SANS 15589-1-2009 Petroleum and natural gas industries - Cathodic protection of pipeline transportation systems Part 1 On-land pipelines《石油和天然气工业 管道运输系统的阴极保护 第1部分 陆地管线》.pdf
《SANS 15589-1-2009 Petroleum and natural gas industries - Cathodic protection of pipeline transportation systems Part 1 On-land pipelines《石油和天然气工业 管道运输系统的阴极保护 第1部分 陆地管线》.pdf》由会员分享,可在线阅读,更多相关《SANS 15589-1-2009 Petroleum and natural gas industries - Cathodic protection of pipeline transportation systems Part 1 On-land pipelines《石油和天然气工业 管道运输系统的阴极保护 第1部分 陆地管线》.pdf(52页珍藏版)》请在麦多课文档分享上搜索。
1、 Collection of SANS standards in electronic format (PDF) 1. Copyright This standard is available to staff members of companies that have subscribed to the complete collection of SANS standards in accordance with a formal copyright agreement. This document may reside on a CENTRAL FILE SERVER or INTRA
2、NET SYSTEM only. Unless specific permission has been granted, this document MAY NOT be sent or given to staff members from other companies or organizations. Doing so would constitute a VIOLATION of SABS copyright rules. 2. Indemnity The South African Bureau of Standards accepts no liability for any
3、damage whatsoever than may result from the use of this material or the information contain therein, irrespective of the cause and quantum thereof. ISBN 978-0-626-23111-8 SANS 15589-1:2009Edition 1ISO 15589-1:2003Edition 1SOUTH AFRICAN NATIONAL STANDARD Petroleum and natural gas industries Cathodic p
4、rotection of pipeline transportation systems Part 1: On-land pipelines This national standard is the identical implementation of ISO 15589-1:2003 and is adopted with the permission of the International Organization for Standardization. Published by SABS Standards Division 1 Dr Lategan Road Groenkloo
5、f Private Bag X191 Pretoria 0001Tel: +27 12 428 7911 Fax: +27 12 344 1568 www.sabs.co.za SABS SANS 15589-1:2009 Edition 1 ISO 15589-1:2003 Edition 1 Table of changes Change No. Date Scope National foreword This South African standard was approved by National Committee SABS SC 59H, Construction Stand
6、ards Buried or immersed metal structures, in accordance with procedures of the SABS Standards Division, in compliance with annex 3 of the WTO/TBT agreement. This SANS document was published in July 2009. This preamble outlines certain characteristics of the South African pipeline network which diffe
7、r slightly from other countries and should be taken into account when using this standard. In South Africa, due to long distances and extensive stray currents, all buried metallic pipelines (including water, oil, gas and other hazardous pipelines) need to be protected against external corrosion by t
8、he application of an external coating and cathodic protection (CP). Materials of construction which include metallic components (such as reinforced or pre-stressed concrete) also require careful consideration in this regard. As a result of the significant stray current interference from the DC tract
9、ion railway system and other CP systems, it is not always possible to achieve the criterion of -1200 mV Cu/CuSO4as the most negative limit of polarized potential on a pipeline. In new installations, due consideration should be given to coating selection to avoid detrimental effects of high negative
10、potentials discussed in this standard. The South African experience has shown that electrical isolation at rail crossings is not effective for stray current mitigation and should only be considered on aboveground installations. Similarly, buried pipelines should be electrically continuous in stray c
11、urrent environments, rather than being made electrically discontinuous. Insulating flanges should be colour coded red and clearly marked for safety reasons. Caution should be exercised in the use of any insulating flanges in aggressive stray current environments due to the possibility of electrolyti
12、c corrosion either side of the insulating flange. In aggressive stray current environments, the practice of bonding adjacent structures to form a common cathode has proved to be an effective means of providing protection and limiting interference. In aggressive stray current environments corrective
13、action where required should be implemented as soon as possible. Due to the presence of stray currents, corrosion of buried structures can happen very quickly, even during construction. For this reason, the application of effective temporary cathodic protection during construction is a vital activit
14、y. No pipe should be buried, without temporary CP. A suitable monitoring programme of the temporary CP should be implemented and maintained throughout the construction period, until the permanent CP system is energized. Monitoring of temporary CP during construction is an onerous and time consuming
15、activity which is critical to the long term integrity of the pipeline. CP infrastructure and components should be designed to be vandal proof. SANS 15589-1:2009 Edition 1 ISO 15589-1:2003 Edition 1 Due cognizance should be taken of the effect of stray currents on the accuracy of overline surveys, an
16、d survey procedures may need to be modified to take these effects into account. For close interval potential surveys, static recorders should be installed simultaneously at test points where the trailing cable is connected to monitor the effect of stray currents. For DCVG surveys, simultaneous readi
17、ngs of the signal strength at test points, as well as the overline to remote earth readings need to be taken to compensate for the effects of stray currents. The methodology for determining the severity of coating defects should be modified for the effects of stray currents otherwise the values will
18、 be incorrect. As the quality of coatings improves, the effects of induced AC on pipelines which are cathodically protected are becoming more significant, both from a safety and corrosion point of view. Due consideration needs to be given to the effective draining of the AC from buried pipelines. Th
19、e use of sacrificial anodes, such as zinc, for draining of AC from buried pipelines needs to be carefully considered under stray current conditions as these anodes can act as current collectors. Software for mathematical modelling of CP systems and AC mitigation is an emerging field and can be usefu
20、l under certain defined conditions, but due cognizance should be taken of the limitations of the models. Reference numberISO 15589-1:2003(E)ISO 2003INTERNATIONAL STANDARD ISO15589-1First edition2003-11-15Petroleum and natural gas industries Cathodic protection of pipeline transportation systems Part
21、 1: On-land pipelines Industries du ptrole et du gaz naturel Protection cathodique des systmes de transport par conduites Partie 1: Conduites terrestres SANS 15589-1:2009This s tandard may only be used and printed by approved subscription and freemailing clients of the SABS .ISO 15589-1:2003(E) PDF
22、disclaimer This PDF file may contain embedded typefaces. In accordance with Adobes licensing policy, this file may be printed or viewed but shall not be edited unless the typefaces which are embedded are licensed to and installed on the computer performing the editing. In downloading this file, part
23、ies accept therein the responsibility of not infringing Adobes licensing policy. The ISO Central Secretariat accepts no liability in this area. Adobe is a trademark of Adobe Systems Incorporated. Details of the software products used to create this PDF file can be found in the General Info relative
24、to the file; the PDF-creation parameters were optimized for printing. Every care has been taken to ensure that the file is suitable for use by ISO member bodies. In the unlikely event that a problem relating to it is found, please inform the Central Secretariat at the address given below. ISO 2003 A
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