期刊文献+

Numerical analysis for cooling effect of open boundary ripped-rock embankment on Qinghai-Tibetan railway 被引量:15

原文传递
导出
摘要 The heat convection of fluid inside the ballast layer and ripped-rock layer,which are re-garded as porous media in railway embankment,is a process of heat and mass transfer.At present,the ripped-rock embankment,as a new type of embankment structure,has widely been used in the construction of Qinghai-Tibetan railway.However,because its ripped-rock layer is almost open in two bilateral boundaries and closed at top and bottom,and air can flow into/out of the ballast layer and ripped-rock layer,the convection and transfer heat patterns are very complicated in the embankment.Therefore,based on the temperature and geology conditions of the Qinghai-Tibetan Plateau,a nu-merical approach of the unsteady two-dimensional continuity,momentum(non-Darcy flow)and en-ergy equations of heat convection for incompressible fluid in porous media is provided to analyze the velocity and temperature characteristics of the ripped-rock embankment with different embankment heights under open boundary condition for the coming 50 years in this paper.The calculated results indicate that,due to the influence of the outside wind,the convective heat transfer mainly relies on the forced convection in the open ripped-rock embankment.Even if the air temperature will be warmed up by 2.6℃in the coming 50 years,it still has a better cooling effect on the underlying soils and a low temperature frozen-soil core is formed in the permafrost below it if the embankment is constructed in the regions whose present mean annual air temperature is?4.0℃.Furthermore,the cooling effect of high ripped-rock embankment is better than that of low embankment.This is because the wider bot-tom of high embankment has a more influence dimension on the underlying frozen soil.However,cardinal winds on the Qinghai-Tibetan Plateau disturb its convection pattern,so that an asymmetric temperature distribution occurs under high embankment and it is possible to induce a transverse un-even deformation of embankment,but no similar situation occurs under low embankment.This asymmetric temperature field problem should be considered when ripped-rock embankment is de-signed and constructed.
出处 《Science China Earth Sciences》 SCIE EI CAS 2006年第7期764-772,共9页 中国科学(地球科学英文版)
基金 This research was supported by the National Science Fund for Distinguished Young Scholars of China(Grant No.40225001) the Foundation of"Excellent Hundred Talent Plan"of the Chinese Academy of Sciences(to Dr.Y.M.Lai) the CAS Special Fund for the authot of the"National Excellent PhD Dissertation"(to Dr.Y.M.Lai) the Knowledge Innovation Program of the Chinese Academy of Sciences(Grant No.KZCX1-SW-04).
  • 相关文献

参考文献6

二级参考文献51

  • 1吴青柏,童长江.冻土变化与青藏公路的稳定性问题[J].冰川冻土,1995,17(4):350-355. 被引量:84
  • 2孔祥言,卢德唐,徐献芝,王晓冬.多孔介质中对流的研究[J].力学进展,1996,26(4):510-520. 被引量:14
  • 3Zhou Youwu Guo Dongxin Qiu Guoqing et al(周幼吾 郭东信 邱国庆 等).Geocryology in China (中国冻土)[M].Beijing: Science Press(北京:科学出版社),2000.37.
  • 4杨海蓉.多年冻土地区防治路基融化下沉及提高其稳定性的措施.冰川冻土,1985,:7-7.
  • 5[1]Cheng Guodong. The impact of local factors on permafrost distribution and its inspiring for design Qinghai-Xizang railway [J]. Science in China (SeriesD), 2003, 33(6): 602-607.
  • 6[3]Lunardini V J. Geothermal aspects of n-factor and calculation methods [A]. Internal Report NRC[C]. Ottawa, Canada,1977. 32-579.
  • 7[4]Perlshtein G Z. Heat exchange between active layer and atmosphere: Theoretical and applied aspects [J]. Earth Cryosphere, 2002, 6(1): 25-29.
  • 8[3]Cheng K T, Tung P L, Lo H B. Experimental research on an area with massive ground ice at the lower limit of alpine permafrost [A].roceedings of the Third International Conference on Permafrost,2 [C]. National Research Council of Canada, 1978.199-222.
  • 9[5]Rooney J W. Rock fill embankment applications for convective foundation cooling on the RAM Railway system [A]. Proceedings of the Fifth International Symposium on Cold Region Development [C]. Alaska, 1997. 399-402.
  • 10[8]Goering D J. Experimental investigation of air convection embankments for permafrost-resistant roadway design [A]. Proceedings of 7th International Conference on Permafrost [C]. Yellowknife, Canada, Nordicana, Quebec, 1998.319-326.

共引文献308

同被引文献209

引证文献15

二级引证文献106

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部