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Featured researches published by Lin Zhanju.


Sciences in Cold and Arid Regions | 2012

Acoustic experimental study of two types of rock from the Tibetan Plateau under the condition of freeze-thaw cycles

Liu Hua; Niu Fujun; Xu Zhi-Ying; Lin Zhanju; Xu Jian

Under the condition of freeze-thaw cycles,two types of rock(granite and andesite),which were used as slope protection of the Qinghai-Tibet Railway,were tested according to the special climatic conditions in the Tibetan Plateau,and their various damage processes in appearance were carefully observed.The observation results show that the damage of andesite was more serious than that of the granite.Using acoustic instrument,ultrasonic velocity was tested.The changing trends of the velocity with cycle number of freeze-thaw were analyzed,and the freeze-thaw cycle damaging the physical and mechanical properties of rocks can be seen.According to the changing trends of the ultrasonic velocity with the cycle number of freeze-thaw,a few mechanical parameters of the rocks,such as dynamic elastic modulus,Poisson ratio,and dynamic bulk modulus,were analyzed.It is found that they all have declining trend as the cycle number of freeze-thaw increases,and in particular,when the cycle number reaches a certain extent,the Poisson ratio of part rocks begins to become negative.


Journal of Mountain Science | 2016

Performance comparison of permafrost models in Wudaoliang Basin, Qinghai-Tibet Plateau, China

Yin Guoan; Niu Fujun; Lin Zhanju; Luo Jing; Liu Minghao

Knowledge of the spatial distribution of permafrost and the effects of climate on ground temperature are important for land use and infrastructure development on the Qinghai-Tibet Plateau (QTP). Different permafrost models have been developed to simulate the ground temperature and active layer thickness (ALT). In this study, Temperature at Top of Permafrost (TTOP) model, Kudryavtsev model and modified Stefan solution were evaluated against detailed field measurements at four distinct field sites in the Wudaoliang Basin to better understand the applicability of permafrost models. Field data from 2012 to 2014 showed that there were notable differences in observed ground temperatures and ALTs within and among the sites. The TTOP model is relatively simple, however, when driven by averaged input values, it produced more accurate permafrost surface temperature (Tps) than the Kudryavtsev model. The modified Stefan solution resulted in a satisfactory accuracy of 90%, which was better than the Kudryavtsev model for estimating ALTs. The modified Stefan solution had the potential of being applied to climate-change studies in the future.Furthermore, additional field investigations over longer periods focusing on hydrology, which has significant influence on permafrost thaw, are necessary. These efforts should employ advanced measurement techniques to obtain adequate and extensive local parameters that will help improve model accuracy.


Acta Geologica Sinica-english Edition | 2010

Permafrost Characteristics of the Qinghai-Tibet Plateau and Methods of Roadbed Construction of Railway

Niu Fujun; Xu Jian; Lin Zhanju; Wu Qingbai; Cheng Guodong


Archive | 2015

Block stone layer slope-protection roadbed structure for reinforced roadbed slope side cooling

Liu Minghao; Niu Fujun; Lin Zhanju; Luo Jing; Yin Guoan; Li Anyuan


Archive | 2015

Wide roadbed structure with rock block layer and ventilating chimney

Liu Minghao; Niu Fujun; Lin Zhanju; Luo Jing; Li Anyuan; Yin Guoan


Advances in Earth Science | 2013

Distribution of Thermokarst Lakes and Its Thermal Influence on Permafrost along Qinghai-Tibet Highway

Niu Fujun; Dong Cheng; Lin Zhanju; Lu Jiahao; Luo Jing


China Railway Science | 2008

Numerical Analysis of Rheological Character of Embankment with Warm and Ice-Rich Frozen Soil

Lin Zhanju


Archive | 2017

Be used for gaseous monitoring system of hot rong hu pool CH4 in qinghai -tibet plateau permafrost district

Yun Hanbo; Wu Qingbai; Guo Donghui; Lin Zhanju


Archive | 2017

Be used for qinghai -tibet plateau permafrost district ecological environment geological survey sample light drilling rig support

Yun Hanbo; Wu Qingbai; Lin Zhanju; Luo Jing; Liu Minghao


Cold Regions Science and Technology | 2017

中国北東部における高速鉄道盛土の土壌水分,地温,と変形【Powered by NICT】

Niu Fujun; Li Anyuan; Luo Jing; Lin Zhanju; Yin Guoan; Liu Minghao; Zheng Hao; Liu Hua

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Niu Fujun

Chinese Academy of Sciences

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Luo Jing

Chinese Academy of Sciences

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Liu Minghao

Chinese Academy of Sciences

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Yin Guoan

Chinese Academy of Sciences

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Xu Jian

Chinese Academy of Sciences

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Wu Qingbai

Chinese Academy of Sciences

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Liu Hua

Xi'an University of Architecture and Technology

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Yun Hanbo

Chinese Academy of Sciences

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Cheng Guodong

Chinese Academy of Sciences

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Niu Yonghong

Chinese Academy of Sciences

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