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Westinghouse Corp

R. Heilman, Westinghouse Corp., Cincinnati, Ohio, private communication, Jan. 1989. [Pg.179]

J. T. Brown, Iron-Silver Battery—A New High Energy Density Power Source, Westinghouse Corp., Rep. 77-5E6-SILEL-RI, 1977. [Pg.1010]

FIGURE 38.43 Schematic of concentric cylinder configuration of seawater cell. The output cylinder is comprised of porous fiberglass coated with an anti-foulant. The corrugated structure is the air cathode, which is exterior to the magnesium anode. The entire structure is open to the seawater electrolyte. Courtesy of Westinghouse Corp.)... [Pg.1253]

FIGURE 38.44 Discharge profile of seawater power source at 80 /xA, 20°C. Current spikes represent charging of a small silver-iron battery. Neutral pH was maintained by periodic addition of hydrochloric acid. Courtesy of Westinghouse Corp.)... [Pg.1253]

Fig. 118. Thermal ageing of stainless steel joints made with polyimide adhesives 18 and 140 (Westinghouse Corp.) (adapted from Burgman et al., 1968, by permission John Wiley Sons Inc.). Fig. 118. Thermal ageing of stainless steel joints made with polyimide adhesives 18 and 140 (Westinghouse Corp.) (adapted from Burgman et al., 1968, by permission John Wiley Sons Inc.).
Westinghouse Electric Corp. initiated a program to develop air-cooled PAFC stacks, containing cooling plates at six-ceU intervals. Full size 100-kW stacks (468 cells, 0.12-m electrode area) were built, and a module containing four of these stacks was tested. An air-cooled stack operated at 0.480 MPa yielded a cell voltage of 0.7 V at 267 m A /cm (187 mW/cm ). Demonstration of this technology is plarmed for a site in Norway. [Pg.583]

Another reactor that was approved for development was a land-based prototype submarine propulsion reactor. Westinghouse Electric Corp. designed this pressurized water reactor, using data collected by Argonne. Built at NRTS, the reactor used enriched uranium, the metal fuel in the form of plates. A similar reactor was installed in the submarine l autilus. [Pg.214]

Fig. 4. Cutaway view of the Model 412 four-loop pressurized water reactor vessel (46). Courtesy of Westinghouse Electric Corp. Fig. 4. Cutaway view of the Model 412 four-loop pressurized water reactor vessel (46). Courtesy of Westinghouse Electric Corp.
One was a water-moderated and water-cooled pressurized reactor the other was a Hquid-metal-cooled iatermediate neutron energy reactor. A land-based prototype submafine power plant called Mark I was built and tested at the National Reactor Testing Station. Argonne National Laboratory provided scientific data and Bettis Laboratory of Westinghouse Electric Corp. suppHed engineering expertise. [Pg.223]

The Westinghouse Pressuricyed Water Reactor Nuclear Power Plant, Westinghouse Electric Corp., Water Reactor Divisions, Pittsburgh, Pa., 1984. [Pg.226]

Westinghouse AP600 Executive Summary, Westinghouse Electric Corp., Pittsburgh, Pa. [Pg.226]

Fig. 4. Piessurized watei leactoi (PWR) powei plant schematic. Couitesy of Westinghouse Electric Corp. Fig. 4. Piessurized watei leactoi (PWR) powei plant schematic. Couitesy of Westinghouse Electric Corp.
Figure 21-12. The variation of remaining stress rupture iife at 1350°F (735 °C) with serviee time in forged Ineonei aiioy X-750 turbine biades. (Courtesy of Westinghouse Eieotrio Corp., Gas Turbine Div.). Figure 21-12. The variation of remaining stress rupture iife at 1350°F (735 °C) with serviee time in forged Ineonei aiioy X-750 turbine biades. (Courtesy of Westinghouse Eieotrio Corp., Gas Turbine Div.).
Figure 4-81. Electrical precipitator principle of operation. Courtesy of Sturtevant Div. Westinghouse Electric Corp. Figure 4-81. Electrical precipitator principle of operation. Courtesy of Sturtevant Div. Westinghouse Electric Corp.
Figure 9-124B. Directions for using Figure 9-124A. Used by permission of Westinghouse Electric Corp., Sturtevant Div. Figure 9-124B. Directions for using Figure 9-124A. Used by permission of Westinghouse Electric Corp., Sturtevant Div.
Figure 14-16G. Impulse type single stage steam turbine with shaft type governor. (Used by permission Westinghouse Electric Corp., Steam Div.)... Figure 14-16G. Impulse type single stage steam turbine with shaft type governor. (Used by permission Westinghouse Electric Corp., Steam Div.)...
Inlet diameter of 3 inches, 250-600 psig max. at 500°F to 750°F maximum Figure 14-29A. Horsepower iosses, rated hp to 600. (Used by permission Westinghouse Eiectric Corp., Steam Division.)... [Pg.678]

General Purpose Steam Turbines, Single Stage, Bulletin 1110, Performance, Westinghouse Electric Corp., Philadelphia, PA, August (1954). [Pg.688]

Redfield, J. A., 1965, CHIC-KIN, A Fortran Program for Intermediate and Fast Transients in a Water Moderated Reactor, USAEC Rep. WAPD TM-479, Westinghouse Electric Corp., Pittsburgh, PA. (5)... [Pg.549]


See other pages where Westinghouse Corp is mentioned: [Pg.351]    [Pg.104]    [Pg.351]    [Pg.104]    [Pg.584]    [Pg.441]    [Pg.330]    [Pg.436]    [Pg.437]    [Pg.182]    [Pg.216]    [Pg.371]    [Pg.217]    [Pg.327]    [Pg.166]    [Pg.194]    [Pg.678]    [Pg.687]    [Pg.687]    [Pg.203]    [Pg.299]    [Pg.531]   
See also in sourсe #XX -- [ Pg.296 ]




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