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季节性冻土区路基专用太阳能主动供热装置研究(6)
作者:网站采编关键词:
摘要:[1]蔡德钩.高速铁路季节性冻土路基冻胀时空分布规律试验[J].中国铁道科学,2016,37(3):16-21. (CAI on Frost Heaving Spatial-Temporal Distribution of High Speed Railw
[1]蔡德钩.高速铁路季节性冻土路基冻胀时空分布规律试验[J].中国铁道科学,2016,37(3):16-21.
(CAI on Frost Heaving Spatial-Temporal Distribution of High Speed Railway Subgrade in Seasonal Frozen Soil Region[J].China Railway Science,2016,37(3):16-21.in Chinese)
[2]杜晓燕.微冻胀填料中填充料冻胀与骨架颗粒的相互作用机制[J].中国铁道科学,2017,38(6):9-15.
(DU Mechanism of Filling Material and Skeleton Particle in Micro Frost Heaving Filler[J].China Railway Science,2017,38(6):9-15.in Chinese)
[3]刘辉.季节性冻土地区高速铁路设计施工技术[J].铁道工程学报,2017,34(10):1-10.
(LIU and Construction Technology of High Speed Railway in Seasonal Frozen Soil Region[J].Journal of Railway Engineering Society,2017,34(10):1-10.in Chinese)
[4]岳祖润,程佳.季节性冻土地区保温护道路基温度场数值模拟[J].石家庄铁道大学学报:自然科学版,2015,28(3):25-29.
(YUE Zurun,CHENG Jia.A Numerical Simulation of Temperature Field of Insulating Berm Roadbed in Seasonally Frozen Regions[J].Journal of Shijiazhuang Tiedao University:Natural Science Edition,2015,28(3):25-29.in Chinese)
[5]闫宏业.季节性冻土地区高速铁路路基保温技术试验研究[J].铁道建筑,2019,59(2):1-4.
(YAN Study on Thermal Insulation Technique to Prevent Subgrade Frost-Heaving for High Speed Railway in Seasonal Frozen Soil Region[J].Railway Engineering,2019,59(2):1-4.in Chinese)
[6]石越峰,蔡德钩,闫宏业,等.高速铁路路基沥青混凝土防水封闭层技术综述[J].铁道建筑,2018,58(1):33-36.
(SHI Yuefeng,CAI Degou,YAN Hongye,et on Technology of Asphalt Concrete Waterproof Sealing Layer for High Speed Railway Subgrade[J].Railway Engineering,2018,58(1):33-36.in Chinese)
[7]杜晓燕,叶阳升,张千里,等.季节性冻土区高速铁路路基冻深研究[J].中国铁道科学,2015,36(2):11-17.
(DU Xiaoyan,YE Yangsheng,ZHANG Qianli,et Depth of High Speed Railway Subgrade in Seasonally Frozen Ground Region[J].China Railway Science,2015,36(2):11-17.in Chinese)
[8]杨世铭,陶文铨.传热学[M].北京:高等教育出版社,2006.
(YANG Shiming,TAO Transfer[M].Beijing:Higher Education Press,2006.in Chinese)
[9]LAI J X,QIU J L,FAN H B,et Method and Test Verification of a Cold Region Tunnel Employing Electric Heat Tracing[J].Tunneling and Underground Space Technology,2016,60(11):56-65.
[10]GAO Q,HUANG Y,LI M,et Study of Slab Solar Collection on the Hydronic System of Road[J].Solar Energy,2010,84(12):2096-2102.
[11]MIRZANAMADI R,HAGENTOFT C E,JOHANSSON P.An Analysis of Hydronic Heating Pavement to Optimize the Required Energy for Anti-Icing[J].Applied Thermal Engineering,2018,144(11):278-290.
[12]BRANDL H.Energy Foundations and Other Thermo-Active Structures[J].Géotechnique,2006,56(2):81-122.
[13]夏才初,曹诗定,王伟.能源地下工程的概念、应用与前景展望[J].地下空间与工程学报,2009,5(3):419-424.
(XIA Caichu,CAO Shiding,WANG Wei.An Introduction to Energy Geotechnical Engineering[J].Chinese Journal of Underground Space and Engineering,2009,5(3): Chinese)
[14]ADAM D,MARKIEWICZ R.Energy from Earth-Coupled Structures,Foundations,Tunnels and Sewers[J].Géotechnique,2009,59(3):229-236.
[15]江翮,杨玉平,方通.寒区公路隧道地源热泵型防冻保暖系统施工技术要点[J].公路,2012,57(10):216-218.
(JIANG He,YANG Yuping,FANG Tong.Key Points of Construction Technology of a Ground Source Heat Pump System for the Anti-Freeze of Highway Tunnels in Cold Region[J].Highway,2012,57(10): Chinese)
[16]满吉芳.基于地源热泵的季节性冻土区挡土墙防冻胀系统研究[D].兰州:兰州交通大学,2012.
(MAN on Anti-Freeze System of Retaining Wall in Seasonal Frozen Soil Region Based on Ground Source Heat Pump[D].Lanzhou:Lanzhou Jiaotong University,2012.in Chinese)
[17]YU X B,HURLEY M T,LI T,et Feasibility Study of a New Attached Hydronic Loop Design for Geothermal Heating of Bridge Decks[J].Applied Thermal Engineering,2020,164(1):.
[18]GAO J Q,LAI Y M,ZHANG M Y,et al.The Thermal Effect of Heating Two-Phase Closed Thermosyphons on the Highspeed Railway Embankment in Seasonally Frozen Regions[J].Applied Thermal Engineering,2018,141:948-957.
[19]胡田飞.制冷与集热技术在寒区路基工程中的应用研究[D].北京:北京交通大学,2018.
(HU of Refrigeration and Heat-Collect Technology to Subgrade Engineering in Cold Regions[D].Beijing:Beijing Jiaotong University,2018.in Chinese)
文章来源:《太阳能学报》 网址: http://www.tynxbzz.cn/qikandaodu/2021/0707/1257.html
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