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Desalination of sea water using solar radiation under retarded evaporation conditions
Deep sea water is about 30 degrees F below the sea water surface temperature. This temperatur difference is augmented by an additional 20 degrees F which can be obtained from radiant energy. A total difference of 50 degrees F looks quite attractive for desalination in a special vacuum distillation unit. The need for simultaneous solution of the momentum and the energy equations has been obviated by solving the energy equation alone for two extremes of natural convection. The design and cost estimates are tentative but, with energy shortage, a low-energy process should look even better in the future. The design methods and estimation procedures would be applicable in all cases. (Author)
Desalination of sea water using solar radiation under retarded evaporation conditions
Deep sea water is about 30 degrees F below the sea water surface temperature. This temperatur difference is augmented by an additional 20 degrees F which can be obtained from radiant energy. A total difference of 50 degrees F looks quite attractive for desalination in a special vacuum distillation unit. The need for simultaneous solution of the momentum and the energy equations has been obviated by solving the energy equation alone for two extremes of natural convection. The design and cost estimates are tentative but, with energy shortage, a low-energy process should look even better in the future. The design methods and estimation procedures would be applicable in all cases. (Author)
Desalination of sea water using solar radiation under retarded evaporation conditions
Seewasserentsalzung mit Sonnenstrahlung unter verzoegerten Verdampfungsbedingungen
Sheth, N.J. (Autor:in) / Peck, R.E. (Autor:in) / Wasan, D.T. (Autor:in)
1975
, 8 Bilder, 4 Tabellen, 28 Quellen
Aufsatz (Zeitschrift)
Englisch
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