By John von Neumann
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Additional info for Collected works. Vol.5 Design of computers, theory of automata and numerical analysis
1. The building arrangement was to be readily adaptable to handling flat plate fuel elements. 2. m. 3. The reactor would have an integral heavy water reflector. 4. The reactor structure and thermal shield were to be designed for a maximum power level of 2000 MW with a moderator exit temperature of 95 deg. C. if, by this change, the cost was not unduly increased. 5. m. m. D. 25-inch wide, and 14 feet long. 03-inch thick. or, developed shield. Area in October _ R-P ........ _ Power, MW Max. ) Max.
In the P Area one complete bay was removed without compromising construction schedules. Container handling was simplified by the elimination of one crane system and the transfer tall car through the use of a crane to unload truck shipments directly to the storage areas The floor plan of the assembly area in Building #1OS-P _s shown on page 67. In the L, K and C Areas the bays containing receiving, storage and assembly were placed in a Class III structure, with final storage and the component presentation point continuing in a Class I structure.
Hr, level outside the door. /hr. outside the door was accepted and the thickness reduced to an equivalent of 8-3/_ inches. Interlocks are Anstalled on the door to prevent its opening at any time radioactive material is being transferred by the crane to the lead cask. The design of the L and K Areas was initiated in June 1952, on the basis of a scope reduced from R and P by the elimination of resin preparation, the chemistry laboratory, mass spectrometry laboratory and the counting room, all of which wcre service facilities.