Comparison of Alternate Cooling Technologies for California Power Plants Economic, Environmental and Other Tradeoffs

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Comparison of Alternate Cooling Technologies for California Power Plants Economic, Environmental and Other Tradeoffs ( comparison-alternate-cooling-technologies-california-power-p )

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Table 5-17 Capital Cost Breakdown for Dry Cooling System Equipment at California Central Valley Location—Optimized Design (for New 500-MWe Facilities with 170-MWe Steam Cycle) Comparative Cost Analyses Element Air-cooled condenser Installation/erection Steam duct support; column foundations Electricals and controls Cleaning system for finned tube surfaces Auxiliary cooling (@ 7.5%) Total Cost 17,200,000 5,000,000 150,000 1,240,000 150,000 1,780,000 25,520,000 Table 5-18 Site-to-Site Cost Estimates—Air-Cooled Condenser ((for New 500-MWe Facilities with 170- MWe Steam Cycle) Capital Cost Fan BHP (in hp) Total Evaluated Cost References Desert Site ITD = 37 30,300,000 5300 44,700,000 Mountain Site ITD = 44 25,500,000 4770 38,400,000 Valley Site ITD = 44 25,500,000 4570 37,900,000 Bay Area Site ITD = 55 20,400,000 3560 30,000,000 1. Clukey, H. V. M. J. McNelly and R. C. Mitchell (Gilbert Associates). Future Needs for Dry or Peak Shaved Dry/Wet Cooling and Significance to Nuclear Power Plants. EPRI; 1976 Feb; EPRI-NP-150. 2. Guyer, E. C. and D. L. Brownell (Dynatech R/D Company). Wet/Dry Cooling for Cycling Steam-Electric Plants. EPRI; 1980 Aug; EPRI-CS-1474. 3. Standards for Steam Surface Condensers, 9th Edition. Cleveland, OH: Heat Exchanger Institute; 1995. 4. Hu, M. C. (United Engineers and Constructors). Engineering and Ecomomic Evaluation of Wet/Dry Cooling Towers for Water Conservation. U. S. Energy Research and Development Administration; 1976 NovCOO-2442-1. 5-39

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