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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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xfg K K w k Le ^A’^W “wc “wvc Nua ’Nuw ’Nur Nu* n,n' P Pgb PrA,Prw,PrR qcd’qcw ce q. q’ Latent heat of vaporization kcal kg e Colburn j factor for air - Coefficient of enhancement defined by eq. 3a - Coefficient of wetness - Thermal conductivity subscripts: F, R, T, W refer to fin, refrigerant, tube, and water kcal m hr°C Lewis number - Total mass flow rates of air and .M. water sec Mass flow rate in a channel -M- sec Volumetric mass flow rate of fall­ jeL ing water film sec Nusselt numbers of air, water and refrigerant respectively - Apparent Nusselt number of air - Number of unit surfaces (see eq. 22) - M m2 at water-air interface M2 m Prandtl number of air, water and refrigerant - Heat loads of dry and wetted kcal condensers hr Total pressure of moist air Partial pressure of water vapor kcal evaporator hr Heat loads of condenser and Diagram values kcal kg kcal Heat flux subscriptsonq's: b=water-air m^hr interface, c = channel, d = dry surface, h = dry heat transfer, w = heating of water, a = wet heat transfer C-3

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Development of the Zinc-Chlorine Battery for Utility

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