Changing climatic indicators and mapping of soil temperature using Landsat data in the Yangan-Tau UNESCO global geopark

IF 1.7 0 ENGINEERING, PETROLEUM SOCAR Proceedings Pub Date : 2022-12-30 DOI:10.5510/ogp2022si200768
E. Bogdan, R. Kamalova, A. Suleymanov, L. Belan, I. Tuktarova
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引用次数: 2

Abstract

Changes in key climate index affect ecosystems and biodiversity. In this regard, the assessment of the climatic conditions is of particular relevance. This study presents the results of an analysis of climate change and digital mapping of soil temperature in the Yangan-Tau UNESCO Global Geopark (Russia). The steady increase in air temperature was revealed, which causes an increase in the sum of active temperatures and the duration of the warm period of the year. Annual total precipitation during 1966-2020 changed the sign of the trend: positive trend (increase in precipitation) in 1966-1990, while in 1991-2020 is negative. The hydrothermal indicators determined the increase in aridity during the warm period. Based on the analysis of changes in the climatic conditions of the geopark, a comparison was made of the temperature regimes of air and soil, and the relationship between these indicators in the snow-free period was revealed (R2 = 0.62). An approach is presented for digital mapping of the temperature regime of the surface layer of soils based on ground-based research data and the results of interpretation of the Landsat thermal bands. A significant relationship between soil temperature and Earth surface temperature for the snow-free period was revealed (R2 = 0.83). Based on the obtained regression model and Landsat 8-9 data for the snow-free period of 2013-2022 the map of the distribution of average temperatures of the surface layer of soil from May to October was produced, which clearly demonstrated the relationship between soil temperature and biomes. Keywords: soil temperature; surface land temperature; remote methods; climate change; Yangan-Tau UNESCO global geopark; Bashkortostan.
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基于Landsat数据的羊干头世界地质公园气候指标变化与土壤温度制图
关键气候指数的变化影响着生态系统和生物多样性。在这方面,对气候条件的评估是特别重要的。本文介绍了俄罗斯羊干头世界地质公园气候变化分析和土壤温度数字制图的结果。气温呈现出稳定的上升趋势,导致活跃气温总和和暖期持续时间增加。1966-2020年年总降水量变化趋势为:1966-1990年为正趋势(降水增加),1991-2020年为负趋势。热液指标决定了暖期干旱性的增加。在分析地质公园气候条件变化的基础上,对比了无雪期空气和土壤温度状况,得出了无雪期空气和土壤温度状况与土壤温度状况之间的关系(R2 = 0.62)。提出了一种基于地面研究数据和陆地卫星热带解译结果的土壤表层温度状态数字制图方法。无雪期土壤温度与地表温度呈极显著相关(R2 = 0.83)。基于回归模型和2013-2022年无雪期Landsat 8-9数据,绘制了5 - 10月土壤表层平均温度分布图,清晰地展示了土壤温度与生物群落的关系。关键词:土壤温度;地表温度;远程方法;气候变化;联合国教科文组织世界地质公园;巴什。
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SOCAR Proceedings
SOCAR Proceedings ENGINEERING, PETROLEUM-
CiteScore
3.00
自引率
82.40%
发文量
0
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