[1] |
HUSSEIN A, PAYAM N, MUHD Z A, et al. A review on phase change material (PCM) for sustainable passive cooling in building envelopes[J]. Renewable and Sustainable Energy Reviews, 2016, 60:1470-1497.
|
[2] |
WANG T, FOLIENTE G, SONG X Y, et al. Implications and future direction of greenhouse gas emission mitigation policies in the building sector of China[J]. Renewable and Sustainable Energy Reviews, 2014, 31:520-530.
|
[3] |
MOHAMMAD S, ALVARO D G, SVETLANA U, et al. Passive cooling of buildings with phase change materials using whole-building energy simulation tools:a review[J]. Renewable and Sustainable Energy Reviews, 2017, 80:1239-1255.
|
[4] |
Nikkei Inc. China to pass US in carbon emissions[EB/OL].[2015-05-18]. https://asia.nikkei.com/Business/Science/China-to-pass-US-in-carbon-emissions.
|
[5] |
国网能源研究院. 2010中国节能节电分析报告[R]. 北京:中国电力出版社,2010. State Grid Energy Research Institute. 2010 China Energy Saving Analysis report[R]. Beijing:China Electric Power Press,2010.
|
[6] |
LIN W Y, MA Z J, SOHEL M I, et al. Development and evaluation of a ceiling ventilation system enhanced by solar photovoltaic thermal collectors and phase change materials[J]. Energy Conversion and Management, 2014, 88:218-230.
|
[7] |
王秀兰. 美国要求电厂碳排放减三成[J]. 中国石油和化工, 2014, 7:40-41. WANG X L. US calls for 30% reduction in power plant carbon emissions[J]. China Petroleum and Chemical Industry, 2014, 7:40-41.
|
[8] |
李诚. 零碳建筑的发展现状[J]. 绿色建筑, 2015, 7(3):19-23. LI C. Development of zero carbon building[J]. Green Building, 2015, 7(3):19-23.
|
[9] |
毕超. 中国能源CO2排放峰值方案及政策建议[J].中国人口·资源与环境, 2015, 25(5):20-27. BI C. Scheme and policies for peaking energy carbon emissions in China[J]. China Population, Resources and Environment, 2015, 25(5):20-27.
|
[10] |
张睿航, 牛润萍. 相变蓄能材料在建筑节能方面的应用研究进展[J]. 材料导报, 2016, 30(S1):383-386. ZHANG R H, NIU R P. Application research progress of phase change storage materials in building energy conservation[J]. Materials Review, 2016, 30(S1):383-386.
|
[11] |
ORÓ E, GRACIA A D, CASTELL A, et al. Review on phase change materials (PCMs) for cold thermal energy storage applications[J]. Applied Energy, 2012, 99:513-533.
|
[12] |
BELMONTE J F, EGUÍA P, MOLINA A E, et al. Thermal simulation and system optimization of a chilled ceiling coupled with a floor containing a phase change material (PCM)[J]. Sustainable Cities and Society, 2015, 14:154-170.
|
[13] |
ZALBA B, MARÍN J M, CABEZA L F, et al. Review on thermal energy storage with phase change:materials, heat transfer analysis and applications[J]. Applied Thermal Engineering, 2003, 23(3):251-283.
|
[14] |
ZHANG M, MEDINA M A, KING J B. Development of a thermally enhanced frame wall with phase-change materials for on-peak air conditioning demand reduction and energy savings in residential buildings[J]. International Journal of Energy Research, 2005, 29(9):795-809.
|
[15] |
RUBEN B, BJØRN P J, ARILD G. Phase change materials for building applications:a state-of-the-art review[J]. Energy and Buildings, 2010, 42(9):1361-1368.
|
[16] |
LI X L, ZHANG L, WANG S Q, et al. Inorganic phase change materials in building energy saving[J]. Applied Mechanics and Materials, 2011, 71-78:2606-2609.
|
[17] |
SAFFARI M, PISELLI C, GRACIA A D, et al. Thermal stress reduction in cool roof membranes using phase change materials(PCM)[J]. Energy and Buildings, 2018, 158:1097-1105.
|
[18] |
ELARGA H, FANTUCCI S, SERRA V, et al. Experimental and numerical analyses on thermal performance of different typologies of PCMs integrated in the roof space[J]. Energy and buildings, 2017, 150:546-557.
|
[19] |
STRITIH U, BUTALA V. Energy savings in building with a PCM free cooling system[J]. Journal of Mechanical Engineering, 2011, 57(2):125-134.
|
[20] |
黄婷婷, 郭燕雯, 张志伟, 等.一种汽车余热驱动的固体吸附空调系统:103940143A[P]. 2014-07-23. HUANG T T, GUO Y W, ZHANG Z W, et al. A solid adsorption air conditioner driven by waste heat of automobile:103940143A[P]. 2014-07-23.
|
[21] |
杨肖虎, 李杨, 张联英, 等. 一种相变储能的电动公交车辐射空调系统:106143048A[P].2016-11-23. YANG X H, LI Y, ZHANG L Y, et al. A radiant air conditioner with phase change energy storage for an electric bus:106143048A[P]. 2016-11-23.
|
[22] |
SCHATZ O. Cold start improvements with a heat store[C]//SAE Technical Paper 910305.1991.
|
[23] |
KORIN E, RESHEF R, TSHERNICHOVESKY D, et al. Improving cold-start functioning of catalytic converters by using phase-change materials[C]//SAE Technical Paper 980671.1998.
|
[24] |
杨启容, 杨娟, 刘大维. 回收发动机余热的球内对称凝固过程参数分析[J]. 农业机械学报,2006, 37(3):27-30. YANG Q R, YANG J, LIU D W. Parameter analysis of freezing in spheres for the recovering of waste heat of engine[J]. Transactions of the Chinese Society for Agricultural Machinery, 2006, 37(3):27-30.
|
[25] |
高青, 王永珍, 王国华, 等. 基于车辆余热蓄能利用的作用特性分析[J]. 热科学与技术, 2008, 7(4):314-319. GAO Q, WANG Y Z, WANG G H, et al. Characteristics of thermal energy storage on automobile waste heat for vehicle heating[J]. Journal of Thermal Science and Technology, 2008,7(4):314-319.
|
[26] |
STRITIH U, BUTALA V. Energy saving in building with PCM cold storage[J]. International Journal of Energy Research, 2007, 31:1532-1544.
|
[27] |
李得伦. 石蜡相变材料的传热与控温性能研究[D]. 广州:华南理工大学, 2012. LI D L. Research on the heat transfer and thermal control performance of paraffin phase change material[D]. Guangzhou:South China University of Technology,2012.
|
[28] |
胡小冬, 高学农, 李得伦, 等. 石蜡/膨胀石墨定形相变材料的性能[J].化工学报, 2013, 64(10):3831-3837. HU X D, GAO X N, LI D L, et al. Performance of paraffin/expanded graphite composite phase change materials[J]. CIESC Journal,2013, 64(10):3831-3837.
|
[29] |
WANG Z C, ZHANG Z Q, JIA L, et al. Paraffin and paraffin/aluminum foam composite phase change material heat storage experimental study based on thermal management of Li-ion battery[J]. Applied Thermal Engineering, 2015, 78:428-436.
|
[30] |
LIN C J, XU S C, CHANG G F, et al. Experiment and simulation of a LiFePO4 battery pack with a passive thermal management system using composite phase change material and graphite sheets[J], Journal of Power Sources, 2015, 275:742-749.
|
[31] |
史巍, 程素香. 石蜡石墨粉复合相变材料在温室大棚中的控温效果研究[J]. 硅酸盐通报, 2017, 36(12):4112-4116. SHI W, CHENG S X. Temperature control effect of paraffin graphite composite phase change materials in greenhouse[J]. Bulletin of the Chinese Ceramic Society, 2017, 36(12):4112-4116.
|
[32] |
崔艳琦.相变材料热性能及其在室内被动式储能系统的简易计算[J].储能科学与技术, 2017, 6(2):302-306. CUI Y Q. Thermal properties of phase change materials (PCM) and their concise calculations for passive storage applications in buildings[J]. Energy Storage Science and Technology, 2017, 6(2):302-306.
|