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- W2039179888 abstract "In this paper, the transient behaviour of solar ponds has been investigated using a finite difference formulation. The performance of solar ponds can be successfully analysed and the effects of various parameters studied. The thickness of the layer with density gradient has a profound effect on the performance of a solar pond and an increase of the thickness of this layer from 1 to 2m increases substantially the operating temperature for the same overall efficiency. The effect of the pattern of heat extraction is discussed. Heat extraction at a constant rate will result in large temperature fluctuations from summer to winter. But, if the heat is extracted at a varying rate proportional to the monthly average solar radiation, then the temperature fluctuation is considerably decreased as compared to the case of constant heat removal for the same yearly efficiency. It is possible to operate a solar pond in the Melbourne area with a yearly efficiency of 15% having a high temperature of 67 °C in summer and a low of 40 °C in winter. The performances of solar ponds in Alice Springs and Darwin have been studied. It is found that the maximum bottom temperature does not go beyond 80 °C for a pond efficiency of 20%. Since these two cities have the most favourable locations for solar ponds, the indicated maximum temperature casts doubt on the prevalent view that a solar pond can operate at a temperature above 90 °C with an efficiency of 20%." @default.
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- W2039179888 date "1982-12-01" @default.
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- W2039179888 title "A study on the transient behaviour of solar ponds" @default.
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- W2039179888 doi "https://doi.org/10.1016/0360-5442(82)90084-6" @default.
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