COE ETL 1110-8-3-1991 UNDERWATER INSPECTION OF CONCRETE STRUCTURES《混凝土结构的水下检查》.pdf
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1、CECW-EG 3535789 0025250 3YO 9 1- 3/-) 7 DEPARTMENT OF THE ARMY ETL 1110-8-3(FR) US Army Corps of Engineers Washington DC 20314-1000 Engineer Technical Letter NO. 1110-8-3(FR) 15 February 1991 Engineering and Design UNDERWATER INSPECTION OF CONCRETE STRUCTURES 1. Purpose This engineer technical lette
2、r (ETL) provides information on the techniques and procedures for underwater inspection of civil works concrete structures. 2. Applicability This ETL is applicable to all USACE elements and USACE Commands having civil works responsibility for the design of civil works projects. 3. References. a. Ale
3、xander, A. M. 1980 (Apr). “Development of Procedures for Nondestructive Testing of Concrete Structures; Feasibility of Sonic Pulse-Echo Technique,“ Miscellaneous Paper C-77-11, Report 2, US Army Engineer Waterways Experiment Station, Vicksburg, MS. b. Alexander, A. M., and Thornton, H. T., Jr. 1988.
4、 “Developments in Ultrasonic Pitch-Catch and Pulse-Echo for Measurements in Concrete,“ SP-112, American Concrete Institute, Detroit, MI. c. Alongi, A. V., Cantor, T. R., Kneeter, C. P., and Alongi, A., Jr. 1982. “Concrete Evaluation by Radar Theoretical Analysis,“ Concrete Analysis and Deterioration
5、, Transportation Research Board, Washington, DC. d. Arcone, S. A. 1989 (Oct). “Analysis of a Short Pulse Radar Survey of Revetments Along the Mississippi River,“ Technical Report REMR-CS-26, US Army Engineer Waterways Experiment Station, Vicksburg, MS. e. Busby Associates, Incorporated. 1987. “Under
6、sea Vehicles Directory,“ Arlington, TX. f. Clausner, J. E., and Pope, J. 1988 (Nov). “Side-Scan Sonar Applications for Evaluating Coastal Structures, Technical Report CERC-88-16, US Army Engineer Waterways Experiment Station, Vicksburg, MS. g. Department of Labor. 1977. Occupational Safety and Healt
7、h Operations, Vol III, washington, DC. h. Headquarters, US Army Corps of Engineers. 1 Oct 1987. “Safety and Health Requirements Manual,“ EM 385-1-1, US Government Printing Office, Washington, DC. i. Keeny, C. A. 1987 (Nov). “Procedures and Devices for Underwater Cleaning of Civil Works Structures,“
8、Technical Report REMR-CS-8, US Army Engineer Waterways Experiment Station, Vicksburg, MS. j. Keeney, C. A., and Pollio, S. E. 1984 (Aug). “Evaluation of Nondestructive Underwater Timber Inspection Techniques,“ Report No. TN-1703, Naval Facilities Engineering Command, Port Huenme, CA. 2613 Provided b
9、y IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-3515789 0025251 287 k. Kucharski, W. M., and Clausner, J. E. 1990 (Feb). “Underwater Inspection of Coastal Structures Using Commercially Available Sonars,“ Technical Report REMR-CO-11, US Army Engineer Waterways
10、Experiment Station, Vicksburg , MS. 1. Morang, A. 1987 (Dec). “Side-Scan Sonar Investigation of Breakwaters at Calumet And Burns Harbors on Southern Lake Michigan,“ Miscellaneous Paper CERC-87-20, US Army Engineer Waterways Experiment Station, Vicksburg, MS. m. Morey, R. M. 1974 (Mar). “Application
11、of Downward Looking Impulse Radar,“ Proceedings of 13th Annual Canadian Hydrographic Conference, Canada Centre for Inland Waters, Burlington, Ontario. n. Popovics, S., and McDonald, W. E. 1989 (Apr). “Inspection of the Engineering Condition of Underwater Concrete Structures,“ Technical Report REMR-C
12、S-9, US Army Engineer Waterways Experiment Station, Vicksburg, MS. o. Smith, A. P. 1987 (Apr). “New Tools and Techniques for the Underwater Inspection of Waterfront Structures,“ OTC 5390, 19th Annual Offshore Technology Conference, Houston, TX. p. Thornton, H. T., Jr. 1985 (Mar). “Corps-BuRec Effort
13、 Results in High-Resolution Acoustic Mapping System,“ The REMR Bulletin, Vol 2, No. 1, US Army Engineer Waterways Experiment Station, Vicksburg, MS. q. Thornton, H. T., Jr., and Alexander, A. M. 1987 (Dec). “Development of Nondestructive Testing Systems for In Situ Evaluation of Concrete Structures,
14、“ Technical Report REMR-CS-10, US Army Engineer Waterways Experiment Station, Vicksburg, MS. r. Thornton, H. T., Jr., and Alexander, A. M. 1988 (Mar). “Ultrasonic Pulse-Echo Measurements of the Concrete Sea Wall at Marina Del Rey, Los Angeles County, California,“ The REMR Bulletin, Vol 5, No. 1, US
15、Army Engineer Waterways Experiment Station, Vicksburg, MS. s. US Army Engineer Waterways Experiment Station. 1985. “Underwater Cameras for Inspection of Structures in Turbid Water,“ REMR Technical Note CS-ES-3.2, The REMR Notebook, Vicksburg, MS. t. US Army Engineer Waterways Experiment Station. 198
16、8. “Underwater Nondestructive Testing of Metal Structures (Training for Divers),“ REMR Technical Note CS-ES-1.6, The REMR Notebook, Vicksburg, MS. u. US Army Engineer Waterways Experiment Station. 1988. “Video Systems for Underwater Inspection of Structures,“ REMR Technical Note CS-ES-2.6, The REMR
17、Notebook, Vicksburg, MS. v. US Department of Transportation. 1989 (Nov). “Underwater Inspection of Bridges,“ Report No. FHWA-DP-80-1, Federal Highway Administration, Washington, DC. 4. Background Dewatering many civil works projects or appurtenant structures to perform inspections and repairs is dif
18、ficult, very expensive, and, in some cases, practically impossible. Disruption of operations at some projects cannot be tolerated for lengths of time sufficient to conduct detailed surveys and inspections. Obviously, there is a need for improved techniques for examining structural features in detail
19、 in underwater environments. Consequently, a study was conducted as part of the Repair, Evaluation, Maintenance, and Rehabilitation (REMR) Research Program to evaluate the available underwater 2614 inspection techniques for concrete structures. The results of this REMR study Provided by IHSNot for R
20、esaleNo reproduction or networking permitted without license from IHS-,-,-are summarized in this ETL. m 3535789 0025252 113 rn 2 L13 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-3535789 0025253 05T 5. Underwater Survey Techniques A variety of proc
21、edures and equipment for conducting underwater surveys is described herein. Included are several nondestructive techniques which can be used in dark or turbid conditions that preclude visual inspection. Some techniques originally developed for other purposes have been adapted for application in unde
22、rwater inspections. Prior to conducting an underwater survey, it is sometimes necessary to clean the surface of the structure. A number of procedures and devices for underwater cleaning of civil works structures are described by Keeny in “Procedures and Devices for underwater Cleaning of Civil Works
23、 Structures.“ a. Visual Inspection by Divers (1) Underwater surveys by divers are usually either scuba or surface- supplied diving operations. Basic scuba diving equipment is an oxygen tank, typically weighing about 75 lb, which is carried by the diver. Surface- supplied diving, where the air supply
24、 is provided from the surface or shore, is a more elaborate operation in terms of equipment, safety concerns, diver skills, etc., especially when the diver approaches maximum allowable depths. Diver equipment for surface-supplied diving includes air compressors, helmets, weighted shoes, air supply l
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