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ASTM A523 - STANDARD SPECIFICATION FOR PLAIN END SEAMLESS AND ELECTRIC-RESISTANCE-WELDED STEEL PIPE FOR HIGH-PRESSURE PIPE-TYPE CABLE CIRCUITS Organization: ASTM
Date: 1996-10-10
Description: This specification covers seamless and electricresistance- welded steel pipe used as conduit for the installation of high-pressure pipe-type electrical cables in NPS 4 to NPS 12, inclusive, with nominal (average) wall thicknesses 0.219 to 0.562 in., depending on size.
NPFC - MIL-S-24235/10 - STUFFING TUBES, METAL, AND PACKING ASSEMBLIES FOR ELECTRIC CABLES, STEEL, FOR DECKS AND BULKHEADS WITHOUT PIPE PROTECTION Organization: NPFC
Date: 1992-12-28
Description: The stuffing tubes are intended for electric cable penetrations of decks and bulkheads on surface ships.
NPFC - MIL-S-24235/9 - STUFFING TUBES, METAL, AND PACKING ASSEMBLIES FOR ELECTRIC CABLES, BRASS AND STEEL, FOR DECKS AND BULKHEADS WITH PIPE PROTECTION Organization: NPFC
Date: 1992-12-28
Description: This specification is approved for use by the Naval Sea Systems Command, Depa...
NPFC - MIL-S-24235/17 - STUFFING TUBES, METAL, AND PACKING ASSEMBLIES FOR ELECTRIC CABLES, SWAGE TYPE, STEEL AND ALUMINUM, FOR DECK AND BULKHEADS WITH PIPE PROTECTION Organization: NPFC
Date: 1992-12-28
Description: The stuffing tubes are for electric cable penetrations of surface ships deck and bulkheads where pipe protection is require (see DOD-STD-2003).
NPFC - MIL-S-24235/18 - STUFFING TUBES, METAL, AND PACKING ASSEMBLIES FOR ELECTRIC CABLES, SWAGE TYPE, REDUCED DIAMETER, STEEL AND ALUMINUM, FOR DECK AND BULKHEADS WITH PIPE PROTECTION Organization: NPFC
Date: 1992-12-28
Description: The stuffing tubes are for electric cable penetrations of surface ships deck and bulkheads where pipe protection is required (see DOD-STD-2003).
PPI TR-47 - PIPE STIFFNESS AND FLATTENING TESTS IN COILABLE HDPE CONDUIT; AND ITS RELATIONSHIP TO BURIAL DEPTH IN CONDUIT APPLICATIONS Organization: PPI
Date: 2011-05-01
Description: Buried cables installed in conduit provide long term and improved protection from damage caused by storms and vandalism when compared to aerial cables. Conduit also extends the life and reliability of underground cables by providing added protection from ground movement or poor soil conditions.
DS/EN 4113 - AEROSPACE SERIES - CLAMPS, LOOP (''P'' TYPE) IN CORROSION RESISTING STEEL, PASSIVATED WITH RUBBER CUSHIONING - DIMENSIONS, MASSES Organization: DS
Date: 2009-11-09
Description: These clamps are used for supporting aerospace pipe assemblies and electrical cable bundles. For temperature range and environmental considerations see the various cushion material standards.
NBN - EN 4113 - AEROSPACE SERIES - CLAMPS, LOOP (''P'' TYPE) IN CORROSION RESISTING STEEL, PASSIVATED WITH RUBBER CUSHIONING - DIMENSIONS, MASSES Organization: NBN
Date: 2009-12-16
Description: These clamps are used for supporting aerospace pipe assemblies and electrical cable bundles.For temperature range and environmental considerations see the various cushion material standards.
NBN - EN 4113 - AEROSPACE SERIES - CLAMPS, LOOP (''P'' TYPE) IN CORROSION RESISTING STEEL, PASSIVATED WITH RUBBER CUSHIONING - DIMENSIONS, MASSES Organization: NBN
Date: 2009-12-16
Description: These clamps are used for supporting aerospace pipe assemblies and electrical cable bundles.For temperature range and environmental considerations see the various cushion material standards.
SNV - SN EN 4113 - AEROSPACE SERIES - CLAMPS, LOOP (''P'' TYPE) IN CORROSION RESISTING STEEL, PASSIVATED WITH RUBBER CUSHIONING - DIMENSIONS, MASSES Organization: SNV
Date: 2010-02-01
Description: These clamps are used for supporting aerospace pipe assemblies and electrical cable bundles. For temperature range and environmental considerations see the various cushion material standards.
VA 26 42 00 - CATHODIC PROTECTION Organization: VA
Date: 2009-04-01
Description: Insulators are required whenever needed to insulate the pipes from any other structure. Any pipe crossing the // // pipe shall have a test station.
DNVGL RU & GUIDE VI-7-4 - VI-RULES FOR CLASSIFICATION AND CONSTRUCTION ADDITIONAL RULES AND GUIDELINES PART 7-GUIDELINES FOR THE PERFORMANCE OF TYPE APPROVALS CHAPTER 4-TEST REQUIREMENTS FOR SEALING SYSTEMS OF BULKHEAD AND DECK PENETRATIONS - EDITION JULY 2015 Organization: DNVGL
Date: 2016-01-01
Description: However, renewal of existing type approval certificates without retesting may be carried out provided that the test report is not more than 15 years old at the date of application for renewal and that no alteration of components or construction has been made to the product A Type Approval is not required if the pipe penetration is made of steel or equivalent material having a thickness of 3 mm or greater and a length of not less than 900 mm (preferably 450 mm on each side of the division), and no openings.
BSI - BS EN 50162 - PROTECTION AGAINST CORROSION BY STRAY CURRENT FROM DIRECT CURRENT SYSTEMS Organization: BSI
Date: 2005-01-19
Description: Systems which may be affected by stray currents include buried or immersed metal structures such as: a) pipelines; b) metal sheathed cables; c) tanks and vessels; d) earthing systems; e) steel reinforcement in concrete; f) steel piling.
NACE TM0109 - ABOVEGROUND SURVEY TECHNIQUES FOR THE EVALUATION OF UNDERGROUND PIPELINE COATING CONDITION - ITEM NO. 21254 Organization: NACE
Date: 2009-03-21
Description: The items in the list are not intended to address all possible variables that may affect applicability of a technique to a specific pipe section: Pipeline diameter and pipe-wall thickness, fluid transmitted, temperature, direction of flow, and operating pressure; Pipeline coating type, age, and whether pipeline/sections are under concrete; Route maps and cathodic protection records, when available; Whether or not in-line inspection (ILI) correlation point locations are used together with global positioning system (GPS) information to compare known aboveground and underground survey data; Pipeline depth-of-cover and soil type; Whether or not the pipeline section is under frozen ground; Right-of-way (ROW) condition, including ground cover above the pipeline such as pavement, concrete, wetlands, bodies of water, and rocky terrain; Location, separation distance, and electrical isolation condition of metallic structures adjacent to the pipeline; Location, separation distance, and electrical isolation condition of underground parallel pipelines in the pipeline ROW; Location and electrical isolation condition of casings; Location, type, and status of CP systems influencing the pipeline section; Location of foreign CP systems influencing the pipeline section; Location and status of CP test points; Location and status of electrical isolation from aboveground features, such as valves and piping in compressor or pump stations, and electrical grounding; Location of overhead high-voltage AC transmission lines parallel to or crossing the pipeline ROW; Location of buried power cables parallel to or crossing the pipeline ROW; and Location and influence, if known, of DC traction systems, industrial facilities utilizing DC induction or welding equipment, or overhead DC power lines parallel to or crossing the pipeline ROW.

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