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Temporal and among-site variability of inherent water use efficiency at the ecosystem level

机译:生态系统一级固有用水效率的时间和地点间变化

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摘要

Half-hourly measurements of the net exchanges of carbon dioxide and water vapor between terrestrial ecosystems and the atmosphere provide estimates of gross primary production (GPP) and evapotranspiration (ET) at the ecosystem level and on daily to annual timescales. The ratio of these quantities represents ecosystem water use efficiency. Its multiplication with mean daylight vapor pressure deficit (VPD) leads to a quantity which we call "inherent water use efficiency" (IWUE~*). The dependence of IWUE~* on environmental conditions indicates possible adaptive adjustment of ecosystem physiology in response to a changing environment. IWUE~* is analyzed for 43 sites across a range of plant functional types and climatic conditions. IWUE~* increases during short-term moderate drought conditions. Mean annual IWUE~* varied by a factor of 3 among all sites. This is partly explained by soil moisture at field capacity, particularly in deciduous broad-leaved forests. Canopy light interception sets the upper limits to canopy photosynthesis, and explains half the variance in annual IWUE~* among herbaceous ecosystems and evergreen needle-leaved forests. Knowledge of IWUE~* offers valuable improvement to the representation of carbon and water coupling in ecosystem process models.
机译:对陆地生态系统与大气之间的二氧化碳和水蒸气的净交换进行的半小时测量可提供生态系统水平以及每天至每年时间尺度上的初级总产值(GPP)和蒸散量(ET)的估算值。这些数量的比例代表了生态系统的用水效率。它与平均日光蒸气压亏缺(VPD)的乘积产生一个我们称为“固有用水效率”(IWUE〜*)的量。 IWUE〜*对环境条件的依赖性表明,可能会根据环境变化对生态系统生理进行适应性调整。在一系列植物功能类型和气候条件下分析了IWUE〜*的43个位点。 IWUE〜*在短期中度干旱条件下增加。在所有站点中,平均年度IWUE〜*相差3倍。这在一定程度上可以通过田间持水量的土壤水分来解释,尤其是在落叶阔叶林中。冠层光的拦截为冠层的光合作用设定了上限,并解释了草本生态系统和常绿针叶林之间年IWUE〜*的一半变化。 IWUE〜*的知识为生态系统过程模型中碳水耦合的表示提供了有价值的改进。

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