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Seasonal stratification effects on risk quantification of contaminant spreading in a warm monomictic lake under different hydrodynamic conditions: a case study in Lake Constance, Germany

机译:季节性分层对不同水动力条件下温暖的单体湖中污染物扩散风险量化的影响:以德国康斯坦茨湖为例

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摘要

Seasonal stratification plays a significant role in contaminant spreading in a warm monomictic lake. If any accident related to pollutant spills occurs in a warm monomictic lake, different risk levels will result depending on the type of lake stratification, location of pollutant release, and hydrodynamic conditions. In this study, seasonal stratification effects on risk of contaminant spreading in the warm monomictic lake was investigated through simulating the distribution of tracers (contaminants) in Lake Constance under different hydrodynamic conditions when wind speed and wind direction were varied. All tracers were released at the lake bed around the drinking water intake of Bodensee-Wasserversorgung near Sipplingen, Germany. The modelling results illustrated that the arrival time of tracers at the drinking water intake was dependent on seasonal stratification, wind direction, wind speed, distance of tracer away from the water intake and the depth where tracer was released. During winter stratification, tracers arrived at the intake earlier than that during summer stratification due to lake mixing in winter. The arrival concentration level of tracer also varied in a complex manner depending on seasonal stratification and hydrodynamic condition.
机译:季节性分层在温暖的单体湖中的污染物扩散中起着重要作用。如果在温暖的单体湖中发生任何与污染物溢出相关的事故,则根据湖泊分层的类型,污染物释放的位置和水动力条件,将导致不同的风险等级。在这项研究中,通过模拟风速和风向变化时在不同水动力条件下康斯坦茨湖中示踪物(污染物)的分布,研究了季节分层对温暖的单体湖中污染物扩散风险的影响。所有示踪剂均在德国锡普林根附近的Bodensee-Wasserversorgung饮用水入口附近的湖床上释放。建模结果表明,示踪剂到达饮用水取水口的时间取决于季节分层,风向,风速,示踪剂离取水口的距离以及释放示踪物的深度。在冬季分层中,由于冬天的湖泊融化,示踪物比夏季分层中的到达时间更早。示踪剂的到达浓度水平还根据季节分层和流体动力条件以复杂的方式变化。

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