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论文题目: Monitoring of water surface temperature of Eurasian large lakes usingMODISland surface temperature product
英文论文题目: Monitoring of water surface temperature of Eurasian large lakes usingMODISland surface temperature product
第一作者: 杜嘉
英文第一作者: Du, Jia
联系作者: 宋开山
英文联系作者: Song, Kaishan
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发表年度: 2020
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In this study, data from MODIS land surface temperature product level 3 (MOD11A2) were used to investigate the spatiotemporal variation of Eurasian lakes water surface temperature (LSWT) from 2001 to 2015, and to examine the most influencing factors of that variation. The temperature of most lakes in the dry climate zone and in the equatorial climatic zone varied from 17 to 31 degrees C and from 23 to 27 degrees C, respectively. LSWTs in the warm temperate and cold climatic zones were in the range of 20 to 27 degrees C and -0.6 and 17 degrees C, respectively. The average day time LSWT in the polar climate zone was -0.71 degrees C in the summer. Lakes in high latitude and in the Tibetan Plateau displayed low LSWT, ranging from -11 to 26 degrees C during the night time. Large spatial variations of diurnal temperature difference (DTD) were observed in lakes across Eurasia. However, variations in DTDs were small in lakes located in high latitude and in tropical rainforest regions. The shallow lakes showed a rapid response of LSWT to solar and atmospheric forcing, while in the large and deep lakes, that response was sluggish. Results of this study demonstrated the applicability of remote sensing and MODIS LST products to capture the spatial-temporal variability of LSWT across continental scales, in particular for the vast wilderness areas and protected environment in high latitude regions of the world. The approach can be used in future studies examining processes and factors controlling large scale variability of LSWT.

英文摘要:

In this study, data from MODIS land surface temperature product level 3 (MOD11A2) were used to investigate the spatiotemporal variation of Eurasian lakes water surface temperature (LSWT) from 2001 to 2015, and to examine the most influencing factors of that variation. The temperature of most lakes in the dry climate zone and in the equatorial climatic zone varied from 17 to 31 degrees C and from 23 to 27 degrees C, respectively. LSWTs in the warm temperate and cold climatic zones were in the range of 20 to 27 degrees C and -0.6 and 17 degrees C, respectively. The average day time LSWT in the polar climate zone was -0.71 degrees C in the summer. Lakes in high latitude and in the Tibetan Plateau displayed low LSWT, ranging from -11 to 26 degrees C during the night time. Large spatial variations of diurnal temperature difference (DTD) were observed in lakes across Eurasia. However, variations in DTDs were small in lakes located in high latitude and in tropical rainforest regions. The shallow lakes showed a rapid response of LSWT to solar and atmospheric forcing, while in the large and deep lakes, that response was sluggish. Results of this study demonstrated the applicability of remote sensing and MODIS LST products to capture the spatial-temporal variability of LSWT across continental scales, in particular for the vast wilderness areas and protected environment in high latitude regions of the world. The approach can be used in future studies examining processes and factors controlling large scale variability of LSWT.

刊物名称: HYDROLOGICAL PROCESSES
英文刊物名称: HYDROLOGICAL PROCESSES
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参与作者: Jacinthe, Pierre-Andre;Zhou, Haohao;Xiang, Xiaoyun;Zhao, Boyu;Wang, Min
英文参与作者: Jacinthe, Pierre-Andre;Zhou, Haohao;Xiang, Xiaoyun;Zhao, Boyu;Wang, Min
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