Analysis of the Long-Term Trend and Anomalies of Urumqi’s Temperature under Global Warming.
DOI:
https://doi.org/10.61173/xy5dw252Keywords:
global warming, glacier shrinkage, distributed lag non-linear model, Linear tendency estimation, cumulative anomalyAbstract
Global warming has become an indisputable scientific fact, and understanding its regional characteristics is a core issue in current climate research. Urumqi, a typical large inland city in the arid region of Central Asia, exhibits strong and sensitive climate change signals, making it a key indicator of regional responses under global warming. This paper aims to systematically review the long-term trends, seasonal variations, and anomaly characteristics of temperature changes in Urumqi. Additionally, the primary focus of this article is the temperature in Urumqi in the context of global warming. Based on 58 years of observational data, this study employed distributed lag nonlinear models, linear trend estimation, cumulative anomaly analysis, and the Mann-Kendall test to analyze temperature trends. These data mainly used a distributed lag non-linear model, Linear trend estimation, cumulative anomaly, and the M-K test. Results indicate that over the past 58 years, the annual average temperature in Urumqi has risen slowly, with the most intense warming in winter, followed by autumn and spring, and the weakest in summer. Extreme warm events are significantly more frequent than extreme cold events.. This temperature change pattern poses severe challenges to the stability of the Tianshan glaciers, regional water security, the urban ecological environment, and socio-economic development, urgently necessitating scientific adaptation and mitigation strategies.
References
[1] Wa L. The characteristics of near-surface temperature change and its urbanization effect in Urumqi in the first period of 2019. Meteorological Science and Technology, Nanjing University of Information Science and Technology,2018.
[2] Ge H. Analysis of temperature and precipitation changes in Urumqi in recent 10 years. Anhui Agricultural Science Bulletin, 2016, 22(23): 148-149 + 165.
[3] Wang A, Long H. Urumqi nearly 50 years of temperature change and urbanization development relationship. Yunnan Geographical Environment Research, 2013, 4.
[4] Teng W, Ma L, Yang H. The effect of daily average temperature on respiratory diseases in Urumqi from 2016 to 2018. Practical Preventive Medicine, 2021, 28(08): 937-942.
[5] Liu C. Analysis of 58-year temperature change trend in Urumqi. Anhui Agricultural Sciences, 2010, 38(30): 17155- 17157 + 17161.
[6] Zhang Y. The impact of warming on seasons in Urumqi from 1976 to 2017. Desert and Oasis Meteorology, 2019, 13(4): 96–102.
[7] Xinjiang Climate Center. Xinjiang Climate Change Bulletin. 2022.
[8] Chen P. Analysis of temperature and precipitation changes in Urumqi from 1961 to 2018. Desert and Oasis Meteorology, 2020. Dean&Francis Mingyan Hao
[9] Li J, et al. Spatiotemporal characteristics of climate change in a typical city of the arid northwest region of China—A case study of Urumqi. Acta Geographica Sinica, 2017.
[10] Wang L, Long A. A long-duration glacier change analysis for the Urumqi River Valley, a representative region of Central Asia. Remote Sensing (Basel), 2024, 16(9): 1489.
[11] Zhao W, Li Z, Li H, Xu C, Mu J, Yang Y. The impact of glacial shrinkage on future streamflow in the Urumqi River source region of Eastern Tien Shan, Central Asia. Remote Sensing (Basel), 2024, 16(14): 2546.
[12] Zhang M. Research on heat island mitigation of sponge cities based on satellite remote sensing technology. Urban Environmental Studies, 2022, 6.
Downloads
Published
Issue
Section
License
Copyright (c) 2026 by the authors.

This work is licensed under a Creative Commons Attribution 4.0 International License.
