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ASTM Selected Technical Papers
Erosion: Prevention and Useful ApplicationsAvailable to Purchase
By
WF Adler
WF Adler
1
Effects Technology, Inc.
, Santa Barbara, Calif. 93111
; editor
.
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ISBN-10:
0-8031-0334-4
ISBN:
978-0-8031-0334-4
No. of Pages:
653
Publisher:
ASTM International
Publication date:
1979
eBook Chapter
Adaptation of Jet Accumulation Techniques for Enhanced Rock Cutting Available to Purchase
By
M Mazurkiewicz
,
M Mazurkiewicz
1.
Assistant professor
, Instytut Technologii Budowy Maszyn, Politechnika Wroclawska
, Poland
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CR Barker
,
CR Barker
2
Senior investigator and director
, respectively, Rock Mechanics and Explosives Research Center, University of Missouri-Rolla
, Rolla, Mo.
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DA Summers
DA Summers
2
Senior investigator and director
, respectively, Rock Mechanics and Explosives Research Center, University of Missouri-Rolla
, Rolla, Mo.
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Page Count:
20
-
Published:1979
Citation
Mazurkiewicz, M, Barker, C, & Summers, D. "Adaptation of Jet Accumulation Techniques for Enhanced Rock Cutting." Erosion: Prevention and Useful Applications. Ed. Adler, W. 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959 : ASTM International, 1979.
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The velocity of a waterjet can be increased when the jet impacts a target material or another waterjet. A theory describing such augmentation in terms of velocity, mass, and energy change is considered. The phenomenon is sensitive to jet structure and the jet velocity profile. Jet velocity profiles do not remain constant over great distances from the nozzle, and ultimately disrupt into droplets. Within the droplet the profile is more regular and the velocity constant. The theory is extended to cover the case of droplet collisions, and experimental evidence of jet augmentation and its effects is presented.
References
1.
Birkhoff
, G.
, et al, Journal of Applied Physics
0021-8979, Vol. 19
, 06
1948
.2.
Walsh
, T. M.
et al, Journal of Applied Physics
0021-8979, Vol. 27
, No. 3
, 03
1953
.3.
Eichelberg
, R. J.
, and Pugh
, E. M.
, Journal of Applied Physics
0021-8979, Vol. 23
, No. 5
, 05
1952
.4.
“
Externally Augmented Hypervelocity Jet Program
,” Bowles Engineering Corporation
, Final Report R-10-31-69, Contract DOT-FR-9-0015, Silver Springs, Md. 1969
.5.
Brunton
, J. M.
, Philosophical Transactions of the Royal Society
, Series A, Vol. 260
, pp. 79–85, 28 July, 1966.6.
Summers
, D. A.
and Bushnell
, D. J.
, Proceedings
, Workshop on the Application of High Pressure Water Jet Cutting Technology, University of Missouri-Rolla
, Rolla, Mo.
, 1975
.7.
Edney
, B. E.
, “Experimental Studies of Pulsed Water Jets
,” 3rd International Symposium on Jet Cutting Technology, Chicago
, 05
1976
.8.
Summers
, D. A.
, Barker
, C. R.
, and Mazurkiewicz
, M.
, “Development of a Longwall Water Jet Mining Machine
,” Phase III Report, University of Missouri-Rolla
, Rolla, Mo., 1977
.9.
Metral
, A.
, and Zerner
, F.
, The Coanda Effect
, United States Atomic Energy Commission Publication AEC-TR-3386.10.
Summers
, D. A.
, and Zakin
, J. L.
, “The Structure of High Speed, Fluid Jets and Their Use in Cutting Various Soil and Material Types
,” Final Report on USA Mobility Equipment Research and Development Center Contract DAAK 02-74-C-0006, 30
04
1975
.
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