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Environmental impact of saltwater in a stratified flow system and its remedial measure

机译:分层流系统中盐水对环境的影响及补救措施

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Due to the improper mixing of saline water and freshwater within the estuary mouth stratification occurs. The weir obstacle in front of the estuary mouth forms an entrapped saline wedge. When dissolved, oxygen in the saline wedge goes behind a permissible limit and it endangers marine life. The anaerobic decomposition of organic matter at the bottom results in noxious environmental conditions. The same types of problems are being faced at River Lagan bay in Northern Ireland. This paper discusses the application of propeller washes on a stratified flow system to develop a technique to eliminate saltwater. Conductivity, velocity and temperature at different points along the depth in a stratified flow system were observed in detail during this research. Using the flume arrangement an artificial stratified condition so close to natural conditions was produced and tested in the laboratory under different sets of experiments. From the experimental results it was found that the propeller rotating at a higher speed was more effective at mixing stratified layers than that rotating at a lower speed. Experimental results also showed that an increase in propeller-tip clearance from the saltwater layer reduced the rate of erosion of saltwater.
机译:由于河口口内的盐水和淡水混合不当,会发生分层。河口前方的堰障碍物形成了一个被困的盐楔。溶解后,盐楔中的氧气会超过允许的极限,并危及海洋生物。底部有机物的厌氧分解导致有害的环境条件。北爱尔兰的拉根河湾也面临着同样类型的问题。本文讨论了螺旋桨洗涤在分层流系统上的应用,以开发一种消除盐水的技术。在此研究过程中,详细观察了分层流系统中沿深度不同点的电导率,速度和温度。使用水槽装置,产生了接近自然条件的人工分层条件,并在实验室进行了不同的实验。从实验结果中发现,以较高速度旋转的螺旋桨比以较低速度旋转的螺旋桨更有效地混合分层。实验结果还表明,与盐水层的螺旋桨叶顶间隙的增加降低了盐水的侵蚀速度。

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