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Influence of bubble plumes on evaporation from non-stratified waters

机译:气泡羽流对非分层水蒸发的影响

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摘要

Air-bubble plumes have been used primarily for water quality management through destratification; however, their impact on evaporation rates is yet to be formally quantified. In this paper, the influence of these systems on evaporation from water bodies is investigated. Evaporation, temperature, humidity and wind data were collected and analysed from a laboratory experiment for various air-flow rates injected into non-stratified water. It was found that aeration by air-bubble plumes increases evaporation in their direct vicinity. The factors involved in this increase were identified, and an empirical formula to quantify the loss of water under conditions of aeration was derived. To examine their overall impact on reservoirs, a temperate reservoir in Australia was taken as example for the application of this function. While laboratory data showed that aeration plays an important role in increasing loss of water from small non-stratified water bodies (such as water tanks) for real reservoirs, the effects of aeration on evaporation increase are insignificant. This is because the area of the plume to that of the reservoir is significantly less in real reservoirs than in water tanks. Additionally, due to thermal stratification conditions in real reservoirs, aeration by bubble plumes actually causes a slight reduction in evaporation due to reduction in reservoir surface temperatures as a result of the mixing process. Therefore, the net effect of air-bubble plume aeration on real reservoirs is a reduction in evaporation. However, this quantity was shown to be minor, and does not warrant the use of these systems for the sole purpose of reducing evaporation.
机译:气泡羽流主要用于通过分层的水质管理。然而,它们对蒸发速率的影响尚待正式量化。在本文中,研究了这些系统对水体蒸发的影响。收集了蒸发,温度,湿度和风的数据,并根据实验室实验分析了注入非分层水中的各种空气流量。已经发现,气泡羽流的曝气增加了它们直接附近的蒸发。确定了引起这种增加的因素,并得出了一个经验公式来量化曝气条件下的水分损失。为了检查它们对储层的总体影响,以澳大利亚的一个温带储层为例,说明了该功能的应用。尽管实验室数据显示,曝气在增加实际水库的小型非分层水体(例如水箱)中的水分流失中起着重要作用,但曝气对蒸发增加的影响微不足道。这是因为实际储层中的羽流面积要小于储层中的羽流面积,而储水罐中的羽流面积却要小得多。另外,由于实际储层中的热分层条件,由于混合过程导致储层表面温度降低,气泡羽流实际上导致蒸发略有减少。因此,气泡羽流曝气对实际储层的净效应是减少了蒸发。然而,该量显示很小,并且不保证仅出于减少蒸发的目的使用这些系统。

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