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9篇 您的检索式:作者名="Brouchkov"
    题名 作者 年代 出处 被引量
1Preliminary measurements on methane content in permafrost,central Yakutia,and some experimental data 显示文摘Brouchkov A Fukuda M 2002Permafrost and Periglacial Processes2002,13,:1
2Thermokarst as a short-term permafrost disturbance, Central Yakutia显示文摘Brouchkov A Fukuda M Fedorov A 2004Permafrost and Periglacial Processes2004,15,:1
3Thermokarst as a short-term permafrost disturbance,Central Yakutia显示文摘Brouchkov A Fukuda M Fedorov A 0,,01:1
4Salt and water transfer in frozen soils Induced by gradients of temperature and salt content显示文摘Anatoli Brouchkov 2000Permafrost PeriglacialProcesses2000,,11:1
5Salt and water transfer in frozen soils induced by gradients of temperature and salt content显示文摘Brouchkov A 2000Permafrost and Periglacial Processes2000,,11:1
6Salt and water transfer in frozen soils induced by gradients of temperature and salt content显示文摘BROUCHKOV A 2000Permafrost and Periglacial Processes2000,11,2:1
7Nature and distribution of frozen salinesediment on the Russian arctic coast显示文摘Brouchkov A 2002Permafrost and Periglacial Process2002,13,:1
8Salt and water transfer in frozen soils induced by gradients of temperature and salt content显示文摘Anatoli Brouchkov 2000Permafrost periglacial processes2000,,11:1
9Evaluating the thermal environment of urban land surfaces in Yakutsk,a city located in a region of continuous permafrost显示文摘Rapid urbanization has led to changes in the urban land surface thermal environment.However,there are still much unknown about the urban land surface thermal conditions in permafrost regions.Permafrost is a unique geological environment,changes in the urban land surface thermal environment may trigger geological disasters caused by permafrost degradation.This study utilized remote sensing data and geographic de-tectors to identify the dynamic changes in land surface temperature(LST)and land use/land cover(LU/LC)in Yakutsk,as well as the potential factors contributing to LST variations.Between 1992 and 2020,the built-up area in Yakutsk increased by 36%,and the annual average LST in Yakutsk has risen by 6.67℃,accompanied by an expansion of high-temperature areas.Despite ongoing greening efforts,rapid urbanization poses a threat to these green spaces.Changes in the normalized difference built-up index(NDBI)and land use transfer(LDT)were identified as the primary drivers of urban LST changes.By integrating geographic detector technology and artificial neural network models,we optimized the selection of input factors in the prediction model and used it to explore the future changes in LST in Yakutsk.The average LST in Yakutsk is expected to reach 23.4℃ and 25.1℃ in 2030 and 2040,respectively,with a further increase in high-temperature areas.This study provides a reference for ecological,hydrological,and geological assessments of cities in permafrost regions.Xiang-Long LI Ze ZHANG Jin-Xin LU Anatoli BROUCHKOV Qing-Kai YAN Qi-Hao YU Sheng-Rong ZHANG Andrey MELNIKOV 2024Advances in Climate Change Research2024,15,1:0
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