学术论文

冻土地区风的作用分析——以青藏铁路沿线多年冻土为例

  • 陈继 ,
  • 胡泽勇 ,
  • 程国栋 ,
  • 牛富俊 ,
  • 吴青柏
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  • 中国科学院寒区旱区环境与工程研究所冻土工程国家重点实验室,甘肃 兰州 730000
陈继(1977-),男,河南永城人,助理研究员,博士研究生,主要从事寒区工程研究. E-mail:chenji@lzb.ac.cn

收稿日期: 2004-03-26

  修回日期: 2004-07-20

  网络出版日期: 2005-03-25

基金资助

中国科学院知识创新工程重大项目“青藏铁路工程与多年冻土相互作用及其环境效应”(编号:KZCX1-SW-04)资助.

WIND’S COOLING EFFECT ON FROZEN SOIL—FOR EXAMPLE OF QINGHAI-TIBET RAILWAY

  • CHEN Ji ,
  • CHENG Guo-dong ,
  • HU Ze-yong ,
  • NIU Fu-jun
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  • State Key Laboratory of Frozen Soil Engineering, Cold and Arid Regions Environment and Engineering Research Institute, Chinese Academy of Sciences, Lanzhou 730000, China

Received date: 2004-03-26

  Revised date: 2004-07-20

  Online published: 2005-03-25

摘要

在广大的冻土地区,尤其是常年多风的冻土地区,空气与地面之间的热交换不仅仅表现为传导、自然对流和辐射。在风的作用下,地表上部空气的强制对流和表土层中的水分蒸发大大增强,对冻土层的热状况产生重要的影响。对于像青藏高原这样的冻土地区而言,地面上1.5 m处空气的年平均温度要比下附面层底的年平均温度低3~3.5℃以上;同时,对于表土层潮湿的冻土地区而言,水分的蒸发也将会带走土体中的大量热量。从冻土地区风作用的概念——冻土地区的风降低地表温度、促进下伏冻土发育的作用出发,分析了影响冻土地区风降温作用的诸多因素,给出在强风、表土含水量大的条件下,风作用表现得非常显著的结论。然后,通过对比、分析青藏铁路北麓河试验段的2个工程实例,验证了风的作用对冻土温度状况的重要影响。最后,给出了风作用在冻土地区若干基础工程实践中直接或间接的应用,以及利用风的降温作用来保护冻土的工程措施的使用条件和局限性。

关键词: 冻土; 风作用; 感热; 潜热

本文引用格式

陈继 , 胡泽勇 , 程国栋 , 牛富俊 , 吴青柏 . 冻土地区风的作用分析——以青藏铁路沿线多年冻土为例[J]. 地球科学进展, 2005 , 20(3) : 275 -271 . DOI: 10.11867/j.issn.1001-8166.2005.03.0275

Abstract

In wide cold regions, especially frozen soil area with frequent wind, thermal exchange mode between Earth's surface and air does not consist of thermal conduction, natural convection and radiation. Under the action of wind, forced convection of air above ground and water evaporation of top soil layer will be greatly enhanced. They will have important effect on the ground temperature regime. Taking example of frozen soil area in Qinghai-Tibet Plateau, annual average air temperature of 1.5m above Earth’s surface is 2.5℃, lower than that of earth’s surface. At the same time, water evaporation brings away a lot of heat stored in moist top soil layer. At first, this paper focused on the concept of wind's cooling effect[WTBZ], which suggests that wind in frozen soil area can lower the temperature of earth surface and accelerate the growth of frozen soil. Many factors that affect wind's cooling effect were also analyzed briefly. Then, through comparison and analysis between the two engineering examples in the Beiluhe testing site of Qinghai-Tibet Railway, it was proved that wind has significant effect on the thermal status. Finally, this paper presented its direct and indirect application to engineering practice in cold regions, its applicability and limitation in the aspect of protecting permafrost. 

参考文献

[1]Hu Yinqiao. Meteorology of boundary layer[J]. Advances in Earth Science, 1991,6(6):57-59.[胡隐樵.边界层气象学[J].地球科学进展,1991, 6(6):57-59.][2]Zhang Qiang, Hu Yinqiao. Advance of boundary layer physics and problems that it faces[J]. Advances in Earth Science, 2001,16(4):526-532.[张强, 胡隐樵. 大气边界层物理学的研究进展和面临的科学问题[J]. 地球科学进展,2001, 16(4):526-532.]
[3]Zeng Qunzhu, Kou Youguan, Xie Weirong, et al. Study on the radiation balance in Qinghai-Tibet Plateau[J]. Paper collection of Glaciology and Geocryology Institute of CAS,1982, 3:3-51.[曾群柱, 寇有观, 谢维荣,等. 青藏高原辐射平衡研究[J]. 中国科学院兰州冰川冻土所集刊, 1982, 3: 3-51. ]
[4]Wu Ziwang, Cheng Guodong, Zhu Linnan, et al. Roadbed Engineering for Permafrost[M]. Lanzhou: Publishing House of Lanzhou University, 1988.57-60.[吴紫汪, 程国栋, 朱林楠, 等. 冻土路基工程[M]. 兰州:兰州大学出版社, 1988. 57-60.]
[5]Zhu Linnan. Study on attached surface with different land cover in Qinghai-Tibet Plateau[J]. Journal of Glaciology and Geocryology, 1988, 10(1):35-39.[朱林楠. 高原冻土区不同下垫面的附面层研究[J]. 冰川冻土, 1988, 10(1): 35-39.]
[6]Zhou Youwu, Qiu Guoqing, Cheng Guodong, et al. Frozen Soil in China[M]. Beijing: Science Press, 2000.9-36.[周幼吾, 邱国庆, 程国栋, 等. 中国冻土[M]. 北京:科学出版社, 2000. 9-36.]
[7]Wu Ziwang, Lai Yuanming,Zang Enmu,et al. Tunnel Engineering in Cold Regions[M]. Beijing: Ocean Press, 2003.[吴紫汪, 赖远明, 臧恩穆,等. 寒区隧道工程[M]. 北京:海洋出版社,2003.]
[8]Wartena L  , van J H, Boxel  D  Veenhuysen. Macroclimate, microclimate and dune formation along the West European coast[J]. Landscape Ecology, 1991, 6(1): 15-27.
[9]Wang Zhonglong, Xie Weirong. Study on the evaporation of grassland in the east part of Qilian Mountain[J]. Paper collection of Glaciology and Geocryology Institute of CAS,1982, 3:77-81.[王中隆, 谢维荣. 祁连山东部山地草甸蒸发的研究[J]. 中国科学院兰州冰川冻土所集刊, 1982, 3: 77-81.]
[10]Cone V M. Hydraulic laboratory for irrigation investigations, Fort Collins[J]. Colombia Engineering News,1913, 70:662-665. 
[11]Meyer  A F. Computing run-off from rainfall and other physical data[J]. American Society of Civil Engineering Transactions,1915, 79:1 056-1 224.
[12]Jones R, Smith C C, Lf G. Measurement and Analysis of evaporation from an Inactive Outdoor Swimming Pool[A].In: Proceedings of the 1993 Annual Conference of the American Solar Energy Society[C]. Washington DC : American Solar Energy Society,1993.399.
[13]Himus  G W ,  Hinchley J W. The effect of a current of air on the rate of evaporation of water below the boiling point[J]. Chemistry and Industry, 1924, 43:840.
[14]Lurie  M, Michailoff N. Evaporation from free water surfaces[J]. Industrial and Engineering Chemistry, 1936, 28(3):345.
[15]Jia Yubin, Yuan Yuxin, Pei Baohua, et al. Improvement of ecology in farm field after adopting poplar-crop intercrop[J]. Science of Woods, 1999, 35(1):54-65.[贾玉彬,袁玉欣,裴保华,等. 杨农间作对农田生态环境的改善[J]. 林业科学, 1999, 35(1): 54-65.]
[16]Charles C Smith, George L f, Randy Jones. Measurement and analysis of evaporation from an inactive qutdoor swimming pool[J]. Solar Energy, 1994, 53(1):3-7.
[17]Cheng Guodong. Investigation on the belt regularity of high altitude frozen soil distribution in China[J]. Geography Journal, 1984, 39(2):185-193.[程国栋. 我国高海拔多年冻土地带性规律之探讨[J]. 地理学报, 1984, 39(2):185-193.]
[18]Meinders E R, Meer T H van der, Hanjalic K. Local convective heat transfer from an array of wall-mounted cubes[J].International Journal of Heat and Mass Transfer, 1998, 41 ( 2):335-346.
[19]Yershov E D. General Geocryology[M]. British: Cambridge University Press, 1998. 525-549.
[20]Ma Wei, Cheng Guodong, Wu Qingbai. Study on the methods of active cooling foundation in permafrost area[J]. Journal of Glaciology and Geocryology, 2002,24(5):579-587.[马巍, 程国栋, 吴青柏. 多年冻土地区主动冷却地基方法研究[J]. 冰川冻土, 2002, 24(5): 579-587.]
[21]Feldman K T.The heat pipe[J]. Mechanical Engineering, 1967, 89:30-31.
[22]Dun P, Reay D A. Heat Pipe[M]. New York: Pergamon Press, 1967. 87-99.

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