Bulletin of Chinese Academy of Sciences (Chinese Version)
Keywords
long term positioning monitoring,temperate glacier and environment,regional sustainable development,cryospheric science
Document Type
CAS Field Station
Abstract
After nearly 20 years of development, the Yulong Snow Mountain National Field Observation and Research Station for Cryosphere and Sustainable Development, Chinese Academy of Sciences has built a field comprehensive observation system and data online visualization platform of temperate glacier and environment integrating observation, research, demonstration, and service. Based on the long-term positioning monitoring of temperate glaciers and the environment, and focusing on key scientific issues related to sustainable development in temperate glacier areas, this study deeply analyzes the mechanism of changes in temperate glaciers, reveals the hydrological, microorganisms, and climatic effects of temperate glacier change, evaluates the effectiveness of temperate glacier tourism services and integrated risk of glacial lake outburst disasters, and provides scientific and technological support for regional sustainable development.
First page
572
Last Page
578
Language
Chinese
Publisher
Bulletin of Chinese Academy of Sciences
References
1 Wang S J, Che Y J, Wei Y Q. Spatiotemporal dynamic characteristics of typical temperate glaciers in China. Scientific Reports, 2021, 11:657.
2 Chen L H, Che Y J, Cao Y, et al. Glacier mass balance based on two digital elevation models and ground observation records for the Baishui River Glacier No. 1 in Yulong Snow Mountain, southeastern Qinghai-Tibet Plateau. Frontiers in Earth Science, 2022, 10:883673.
3 Wang S J, Che Y J, Pang H X, et al. Accelerated changes of glaciers in the Yulong Snow Mountain, southeast QinghaiTibetan Plateau. Regional Environmental Change, 2020, 20 (2):38.
4 Pu T, Qin D H, Kang S C, et al. Water isotopes and hydrograph separation in different glacial catchments in the southeast margin of the Tibetan Plateau. Hydrological Processes, 2017, 31(22):3810-3826.
5 Kong Y L, Wang K, Pu T, et al. Nonmonsoon precipitation dominates groundwater recharge beneath a monsoon-affected glacier in Tibetan Plateau. Journal of Geophysical Research:Atmospheres, 2019, 124(20):10913-10930.
6 马晓军, 刘炜, 侯书贵, 等. 玉龙雪山冰川雪坑中细菌多样性群落结构及其与气候环境的关系. 兰州大学学报(自然科学版), 2009, 45(6):94-100. Ma X J, Liu W, Hou S G, et al. Bacterial diversity and community at Yulong Snow Mountains and their relationship to climatic and environmental changes. Journal of Lanzhou University (Natural Sciences), 2009, 45(6):94-100. (in Chinese)
7 Sajjad W, Ali B, Bahadur A, et al. Bacterial diversity and communities structural dynamics in soil and meltwater runoff at the frontier of Baishui Glacier No. 1, China. Microbial Ecology, 2021, 81(2):370-384.
8 Zhang B L, Wu X K, Zhang G S, et al. The diversity and biogeography of the communities of Actinobacteria in the forelands of glaciers at a continental scale. Environmental Research Letters, 2016, 11(5):054012.
9 Niu H W, Kang S C, Wang H L, et al. Light-absorbing impurities accelerating glacial melting in southeastern Tibetan Plateau. Environmental Pollution, 2020, 257:113541.
10 Niu H W, Kang S C, Wang H L, et al. Seasonal variation and light absorption property of carbonaceous aerosol in a typical glacier region of the southeastern Tibetan Plateau. Atmospheric Chemistry and Physics, 2018, 18(9):6441- 6460.
11 Li L Y, Yang Y D, Wang S J, et al. Yearly elevation change and surface velocity revealed from two UAV surveys at Baishui River Glacier No. 1, Yulong Snow Mountain. Atmosphere, 2024, 15:231.
12 王世金, 齐翠姗, 周蓝月, 等. 达古冰川旅游目的地客源时空结构特征、问题透视及其结构优化. 云南师范大学学报 (哲学社会科学版), 2019, 51(2):58-67. Wang S J, Qi C S, Zhou L Y, et al. Spatiotemporal characteristics and structural optimization of the tourist source market:A case study of Dagu Glacier as a tourist destination in a problem-based perspective. Journal of Yunnan Normal University (Humanities and Social Sciences Edition), 2019, 51(2):58-67. (in Chinese)
13 Yuan L L, Wang S J. Recreational value of glacier tourism resources:A travel cost analysis for Yulong Snow Mountain. Journal of Mountain Science, 2018, 15(7):1446-1459.
14 Wang S J, Xie J, Zhou L Y. China's glacier tourism:Potential evaluation and spatial planning. Journal of Destination Marketing & Management, 2020, 18:100506.
15 Che Y J, Wang S J, Wei Y Q, et al. Rapid changes to glaciers increased the outburst flood risk in Guangxieco Proglacial Lake in the Kangri Karpo Mountains, Southeast QinghaiTibetan Plateau. Natural Hazards, 2022, 110(3):2163-2184.
16 Wang S J, Yang Y D, Gong W Y, et al. Reason analysis of the Jiwenco glacial lake outburst flood (GLOF) and potential hazard on the Qinghai-Tibetan Plateau. Remote Sensing, 2021, 13(16):3114.
17 Wang S J, Che Y J, Ma X G. Integrated risk assessment of glacier lake outburst flood (GLOF) disaster over the QinghaiTibetan Plateau (QTP). Landslides, 2020, 17(12):2849-2863.
18 陈拓, 张威. 冰冻圈微生物学. 北京:科学出版社, 2022. Chen T, Zhang W. Cryospheric Microbiology. Beijing:Science Press, 2022. (in Chinese)
19 康世昌, 黄杰. 冰冻圈化学. 北京:科学出版社, 2021. Kang S C, Huang J. Cryospheric Chemistry. Beijing:Science Press, 2021. (in Chinese)
20 王世金, 温家洪. 冰冻圈灾害特征、影响及其学科发展展望. 中国科学院院刊, 2020, 35(4):523-530. Wang S J, Wen J H. Characteristics, influence of cryosphere disaster and prospect of discipline development. Bulletin of Chinese Academy of Sciences, 2020, 35(4):523-530. (in Chinese)
Recommended Citation
WANG, Shijin; KANG, Shichang; CHEN, Tuo; HE, Yuanqing; YANG, Meixue; LI, Quanlian; NIU, Hewen; PU, Tao; ZHANG, Binglin; CHE, Yanjun; GUO, Wanqin; YAN, Xingguo; MA, Xinggang; and WANG, Rongjun
(2024)
"Long term monitoring and research on temperate glaciers and related environments provide technological support for regional sustainable development,"
Bulletin of Chinese Academy of Sciences (Chinese Version): Vol. 39
:
Iss.
3
, Article 14.
DOI: https://doi.org/10.16418/j.issn.1000-3045.20240222002
Available at:
https://bulletinofcas.researchcommons.org/journal/vol39/iss3/14
Included in
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