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刊名:经济科学
主办:北京大学
主管:中华人民共和国教育部
ISSN:1002-5839
CN:11-1564/F
语言:中文
周期:双月
影响因子:1.804688
被引频次:83062
数据库收录:
中文核心期刊(2017);CSSCI中文社科引文索引(2019-2020);统计源期刊(2018);中国人文社会科学核心期刊(2018);期刊分类:理论经济

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跨临界热泵系统采暖工况下能效和经济对比分析(5)

来源:经济科学 【在线投稿】 栏目:期刊导读 时间:2021-05-17

作者:网站采编

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【摘要】[7] 李椿,王志华,王沣浩,等.CO2热泵研究现状及展望[J].制冷学报,2018,39(5):1-9.LI Chun, WANG Zhihua, WANG Fenghao, et al. Research status and prospects of the CO2heat pump[J]. Journa

[7] 李椿,王志华,王沣浩,等.CO2热泵研究现状及展望[J].制冷学报,2018,39(5):1-9.LI Chun, WANG Zhihua, WANG Fenghao, et al. Research status and prospects of the CO2heat pump[J]. Journal of Refrigeration, 2018, 39(5):1-9.

[8] 王国梁,姜培学.具有补气特性的跨临界二氧化碳制冷系统理论研究[J].清华大学学报(自然科学版),2008(2): Guoliang, JIANG Peixue. Theoretical investigation of transcritical carbon dioxide refrigeration system with a compressor economizer[J]. Journal of Tsinghua University (Science and Technology),2008(2):224-227.

[9] BAEK Changhyun, HEO Jaehyeok, JUNG Jongho, et al. Performance characteristics of a two-stage CO2heat pump water heater adopting a sub-cooler vapor injection cycle at various operating conditions[J].Energy,2014,77:570-578.

[10] 李敏霞,王派,刘雪涛,等.双级压缩中间补气CO2三级回热冷却热泵/制冷系统:CN2.X[P]. Minxia, WANG Pai, LIU Xuetao, et al. A two-stage compression intermediate vapor supply CO2regenerator cooling heat pump/refrigeration system:CN2.X[P].2020-01-21.

[11] 李敏霞,刘雪涛,王派,等.一种喷气增焓CO2三回热冷却热泵/制冷系统:CN2.4[P]. Minxia, LIU Xuetao, WANG Pai, et al. A enhanced vapor injection CO2three-regenerator cooling heat pump/refrigeration system:CN2.4[P].2020-03-20.

[12] 中国建筑科学研究院.民用建筑供暖通风与空气调节设计规范:GB —2012[S].北京:中国建筑工业出版社, Academy of Building Research. Design code for heating ventilation and air conditioning of civil buildings: GB —2012[S].Beijing:China Architecture&Building Press,2012.

[13] European Committee for Standardization. Energy performance of buildings-overall energy use and definition of energy ratings: EN -2008[S].2008.

[14] 宋芳婷,诸群飞,吴如宏,等.中国建筑热环境分析专用气象数据集[C]//全国暖通空调制冷2006学术年会, Fangting, ZHU Qunfei, WU Ruhong,et al. Meteorological data set for building thermal environment analysis of China[C]// National Academic Conference of HVAC and Refrigeration,2006.

[15] DAI Baomin, QI Haifeng, LIU Shengchun, et al. Environmental and economical analyses of transcritical CO2heat pump combined with direct dedicated mechanical subcooling (DMS) for space heating in China[J].Energy Conversion and Management,2019,198:.

[16] FAZELPOUR F, MOROSUK T. Exergoeconomic analysis of carbon dioxide transcritical refrigeration machines[J]. International Journal of Refrigeration,2014,38:128-139.

[17] FANG Xiande. A new correlation of flow boiling heat transfer coefficients for carbon dioxide[J]. International Journal of Heat and Mass Transfer,2013,64:802-807.

[18] DANG Chaobin, HIHARA E. In-tube cooling heat transfer of supercritical carbon dioxide (Ⅰ): experimental measurement[J].International Journal of ,27(7):736-747.

[19] MOHSENI S G, AKHAVAN-BEHABADI M A. Flow pattern visualization and heat transfer characteristics of R-134a during evaporation inside a smooth tube with different tube inclinations[J].International Communications in Heat and Mass Transfer, 2014, 59:39-45.

[20] CAVALLINI A, ZECCHIN R. A dimensionless correlation for heat transfer in forced convection condensation[C]// International Heat Transfer Conference Digital House Inc.,1974.

[21] MCQUISTON F C. Heat, mass and momentum transfer data for five plate-fin-tube heat transfer surfaces[J]. ASHRAE Transactions, 1978,84(1):266-293.

[22] GNIELINSKI V.New equations for heat and mass transfer in turbulent pipe and channel flow[J].International Chemical Engineering,1976,16(2):359-368.

[23] LIU Shengchun, LI Zheng, DAI Baomin, et al. Energetic, economic and environmental analysis of air source transcritical CO2heat pump system for residential heating in China[J]. Applied Thermal Engineering,2019,148:1425-1439.

[24] WANG Dandong,YU Bingbing,HU Jichao,et performance characteristics of CO2heat pump system for electrical vehicle in a cold climate[J].International Journal of Refrigeration,2018,85:27-41.



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