[1] 郭沁. 10 kV环网柜凝露机理及防护措施分析研究[D]. 北京: 华北电力大学, 2017. GUO Qin. Research on condensation mechanism and protective measures of 10 kV ring main unit[D]. Beijing: North China Electric Power University, 2017. [2] 张炜, 闫志强, 王也, 等. 基于有限元法的户外环网柜防凝露方法研究[J]. 高压电器, 2017, 53(9): 101-106, 113 ZHANG Wei, YAN Zhiqiang, WANG Ye, et al. Anti-condensation method for outdoor RMU based on finite element analysis[J]. High Voltage Apparatus, 2017, 53(9): 101-106, 113 [3] 岳新峰. 12 kV中置柜加热除湿方式探讨[J]. 高压电器, 2002, 38(3): 57-58 YUE Xinfeng. Discussion about the heating and dehumidification system in 12 kV switchgear[J]. High Voltage Apparatus, 2002, 38(3): 57-58 [4] 潘岐泽, 杨芳, 杨志. 12 kV高压开关柜受潮凝露机理及防治关键技术探讨[J]. 电力系统保护与控制, 2019, 47(5): 160-172 PAN Qize, YANG Fang, YANG Zhi. Discussion on mechanism of the dampness and dewing inside 12 kV high-voltage switchgear and its key control techniques[J]. Power System Protection and Control, 2019, 47(5): 160-172 [5] 刘若溪, 郭沁, 耿江海, 等. 环网柜二次小室防凝露措施研究[J]. 电力科学与技术学报, 2017, 32(4): 154-158 LIU Ruoxi, GUO Qin, GENG Jianghai, et al. Research on anti-condensation measures used in ring main unit secondary cabinet[J]. Journal of Electric Power Science and Technology, 2017, 32(4): 154-158 [6] 王刚, 安琳. COMSOL Multiphysics工程实践与理论仿真: 多物理场数值分析技术[M]. 北京: 电子工业出版社, 2012. [7] 荣俊梅, 于惠钧, 马召, 等. 半导体温差发电在机车能量回收中的应用[J]. 湖南工业大学学报, 2018, 32(2): 19-25 RONG Junmei, YU Huijun, MA Zhao, et al. Application of semiconductor thermoelectric power generation in locomotive energy recovery[J]. Journal of Hunan University of Technology, 2018, 32(2): 19-25 [8] 卢菡涵. 半导体制冷性能及恒温控制的研究[D]. 太原: 太原科技大学, 2013. LU Hanhan. Research on refrigeration performance and thermostat control of semiconductor[D]. Taiyuan: Taiyuan University of Science & Technology, 2013. [9] KOPEC M, OLBRYCHT R, GAMORSKI P, et al. The influence of air humidity on convective cooling conditions of electronic devices[J]. IEEE Transactions on Industrial Electronics, 2018, 65(12): 9717-9727. [10] 于晓丽, 王树杰, 袁鹏, 等. 两种湍流模型在潮流能水轮机数值模拟中的适用性研究[J]. 中国海洋大学学报(自然科学版), 2019, 49(2): 114-120 YU Xiaoli, WANG Shujie, YUAN Peng, et al. The study on the applicability of two turbulence models in the tidal turbine[J]. Periodical of Ocean University of China, 2019, 49(2): 114-120 [11] 王文新, 王佳星. 流场与温度场耦合作用下对传统蒙古包建筑外表面对流换热的影响[J]. 科学技术与工程, 2018, 18(35): 201-206 WANG Wenxin, WANG Jiaxing. Influence of flow field and temperature field on convective heat transfer of external surface of traditional yurt building[J]. Science Technology and Engineering, 2018, 18(35): 201-206 [12] 陈荣, 闫新, 严玮, 等. 开关柜内凝露现象数值模拟研究[J]. 资源节约与环保, 2015(5): 21-23 CHEN Rong, YAN Xin, YAN Wei, et al. Numerical simulation on condensation phenomenon in the switch cabinet[J]. Resource saving and environmental protection, 2015(5): 21-23 [13] 刘鹏, 宋力, 余志武. 不同干湿条件下混凝土表层内水分传输[J]. 中南大学学报(自然科学版), 2014, 45(8): 2830-2838 LIU Peng, SONG Li, YU Zhiwu. Water transport in concrete cover under different drying-wetting conditions[J]. Journal of Central South University (Science and Technology), 2014, 45(8): 2830-2838 [14] 罗仲, 张旭, 王胜己, 等. 半导体制冷器除湿实验研究[J]. 制冷学报, 2015, 36(5): 101-106 LUO Zhong, ZHANG Xu, WANG Shengji, et al. Experimental research on performance optimization of thermoelectric dehumidifier[J]. Journal of Refrigeration, 2015, 36(5): 101-106 [15] 郭宗坤, 姚磊, 何凯, 等. 基于半导体制冷技术的除湿装置研制[J]. 大功率变流技术, 2016(6): 71-75 GUO Zongkun, YAO Lei, HE Kai, et al. Development of dehumidification device based on semiconductor refrigeration[J]. High Power Converter Technology, 2016(6): 71-75 [16] 成波, 王昌龙, 李倩雯, 等. 半导体制冷式除湿干燥装置的控制系统研制[J]. 扬州大学学报(自然科学版), 2014, 17(1): 67-70 CHENG Bo, WANG Changlong, LI Qianwen, et al. The development of the control system of semiconductor refrigeration dehumidification drying device[J]. Journal of Yangzhou University (Natural Science Edition), 2014, 17(1): 67-70 [17] AKKINEPALLY B, SHIM J, YOO K. Numerical and experimental study on biased tube temperature problem in tangential firing boiler[J]. Applied Thermal Engineering, 2017, 126: 92-99. [18] BENDJEBBAS H, EL-HADJ A A, ABBAS M. Numerical simulation of the effect of wind barrier openings on high-speed wind flow around a heliostat field[J]. Applied Mathematical Modelling, 2018, 61: 443-456. [19] Comparative numerical studies of scramjet inlet performance using k-ε turbulence model with adaptive rids[J]. Comsol Com, 2012. [20] MUSA O, ZHOU Changsheng, CHEN Xiong. Prediction of swirling cold flow in a solid-fuel ramjet engine with a modified rotation/ curvature correction SST turbulence mode[J]. Applied Thermal Engineering, 2016, 105: 737-754.
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