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- W2013854857 abstract "A three-dimensional model of tempetatures and currents has been formulated to assist in the analysis and interpretation of the dynamics of strtified lakes. In this model, nonlinear eddy coefficients for viscosity and conductives are included. A two-dimensional model (one vertical and one horizintal coordinates) which includes coriolis forces, has also been formulated. Specific examples have been calculated using both models to show the general characteristics of thermocline formation, maintenance and decay. In order to understand the effect of various parameters, as well as the influence of basin geometry, extensive numerical experimentation has first been performed using the two-dimensional model. Based on this experience, three-dimensional calculations were performed for a simple geometry, square, constant depth basin. It is shown that the two-dimensional model can effectively simulate the dynamics of stratified flows for a large range of conditions at a much lower computational expense. Calculations for an irregular geometry approximating that of the Central Basin of Lake Erie are also presented and compared with two-dimensional calculations over cross-sections of the basin. Thermocline depth and hypolimnion temperatures are shown to be dependent on heat flux, wind stresses and the basin geometry." @default.
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- W2013854857 date "1983-01-01" @default.
- W2013854857 modified "2023-10-17" @default.
- W2013854857 title "Validity of two-dimensional model for variable-density hydrodynamic circulation" @default.
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- W2013854857 doi "https://doi.org/10.1016/0270-0255(83)90057-x" @default.
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