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Influence of vapor pressure deficit on vegetation growth in China 被引量:1
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作者 LI Chuanhua ZHANG Liang +3 位作者 WANG Hongjie PENG Lixiao YIN Peng MIAO Peidong 《Journal of Arid Land》 SCIE CSCD 2024年第6期779-797,共19页
Vapor pressure deficit(VPD)plays a crucial role in determining plant physiological functions and exerts a substantial influence on vegetation,second only to carbon dioxide(CO_(2)).As a robust indicator of atmospheric ... Vapor pressure deficit(VPD)plays a crucial role in determining plant physiological functions and exerts a substantial influence on vegetation,second only to carbon dioxide(CO_(2)).As a robust indicator of atmospheric water demand,VPD has implications for global water resources,and its significance extends to the structure and functioning of ecosystems.However,the influence of VPD on vegetation growth under climate change remains unclear in China.This study employed empirical equations to estimate the VPD in China from 2000 to 2020 based on meteorological reanalysis data of the Climatic Research Unit(CRU)Time-Series version 4.06(TS4.06)and European Centre for Medium-Range Weather Forecasts(ECMWF)Reanalysis 5(ERA-5).Vegetation growth status was characterized using three vegetation indices,namely gross primary productivity(GPP),leaf area index(LAI),and near-infrared reflectance of vegetation(NIRv).The spatiotemporal dynamics of VPD and vegetation indices were analyzed using the Theil-Sen median trend analysis and Mann-Kendall test.Furthermore,the influence of VPD on vegetation growth and its relative contribution were assessed using a multiple linear regression model.The results indicated an overall negative correlation between VPD and vegetation indices.Three VPD intervals for the correlations between VPD and vegetation indices were identified:a significant positive correlation at VPD below 4.820 hPa,a significant negative correlation at VPD within 4.820–9.000 hPa,and a notable weakening of negative correlation at VPD above 9.000 hPa.VPD exhibited a pronounced negative impact on vegetation growth,surpassing those of temperature,precipitation,and solar radiation in absolute magnitude.CO_(2) contributed most positively to vegetation growth,with VPD offsetting approximately 30.00%of the positive effect of CO_(2).As the rise of VPD decelerated,its relative contribution to vegetation growth diminished.Additionally,the intensification of spatial variations in temperature and precipitation accentuated the spatial heterogeneity in the impact of VPD on vegetation growth in China.This research provides a theoretical foundation for addressing climate change in China,especially regarding the challenges posed by increasing VPD. 展开更多
关键词 vapor pressure deficit(VPD) near-infrared reflectance of vegetation(NIRv) leaf area index(LAI) gross primary productivity(GPP) Climatic Research unit(CRU)Time-Series version 4.06(TS4.06) European Centre for Medium-Range Weather Forecasts(ECMWF)Reanalysis 5(ERA-5) climate change
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柴北缘冷湖五号构造上干柴沟组储层特征研究 被引量:8
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作者 贾艳艳 史基安 +2 位作者 申玉山 周飞 孙国强 《西南石油大学学报(自然科学版)》 CAS CSCD 北大核心 2013年第4期43-50,共8页
通过岩石薄片、铸体薄片、扫描电镜及压汞等分析测试手段对储层特征进行了详细研究,发现柴北缘冷湖五号上干柴沟组储层主要为三角洲相细砂岩和粉砂岩,少部分中砂岩和粗砂岩。岩石主要经历了压实、胶结及溶蚀等成岩作用,具有压实、溶蚀... 通过岩石薄片、铸体薄片、扫描电镜及压汞等分析测试手段对储层特征进行了详细研究,发现柴北缘冷湖五号上干柴沟组储层主要为三角洲相细砂岩和粉砂岩,少部分中砂岩和粗砂岩。岩石主要经历了压实、胶结及溶蚀等成岩作用,具有压实、溶蚀作用中等和胶结作用较强的特点,胶结物主要有碳酸盐胶结、硫酸盐胶结、硅质胶结和自生黏土矿物胶结。储层现处于晚成岩阶段A期。研究区的孔隙类型主要是残余粒间孔和溶蚀扩大孔。储层物性受控于沉积相带和成岩作用,优质储层为三角洲分流河道砂、水下分流河道砂和席状砂,成岩作用对储层的影响主要体现在溶蚀作用对孔隙的扩大和压实、胶结作用对孔隙的破坏。 展开更多
关键词 冷湖五号构造 上干柴沟组 成岩作用 储层特征 孔隙演化
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