厘清不同气候条件下环境因素对蒸发分量的影响

IF 3.8 2区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES
Qiong Han, Tiejun Wang, Zhe Kong, Yibin Dai, Lichun Wang
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引用次数: 0

摘要

蒸发分量(EF)是量化陆地表面能量分配过程和确定蒸发机制的有用指标;然而,其影响因素仍然非常不确定。在此,我们汇编了全球数据集,以厘清环境变量对蒸发分量沿气候和地表梯度变化的影响。我们发现:(a) 在年时间尺度上,生态系统水平的 EF 可表示为干旱指数的幂律函数。年平均土壤含水量(SWC)和叶面积指数(LAI)与年平均 EF 的关系类似于传统的蒸发机制理论;(b)在日时间尺度上,增强回归树方法定量地揭示了环境变量(包括气象变量)对 EF 的影响具有同等重要性,尤其是在潮湿地区,这主要是由于潜热(LE)和显热(H)通量对环境变化的响应方向和程度不同。特别是,LE(正)和 H(负)对 SWC、LAI 和相对湿度的反差反应增强了这些影响变量对 EF 的正效应;而 EF 与能量相关因子(即净辐射-Rn 和气温-Ta)之间的相关性变差,因为 LE 和 H 都对这些变量表现出正反应模式;(c) 气象因子也被发现对每日 EF 有非线性影响,并受气候条件的进一步影响。Rn 接近 150 W/m2 和 Ta 接近 15°C 似乎分别是较干燥和潮湿地点的重要能量分配阈值。此外,环境变量与气候之间不断变化的相互作用对于更好地解释 EF 的变化也很重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Disentangling the Impacts of Environmental Factors on Evaporative Fraction Across Climate Regimes

Evaporative fraction (EF) is a useful measure for quantifying land surface energy partitioning processes and determining evaporative regimes; however, its influencing factors remain highly uncertain. Here, global data sets were compiled to disentangle the effects of environmental variables on EF variations along climate and land surface gradients. We found that (a) at annual timescales, ecosystem-level EF could be expressed as a power law function of aridity index. The relationships of mean annual soil water content (SWC) and leaf area index (LAI) with mean annual EF resembled the traditional evaporative regime theory; (b) at daily timescales, the boosted regression tree method quantitatively revealed that the impacts of environmental variables (including meteorological variables) on EF showed equal importance, especially at humid sites, primarily due to the different response direction and magnitude of latent heat (LE) and sensible heat (H) fluxes to environmental changes. Particularly, the contrasting responses of LE (positive) and H (negative) to SWC, LAI, and relative humidity enhanced the positive effects of those influencing variables on EF; whereas, the correlations between EF and energy-related factors (i.e., net radiation-Rn and air temperature-Ta) deteriorated as both LE and H showed positive response patterns to those variables; (c) meteorological factors were also found to have nonlinear effects on daily EF, further modified by climatic conditions. Rn near 150 W/m2 and Ta near 15°C appeared to be important energy-partitioning thresholds at drier and humid sites, respectively. Moreover, changing interactions among environmental variables with climates were demonstrated to be important for better explaining EF variations.

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来源期刊
Journal of Geophysical Research: Atmospheres
Journal of Geophysical Research: Atmospheres Earth and Planetary Sciences-Geophysics
CiteScore
7.30
自引率
11.40%
发文量
684
期刊介绍: JGR: Atmospheres publishes articles that advance and improve understanding of atmospheric properties and processes, including the interaction of the atmosphere with other components of the Earth system.
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