Development of the Zinc-Chlorine Battery for Utility

PDF Publication Title:

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

Previous Page View | Next Page View | Return to Search List

Text from PDF Page: 294

Temperature of Evaporation, Te=-1.50C Compressor Efficiency, 7C = 0,8 20 22 24 26 28 30 32 34 36 38 40 TEMPERATURE OF CONDENSATION, Tc(#C) Figure 16. COP vs. Tc Table 1 lists also the increase of COP due to changing T* » aswasdiscussedinSection2. COP*givenbyeq.5canbeevaluated from AQ and AW . data. These can be determined from T-S or p-i e act diagrams of the refrigerant and under the assumption that both the boiling temperature T^ and the overall compressor efficiency ric are constant. ForT =-1.5Candp =0.8AQ andAW e c e act , valuesandCOP weredeterminedforvariousT^'sandplottedinFig.l6. Aniterative process was applied to determined the lowest possible temperature of the condensing refrigerant T* which (within a specified limit of ±10$) c would provide the same heat rejection of the wetted condenser as that ofthedryone. TheT*soobtainedyieldfromFig.l6theCOP*listed in Table 1. C-32

PDF Image | Development of the Zinc-Chlorine Battery for Utility

development-zinc-chlorine-battery-utility-294

PDF Search Title:

Development of the Zinc-Chlorine Battery for Utility

Original File Name Searched:

6302789.pdf

DIY PDF Search: Google It | Yahoo | Bing

Salgenx Redox Flow Battery Technology: Power up your energy storage game with Salgenx Salt Water Battery. With its advanced technology, the flow battery provides reliable, scalable, and sustainable energy storage for utility-scale projects. Upgrade to a Salgenx flow battery today and take control of your energy future.

CONTACT TEL: 608-238-6001 Email: greg@salgenx.com (Standard Web Page)