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《Tropical Geography》 2015-03
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Effects of Air Temperature Circadian on the NDVI of Nansi Lake Wetland Vegetation

LIANG Chunling;YU Quanzhou;LIU Yujie;ZHANG Zulu;School of Environment and Planning,Shangqiu Normal University;School of Environment and Planning,Liaocheng University;Key Laboratory of Ecosystem Network Observation and Modeling,Institute of Geographic Sciences and Natural Resources Research,Chinese Academy of Sciences;Research Center for Ecological Civilization,Chinese Research Academy of Environmental Sciences;School of Population,Resources and Environment,Shandong Normal University;  
The normalized difference vegetation index(NDVI) of the Nansi Lake wetland vegetation in Shandong province were calculated on the basis of MSS, TM and ETM+ remote sensing data collected by the Landsat satellites. The main meteorological factors which influence wetland vegetation activities were deduced by NDVI. And combined with meteorological data in the study area, the asymmetric effects of daytime and nighttime air temperature on wetland vegetation were revealed. The results are as follows: 1) In the past 40 years, Tmax, Tmin and Tave have been increased in Nansi Lake wetland. The change feature between Tmax and Tmin(R2=0.13 and 0.26 respectively) was different and increased 0.174℃ and 0.235℃ respectively. The change tendency of Tmin was more significant. 2) If the human influences were removed, the asymmetric effects of circadian air temperature on wetland vegetation would be quite obvious. The wetland NDVI increased significantly with the increase of Tmax, and had no correlation with Tmin. This may be related to wetland adequate moisture and ecological effect of wetland vegetation caused by circadian air temperature. This study may have important reference for understanding vegetation response characteristic to air temperature in different ecosystems.
【Fund】: 国家社会科学基金青年项目(14CJY077);; 教育部人文社会科学研究青年基金项目(12YJCZH120)
【CateGory Index】: Q948.1
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