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Academician Guodong Cheng's Contributions to Permafrost Science

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  • Xin Li

Abstract

Permafrost is strongly associated with human well‐being and has become a frontier of cryospheric science. Professor Guodong Cheng is one of the most outstanding geocryologists in China. He was elected as an academician of the Chinese Academy of Sciences in 1993 and served as the president of the International Permafrost Association from 1993–1998. In the early 1980s, Professor Cheng proposed the hypothesis of the repeated‐segregation mechanism for the formation of thick‐layered ground ice near the permafrost table. Subsequently, in the early 2000s, he proposed the “proactive roadbed cooling” concept and led the successful development of a series of specific engineering measures that were fully applied in the Qinghai–Tibet Railway Project. Furthermore, he developed a conceptual model to describe the influences of changing permafrost on the groundwater system and discovered the “sink‐holing effect” (channeling with improved hydraulic conductivity of warming permafrost). Professor Cheng has also developed theories on the three‐dimensional zonation and proposed a classification system and an altitude model for high‐altitude permafrost distribution. On this special occasion of Professor Cheng's 80th birthday, this paper summarizes his outstanding achievements on permafrost science, hoping the permafrost research community will carry forward the momentum to further advance permafrost science worldwide.

Suggested Citation

  • Xin Li, 2024. "Academician Guodong Cheng's Contributions to Permafrost Science," Permafrost and Periglacial Processes, John Wiley & Sons, vol. 35(3), pages 395-411, July.
  • Handle: RePEc:wly:perpro:v:35:y:2024:i:3:p:395-411
    DOI: 10.1002/ppp.2225
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    References listed on IDEAS

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    1. Yanlin Zhang & Guodong Cheng & Xin Li & Huijun Jin & Dawen Yang & Gerald N. Flerchinger & Xiaoli Chang & Victor F. Bense & Xujun Han & Ji Liang, 2017. "Influences of Frozen Ground and Climate Change on Hydrological Processes in an Alpine Watershed: A Case Study in the Upstream Area of the Hei'he River, Northwest China," Permafrost and Periglacial Processes, John Wiley & Sons, vol. 28(2), pages 420-432, April.
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    3. Carolina Olid & Valentí Rodellas & Gerard Rocher-Ros & Jordi Garcia-Orellana & Marc Diego-Feliu & Aaron Alorda-Kleinglass & David Bastviken & Jan Karlsson, 2022. "Groundwater discharge as a driver of methane emissions from Arctic lakes," Nature Communications, Nature, vol. 13(1), pages 1-9, December.
    4. Timothy M. Lenton & Johan Rockström & Owen Gaffney & Stefan Rahmstorf & Katherine Richardson & Will Steffen & Hans Joachim Schellnhuber, 2019. "Climate tipping points — too risky to bet against," Nature, Nature, vol. 575(7784), pages 592-595, November.
    5. Boris K. Biskaborn & Sharon L. Smith & Jeannette Noetzli & Heidrun Matthes & Gonçalo Vieira & Dmitry A. Streletskiy & Philippe Schoeneich & Vladimir E. Romanovsky & Antoni G. Lewkowicz & Andrey Abramo, 2019. "Permafrost is warming at a global scale," Nature Communications, Nature, vol. 10(1), pages 1-11, December.
    6. Youhua Ran & Xin Li & Guodong Cheng & Tingjun Zhang & Qingbai Wu & Huijun Jin & Rui Jin, 2012. "Distribution of Permafrost in China: An Overview of Existing Permafrost Maps," Permafrost and Periglacial Processes, John Wiley & Sons, vol. 23(4), pages 322-333, October.
    7. J. G. Bockheim, 2015. "Global Distribution of Cryosols with Mountain Permafrost: An Overview," Permafrost and Periglacial Processes, John Wiley & Sons, vol. 26(1), pages 1-12, January.
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    1. Huijun Jin & Shuai Huang & Xiaoying Jin & Junhe Liang & Xiaoying Li & Anyuan Li & Lanzhi Lü & Raul‐David Şerban & Leonid S. Gagarin & Yongping Wang, 2025. "Changing Southern/Lower Limits of Latitudinal/Mountain Permafrost (SLLP/LLMP) in Northeast China: An Overview," Permafrost and Periglacial Processes, John Wiley & Sons, vol. 36(3), pages 563-579, July.

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