Effects of permafrost environment on the construction of Qinghai-Tibet railway and environmental effects data (2002-2004)

Effects of permafrost environment on the construction of Qinghai-Tibet railway and environmental effects data (2002-2004)


The project “The impact of the frozen soil environment on the construction of the Qinghai-Tibet Railway and the environmental effects of the construction” is part of the “Environmental and Ecological Science in West China” programme supported by the National Natural Science Foundation of China. The person in charge of the project is Wei Ma, a researcher at the Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences. The project ran from January 2002 to December 2004.

Data collected in this project included the following:

Monitoring data of the active layer in the Beiluhe River Basin

(1) Description of the active layer in the Beiluhe River Basin

(2) Subsurface moisture data from the Beiluhe River Basin, 2002.9.28-2003.8.10 (Excel file)

* Site 1 - Grassland moisture data

* Site 2 – Removed turf moisture data

* Site 3 - Natural turf moisture data

* Site 4 - Gravel moisture data

* Site 5 - Insulation moisture data

(3) Subsurface temperature data from the Beiluhe River Basin, 0207-0408 Excel file

* Temperature data for the ballast surface

* Temperature data for insulation materials

* Temperature data for a surface without vegetation

* Temperature data for a grassland surface

* Temperature data for a grit and pebble surface

Data on the impact of construction on the ecological environment were obtained at Fenghuoshan, Tuotuohe, and Wudaoliang. Sample survey included plant type, abundance, community coverage, total coverage, aboveground biomass ratio and soil structure. The moisture content at different depths of the soil was detected using a time domain reflectometer (TDR). A set of soil samples was collected at a depth of 0-100 cm at each sample site. An EKKO100 ground-penetrating radar detector was used to continuously sample 1-1.5 km long sections parallel to the road to determine the upper limit depth of the frozen soil.

3. Predicted data: The temperature of the frozen soil at different depths and times was predicted in response to temperature increases of 1 degree and 2 degrees over the next 50 years based on initial surface temperatures of -0.5, -1.5, -2.5, -3.5, and -4.5 degrees.

4. The frozen soil parameters of the Qinghai-Tibet Railway were as follows: location, railway mileage, total mileage (km), frozen soil type mileage, mileage of zones with an average temperature conducive to permafrost, frozen soil with high temperatures and high ice contents, frozen soils with high temperatures and low ice contents, frozen soils with low temperatures and high ice contents, frozen soils with low temperatures and low ice contents, and melting area.


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Cite as:

Ma, W., Wu, Q. (2012). Effects of permafrost environment on the construction of Qinghai-Tibet railway and environmental effects data (2002-2004). A Big Earth Data Platform for Three Poles, DOI: 10.11888/Geocry.tpdc.270033. CSTR: 18406.11.Geocry.tpdc.270033. (Download the reference: RIS | Bibtex )

Related Literatures:

1. Wu, Q.B., Zhu, Y.L., &Liu, Y.Z. (2002). Evaluating model of frozen soil Environment Change under engineering actions. China Science (Series D), 45(10), 893-902.( View Details | Bibtex)

Using this data, the data citation is required to be referenced and the related literatures are suggested to be cited.


References literature

1.Wu, Q.B., Zhu, Y.L., Liu, Y.Z., (2002). Application of the permafrost table temperature and thermal offset forecast model in the Tibetan Plateau, Journal of Glaciology and Geocryology, 24(5), 614-617. (View Details )

2.Wu, Q.B., Shi, B., (2002). Discussion on the environmental protection of frozen soil during the Qinghai-Tibet railway construction, Hydrogeology & Engineering Geology, 45(4), 14-17. (View Details )

3.Liu, Y.Z., Wu, Q.B., Zhang, J.M., Sheng, Y., (2002). Deformation of Highway Roadbed in Permafrost Regions of the Tibetan Plateau, Journal of Glaciology and Geocryology, 24(1), 10-15. (View Details )

4.Wang, S.L., Niu, F.J., Zhao, L., & Li, S.X. (2003). The thermal stability of roadbed in permafrost regions along Qinghai-Tibet Highway.Cold Regions Science and Technology, 37(1), 25-34. (View Details )

5.Wang, G.X., Cheng, G.D., & Shen, Y.P. (2003). Influence of land cover changes on the physical and chemical properties of alpine meadow soil.Chinese Science Bulletin, 48(2), 118-124. (View Details )

6.Wu, Q.B., Shi, B., & Liu, Y.Z. (2003). Study on interaction of permafrost and highway along Qinghai-Xizang Highway. Science in China, series D, 46(2), 97-105. (View Details )

7.Wu, Q.B., Shi, B., & Fang, H.Y. (2003). Engineering geological characteristics and processes of permafrost along the Qinghai-Xiang (Tibet) Highway. Engineering Geology, 68(3), 387-396. (View Details )


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The influence of permafrost environment on qinghai-tibet railway construction and its environmental effect (No:90502004)

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To respect the intellectual property rights, protect the rights of data authors, expand services of the data center, and evaluate the application potential of data, data users should clearly indicate the source of the data and the author of the data in the research results generated by using the data (including published papers, articles, data products, and unpublished research reports, data products and other results). For re-posting (second or multiple releases) data, the author must also indicate the source of the original data.The results published in Chinese can be indicated by the following specifications: 数据来源于“黑河计划数据管理中心” (http://westdc.westgis.ac.cn); The results published in English can be indicated by the following specifications:The data set is provided by Cold and Arid Regions Sciences Data Center at Lanzhou (http://westdc.westgis.ac.cn).


License: This work is licensed under an Attribution 4.0 International (CC BY 4.0)


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Geographic coverage
East: 111.20 West: 73.45
South: 20.90 North: 49.36
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  • File size: 14 MB
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  • Access: Open Access
  • Temporal coverage: 2002-01-12 To 2005-01-11
  • Updated time: 2021-04-19
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