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Towards a biophysical understanding of observed performance of evaporation suppressant films applied to agricultural water storages - first analyses

机译:对观察到的用于农业蓄水的蒸发抑制膜性能的生物物理理解-首次分析

摘要

The potential utility of monomolecular layers(‘monolayers’) and other surface film materials for the reduction of open water evaporation has long been argued. However, outside the laboratory, trials to quantify the effectiveness of artificial surface films have produced highly variable results after application to water surfaces, whether natural water bodies or managed farm storages. This paper briefly reviews the physical mechanisms involved in evaporation suppression and the biophysical literature on aquatic surface microlayers. The wide-ranging results from sixteen months of outdoor trough-scale and (simultaneous) replicated bucket-scale evaporation reduction trials are udinterpreted using biophysical measurements made on microlayer and immediate subsurface water samples taken from the experimental troughs. udWhen the prevailing environmental conditions and other ancillary measurements are taken into account, plausible hypotheses arise to account for at least some of the observed trial-to-trial differences in evaporation reduction and surface film performance. These results have implications for both small-scale trailing of evaporation suppressants and the deployment and management of artificial surface film materials on agricultural water storages.
机译:长期以来,人们一直在争论单分子层(“单层”)和其他表面膜材料在减少开放水蒸发方面的潜在用途。但是,在实验室外,对人造表面膜的有效性进行量化的试验在将其应用于天然水体或有管理的农场蓄水表面后产生了变化很大的结果。本文简要回顾了抑制蒸发的物理机制以及有关水生表面微层的生物物理学文献。 16个月的室外水槽规模试验和(同时)重复的水桶规模蒸发减少试验的广泛结果使用从实验水槽中采集的微层和直接地下水样进行的生物物理测量得到了解释。当考虑到主要的环境条件和其他辅助测量结果时,出现了合理的假设,以解释蒸发减少量和表面膜性能中至少一些观察到的试验与试验之间的差异。这些结果对蒸发抑制剂的小规模跟踪以及在农业用水存储中部署和管理人造表面膜材料都具有影响。

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