[1] |
张明礼,张瑞玲,冯德刚,等. 寒区工程锅盖效应病害调查与防治研究进展[J]. 科学技术与工程,2021,21(19):7 863-7 873.(ZHANG Mingli,ZHANG Ruiling,FENG Degang,et al. Engineering diseases investigation and research progress on prevention of the pot-cover effect in cold regions[J]. Science Technology and Engineering,2021,21(19):7 863-7 873.(in Chinese))
|
[2] |
ZHANG C,TAN Y Q,CHEN F C,et al. Long-term thermal analysis of an airfield-runway snow-melting system utilizing heat-pipe technology[J]. Energy Conversion and Management,2019,186:473-486.
|
[3] |
ZHANG G Z,XIA C C,SUN M,et al. A new model and analytical solution for the heat conduction of tunnel lining ground heat exchangers[J]. Cold Regions Science and Technology,2013,88:59-66.
|
[4] |
XIONG Z Y,LI X Z,ZHAO P,et al. An in-situ experimental investigate of thermo-mechanical behavior of a large diameter over length energy pile[J]. Energy and Buildings,2021,252:111474.
|
[5] |
胡田飞. 基于可再生能源供热技术的冻土区路基防冻胀方法研究[J]. 太阳能,2021,(6):37-49.(HU Tianfei. Study on frost heaving prevention method for subgrade in frost soil regions based on renewable energy heating technology[J]. Solar Energy,2021,(6):37-49.(in Chinese))
|
[6] |
胡田飞,刘建坤,岳祖润,等. 季节性冻土区路基专用太阳能主动供热装置研究[J]. 中国铁道科学,2021,42(2):39-49.(HU Tianfei,LIU Jiankun,YUE Zurun,et al. Study on solar active heating device for subgrade in seasonally frozen soil region[J]. China Railway Science,2021,42(2):39-49.(in Chinese))
|
[7] |
胡田飞. 制冷与集热技术在寒区路基工程中的应用研究[博士学位论文][D]. 北京:北京交通大学,2018.(HU Tianfei. Application of refrigeration and heat-collect technology to subgrade engineering in cold regions[Ph. D. Thesis][D]. Beijing:Beijng Jiaotong University,2018.(in Chinese))
|
[8] |
ZHANG T,CAI G,LIU S,et al. Investigation on thermal characteristics and prediction models of soils[J]. International Journal of Heat and Mass Transfer,2017,106:1 074-1 086.
|
[9] |
HEDAYATI-DEZFOOLI M,LEONG W H. An experimental study of coupled heat and moisture transfer in soils at high temperature conditions for a medium coarse soil[J]. International Journal of Heat and Mass Transfer,2019,137:372-389.
|
[10] |
王 欣,杜震宇,吕植东. 寒冷地区垂直埋管换热器供暖期岩土体温度场研究[J]. 太原理工大学学报, 2016,47(1):41-45.(WANG Xin,DU Zhenyu,LV Zhidong. Experimental research on soil temperature field of vertically buried heat exchanger in heating period in cold region[J]. Journal of Taiyuan University of Technology,2016,47(1):41-45.(in Chinese))
|
[11] |
王 洋,孙 婉,高世轩,等. 竖直地埋管换热器吸排热量比对换热区温度场影响研究[J]. 可再生能源,2016,34(9):1 383-1 391. (WANG Yang,SUN Wan,GAO Shixuan,et al. Influence of the ratio of heat absorption and discharge of vertical ground heat exchanger on temperature field of the heat exchange zone[J]. Renewable Energy Resources,2016,34(9):1 383-1 391.(in Chinese))
|
[12] |
张东海. 分层和渗流条件下竖直地埋管换热器传热特性研究[博士学位论文][D]. 徐州:中国矿业大学,2020.(ZHANG Donghai. Investigation on heat transfer behavior of vertical ground heat exchangers in a layered subsurface in the presence of groundwater advection[Ph. D. Thesis][D]. Xuzhou:China University of Mining and Technology,2020.(in Chinese))
|
[13] |
李庆文,郑明阳,乔 兰,等. 能源桩三维螺旋线热源的瞬态传热模型[J]. 工程科学学报,2021,43(11):1 569-1 576.(LI Qingwen,ZHENG Mingyang,QIAO Lan,et al. Transient heat transfer model of a three-dimensional spiral heat source in an energy pile[J]. Chinese Journal of Engineering,2021,43(11):1 569-1 576.(in Chinese))
|
[14] |
MA Z D,JIA G S,CUI X,et al. Analysis on variations of ground temperature field and thermal radius caused by ground heat exchanger crossing an aquifer layer[J]. Applied Energy,2020,276:115453.
|
[15] |
EPPELBAUM L V,KUTASOV I M. Determination of the formation temperature from shut-in logs:Estimation of the radius of thermal influence[J]. Journal of Applied Geophysics,2011,73(3):278-282.
|
[16] |
王 哲,刘耶军,张正威,等. 能源桩全生命周期热响应半径简化计算方法[J]. 中南大学学报:自然科学版,2020,51(2):514-522. (WANG Zhe,LIU Yejun,ZHANG Zhengwei,et al. Simplified calculation method of thermal response radius of energy pile in its whole life cycle[J]. Journal of Central South University:Science and Technology,2020,51(2):514-522.(in Chinese))
|
[17] |
汪双杰,陈建兵,金 龙,等. 冻土路基热收支状态的尺度效应[J]. 中国公路学报,2015,28(12):9-16.(WANG Shuangjie,CHEN Jianbing,JIN Long,et al. Scale effect of thermal budget of permafrost embankment[J]. China Journal of Highway and Transport,2015,28(12):9-16.(in Chinese))
|
[18] |
江辉煌,吴龙梁,高明显,等. 振动荷载下路基的能量耗散率空间分布规律的研究[J]. 振动与冲击,2021,40(2):185-193.(JIANG Huihuang,WU Longliang,GAO Mingxian,et al. Spatial distribution of the energy dissipation rate in a subgrade under vibration load[J]. Journal of Vibration and Shock,2021,40(2):185-193.(in Chinese))
|
[19] |
胡田飞,徐丽霞,张宗凯. 基于地热能的寒区路基主动供热防冻胀方法研究[J]. 区域供热,2021,(6):60-71.(HU Tianfei,XU Lixia,ZHANG Zongkai. Study on a novel anti-frost method for subgrade in cold regions based on geothermal energy utilization[J]. District Heating,2021,(6):60-71.(in Chinese))
|
[20] |
胡田飞,岳祖润,闫晓夏,等. 季节性冻土区路基专用地源热泵供热装置研究[J]. 中国铁道科学,2021,42(6):39-49.(HU Tianfei,YUE Zurun,YAN Xiaoxia,et al. Study on heating device for subgrade in seasonally frozen soil regions based on ground-source heat pump[J]. China Railway Science,2021,42(6):39-49.(in Chinese))
|
[21] |
何建胜,傅 鸿,刘凯辉. 石太客专线冻害预防与整治[C]// 世界轨道交通发展研究会年会论文集. [S. l.]:[s. n.],2013:219-224.(HE Jiansheng,FU Hong,LIU Kaihui. Shitai passenger dedicated line prevention and remediation of frost damage[C]// Proceedings of the World Rail Transit Development Research Annual Conference. [S. l.]:[s. n.],2013:219-224.(in Chinese))
|
[22] |
韩雷雷. 季节冻土区冷阻层路基结构稳定性及应用研究[博士学位论文][D]. 长春:吉林大学,2021.(HAN Leilei. Study on structural stability and application of cold resistant layer subgrade in seasonal frozen region[Ph. D. Thesis][D]. Changchun:Jilin University,2021.(in Chinese))
|
[23] |
HU T F,LIU J K,YUE Z R,et al. Proposed application of a geothermal heat pump technique to address frost damage of embankments in cold regions[J]. Cold Regions Science and Technology,2022,(195):103474.
|
[24] |
陈 东,谢继红. 热泵技术手册[M]. 北京:化学工业出版社,2012:433-436.(CHEN Dong,XIE Jihong. Heat pump technical manual[M]. Beijing:Chemical Industry Press Co.,Ltd.,2012:433-436.(in Chinese))
|