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Designing for Safety in Hydrogen Bubble Chambers
1.Mark, Watt, and Richards, “Pressure Rise in Vacuum Chambers from Release of Liquid Hydrogen,” UCRL‐3136, September, 1955 (unpublished).
2.R. H. Kropschot and R. P. Mikesell, “An Experimental Study of the Strength and Fatigue of Glass at Very Low Temperatures,” National Bureau of Standards, Boulder, Colorado, Technical Memorandum No. 37, June, 1956 (unpublished).
3.Chelton, Mann, and Hernandez, “Pressure Rise Due to Hydrogen‐Oxygen Reaction,” UCRL Engineering Note 4311‐14 M33, October, 1956 (unpublished).
4.H. P. Hernandez, “Combustion,” UCRL Engineering Note 3320‐01 M120, May, 1956 (unpublished).
5.This was read on a Bourdon gauge that is known from previous experience to indicate within about 10 psi of a condenser‐type electronic pressure gauge in this response range. For a proof test this gauge was satisfactory, but it is not recommended for accurate work.
6.B. Lewis and G. von Elbe, Combustion, Flames, and Explosions of Gases (Academic Press, Inc., New York, 1951), pp. 590–607.
7.J. B. Smith, “Explosion Pressures in Industrial Piping Systems,” Factory Mutual Laboratory, Boston, Massachusetts, April, 1949.
8.E. W. Cousins and P. E. Cotton, Chem. Eng. 58, 133 (1951).
9.J. W. Mark, “10‐Inch Liquid‐Hydrogen Bubble Chamber Vent System,” UCRL Engineering Note 4311‐17 M9, December, 1955 (unpublished).
10.R. Beach, Mech. Eng. 75, 307 (1953).
11.A. Lehmicke, American Dyestuff Reporter 38, 853 (1949).
12.Preliminary Proposal for Additions to Bevatron Building and Generator Room and a New Bubble Chamber Staging Area. UCRL—Plant Engineering, May, 1956 (unpublished).
13.C. R. Wintersteen and R. C. Mathewson, “Safe Handling of Liquid Hydrogen in the Laboratory; UCRL Safety Precautions for the Hydrogen Bubble Chamber,” UCRL‐3072, July, 1955 (unpublished).
14.D. Chelton, “Operating Instructions, 10‐inch Bubble Chamber,” UCRL Engineering Note 4311‐17 M6, November, 1955 (unpublished).
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