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Development of the Zinc-Chlorine Battery for Utility

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Development of the Zinc-Chlorine Battery for Utility ( development-zinc-chlorine-battery-utility )

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[1,10,11,12,13]. However, the information given is still insuffi­ cient to permit independent calculation of evaporative cooling of condensers from physical data alone and without the need of per­ formance data of a real unit. This article develops design procedures for evaporative con­ densers hy means of detailed analysis and computation of the state changes of the air passing through a wetted and partially wetted plate-fin-tube type condenser coil. 2. BasicPrinciplesofEvaporativeCooling A refrigerant flowing through a heat exchanger condenses at by means of heat transfer to air which enters the exchanger at The rate of heat transfer is given by <3, = U AT A (1) CD me where U is the overall heat transfer coefficient ATm the logarithmic mean temperature difference LMTD and Ac the heat transfer area. 'Amb' (unsat.) Figure 1. Tvs. Ac Diagram, Wetting of Heat Exchanger Surfaces Whenever the ambient air is not saturated, its temperature can beloweredbyinjectingwater. Theairentersthentheheatex­ changeratatemperatureTM> Thismixingtemperaturewillbelowest C-7

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