In very deep freshwater lakes, deep recirculation presents itself with remarkable differences to shallower lakes. We consider the stratification where density gradients are exclusively due to temperature differences. The annual circulation patterns are discussed for various climatic conditions. Very deep lakes do not necessarily produce full overturns during Tmd transition in autumn and spring. Peculiarities of the stratification are derived for cases, in which surface temperatures cross 4℃ during the annual cycle: Firstly, the asymmetry between autumn and spring circulation, secondly, the proximity of temperature to the Tmd profile, and thirdly, the isothermal deep water. We compare conceptual model results of horizontally homogeneous lake...
In autumn, during the transition period, shores influence the interior dynamics of large temperate l...
Annual heat budgets of 71 lakes in the temperate zone are strongly correlated with mean depth and ar...
Climate warming is causing changes in the physics of deep lakes, such as longer summer stratificatio...
Lakes are traditionally classified based on their thermal regime and trophic status. While this clas...
Water temperature of deep lakes is often used to evaluate climate variability over long periods. San...
Globally, lake surface water temperatures have warmed rapidly relative to air temperatures, but chan...
A deep temperate lake, Lake Kuttara, Hokkaido, Japan (148 m deep at maximum) was completely ice-cove...
AbstractHutchinson and Löffler's (1956) classification of lakes based on the seasonal thermal mixing...
A theoretical description is given of the seasonal variation of the thermal structure of deep, tempe...
A reservoir with distinct shallow and deep regions can produce stratification in response to uniform...
Lake surface water temperatures are warming worldwide, raising concerns about the future integrity o...
A large number of lakes and ponds are unevenly distributed over the Qinghai-Tibet Plateau (QTP). Lit...
Mechanistic understanding of the impacts of changing climate on the thermal stratification and mixin...
Thermal and chemical stratification is a common phenomenon in lakes and ponds during the summer mont...
Mixing and stratification patterns in lakes are critical attributes because they are important regul...
In autumn, during the transition period, shores influence the interior dynamics of large temperate l...
Annual heat budgets of 71 lakes in the temperate zone are strongly correlated with mean depth and ar...
Climate warming is causing changes in the physics of deep lakes, such as longer summer stratificatio...
Lakes are traditionally classified based on their thermal regime and trophic status. While this clas...
Water temperature of deep lakes is often used to evaluate climate variability over long periods. San...
Globally, lake surface water temperatures have warmed rapidly relative to air temperatures, but chan...
A deep temperate lake, Lake Kuttara, Hokkaido, Japan (148 m deep at maximum) was completely ice-cove...
AbstractHutchinson and Löffler's (1956) classification of lakes based on the seasonal thermal mixing...
A theoretical description is given of the seasonal variation of the thermal structure of deep, tempe...
A reservoir with distinct shallow and deep regions can produce stratification in response to uniform...
Lake surface water temperatures are warming worldwide, raising concerns about the future integrity o...
A large number of lakes and ponds are unevenly distributed over the Qinghai-Tibet Plateau (QTP). Lit...
Mechanistic understanding of the impacts of changing climate on the thermal stratification and mixin...
Thermal and chemical stratification is a common phenomenon in lakes and ponds during the summer mont...
Mixing and stratification patterns in lakes are critical attributes because they are important regul...
In autumn, during the transition period, shores influence the interior dynamics of large temperate l...
Annual heat budgets of 71 lakes in the temperate zone are strongly correlated with mean depth and ar...
Climate warming is causing changes in the physics of deep lakes, such as longer summer stratificatio...