Shatwell Tom, Adrian Rita, Kirillin Georgiy
Leibniz-Institute of Freshwater Ecology and Inland Fisheries Department of Ecohydrology, Müggelseedamm 310, 12587 Berlin, Germany.
Leibniz-Institute of Freshwater Ecology and Inland Fisheries Department of Ecosystem Research, Müggelseedamm 301, 12587 Berlin, Germany.
Sci Rep. 2016 Apr 14;6:24361. doi: 10.1038/srep24361.
Water transparency affects the thermal structure of lakes, and within certain lake depth ranges, it can determine whether a lake mixes regularly (polymictic regime) or stratifies continuously (dimictic regime) from spring through summer. Phytoplankton biomass can influence transparency but the effect of its seasonal pattern on stratification is unknown. Therefore we analysed long term field data from two lakes of similar depth, transparency and climate but one polymictic and one dimictic, and simulated a conceptual lake with a hydrodynamic model. Transparency in the study lakes was typically low during spring and summer blooms and high in between during the clear water phase (CWP), caused when zooplankton graze the spring bloom. The effect of variability of transparency on thermal structure was stronger at intermediate transparency and stronger during a critical window in spring when the rate of lake warming is highest. Whereas the spring bloom strengthened stratification in spring, the CWP weakened it in summer. The presence or absence of the CWP influenced stratification duration and under some conditions determined the mixing regime. Therefore seasonal plankton dynamics, including biotic interactions that suppress the CWP, can influence lake temperatures, stratification duration, and potentially also the mixing regime.
水体透明度会影响湖泊的热结构,在特定的湖泊深度范围内,它能决定一个湖泊在春季到夏季期间是定期混合(多循环状态)还是持续分层(双循环状态)。浮游植物生物量会影响透明度,但其季节性模式对分层的影响尚不清楚。因此,我们分析了来自两个深度、透明度和气候相似但一个为多循环、一个为双循环的湖泊的长期实地数据,并使用水动力模型模拟了一个概念性湖泊。研究湖泊的透明度在春季和夏季水华期间通常较低,而在浮游动物捕食春季水华导致的清水期(CWP)期间则较高。透明度变化对热结构的影响在中等透明度时更强,在春季湖泊升温速率最高的关键窗口期也更强。春季水华在春季加强了分层,而清水期在夏季削弱了分层。清水期的出现与否会影响分层持续时间,在某些条件下还会决定混合状态。因此,季节性浮游生物动态,包括抑制清水期的生物相互作用,会影响湖泊温度、分层持续时间,甚至可能影响混合状态。