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The Dock-in-Service: Evaluation of Load Carrying Capacity, Repair, Rehabilitation

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Marine Structures Engineering: Specialized Applications

Abstract

Provided that port marine structures are properly maintained, the design service life of such structures is usually considered to be 35 to 50 years.

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References

  • Acres International Limited, 1989. “Alkali Aggregate Reaction in Hydraulic Structures.” Proceedings of 20th Annual Seminar. April 14 and 15, Niagara Falls, Ontario.

    Google Scholar 

  • American Concrete Institute, 1965. Recommended Practice for Evaluation of Compression Test Results of Field Concrete (ACI 214–65), Detroit.

    Google Scholar 

  • American Concrete Institute, 1984. Concrete Repair and Rehabilitation, Current ACI Guides. Concrete International, Vol. 6, No. 7, July.

    Google Scholar 

  • American Concrete Institute, Committee 224, 1984. Causes, Evaluation and Repair of Cracks in Concrete Structures. ACI Journal, May-June.

    Google Scholar 

  • American Concrete Iinstitute, 1985a. Corrosion of Metals in Concrete, ACI 222R-85, Detroit.

    Google Scholar 

  • American Cconcrete Institute, 1985b. Guide for Making a Condition Survey of Concrete in Service ACI 201.1R, Part 1, Detroit.

    Google Scholar 

  • American Concrete Institute, 1985c. Guide to Durable Concrete. Manual of Concrete Practice, ACI 201.2R, Part 1, Detroit.

    Google Scholar 

  • American Concrete Institute, 1985d. Guide to the Use of Waterproofing, Dampproofing, Protective, and Decorative Barrier System for Concrete, ACI 515.1R, Part 5, Detroit.

    Google Scholar 

  • American Concrete Institute, 1988. In-Place Method of Determination of Strength of Concrete, ACI 228.1R. Detroit.

    Google Scholar 

  • American Society of Civil Engineers, March, 1966. “Sediment Transportation Mechanics: Initiation of Motion.” Progress Report. Task Committee on Preparation of Sedimentation Manual. Journal of the Hydraulic Division.

    Google Scholar 

  • Atwood, W. G. and Johnson, A. A., 1924. “Marine Structures, Their Deterioration and Preservation.’’ National Research Council Washington, DC.”

    Google Scholar 

  • B. C. Research, Ltd. “Tidelines—A Current Review of Pacific Coast Marine Borers.” Bulletin, Issued monthly.

    Google Scholar 

  • Bakun, G. B., 1986. “Cost-effective Approach to Pier Inspection and Maintenance. In Maritime and Offshore Structure Maintenance.” Proceedings of the Institution of Civil Engineers Conference, Thomas Telford, London.

    Google Scholar 

  • Bergh, H. and Magnusson, N., 1987. “Propeller Erosion and Protection Methods Used in Ferry Terminals in the Port of Stockholm.” Permanent International Association of Navigation Congresses, Bulletin No. 58, Brussels, Belgium.

    Google Scholar 

  • Biswus, A. N. and Bandyopadhyay, K. K., 1987. “Scour of Haldia Oil Jetty on the Hugli Estuary.” Permanent International Association of Navigation Congresses Bulletin No. 58, Brussels, Belgium.

    Google Scholar 

  • Blaauw, H. G. and van de Kaa, E. J., 1978. “Erosion of Bottom and Sloping Banks Caused by the Screw Race of Maneuvering Ships.” Paper presented at the 7th International Harbor Congress, Antwerp, May 22–26.

    Google Scholar 

  • Blaauw, H. G., van den Knaap, F. C. M., de Groot, M. T., and Pilarczyk, K. w., 1984. “Design of Inland Navigation Fairways.” Publication 320, Delft Hydraulic Laboratory.

    Google Scholar 

  • Bletchly, J. D., 1967. “Insect and Marine Borer Damage to Timber and Woodwork.” Ministry of Technology, Her Majesty’s Stationery Office, London.

    Google Scholar 

  • Blumberg, R. and Rigg, A. M., 1961. “Hydrodynamic Drag at Supercritical Reynolds Numbers.” American Society of Mechanical Engineers. Petroleum Session.

    Google Scholar 

  • Broms, B. and Stille, H., 1976. “Failure of Anchored Sheet-Pile Walls.” Journal of the Geotechnical Division, ASCE, Vol. 102, No. GT3, pp 225–251.

    Google Scholar 

  • Budin, A. Y. and Demina, G. A., 1979. Quays. Handbook. Stroyisdat, Moscow (In Russian).

    Google Scholar 

  • Bungey, J. H., 1982. “Testing of Concrete in Structures.” Surrey University Press, Glasgow.

    Google Scholar 

  • Buslov, V. M., 1979. “Durability of Various Types of Wharves.” ASCE, Proceedings of Specialty Conference Coastal Structures’79.

    Google Scholar 

  • Buslov, V. M., 1983. “Corrosion of Steel Sheet Piles in Port Structures,” ASCE Journal of Waterway, Port, Coastal and Ocean Engineering, Vol. 109, No. 3 August.

    Google Scholar 

  • Buslov, V. M., 1987. “Inspection, Maintenance, and Repair of Offshore Platforms: A System Approach, paper OTC 5386.” Proceedings of Annual Offshore Technology Conference, Houston, Texas.

    Google Scholar 

  • Buslov, V. M., 1992. “Marine Concrete—When to Repair, What to Repair.” Concrete International, May.

    Google Scholar 

  • Buslov, V. M. and Rojansky, 1988. “Assessment of Corrosion Damage to Concrete Marine Structures,” Proceedings of FIP Symposium in Israel, September.

    Google Scholar 

  • Buslov, V. M. and Scola, P. T., 1991. “Inspection and Structural Evaluation of Timber Pier: Case Study.” ASCE Journal of Structural Engineering Vol. 117, No. 9 September.

    Google Scholar 

  • Caron, C., Herbst, T. F., and Cattin, P., 1975. “Injections.” Published in Foundation Engineering Handbook, edited by H. F. Winterkorn and H-Y. Fang. Van Nostrand Reinhold, New York.

    Google Scholar 

  • Chait, S., 1987. “Undermining of Quay-Walls at South African Ports due to the use of Bow Thrusters and Other Propeller Units.” Permanent International Association of Navigation Congresses, Bulletin No. 58, Brussels, Belgium.

    Google Scholar 

  • Chellis, R. D., 1961. “Pile Foundations.” McGraw-Hill, New York.

    Google Scholar 

  • Chow, Ven Te, 1959. Open Channel Hydraulics. McGraw-Hill, New York.

    Google Scholar 

  • Clapp, W. F. Laboratories, Under B.U.Y.D. Conf No. NBy-17810. Progress Reports on Marine Borer Activity in Test Boards. Thirteen issues, annually, 1946 through 1959.

    Google Scholar 

  • Clausner, J. E. and Truitt, C. L., 1987. “Propeller Wash Effects on Protective Armour Layer Design for Container Aquatic Disposal Sites.” Permanent International Association of Navigation Congresses. Bulletin No. 58, Brussels, Belgium.

    Google Scholar 

  • Cleary, H. J., 1969. “On the Mechanism of Corrosion of Steel Immersed in Saline Water.” Proceedings of Offshore Technology Conference, Houston, Texas.

    Google Scholar 

  • Coomber, D., 1987. “Restoration of Quay Wall.” Civil Engineering, January/February, London.

    Google Scholar 

  • Davis, R. E., et al., 1948. “Restoration of Barker Dam.” American Concrete Institute Journal, Vol. 19, No. 8 (Apr) pp 633–688.

    Google Scholar 

  • De Lange, J. I., Verhulst, K., and Bruecuwer, R., 1985. “Underwater Inspection of Concrete Structures.” Behavior of Offshore Structuring. Elsevier Science Publishers B.V., Amsterdam.

    Google Scholar 

  • Delft University Press, 1984. “The Closure of Tidal Basins.” Netherlands.

    Google Scholar 

  • Dismuke, T. D., Coburn, S. F., and Hirsh, C. M., 1981. Handbook of Corrosion Protection for Steel Pile Structures in Marine Environments. American Iron and Steel Institute, Washington, D.C.

    Google Scholar 

  • Dubrova, G. A., 1959. “Design of the Economically Efficient Hydrotechnical Structures.” River Transport Publishing House, Moscow (In Russian).

    Google Scholar 

  • Edwards, W. E., 1963. “Marine Corrosion: Its Cause and Cure.” Proceedings of the Eighth Annual Appalachian Underground Short Course, Technical Bulletin. No. 69. West Virginia University Bulletin, October.

    Google Scholar 

  • Efird, K. D., 1975. “The Interrelation of Corrosion and Fouling of Metals in Seawater.” National Association of Corrosion. Engineers Proceedings Corrosion Conference, Toronto, Ontario.

    Google Scholar 

  • Eyre, J. R. and Nokhasteh, M. A., 1992. “Strength Assessment of Corrosion Damaged Reinforced Concrete Slabs and Beams, Paper 9851.” Proceedings Institute Civil Engineers Structures and Buildings, No. 94, May.

    Google Scholar 

  • Federal Highway Administration. Geotextile Engineering Manual. Washington, DC.

    Google Scholar 

  • Feld, J., 1968. “Construction Failures.” John Wiley & Sons, New York.

    Google Scholar 

  • Flaman, M. T. and Manning, B. H., 1985. “Determination of Residual-Stress Variation with Depth by the Hole-Drilling Method.” Experimental Mechanics, September.

    Google Scholar 

  • Flaman, M. T., Mills, B. E., and Boag, J. M., 1985. “Analysis of Stress-Variation-with-Depth Measurment Procedures for the Center-Hole Method of Residual Stress Measurement.” Experimental Technique, Vol. 11, No. 6.

    Google Scholar 

  • Fotinos, G. C., 1986. “New Structural Developments for Concrete Marine Structures.” ASCE Proceedings Specialty Conference Ports ’86. Oakland, California, May 19–21.

    Google Scholar 

  • Fukute, T., Kiyomiya, O. and Minami, K., 1990. “Steel Structures in Port and Harbour Facilities: Actual Conditions of Corrosion and Counter-Measures.” PIANC, Bulletin No. 68, Brussels, Belgium.

    Google Scholar 

  • Fuehrer, M. and Römisch, K., 1977. “Effects of Modern Ship Traffic on Island and Ocean Waterways and Their Structures.” Proceedings PIANC, 24th Congress Leningrad, USSR.

    Google Scholar 

  • Fuehrer, M., Römisch, K., and Engelke, G., 1981. “Criteria for Dimensioning the Bottom and Slop Protections and for Applying the New Methods of Protecting Navigation Canals.” Proceedings XXVth Congress of Permanent International Association of Navigation Congresses, S.1-1 Edinburgh, UK.

    Google Scholar 

  • Fuehrer, M., Pohl, M., and Römisch, K., 1987. “Propeller Jet Erosion and Stability Criteria for Bottom Protections of Various Constructions.” Permanent International Association of Navigation Congresses. Bulletin No. 58, Brussels, Belgium.

    Google Scholar 

  • Garlich, M. J. and Chrzastowski, 1989. “An Example of Sidescan Sonar in Waterfront Facility Evaluation.” American Society of Civil Engineers, Proceedings of Specialty Conference Ports’89, Boston, May.

    Google Scholar 

  • Gaul, R. W., 1984. “Preparing Concrete Surfaces for Coating.” Concrete International, Vol. 6, No. 7.

    Google Scholar 

  • Gerwick, B. C., 1975. “Durability of Structures Under Water.” Proceedings AIPC-PIP-CEB-RILEM-IASS Symposium on Behavior of Concrete in Service. Liege, Belgium.

    Google Scholar 

  • Gilbride, P., Morgan, D. R., and Bremner, T. W., 1988. “Deterioration and Rehabilitation of Berth Faces in Tidal Zones at the Port of Saint John.” Proceedings of the Second International Conference on Concrete in Marine Environment—SP-109. St. Andrews-by-Sea, Canada.

    Google Scholar 

  • Gjorv, O. E., Baerland, T., and Running, H. R., 1987. “High Strength Concrete for Highway Pavements and Bridge Decks.” Proceedings, Utilization of High Strength Concrete Symposium Stavanger, Norway.

    Google Scholar 

  • Goronov, B. F., 1974. “Operation and Maintenance of Port Structures.’’ Transport’ Publishing House, Moscow (In Russian).”

    Google Scholar 

  • Hamil, G. A., 1988. “The Scouring Action of the Propeller Jet Produced by a Slowly Maneuvering Ship.” Permanent International Association of Navigation Congresses Bulletin No. 62.

    Google Scholar 

  • Hassani, J. J., 1986. “Capacity Rating of Existing Piers and Wharves.” ASCE Proceedings of Specialty Conference Ports’86, May 19–21. Oakland, California.

    Google Scholar 

  • Heaf, H. J., 1979. “The Effects of Marine Growth on the performance of Fixed Offshore Platforms in the North Sea.” Offshore Technology Conference paper No. 3386, Houston, Texas.

    Google Scholar 

  • Herbich, J. B. (ed.), 1989. Handbook on Coastal and Ocean Engineering. Gulf, Houston, Texas.

    Google Scholar 

  • Herbich, J. B., Schiller, E., Watanabe, R. K., and Dunlap, W. A., 1984. “Seafloor Scour.” Marcel Dekker, New York.

    Google Scholar 

  • Hobbs, D. W., 1988. “Alkali-Silica Reaction in Concrete.” Thomas Telford, London.

    Google Scholar 

  • Hoff, G. C., 1987. “Durability of Fiber Reinforced Concrete in a Severe Marine Environment.” Catharine and Bryant Mather International Conference on Concrete Durability. Atlanta, Georgia, April.

    Google Scholar 

  • Hoff, G. C., 1988. “Resistance of Concrete to Ice Abrasion—A Review.” Proceedings of the Second International Conference on Concrete in Marine Environment SD-109. St. Andrews-by-Sea, Canada.

    Google Scholar 

  • Holland, T. C., Husbuands, T. B., Buck, A. D., and Wong, G. S., 1980. “Concrete Deterioration in Spillway Warm-water Chute,” Raystown Dam, Pennsylvania. MP SL-80-19. U.S. Army Engineer Waterways Experiment Station. Vicksburg, Mississippi.

    Google Scholar 

  • Holmes, C. W. and Brundle, S. G., 1987. “The Effect of an Arid Climate on Reinforced Concrete in Marine Environment.” Proceedings of Conference on Coastal and Port Engineering in Developing Countries. Vol. 1. China Ocean Press, Beijing, China.

    Google Scholar 

  • Hope, B. B., Ip, A. K. and Manning, D. G., 1985. “Corrosion and Electrical Impedance Concrete.” Cement and Concrete Research, Vol. 15.

    Google Scholar 

  • Horvath, J. S. and Dette, J. T., 1983. “Rehabilitation of Failed Steel Sheet-Pile Bulkheads.” ASCE Proceedings Specialty Conference Ports ’83, New Orleans, Louisiana, March 21–23.

    Google Scholar 

  • Ingold, T. S. and Miller, K. S., 1988. Geotextiles Handbook. Thomas Telford, London.

    Google Scholar 

  • Ingram, C. J. and Morgans, G. W., 1986. “Repair of Marine Structures.” Proceedings of the Second International Conference on the Maritime and Offshore Structure Maintenance. Thomas Telford, London.

    Google Scholar 

  • Isinguro, K. and Miyata, Y., 1988. “Reinforcement of an Anchored Sheet Pile Wall with Additional Lower tie-Rods.” PIANC, Bulletin No. 61.

    Google Scholar 

  • Jansen, E. W., et al., 1979. “Principles of River Engineering: The Nontidal Alluival River.” Pitman Publishers, Aulender, North Carolina.

    Google Scholar 

  • Johnson, B. R., 1987. “Protection of Timber Bulkheads from Marine Borers.” In American Society of Civil Engineering, Geotechnical Special Publication, No. 7, april 29.

    Google Scholar 

  • Johnson, S. M., 1965. “Deterioration, Maintenance and Repair of Structures.” McGraw-Hill, New York.

    Google Scholar 

  • Johnson, S. M., 1989. “Design of Marine Structures: Life Cycle Cost Factor.” American Society of Civil Engineers, Proceedings of Specialty Conference Ports’89, Boston, May.

    Google Scholar 

  • Kee, chin fung, 1971. “Relation Between Strength and Maturity of Concrete.” ACI Journal, Proceedings, Vol. 68, No. 3 March.

    Google Scholar 

  • Keown, M. P. and Dardeau, E. A., 1980. “Utilization of Filter Fabric for Streambank Protection Applications.” Technical Report HL-80-12, US Army Engineer Waterways Experiment Station. Vicksburg, Mississippi.

    Google Scholar 

  • Kezdi, A., 1975. “Lateral Earth Pressure,” Chapter 5 in Foundation Engineering Handbook, editors Winterkorn, H. F. and H.-Y. Fang. Van Nostand Reinhold Company, New York, N.Y.

    Google Scholar 

  • Khayat, K. H., 1992. “In-situ Properties of Concrete Piles Repaired Under Water,” Concrete International, March.

    Google Scholar 

  • Khanna, J., Gilbride, P., and Whitcomb, C. R., 1988a. “Steel Fiber Reinforced Concrete Jackets for Repairing Concrete Piles.” Proceedings of Second International Conference on Concrete in Marine Environment SP-109. St. Andrews-by-Sea, Canada.

    Google Scholar 

  • Khanna, J., Seabrook, P., Gerwick, B., and Bickley, J., 1988b. Invesgigation of Distress in Precast Concrete Piles at Rodney Terminal, Saint John, New Brunswick. Proceedings of the Second International Conference on Concrete in Marine Environment SP-109. St. Andrews-by-Sea, Canada.

    Google Scholar 

  • Kohne, J. K., 1983. Störten van onderwaterbeton met de Hop-dobber. Vol. XXXV. 12.

    Google Scholar 

  • Kray, C. J., 1983. “Rehabilitation of Steel Sheet Pile Bulkhead Walls.” ASCE Proceedings of Specialty Conference Ports’83. March 21–23, new Orleans, Louisiana.

    Google Scholar 

  • Kristensen, M., 1987. “Seabed Erosion in Ferry Berths.” PIANC bulletin No. 58.

    Google Scholar 

  • Lamberton, B. A., 1989. “Fabric Forms for Concrete.” Concrete International, December.

    Google Scholar 

  • Lane, E. W., 1979. Progress report on Studies on the Design of Stable Channels of the Bureau of Reclamation. Proceedings of the American Society of Civil Engineers, No. 280.

    Google Scholar 

  • Lin, T. Y. and Burns, N. H., 1981. “Design of Prestressed Concrete Structures,” 3 Edition John Wiley & Sons, New York.

    Google Scholar 

  • Liu, T. C. and Holland, T. C., 1981. “Design of Dowels for Anchoring Replacement Concrete to Vertical Lock Walls.” TR C-78–4, Report, US Army Engineer Waterway Experiment Station. April, Vicksburg, Mississipi.

    Google Scholar 

  • Longe, M. J. P., Hergert, M. P. and Bylk, M. R., 1987. “Problems d’erosion aux ouvrages dequai existants causes par les propulseurs d’etrave et les helices principles des novires lors de leurs accostages aou appareillages.” PIANC, Bulletin No. 58.

    Google Scholar 

  • Lundin, R. P., 1983. “Rehabilitation of Cyclopian Concrete Wharf.” ASCE Proceedings of Specialty Conference Ports ’83. New Orleans, Louisiana.

    Google Scholar 

  • Maccaferi gabions. Flexible Reno Mattress and Gabion Linings. Commercial booklet.

    Google Scholar 

  • Malhotra, V. M., 1976. “Testing Hardened Concrete: Nondestructive Methods.” ACI Monograph No. 9, American Concrete Institute/Iowa State University Press, Detroit.

    Google Scholar 

  • Mcdonald, J. E. and Liu, T. C., 1988. “Evaluation and Repair of Concrete Navigation Structures.” Proceedings of the Second International Conference on Concrete in Marine Environment SP-109. St. Andrews-by-Sea, Canada.

    Google Scholar 

  • Mehta, P. K., 1980. “Durability of concrete in Marine Environments.” ACI SP-65, American Concrete Institute, Detroit.

    Google Scholar 

  • Mehta, P. K., 1986. “Concrete: Structure, Properties, and Materials.” Prentice Hall, Englewood Cliffs, NJ.

    Google Scholar 

  • Mehta, P. K., 1988. “Durability of Concrete Exposed to Marine Environment—A Fresh Look.” Proceedings of the Second International Conference on Concrete in Marine Environment SP-109, St. Andrews-by-Sea, Canada.

    Google Scholar 

  • Mehta, P. K. and Gerwick, B. C., 1982. “Crack-Corrosion Interaction in Concrete Exposed to Marine Environment.” Concrete International, Vol. 4, No. 10, Detroit.

    Google Scholar 

  • Menzies, R. J. and Turner, R., 1957. “The Distribution and Importance of Marine Wood Borers in the United States.” In ASTM Special Technical Publication No. 200, Proceedings of a Symposium on Wood for Marine Use and its Protection from Marine Organisms.

    Google Scholar 

  • Milwee, W. I. and Aichele, W. F., 1986. “Modern Inspection Techniques in Port Maintenance.” ASCE Proceedings Specialty Conference Ports ’86, Oakland, California, May 19–21.

    Google Scholar 

  • Morgan, D. R., 1988. “Recent Developments in Shotcrete Technology—A Materials Engineering Perspective.” World of Concrete’88 Las Vegas, Nevada, February.

    Google Scholar 

  • Muraoka, J., 1962. “The Effects of Marine Organisms on Engineering Materials for Deep Ocean Use.” U.S. Navy, Civil Engineering Laboratory, Port Heuneme, California.

    Google Scholar 

  • Naval Civil Engineering Laboratory, 1983. Contract Report “Evaluation of Commercial Digital Ultrasonic Metal Thiskness Measurement Instruments.” Southwest Research Institute, San Antonio, Texas.

    Google Scholar 

  • Naval Civil Engineering Laboratory, 1985. Contract Report “Design of the Underwater Steel Inspection System.” Southwest Research Institute, San Antonio, Texas.

    Google Scholar 

  • Navdoks, 1950. “Harbor Reports on Marine Borer Activity.” U.S. navy P-43, Washington DC, June.

    Google Scholar 

  • Navdoks, Mo-306, 1964. “Corrosion Prevention and Control.” Washington DC.

    Google Scholar 

  • Novokshchenov, V., 1988. “Stopping the Cracks.” Civil Engineering, ASCE Vol. 58, No. 11.

    Google Scholar 

  • Nucci, L. R. and Connors, C. C., 1990. “Inspection and Maintenance of Port Faculties for Improved Service Life.” Proceedings PIANC 27th Congress s. II-3. Osaka, Japan.

    Google Scholar 

  • Oebius, H. U., 1984. “Loads on Beds and Banks Caused by Ship Propulsion Systems.” In Flexible Armored Revetments. Thomas Telford, London.

    Google Scholar 

  • Oebius, H. and Schuster, S., 1979. Analitische und Experimentelle Untersuchungen über dan Eiufluss vou Schrauben propellern ant lewe-gliche Gewassersohlen Teil 1: Der ungestörte Propellerstrhl. Versuchsanstalt fur Wasserbau und Schifflau, Berlin.

    Google Scholar 

  • Offshore Engineer, 1984. “Anti-Fouling Paint Makes Barnacles Lose their Grip.” July, pp 73–74.

    Google Scholar 

  • Ohsaki, Y., 1982. “Corrosion of Steel Piles Driven in Soil Deposits.” Soils and Foundation. Japanese Society of Soil Mechanics and Foundation Engineering, Vol. 22, No. 3, September.

    Google Scholar 

  • Okada, K., Nisthbayashi, S. and Nakamura, M., 1989. Proceedings 8th International Conference on Alkali-Aggregate Reaction. Tokyo, Japan.

    Google Scholar 

  • Permanent International Association of Navigation Congresses, 1987. “Guidelines for the Design and Construction of Flexible Revetments Incorporating Geotextiles for Inland Waterways.” Report on Working Group 4 of the Permanent Technical Committe 1 Suplement to Bulletin No. 57, Brussels, Belgium.

    Google Scholar 

  • Permanent International Association of Navigation Congresses, 1990. Inspection, Maintenance and Repair of Maritime Structures Exposed to Material Degradation Caused by a Salt Water Environment. Report of Working Group No. 17 of PTC II. Brussels, Belgium.

    Google Scholar 

  • Pettit, P. and Wooden, C., 1988. “Jet Grouting: The Pace Quickens.” American Society of Civil Engineers. Civil Engineering, Vol. 58, No. 8.

    Google Scholar 

  • Pilarczyk, K. W., 1985. “Stability of Revetments Under Wave and Current Attack.” the Twenty-First International Association for Hydraulics Research Congress Melbourne.

    Google Scholar 

  • Pilarczyk, K. W., 1986. “Design Aspects of Block Revetments.” Post Graduate Course on Bank and Dike Protection. Delft University of Technology Civil Engineering Department, PATO, Delft.

    Google Scholar 

  • Plowman, J. M., 1956. “Maturity and the Strength of Concrete.” Magazine of Concrete Research, Vol. 8, No. 22, London, March.

    Google Scholar 

  • Porter, D. L., 1986. “Innovative Repairs to Steel Sheet Pile Structures.” ASCE Specialty Conference, Ports’86, Oakland, California, May 19–21.

    Google Scholar 

  • Prosser, M. J., 1986. “Propeller induced Scour.” The British Port Association, RR2570, London.

    Google Scholar 

  • Ractliffe, A. T., 1983. “The Basis and Essentials of Marine Corrosion in Steel Structures.” Proceedings of the Institute of Civil Engineers, Part 1, No. 74, London, November.

    Google Scholar 

  • Richards, B. R., 1983. “Marine Borers.” Proceedings of the American Wood-Preservers’ Association.

    Google Scholar 

  • Rilam, 1985. “Synthetic Membranes.” Draft Recommendations 47—SM Technical Committee

    Google Scholar 

  • Robakiewicz, w., 1966. “The Influence of the Action of the Jet Behind the Screw on the bottom. Examples of model and field measurements with trawler B-20.” Rozprawy Hydrotechiczene, 19 (In Polish).

    Google Scholar 

  • Robakiewicz, W., 1987. “Bottom Erosion as an Effect of Ship Propeller Action Near the Harbor Quays.” Permanent International Association of Navigation Congresses. Bulletin No. 58, Brussels, Belgium.

    Google Scholar 

  • Rogers, T. H., 1960. The Marine Corrosion Handbook. McGraw-Hill, New York.

    Google Scholar 

  • Römisch, K., 1977. “Damage of Waterways and Hydraulic Structures Caused by the Attack of Propeller Jet.” Proceedings of 24th Congress of Permanent Association of Navigation Congresses. Section 1, Subject 3, Leningrad, USSR.

    Google Scholar 

  • Russell, S., 1989. “Inspection and Construction of Underwater Repairs.” American Society of Civil Engineers, Proceedings of Specialty Conference Ports’89, Boston, May.

    Google Scholar 

  • Sancier, K. L. and Neeley, B. D., 1987. Antiwashout Admixtures in Underwater Concrete.’’ Concrete International, May.

    Google Scholar 

  • Schajer, G. S., 1981. “Application of Finite Element Calculations to Residual Stress Management.” Journal of Engineering Materials and Technology, Vol. 103/157, April.

    Google Scholar 

  • Schmitt, R. J. and Phelps, E. M., 1969. “Corrosion Performance of Constructional Steels in Marine Applications.” Talk prepared for presentation at the First Annual Offshore Technology Conference, Houston, Texas.

    Google Scholar 

  • Schwerdtfeger, W. J. and Romanoff, M., 1972. “NBS Papers on Underground Corrosion of Steel Piling 1962–1971.” National Bureau of Standards Monograph 127, March.

    Google Scholar 

  • Scola, P. T., 1989. “US Navy Underwater Inspection of Waterfront Facilities.” American Society of Civil Engineers, Proceedings of Specialty Conference Ports ’89, Boston, May.

    Google Scholar 

  • Scott, P. J. B. and Davies, M., 1992. Microbiologically Induced Corrosion. Civil Engineering, May.

    Google Scholar 

  • Sherard, J. L. and Dunnigan, L. P., “Critical Filters for Impervious Soils,” ASCE Journal of Geotechnical Engineering, Vol. 115, No. 7, July.

    Google Scholar 

  • Shields, A., 1936. “Auwendung der Aenlich keits-mechanic und des Turbulenz forsehung anf die Gesehiebebeweguug.” Mitteilungeu der Preussischeu Versuchsantalt fur Wasserbau und Schiffbau. W. P. Oft and J. C. van Uchelen (tr.), California Institute of Technology, Pasadena.

    Google Scholar 

  • Shilstone, J. M. and Kenney, A. R., 1979. “Evaluation and Retrofit of Concrete Structures.” Paper presented at the ACI Annual Convention, Milwaukee, Wisconsin.

    Google Scholar 

  • Shroff, A. C., 1988. “Evaluating a 50-year Old Concrete Bride.” Concrete International, Design and Construction, No. 5.

    Google Scholar 

  • Silvester, R., 1983. “Design of In Situ Cast Mortar Filled Armor Units of Marine Structures.” Proceedings of the 6th Australian Conference on Coastal and Ocean Engineering.

    Google Scholar 

  • Silvester, R., 1986. “Use of Grout Filled Sausages in Coastal Structures.” American Society of Civil Engineers, Journal Waterway, Port, Coastal and Ocean Engineering, Vol. 112(1).

    Google Scholar 

  • Smith, A. P., 1987. “New Tools and Techniques for the Underwater Inspection of Waterfront Structures.” Proceedings of the Offshore Technology Conference, Houston, Texas, pp. 291–298, April 27–30.

    Google Scholar 

  • Snow, R. K., 1992. Polymer Pile Encapsulation: Factors Influencing Performance. Concrete International, May.

    Google Scholar 

  • Sowers, G. B. and Sowers, G. F., 1967. “Failures of Bulkhead and Excavation Bracing.” Civil Engineering, ASCE, Vol. 37, No. 1, pp 72–77.

    Google Scholar 

  • Staynes, B. and Corbeft, B., 1988. “Underwater Concreting with Polymers.” Civil Engineering, London, March.

    Google Scholar 

  • Steijaert, P. D. and De kreuk, J. F., 1985. “Underwater Repairs with Cement-Based Concretes.” Behavior of Offshore Structures, Elsevier Science Publishers B.V., Amsterdam.

    Google Scholar 

  • Stratton, F. W., Alexander, R. and Nolting, W., 1982. “development and Implementation of Concrete Girder Repair by Post-Reinforcement.” Report No. FHWA-KS-82–1. Kansas Department of Transportation, Topeka, Kansas.

    Google Scholar 

  • The Dock and Harbour Authority, vol. LXX, No. 812, October, 1989. Limpet Dam used for quay upgrading at Harwich.

    Google Scholar 

  • Thompson, W. J., 1977. “Damage to Port Structure by Ships with Bulbous Bows.” American Society of Civil Engineers, Proceedings of the Specialty Conference, PORTS ’77.

    Google Scholar 

  • Toyama, S. and Ishii, Y., 1990. “The Treatment of the Deterioration of Port and Harbour Concrete Structures in Japan.” PIANC Bulletin No. 68, Brussels, Belgium.

    Google Scholar 

  • Tsinker, G. P, 1983. “Anchored Sheet Pile Bulkheads: Design Practice.” ASCE Journal of Geotechnical Engineering, Vol. 109, No. 8, August.

    Google Scholar 

  • Tsinker, G. P, 1986. “Floating Ports.” Gulf Publishing Company, Houston, Texas.

    Google Scholar 

  • Tsinker, G. P., 1989. “The Dock-in-Service,” Evaluation of Load Carrying Capacity, Repair, Rehabilitation. American Society of Civil Engineers, Proceedings of Specialty Conference Ports’89, Boston, May.

    Google Scholar 

  • Turner, R. D., 1966. “A Survey and Illustrated Catalogue of the Teredinidal.” Harvard University.

    Google Scholar 

  • Uhlig, H. H., 1971. Corrosion and Corrosion Control/’ 2 Edition. John Wiley & Sons, New York.

    Google Scholar 

  • Uhlig, H. H. (ed.), 1948. “The Corrsion Handbook.” John Wiley & sons, New York.

    Google Scholar 

  • US Army Corps of Engineers TM-5-811-4, 1962. “Corrosion Control.” Washington, DC.

    Google Scholar 

  • US Army Corps of Engineers, 1977. Plastic Filter Fabric: Civil Works Construction Guide Specification.

    Google Scholar 

  • US Army Corps of Engineers, 1985. Engineering Manual EM 1110-2-2000, Standard Practice for Concrete, Washington, DC.

    Google Scholar 

  • US Army Corps of Engineers, 1986. Evaluation and Repair of Concrete Structures. Engineering Manual EM 1110-2-2002. Washington, DC.

    Google Scholar 

  • US Army Corps of Engineers, 1982. Publication EP 1110-1-10., May

    Google Scholar 

  • US Navy, 1970. “World Atlas of Coastal Biological Fouling.” USNOO, I.R. No. 70–51, September.

    Google Scholar 

  • Vejvoda, M. F., 1990. “Strengthening of Existing Structures with Post-Tensioning,” concrete International, September.

    Google Scholar 

  • Veldhuijzenvanzanten. R. (ed.), 1986. “Geotextiles and Geomembranes in Civil Engineering.” A. A. Balkema, Rotterdam, Boston.

    Google Scholar 

  • Verhey, B., 1983. “The Stability of bottom and Banks Subjected to the Velocities in the Propeller Jet Behind Ships.” Proceedings of the 8th International Harbour Congress. Antwerpan, Belgium.

    Google Scholar 

  • Verhey, H. J., Blokland, T., Bogaerts, M. P., Volger, D., and Weyde, R. w., 1987. “Experiences in the Netherlands with Quay Structures Subjected to Velocities Created by Bow Thrusters and Main Propellers of Mooring and Unmooring Ships.” Permanent International Association of Navigation Congresses, Bulletin No. 58, Brussels, Belgium.

    Google Scholar 

  • Winterkorn, H. F. and Fang, H.-Y. (eds.), 1975. Foundation Engineering Handbook. Van Nostrand Reinhold, New York.

    Google Scholar 

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Tsinker, G.P. (1995). The Dock-in-Service: Evaluation of Load Carrying Capacity, Repair, Rehabilitation. In: Marine Structures Engineering: Specialized Applications. Springer, Boston, MA. https://doi.org/10.1007/978-1-4615-2081-8_1

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