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草地蒸散的多重限制:对闭合能量平衡的影响

Multiple constraints on grassland evapotranspiration: implications for closing the energy balance.

作者信息

Wohlfahrt Georg, Irschick Christoph, Thalinger Bettina, Hörtnagl Lukas, Obojes Nikolaus, Hammerle Albin

机构信息

Institut für Ökologie, Universität Innsbruck, Sternwartestr. 15, 6020 Innsbruck, AUSTRIA.

出版信息

Vadose Zone J. 2010 Nov 1;9(4).

Abstract

When using the eddy covariance (EC) method for measuring the ecosystem-atmosphere exchange of sensible and latent heat, it is not uncommon to find that these two energy fluxes fall short of available energy by 20-30 %. As the causes for the energy imbalance are still under discussion, it is currently not clear how the energy balance should be closed. The objective of the present paper is to use independent measurements of evapotranspiration (ET) for empirically devising on how to best close the energy balance. To this end ET of a temperate mountain grassland was quantified during two measurement campaigns using both an open- and a closed-path EC system, lysimeters and an approach scaling up leaf-level stomatal conductance to canopy level transpiration. Our study showed that both EC systems underestimated ET measured independently by lysimeters and the up-scaling approach. Best correspondence to independently measured ET was achieved by assigning the entire energy imbalance to ET and by adjusting ET according to the average energy balance ratio during the first and second measurement campaign, respectively. Due to a large spatial variability in ET during the first measurement campaign and given large differences in spatial scale between the EC and the independent methods, we are more confident with the comparison of approaches during the second measurement campaign and thus recommend forcing energy balance closure by adjusting for the average energy balance ratio.

摘要

在使用涡度协方差(EC)方法测量生态系统与大气之间的显热和潜热交换时,经常会发现这两种能量通量比可用能量少20%-30%。由于能量不平衡的原因仍在讨论中,目前尚不清楚应如何闭合能量平衡。本文的目的是利用蒸散量(ET)的独立测量结果,凭经验设计出最佳的能量平衡闭合方法。为此,在两次测量活动期间,使用开路和闭路EC系统、蒸渗仪以及一种将叶片水平气孔导度扩大到冠层水平蒸腾的方法,对温带山地草原的ET进行了量化。我们的研究表明,两种EC系统都低估了通过蒸渗仪和尺度扩大方法独立测量的ET。通过将整个能量不平衡归因于ET,并分别根据第一次和第二次测量活动期间的平均能量平衡比率调整ET,实现了与独立测量的ET的最佳对应。由于第一次测量活动期间ET存在较大的空间变异性,且EC与独立方法之间的空间尺度差异较大,我们对第二次测量活动期间各方法的比较更有信心,因此建议通过调整平均能量平衡比率来强制闭合能量平衡。

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