Geoscience Reference
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43. Leshchinsky D., O. Leshchinsky (1996), Geosynthetic confined pressurized slurry
(GeoCoPS): Supplemental notes for version 1.0, Tech. Rept. CPAR-GL-96-1, USACE
Watterways Experiment Station, Vicksburg, MS.
44. Timoshenko S., S. Woinowsky-Krieger (1959), Theory of Plates and Shells, McGraw-Hill
Book Company, New York.
45. Cho S.M., B.S. Jeon, S.I. Park, H.C. Yoon (2009), Geotextile Tube Application as
the Cofferdam at the Foreshore with Large Tidal Range for Incheon Bridge Project,
Geosynthetics in civil and environmental engineering, Part 8, pp. 591-596.
46. Yee T.W., J.C. Choi, E. Zengerink (2009), Revisiting the geotextile tubes at Incheon Bridge
Project Korea, proceedings 9th ICE, London, pp. 1217-1220.
47. Aminti P.L., E. Mori, P. Fantini (2009), Submerged barrier for coastal protection
application built with tubes in geosynthetics of big diameter in Tuscany, proceedings 9th
ICE, London, pp. 1235-1240.
48. Nikuradse J. (1933), Stomungsgesetz in rauhrenrohren, vdi-forshungsheft 361. (Engish
translation: Laws of flow in rogh pipes, 1950. Technical report, NACA Techical Memo
1292. National Commission on Aeronautics, Washington DC).
49. Fürböter A. (1961), Über dieFörderung von Sand-Wasser-Germischen in Rohrleitungen
(in German), Mitteilungen des Fransius-Instituts 19, 45, pp. 163-166.
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