NACE 30105-2005 Electrical Isolation Continuity and Coating Issues for Offshore Pipeline Cathodic Protection Systems (Item No 24228)《海底管线阴极保护系统的电气隔离 连续性和涂料问题 项目编号24228》.pdf
《NACE 30105-2005 Electrical Isolation Continuity and Coating Issues for Offshore Pipeline Cathodic Protection Systems (Item No 24228)《海底管线阴极保护系统的电气隔离 连续性和涂料问题 项目编号24228》.pdf》由会员分享,可在线阅读,更多相关《NACE 30105-2005 Electrical Isolation Continuity and Coating Issues for Offshore Pipeline Cathodic Protection Systems (Item No 24228)《海底管线阴极保护系统的电气隔离 连续性和涂料问题 项目编号24228》.pdf(10页珍藏版)》请在麦多课文档分享上搜索。
1、NACE International This Technical Committee Report has been prepared by NACE International Task Group 169* on Control of External Corrosion of Steel Pipelines in Natural Waters: Report Electrical Isolation/Continuity and Coating Issues for Offshore Pipeline Cathodic Protection Systems 2005, NACE Int
2、ernational This NACE International technical committee report represents a consensus of those individual members who have reviewed this document, its scope, and provisions. Its acceptance does not in any respect preclude anyone from manufacturing, marketing, purchasing, or using products, processes,
3、 or procedures not included in this report. Nothing contained in this NACE International report is to be construed as granting any right, by implication or otherwise, to manufacture, sell, or use in connection with any method, apparatus, or product covered by Letters Patent, or as indemnifying or pr
4、otecting anyone against liability for infringement of Letters Patent. This report should in no way be interpreted as a restriction on the use of better procedures or materials not discussed herein. Neither is this report intended to apply in all cases relating to the subject. Unpredictable circumsta
5、nces may negate the usefulness of this report in specific instances. NACE International assumes no responsibility for the interpretation or use of this report by other parties. Users of this NACE International report are responsible for reviewing appropriate health, safety, environmental, and regula
6、tory documents and for determining their applicability in relation to this report prior to its use. This NACE International report may not necessarily address all potential health and safety problems or environmental hazards associated with the use of materials, equipment, and/or operations detailed
7、 or referred to within this report. Users of this NACE International report are also responsible for establishing appropriate health, safety, and environmental protection practices, in consultation with appropriate regulatory authorities if necessary, to achieve compliance with any existing applicab
8、le regulatory requirements prior to the use of this report. CAUTIONARY NOTICE: The user is cautioned to obtain the latest edition of this report. NACE International reports are subject to periodic review, and may be revised or withdrawn at any time without prior notice. NACE reports are automaticall
9、y withdrawn if more than 10 years old. Purchasers of NACE International reports may receive current information on all NACE International publications by contacting the NACE International Membership Services Department, 1440 South Creek Drive, Houston, Texas 77084-4906 (telephone +1 281 228-6200). F
10、oreword This state-of-the-art report provides owners, engineers, contractors, and operators with information on electrical isolation/continuity issues and coating issues to consider when designing and operating offshore pipeline cathodic protection (CP) systems. The detailed specifications for appli
11、cation of pipeline coatings are beyond the scope of this report, though it gives references to some specifications that are used. This report is a support document for the pipeline CP design standards. This technical committee report was prepared by Task Group (TG) 169 on Control of External Corrosi
12、on of Steel Pipelines in Natural Waters. TG 169 is administered by Specific Technology Group (STG) 30 on Oil and Gas ProductionCathodic Protection, and sponsored by STG 05 on Cathodic/Anodic Protection and STG 35 on Pipelines, Tanks, and Well Casings. This report is issued by NACE International unde
13、r the auspices of STG 30. _ * Chair Ian Rippon, Shell Global Solutions Intl. BV, Rijswijk, The Netherlands. Item No. 24228 NACE International Publication 30105 NACE technical committee reports are intended to convey technical information or state-of-the-art knowledge regarding corrosion. In many cas
14、es, they discuss specific applications of corrosion mitigation technology, whether considered successful or not. Statements used to convey this information are factual and are provided to the reader as input and guidance for consideration when applying this technology in the future. However, these s
15、tatements are not intended to be recommendations for general application of this technology, and must not be construed as such. NACE International 2 Definitions For the purposes of this report, the terms and definitions given in NACE International 2002 Glossary of Corrosion-Related Terms and the fol
16、lowing apply: Bracelet Anodes: Galvanic anodes with geometry suitable for direct attachment around the circumference of a pipeline. These may be half-shell bracelets consisting of two semi-circular sections or segmented bracelets consisting of a large number of individual anodes. Cathodic Protection
17、 (CP): A technique to reduce the corrosion of a metal surface by making that surface the cathode of an electrochemical cell. Coating: A liquid, liquefiable, or mastic composition that, after application to a surface, is converted into a solid protective, decorative, or functional adherent film. Coat
18、ing Disbondment: The loss of adhesion between a coating and the pipe surface. Corrosion: The deterioration of a material, usually a metal, that results from a reaction with its environment. Disbondment: The loss of adhesion between a coating and the substrate. Holiday: A discontinuity in a protectiv
19、e coating that exposes unprotected surface to the environment. Insulated: The subject (for example, a pipeline) is dielectrically insulated (or electrically isolated) from a related object. This does not refer to thermal insulation. J Tube: Piece of pipe attached to an offshore platform through whic
20、h a riser is run. The top of the J tube is above the splash zone, and the bottom ends somewhere between the bottom of the splash zone and the seabed. When the riser is installed it is pulled up through the J tube. The J tube provides protection to the riser from lateral forces and speeds up riser in
21、stallation. Riser: (1) That section of pipeline extending from the ocean floor up to an offshore platform. (2) The vertical tube in a steam generator convection bank that circulates water and steam upward. For the purposes of this report, the first definition applies. Shielding: (1) Protecting; prot
22、ective cover against mechanical damage. (2) Preventing or diverting cathodic protection current from its natural path. For the purposes of this report, the second definition applies. Splash Zone/Spray Zone: The area immediately above and below the waterline that, because of local conditions, remains
23、 wet or submerged the vast majority of the time. CP is not effective in the splash zone; protection by coatings, wear plates, etc., is typically used. Electrical Isolation/Continuity General Electrical isolation design and equipment are discussed in detail in NACE Standard RP0286.1Electrical isolati
24、on/continuity is generally considered when offshore CP system control is designed or assessed. Electrical isolation in a pipeline is normally accomplished by use of a dielectric insulation flange assembly, using an electrical isolation joint in the line, or other means whereby the pipeline is contin
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