气候变化下中国户外滑雪场的风险与可持续性

IF 8.5 1区 地球科学 Q1 METEOROLOGY & ATMOSPHERIC SCIENCES npj Climate and Atmospheric Science Pub Date : 2025-01-20 DOI:10.1038/s41612-025-00917-0
Yanqiang Wei, Jing Li, Dongliang Luo, Xuejie Tang, Zihao Wu, Xufeng Wang
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引用次数: 0

摘要

全球气候变暖破坏了人工造雪条件,缩短了户外滑雪场的开放日,增加了运营成本,严重威胁着户外滑雪产业的可持续发展。本文对中国 772 家户外滑雪场在 2030 年和 2050 年 RCP 4.5 气候情景下的可持续性进行了分析。(1)滑雪运动在 1996 年至 2023 年期间得到了长足发展,并将在未来几十年在中国蓬勃兴起。(2)全球变暖加速是中国户外滑雪场可持续发展的主要威胁。然而,降雪量并不是未来几十年的关键影响因素。(3)中国南方的户外滑雪场面临的威胁最大,也是最难以为继的滑雪场。我们提出了一个 "政府-经营者-滑雪者 "的适应气候变化威胁的框架,并提倡临时性的小型滑雪场更具有适应性,因为它们的用水和能源效率高,可以节省水电资源。
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Risks and sustainability of outdoor ski resorts in China under climate changes

Global warming is jeopardizing the artificial snow making conditions, shortening outdoor ski resorts opening days and increasing operation cost, severely threatening the sustainability of outdoor ski industry. The sustainability of 772 outdoor ski resorts in China under RCP 4.5 climate scenarios in 2030 s and 2050 s had been analyzed. (1) The skiing sports developed prominently during 1996 to 2023 and will boom in China in the coming decades. (2) Accelerated global warming is the main threat to the sustainability of outdoor ski resorts of China. However, snowfall isn’t a critical influencing factor in the coming decades. (3) The outdoor ski resorts in south China are facing the most threats and are the most unsustainable resorts. We proposed a nexus of Government-Operator-Skier adaptation framework for adapting climate change threats and advocating the temporal small-scale ski resorts are more adaptive as their high water and energy efficiencies for saving water and electricity resources.

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来源期刊
npj Climate and Atmospheric Science
npj Climate and Atmospheric Science Earth and Planetary Sciences-Atmospheric Science
CiteScore
8.80
自引率
3.30%
发文量
87
审稿时长
21 weeks
期刊介绍: npj Climate and Atmospheric Science is an open-access journal encompassing the relevant physical, chemical, and biological aspects of atmospheric and climate science. The journal places particular emphasis on regional studies that unveil new insights into specific localities, including examinations of local atmospheric composition, such as aerosols. The range of topics covered by the journal includes climate dynamics, climate variability, weather and climate prediction, climate change, ocean dynamics, weather extremes, air pollution, atmospheric chemistry (including aerosols), the hydrological cycle, and atmosphere–ocean and atmosphere–land interactions. The journal welcomes studies employing a diverse array of methods, including numerical and statistical modeling, the development and application of in situ observational techniques, remote sensing, and the development or evaluation of new reanalyses.
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