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Railway Route Selection Principles Based on the Classification of Engineering Geological Condition in Permafrost Regions |
WANG Shen—ping |
China Railway Fimt Survey and Design Institute Group Ltd.,Xian,Shanxi 710043,China |
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Abstract Research purposes: (1)The treatment measures for the subgrade in permafrost area include passive protection,active cooling,passive protection along with active cooling,combining two kinds of active cooling,building bridge and SO on,and each measure has the different effect.In order to reasonably use the measures,the main factors that affect the engineering geological condition should be considered together and the engineering geological condition should be classified in permafrost area.(2)Based on the classification of engineering geological condition and its corresponding engineering structure,the cost was estimated for providing the scientific basis for engineering geological route selection in permafrost zone.
Research conclusions: :(1)The engineering geological conditions in permafrost area along Qinghai—Tibet Railway are divided into four grades,namely good,general,poor and very poor.The corresponding measures for them are to adopt ordinary embankment,take a single active cooling measure,take two active cooling measures and build bridge.The safe running of train with 1 00 km/h on the Qinghai—Tibet Line in permafrost zone since open to traffic on July,2006 shows that the classification of engineering geological condition is feasible and the respective engineering structures are stable and reliable.(2)The cost of building bridge in very poor section Was 40 millions per kilometer,that was 4.4~15.4 times than the other section in the permafrost area.Therefore,railway route bypasses some very poor areas or passes it with the shortest distance.
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Received: 10 June 2009
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[1] 程因栋.青藏高原多年冻土区路基工程地质研究[J]. 第四纪研究,2003,23(2):134—141.
[2] 李述训,程国栋.青藏高原多年冻土地区沥青路面下融 化盘形成特征[J].冰川冻土,1997,19(2):133—140.
[3] 朱林楠,吴紫旺,藏恩穆.冻土退化与道路丁程[C]//第 五届全国冻土学术会议论文选集·上卷.兰州:甘肃文 化出版社,1996:373—381.。
[4] 朱林楠,吴紫旺,刘永智.多年冻土退化对214国道路基 稳定性的影响[J].公路,1995(4):4—7.
[5] 吴青柏,施斌.试论青藏铁路修筑中的冻土环境保护问 题[J].水文地质工程地质,2002,29(4):14一16.
[6] 铁道第一勘察设计院.青藏铁路多年冻土区路桥涵隧道 关键技术的研究:青藏铁路多年冻土路基新结构试验研 究成果报告[R].西安:铁道第一勘察设计院,2006.
[7] 铁道第一勘察设计院.青藏铁路建设总结《勘察设计卷》 [R].西安:铁道第一勘察设计院,2007.
[8] 铁道第一勘察设计院,等.青藏铁路高原多年冻土区工 程设计暂行规定[s].西安:铁道第一勘察设计院,2003.
[9] 吴云生,张增淮.青藏铁路多年冻土工程地质综合分类 探讨[J].冰川冻土,2003,25(增刊I):1一3.
[10]武憋民,汪双杰,章金钊.多年冻土地区公路工程[M]. 北京:人民交通出版社,2005.
[11]交通部第一公路勘察设计院.青藏公路整治工程科研设 计文献汇编[G].西安:交通部第一公路勘察设计院, 2003.
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