Advances in Cryogenic Engineering: Proceedings of the 1972. by A. Pastuhov (auth.), K. D. Timmerhaus (eds.) PDF

By A. Pastuhov (auth.), K. D. Timmerhaus (eds.)

The nationwide Bureau of criteria Boulder Laboratories at Boulder, Colorado once more served because the host for the 1972 Cryogenic Engineering convention. For the Cryogenic Engineering convention it was once like coming horne, for it used to be on the NBS Boulder Laboratories that the Cryogenic Engineering convention used to be first conceived and held m 1954m reference to the commitment ofthe NBS Boulder Laboratories by way of President Dwight D. Eisenhower. The Cryogenic Engineering convention IS thankful for the ongoing help that the nationwide Bureau of criteria has gIVen through the years, and which was once improved on July 1, 1971 while the NBS Boulder Laboratories assumed the secretariat functionality of the convention from the nationwide Academy of Sciences. due to universal pursuits in warmth move, the 1972 Cryogemc Engineering convention labored with the thirteenth nationwide warmth move convention to enhance a joint application m warmth move. A majority ofthe papers awarded during this cooperative attempt are incIuded m V olume 18 of the Advances zn Cryogenic Engineerzng throughout the kmd permission ofthe thirteenth nationwide warmth move convention and are acknowl­ edged accordingly.

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Additional resources for Advances in Cryogenic Engineering: Proceedings of the 1972. Cryogenic Engineering Conference. National Bureau of Standards. Boulder, Colorado. August 9–11, 1972

Example text

Both quantitative and qualitative observations indicate that the above estimate is of the right' order of magnitude. However, the energy release of a highvelocity, low-gas-producing chemical explosive is, of course, quite different from the energy release of a low-velocity, high-gas-producing limit-of superheat explosion. This makes any comparison between the two difficult, especially by means of recorded overpressures. It was also found that the recorded overpressures of both reactions e] 40 T.

Its operating characteristics were measured before and after the test. 5. The vibration characteristics of all the blades after installation in the actual machinery have been determined experimentally. Although no known problem was left unresolved, the No. 1 turbocompression unit was equipped with microphones, pressure fluctuation detectors, and strain gages to provide for a two-month test program in the startup sequence to resolve any uncovered problem. A complete discussion of the turbocompressor characteristics and ofthe problems related to the control system ofthe compressor as required by the process and for the compressor protection was presented at the ASME Meeting in New Orleans [6] and at the Third International LNG Conference in Washington.

Some of these problems are listed below: 1. Heat transfer characteristics in two-phase flow, both inside and outside of the heat exchanger tubes [4]. 2. Two-phase flow pressure drops m both upward and down ward shell operation of hea texchangers [5 ] (see F 19. 11). 3. Liquid entrainment by vapors, conditions offlow stabihty, hmits of operation. 4. Relationship between pressure drop, heat transfer, and mass transfer characteristics. 5. Approach to ideal liquid-vapor equilibrium conditions on each side of the heat transfer tubes.

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