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首页> 外文期刊>Hydrology and Earth System Sciences >Response of water vapour D-excess to land–atmosphere interactions in a semi-arid environment
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Response of water vapour D-excess to land–atmosphere interactions in a semi-arid environment

机译:半干旱环境中过量水蒸气对陆-气相互作用的响应

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摘要

The stable isotopic composition of water vapour provides information about moisture sources and processes difficult to obtain with traditional measurement techniques. Recently, it has been proposed that the D-excess of water vapour (id/isubv/sub??=??iδ/isup2/supH???8??×??iδ/isup18/supO) can provide a diagnostic tracer of continental moisture recycling. However, D-excess exhibits a diurnal cycle that has been observed across a variety of ecosystems and may be influenced by a range of processes beyond regional-scale moisture recycling, including local evaporation?(ET) fluxes. There is a lack of measurements of D-excess in evaporation?(ET) fluxes, which has made it difficult to assess how ET fluxes modify the D-excess in water vapour?(id/isubv/sub). With this in mind, we employed a chamber-based approach to directly measure D-excess in ET?(id/isubET/sub) fluxes. We show that ET fluxes imposed a negative forcing on the ambient vapour and could not explain the higher daytime id/isubv/sub?values. The low id/isubET/sub observed here was sourced from a soil water pool that had undergone an extended drying period, leading to low D-excess in the soil moisture pool. A strong correlation between daytime id/isubv/sub and locally measured relative humidity was consistent with an oceanic moisture source, suggesting that remote hydrological processes were the major contributor to daytime id/isubv/sub variability. During the early evening, ET fluxes into a shallow nocturnal inversion layer caused a lowering of id/isubv/sub values near the surface. In addition, transient mixing of vapour with a higher D-excess from above the nocturnal inversion modified these values, causing large variability during the night. These results indicate id/i subET/sub can generally be expected to show large spatial and temporal variability and to depend on the soil moisture state. For long periods between rain events, common in semi-arid environments, ET would be expected to impose negative forcing on the surface id/isubv/sub. Spatial and temporal variability of D-excess in ET fluxes therefore needs to be considered when using id/isubv/sub to study moisture recycling and during extended dry periods with weak moisture recycling may act as a tracer of the relative humidity at the oceanic moisture source.
机译:水蒸气的稳定同位素组成提供了有关水分源和传统测量技术难以获得的过程的信息。近来,有人提出水蒸气的D-过量( d v ?? = ?? δ 2 H ??? 8 ??×?? δ 18 O)可以为大陆水分循环利用提供诊断依据。然而,D-过量表现出在各种生态系统中观察到的昼夜循环,并可能受到区域规模水分循环利用以外的一系列过程的影响,包括局部蒸发?(ET)通量。缺乏蒸发通量(ET)中D过量的测量,这使得很难评估ET通量如何改变水蒸气中D过量?( d v )。考虑到这一点,我们采用了基于腔室的方法来直接测量ET?( d ET )通量中的D过量。我们表明,ET通量对环境蒸汽施加了负强迫作用,无法解释白天较高的 d v ?值。此处观察到的 d sub 低是由于经过延长的干燥期的土壤水库,导致土壤水分库中的D过量低。白天 d v 与当地测得的相对湿度之间的强相关性与海洋湿度源一致,表明遥远的水文过程是白天 d < / i> v 变异性。在傍晚,ET通量进入较浅的夜间反转层,导致地表附近的 d v 值降低。此外,从夜间反转上方将具有较高D过量的蒸气进行瞬时混合会修改这些值,从而在夜间造成较大的变化。这些结果表明,通常可以预期 d ET 表现出较大的时空变化并取决于土壤的水分状态。对于在半干旱环境中常见的两次降雨事件之间的较长时间段,预计ET将对表面 d v 施加负强迫。因此,在使用 d v 研究水分循环时,应考虑ET通量中D过量的时空变化,而在干燥较长的时期,水分循环较弱可能会海洋湿度源处相对湿度的示踪剂。

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