 鲍文廷, 伍永福. 高温空气燃烧技术在蓄热式加热炉中的应用分析[J]. 工业加热, 2013, 42(2):11-13. BAO Wenting, WU Yongfu. Appliation and analysis of high temperature air combustion to regeneration heating furnace[J]. Industry Heating, 2013, 42(2):11-13.
[3] 李慧俭, 贾俊崇, 赵昕波, 等. 固体电蓄热散热器风道模拟优化[J]. 河北建筑工程学院学报, 2018, 36(2):59-62.
[4] 杨小平, 杨晓西, 左远志, 等. 高温填充床蓄热过程中流固传热温差分析[J]. 工程热物理学报, 2015, 36(4):825-828.YANG Xiaoping, YANG Xiaoxi, ZUO Yuanzhi, et al. The heat transfer temperature difference study between fluid and solid during the charging process of a high temperature packed ked storage system[J]. Joumal of Engineering Thermophysics, 2015, 36(4):825-828.
[5] SOROUR M M. Performance of a small sensible heat energy storage unit[J]. Energy Conversion and Management, 1988, 28(3):211-217.
[6] BERROUG F, LAKHAL E K, EL-OMARI M, et al. Thermal performance of a greenhouse with a phase change material north wall[J]. Energy and Buildings, 2011:doi:10.1016/j.enbuild.2011. 07.020.
[7] LADEKAR C, CHOUDHARY S K, KHANDARE S S. Experimental investigation for the optimization of heat pipe performance in latent heat thermal storage[J]. Journal of Mechanical Science and Technology, 2017, 31(6):2627-2634.
[8] 闫磊, 王洪涛, 闫和平. 线材蓄热式加热炉的改造实践[J]. 冶金能源, 2014, 33(5):34-35. YAN Lei, WANG Hongtao, YAN Heping. Reconstruction practice of the wire[J]. Energy for Metallurgical Industry, 2014, 33(5):34-35.
[9] 胡素娟.PDF的两相湍流模型的有限分析/网格算法[D].杭州:杭州电子科技大学, 2012.
[10] YAKHOT V, ORSZG S A. Renormalization group analysis of turbulence:Basic theory[J]. Journal of Scientific Computing, 1986, 1(1):3-51.
[11] SHIH T H, LIOU W, SHABBIR A, et al. A new k-ε eddy-viscosity model for high Reynolds turbulent flows-model development and validation[J]. Computers Fluids, 1995, 24(3):227-238. |