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1. 新疆大学地质与矿业工程学院
2. 新疆维吾尔自治区煤田地质局一五六煤田地质勘探队
3. 新疆亚新煤层气投资开发(集团)有限责任公司
Published:2025
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[1]刘阳,张志义,李成,等.临空煤田火区地表温度变化特征及驱动机制[J].新疆大学学报(自然科学版中英文),2025,42(03):323-334.
[1]刘阳,张志义,李成,等.临空煤田火区地表温度变化特征及驱动机制[J].新疆大学学报(自然科学版中英文),2025,42(03):323-334. DOI: 10.13568/j.cnki.651094.651316.2024.06.17.0001.
DOI:10.13568/j.cnki.651094.651316.2024.06.17.0001.
为探究煤田火区煤层自燃对矿区及周围环境地表温度的影响,以七泉湖矿区为研究区,以覆盖研究区的Landsat7/8影像为数据源,采用辐射传输方程法反演得到5期地表温度数据.将计算结果与MODIS LST观测数据进行对比,研究2012―2022年七泉湖矿区及周边环境的地表温度变化特征,使用地理探测器将地表温度变化数据与各因素的数据进行空间匹配和统计分析.结果表明:七泉湖矿区及周围环境地表温度在2012―2022年呈现动态分布,温度较高的区域集中在矿区采坑部位,周边地区地表温度随距采坑区距离的增加而缓慢下降;土地利用、地表反照率、植被指数对地表温度影响程度高,坡度、坡向影响程度较小.
In order to explore the influence of spontaneous combustion of coal seam in coalfield fire area on the mining area and surrounding environment
the Qiquan Lake mining area was taken as the research area
and the Landsat 7/8 image covering the research area was used as the data source. The radiative transfer equation method was used to invert the surface temperature data of five periods. The calculation results were compared with the MODIS LST observation results. The surface temperature variation characteristics of the Qiquan Lake mining area and its surrounding environment from 2012 to 2022 were studied. Using the geographic detector
the land surface temperature change data and the data of various factors are spatially matched and statistically analyzed. The results show that the surface temperature of Qiquan Lake mining area and its surrounding environment presents a dynamic distribution from 2012 to 2022. The areas with higher temperatures are concentrated in the mining pit area of the mining area
and the surface temperature of the surrounding area decreases slowly with the increase of the distance from the mining pit area. Land use
surface albedo and vegetation index have a high degree of influence on surface temperature
while slope and aspect have a small degree of influence.
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