Data (forest/non-forest, LST, ET, albedo, LSTBGC, AGCDD) used supporting the Figures 1-5
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Data used supporting the "Figure 1. Differences in LST due to local effects of YRD and PRD resulting from forest restoration and degradation (a: “Core-Others,” “Others-Core”), and afforestation and deforestation (b: “Core-NF,” “NF-Core”, c: AFF, DEF) in 2020, respectively."Data used supporting the "Figure 2. LST differences due to the local effects of YRD and PRD from forest restoration and degradation for 2010-2020"Data used supporting the "Figure 3. The relationships among the mean values of △LST, △ET, and △albedo concerning various forest activities in the YRD and PRD regions in 2020."Data used supporting the "Figure 4. AGC illustrates the density deficit (a) related to forest restoration and degradation in 2020 for YRD and PRD, respectively."Data used supporting the "Figure 5. The Equivalent LST indicates the difference in averaged BGC effects across the land areas of YRD and PRD due to forest restoration and degradation (i.e., “Core-Others” and “Others-Core”) in 2020, respectively."
本数据集支撑以下图件: 1. 图1:2020年长江三角洲(Yangtze River Delta, YRD)与珠江三角洲(Pearl River Delta, PRD)地区,由森林恢复与退化(子图a:"核心区-非核心区""非核心区-核心区")、造林与伐林(子图b:"核心区-原生林""原生林-核心区",子图c:AFF、DEF)所引发的地表温度(Land Surface Temperature, LST)差异; 2. 图2:2010-2020年长江三角洲与珠江三角洲地区,由森林恢复与退化的局地效应所产生的地表温度差异; 3. 图3:2020年长江三角洲与珠江三角洲地区,各类森林活动对应的ΔLST、Δ蒸散发(Evapotranspiration, ET)与Δ反照率均值间的相关关系; 4. 图4:分别展示2020年长江三角洲与珠江三角洲地区,与森林恢复、退化相关的地上碳储量(Aboveground Carbon, AGC)密度亏缺情况(子图a); 5. 图5:分别展示2020年长江三角洲与珠江三角洲地区,因森林恢复与退化(即"核心区-非核心区"与"非核心区-核心区")所导致的区域陆域平均生物地球化学(Biogeochemical, BGC)效应等效地表温度差异。




