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By Peter Auer (Auth.)

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C o n s t r u c t i o n in d e s e r t s could lead to modifications of the w a t e r cycle. T h u s the impacts on w a t e r r e s o u r c e s will have to be evaluated for e a c h specific site. T h e total n o n r e c o v e r a b l e w a t e r use at the S P S launch c o m p l e x e s o v e r a life cycle of 30 years for 100 5-GW SPSs would be about 6 mt/MW-yr. The w a t e r would be used to p r o d u c e the h y d r o g e n and o x y g e n rocket propellants and for rocket e x h a u s t cooling.

Glaser Assuming appropriate m a i n t e n a n c e the operational life of the S P S could be of indefinitely long duration b e c a u s e of the benign nature of the space e n v i r o n m e n t c o m p a r e d to the terrestrial e n v i r o n m e n t . VII. SPS/UTILITY POWER POOL INTERFACE (Winer, 1977) T h e large p o w e r o u t p u t potential of the S P S will require careful design of the utility p o w e r pool interface to reduce the impact on the stability of a total utility system. Electrical p o w e r grids are designed to provide this stability of p o w e r supply to the user by incorporating r e d u n d a n t installations of reliable e q u i p m e n t .

Potential o f L a s e r for S P S Power T r a n s m i s s i o n , " D O E Contract N o . E G - 7 7 - C - 0 1 - 4 0 2 4 . P R C Energy Analysis C o . Mclean, Virginia. Boeing Aerospace C o . ( 1 9 7 7 ) . " S o l a r Power Satellite S y s t e m Definition S t u d y " ( F i n a l Reports), N A S A J S C Contract N A S 9 - 1 5 1 9 6 . B r o w n , W . C . (1973). Adapting microwave techniques to help solve future energy problems. IEEE Trans. , pp. 7 5 5 - 7 6 3 . B r o w n , W . C . (1974). T h e technology and application o f free-space power transmission by microwave beam.

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