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Spatiotemporal variation in snow cover and its effects on grassland phenology on the Mongolian Plateau
作者姓名:SA Chula  MENG Fanhao  LUO Min  LI Chenhao  WANG Mulan  ADIYA Saruulzaya  BAO Yuhai
作者单位:College of Geographical Science;Inner Mongolia Key Laboratory of Remote Sensing and Geographic Information System;Institute of Geography and Geoecology
基金项目:supported by the National Natural Science Foundation of China(41861014);the Natural Science Foundation of Inner Mongolia Autonomous Region,China(2020BS03042,2020BS04009);the Scientific Research Start-up Fund Projects of Introduced Talents(5909001803,1004031904).
摘    要:Snow cover is an important water source for vegetation growth in arid and semi-arid areas,and grassland phenology provides valuable information on the response of terrestrial ecosystems to climate change.The Mongolian Plateau features both abundant snow cover resources and typical grassland ecosystems.In recent years,with the intensification of global climate change,the snow cover on the Mongolian Plateau has changed correspondingly,with resulting effects on vegetation growth.In this study,using MOD10A1 snow cover data and MOD13A1 Normalized Difference Vegetation Index(NDVI)data combined with remote sensing(RS)and geographic information system(GIS)techniques,we analyzed the spatiotemporal changes in snow cover and grassland phenology on the Mongolian Plateau from 2001 to 2018.The correlation analysis and grey relation analysis were used to determine the influence of snow cover parameters(snow cover fraction(SCF),snow cover duration(SCD),snow cover onset date(SCOD),and snow cover end date(SCED))on different types of grassland vegetation.The results showed wide snow cover areas,an early start time,a late end time,and a long duration of snow cover over the northern Mongolian Plateau.Additionally,a late start,an early end,and a short duration were observed for grassland phenology,but the southern area showed the opposite trend.The SCF decreased at an annual rate of 0.33%.The SCD was shortened at an annual rate of 0.57 d.The SCOD and SCED in more than half of the study area advanced at annual rates of 5.33 and 5.74 DOY(day of year),respectively.For grassland phenology,the start of the growing season(SOS)advanced at an annual rate of 0.03 DOY,the end of the growing season(EOS)was delayed at an annual rate of 0.14 DOY,and the length of the growing season(LOS)was prolonged at an annual rate of 0.17 d.The SCF,SCD,and SCED in the snow season were significantly positively correlated with the SOS and negatively correlated with the EOS and LOS.The SCOD was significantly negatively correlated with the SOS and positively correlated with the EOS and LOS.The SCD and SCF can directly affect the SOS of grassland vegetation,while the EOS and LOS were obviously influenced by the SCOD and SCED.This study provides a scientific basis for exploring the response trends of alpine vegetation to global climate change.

关 键 词:snow  cover  fraction  snow  cover  phenology  vegetation  phenology  grey  relation  grade  climate  change  Mongolian  Plateau

Spatiotemporal variation in snow cover and its effects on grassland phenology on the Mongolian Plateau
SA Chula,MENG Fanhao,LUO Min,LI Chenhao,WANG Mulan,ADIYA Saruulzaya,BAO Yuhai.Spatiotemporal variation in snow cover and its effects on grassland phenology on the Mongolian Plateau[J].Journal of Arid Land,2021,13(4):332-349.
Authors:SA Chula
Institution:1.College of Geographical Science, Inner Mongolia Normal University, Hohhot 010022, China;2.Inner Mongolia Key Laboratory of Remote Sensing and Geographic Information System, Inner Mongolia Normal University, Hohhot 010022, China;3.Institute of Geography and Geoecology, Mongolian Academy of Science, Ulaanbaatar 15170, Mongolia
Abstract:Snow cover is an important water source for vegetation growth in arid and semi-arid areas, and grassland phenology provides valuable information on the response of terrestrial ecosystems to climate change. The Mongolian Plateau features both abundant snow cover resources and typical grassland ecosystems. In recent years, with the intensification of global climate change, the snow cover on the Mongolian Plateau has changed correspondingly, with resulting effects on vegetation growth. In this study, using MOD10 A1 snow cover data and MOD13 A1 Normalized Difference Vegetation Index(NDVI) data combined with remote sensing(RS) and geographic information system(GIS) techniques, we analyzed the spatiotemporal changes in snow cover and grassland phenology on the Mongolian Plateau from 2001 to 2018. The correlation analysis and grey relation analysis were used to determine the influence of snow cover parameters(snow cover fraction(SCF), snow cover duration(SCD), snow cover onset date(SCOD), and snow cover end date(SCED)) on different types of grassland vegetation. The results showed wide snow cover areas, an early start time, a late end time, and a long duration of snow cover over the northern Mongolian Plateau. Additionally, a late start, an early end, and a short duration were observed for grassland phenology, but the southern area showed the opposite trend. The SCF decreased at an annual rate of 0.33%. The SCD was shortened at an annual rate of 0.57 d. The SCOD and SCED in more than half of the study area advanced at annual rates of 5.33 and 5.74 DOY(day of year), respectively. For grassland phenology, the start of the growing season(SOS) advanced at an annual rate of 0.03 DOY, the end of the growing season(EOS) was delayed at an annual rate of 0.14 DOY, and the length of the growing season(LOS) was prolonged at an annual rate of 0.17 d. The SCF, SCD, and SCED in the snow season were significantly positively correlated with the SOS and negatively correlated with the EOS and LOS. The SCOD was significantly negatively correlated with the SOS and positively correlated with the EOS and LOS. The SCD and SCF can directly affect the SOS of grassland vegetation, while the EOS and LOS were obviously influenced by the SCOD and SCED. This study provides a scientific basis for exploring the response trends of alpine vegetation to global climate change.
Keywords:snow cover fraction  snow cover phenology  vegetation phenology  grey relation grade  climate change  Mongolian Plateau  
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