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橡胶园与热带雨林的冠层温度红外比较。

Comparison of infrared canopy temperature in a rubber plantation and tropical rain forest.

机构信息

Key Laboratory of Tropical Forest Ecology, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Menglun, 666303, China.

Global Change Ecology Group, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Menglun, 666303, China.

出版信息

Int J Biometeorol. 2017 Oct;61(10):1885-1892. doi: 10.1007/s00484-017-1375-4. Epub 2017 Jul 31.

Abstract

Canopy temperature is a result of the canopy energy balance and is driven by climate conditions, plant architecture, and plant-controlled transpiration. Here, we evaluated canopy temperature in a rubber plantation (RP) and tropical rainforest (TR) in Xishuangbanna, southwestern China. An infrared temperature sensor was installed at each site to measure canopy temperature. In the dry season, the maximum differences (T - T) between canopy temperature (T) and air temperature (T) in the RP and TR were 2.6 and 0.1 K, respectively. In the rainy season, the maximum (T - T) values in the RP and TR were 1.0 and -1.1 K, respectively. There were consistent differences between the two forests, with the RP having higher (T - T) than the TR throughout the entire year. Infrared measurements of T can be used to calculate canopy stomatal conductance in both forests. The difference in (T - T) at three g levels with increasing direct radiation in the RP was larger than in the TR, indicating that change in (T - T) in the RP was relatively sensitive to the degree of stomatal closure.

摘要

冠层温度是冠层能量平衡的结果,受气候条件、植物结构和植物控制的蒸腾作用驱动。在这里,我们评估了中国西南部西双版纳橡胶种植园(RP)和热带雨林(TR)的冠层温度。在每个地点安装了一个红外温度传感器来测量冠层温度。在旱季,RP 和 TR 的冠层温度(T)与空气温度(T)之间的最大差异(T-T)分别为 2.6 和 0.1 K。在雨季,RP 和 TR 的最大(T-T)值分别为 1.0 和-1.1 K。这两个森林之间存在一致的差异,整个年度 RP 的(T-T)值均高于 TR。T 的红外测量可用于计算两个森林的冠层气孔导度。在 RP 中,随着直接辐射的增加,在三个 g 水平上(T-T)的差异大于 TR,这表明 RP 中(T-T)的变化相对对气孔关闭程度敏感。

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