地表温度对土地利用和土地覆盖动态的响应(摩洛哥Taroudant地区)

A. Rahimi, Z. Khalil, A. Bouasria, Ikram El Mjiri, Mohammed Bounif
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引用次数: 1

摘要

地表温度在估算辐射收支、热平衡研究、气候动力学控制和土壤-植被-大气转移模拟以及研究区域土地利用/土地覆盖(LULC)变化的影响等方面发挥着重要作用。本研究通过基于多源、多传感器遥感技术的景观动态评估,对土地利用与地表温度的关系进行了综合评价。该研究利用1985年、2001年和2017年三个不同日期的Landsat 5卫星TM、ETM和OLI 8数据进行,旨在评估摩洛哥Taroudant地区土地利用/土地覆盖变化对地表温度分布的影响。利用GIS对遥感数据生成的地图进行空间分析和统计比较,发现1985 - 2017年Taroudant地区存在不同的变化。这些变化的主要特点是建成区和裸地增加,自然区(植被、森林等)减少。1985年、2001年和2017年的平均气温分别为32.74℃、34.37℃和39.17℃。农作温室温度分别为24.09℃、28.5℃、35.58℃,贫瘠土壤温度分别为37.14℃、38.38℃、40.01℃。耕地地表平均温度分别为24.31℃、27.87℃和28.61℃。因此,土壤人工和与之相关的一切,如温室气体排放、农业和自然土地的滥用,很可能是环境问题和气候变化的根源,其主要特征是地表温度的变化、不规则的降雨和前所未有的干旱期。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Land Surface Temperature Responses to Land Use Land Cover Dynamics (District of Taroudant, Morocco)
Land surface temperature plays an essential role in estimating radiation budgets, in heat balance studies, as a control for climate dynamics and for soil–vegetation–atmosphere transfer modeling, and in studying the impact of land use/land cover (LULC) changes at the regional level. This study provides a comprehensive evaluation of the relationship between land use and land surface temperature (LST), through a landscape dynamics assessment based on multi-source and multi-sensor remote sensing technologies. In particular, the study was performed using Landsat satellite 5 TM, ETM, and OLI 8 data for three different dates (1985, 2001 and 2017) and aimed to assess the effects of land use/land cover changes on the LST distribution in the region of Taroudant, Morocco. Spatial and statistical analysis and comparison of maps generated from remotely sensed data using GIS indicate the existence of different changes in the Taroudant region between 1985 and 2017. These changes are predominantly characterized by an increase in built-up areas and bare ground and a decrease in natural areas (vegetation, forest, etc.). The average temperatures in 1985, 2001 and 2017 in open forests were 32.74 °C, 34.37 °C and 39.17 °C, respectively. The farming greenhouse temperatures were 24.09 °C, 28.5 °C, 35.58 °C, and barren soils 37.14 °C, 38.38 °C, 40.01 °C. The average land surface temperatures of farming lands were 24.31 °C, 27.87 °C and 28.61 °C, respectively. As a result, soil artificialization and everything associated with it, such as greenhouse gas emissions, and abusive consumption of farming and natural land, are likely to be the origin of environmental problems and climate change marked mainly by these changes in surface temperature, irregular rainfall, and unprecedented periods of drought.
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