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Modelling of lake mixing induced by air-bubble plumes and the effects on evaporation

机译:气泡羽流引起的湖泊混合模型及其对蒸发的影响

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摘要

One of the main concerns regarding water storage in Australia, and other semi-arid countries, is the high rate of evaporation that inevitably leads to significant water loss. In this paper, the use of air-bubble plume systems to reduce evaporation from large reservoirs is assessed. A destratification system was designed for a large dam based on its depth and stratification strength with the intention of destratifying the reservoir in a short time period. The model DYRESM was then used to simulate the water dynamics under destratification conditions. Different strategies for the operation of the aeration system were assessed, from 10-days operation periods at times of high evaporation rates to continuous operation over longer time spans. The modelled water column temperatures and evaporation rates were analysed and it was found that artificial destratification was only effective in reducing evaporation in spring. In summer, heat is added to the water at a rapid rate, and artificial destratification only helps reduce evaporation in the initial days of operation. The effect of artificial destratification in reducing evaporation in autumn depends on the operation of the system during summer. If operated in summer, the rates of evaporation in autumn will increase due to the additional heat added to the water during the summer. In winter, overturn takes place and artificial destratification has no influence on water temperatures and evaporation. It was concluded that aeration by air-bubble plumes would only be effective in reducing evaporation if the hypolimnetic water does not become warm when mixing takes place. This is an ideal situation, but is unlikely to happen in practice.
机译:在澳大利亚和其他半干旱国家中,有关储水的主要问题之一是高蒸发率,不可避免地导致大量的水流失。在本文中,评估了使用气泡羽流系统来减少大型水库的蒸发。针对大型水坝的深度和分层强度,设计了一种分层系统,旨在在短时间内对水库进行分层。然后使用DYRESM模型来模拟分层条件下的水动力学。评估了曝气系统运行的不同策略,从高蒸发率的10天运行期到更长的时间连续运行。分析了建模的水柱温度和蒸发速率,发现人工分层仅能有效减少春季的蒸发。在夏季,热量会迅速添加到水中,而人工分层处理仅有助于减少运行初期的蒸发。在秋季,人为地分层降低蒸发的效果取决于夏季系统的运行情况。如果在夏季运行,则由于夏季期间向水中添加的额外热量,秋季的蒸发速率将增加。在冬季,倾覆发生并且人为地分层对水温和蒸发没有影响。得出的结论是,如果在混合过程中低通量水未变热,则通过气泡羽流进行的通气只会有效减少蒸发。这是一个理想的情况,但在实践中不太可能发生。

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