Javascript must be enabled to continue!
Spiral Wound Line Pipe For Offshore Applications
View through CrossRef
Abstract
In certain parts of the world it is highly relevant to use spiral welded pipes for offshore applications. This is driven by cost, project characteristics and the desire to manufacture the pipe close to where it is to be used.
Spiral welded line pipe has been used extensively for onshore applications, however there has been some reluctance to specify spiral welded line pipe for offshore applications. A joint industry project is beeing carried out together with coil manufacturers, pipe manufacturers, installation contractors and operators to review the status regarding offshore applications for spiral welded pipes and identify the most critical technology gaps using a technology qualification process. Detailed suggestions as to how the gaps can be met have been made. An update on efforts to close these gaps is ongoing.
The challenges for spiral welded line pipe include design, metallurgical and quality control issues. The design issues include fracture arrest, collapse and displacement controlled loading conditions which are all highlighted in DNVs standard for submarine pipelines (DNV OS F101). The design issues regarding load controlled displacement are mainly due to limited experience with spiral welded line pipe subjected to large strains. For running fracture the limited experience with spiral welded pipe for offshore applications is an issue.
There are 5 new spiral welded pipe mills in United States so availability has improved. The review includes an assessment of typical pipe material test results and whether properties required for offshore applications can reasonably be expected.
Introduction
Det Norske Veritas (U.S.A.), Inc. (DNV) and MCSKenny are carrying out a joint industry project (JIP) to investigate the suitability of spiral welded pipe for offshore applications.
It appears that the industry has a general understanding that the performance of spiral welded (SAWH) pipes is different to Submerge Arc Welded (SAWL)/ High Frequency Welded(HFI)/ Electric Resistance Welded ERW linepipe when exposed to the same loading conditions, and that currently existing design standards for offshore applications may not be applicable. An important issue is to establish how the spiral wound linepipe can be produced consistently to a high level of quality, and what is required by the design standard for spiral welded pipe to be fit for purpose for offshore use. Some of the main areas of concern regarding the quality of spiral wound linepipe will be discussed. The aim is to assess whether SAWH linepipe can be considered equivalent to SAWL and HFI/ERW linepipe.
The use of spiral welded linepipe (SAWH) for pipelines has generally been the most popular manufacturing choice of linepipe for onshore low pressure pipelines, pipelines transporting water, ship borne piping, or very shallow water, low pressure pipelines (= 500 ft).
Recently there has been more interest in the use of spiral wound linepipe, due to the following reasons:There are five new SAWH pipe mills in America with "state-of-the-art" technology.SAWH linepipe is a cost-effective solution compared to the other manufacturing processes.Generally, the chemical compositions, mechanical properties and dimensional tolerances are assumed to be comparable to SAWL pipe.SAWH linepipe can be manufactured in 80 ft lengths with diameters from 20 to more than 100-inch OD and wall thicknesses ranging from approximately 9 to 25 mm.Some SAWH pipe mills have coating capabilities for 80 ft pipe lengths (FBE and 3-layer coating systems). 80 ft pipe lengths could mean less fabrication costs for the installation contractors.
Title: Spiral Wound Line Pipe For Offshore Applications
Description:
Abstract
In certain parts of the world it is highly relevant to use spiral welded pipes for offshore applications.
This is driven by cost, project characteristics and the desire to manufacture the pipe close to where it is to be used.
Spiral welded line pipe has been used extensively for onshore applications, however there has been some reluctance to specify spiral welded line pipe for offshore applications.
A joint industry project is beeing carried out together with coil manufacturers, pipe manufacturers, installation contractors and operators to review the status regarding offshore applications for spiral welded pipes and identify the most critical technology gaps using a technology qualification process.
Detailed suggestions as to how the gaps can be met have been made.
An update on efforts to close these gaps is ongoing.
The challenges for spiral welded line pipe include design, metallurgical and quality control issues.
The design issues include fracture arrest, collapse and displacement controlled loading conditions which are all highlighted in DNVs standard for submarine pipelines (DNV OS F101).
The design issues regarding load controlled displacement are mainly due to limited experience with spiral welded line pipe subjected to large strains.
For running fracture the limited experience with spiral welded pipe for offshore applications is an issue.
There are 5 new spiral welded pipe mills in United States so availability has improved.
The review includes an assessment of typical pipe material test results and whether properties required for offshore applications can reasonably be expected.
Introduction
Det Norske Veritas (U.
S.
A.
), Inc.
(DNV) and MCSKenny are carrying out a joint industry project (JIP) to investigate the suitability of spiral welded pipe for offshore applications.
It appears that the industry has a general understanding that the performance of spiral welded (SAWH) pipes is different to Submerge Arc Welded (SAWL)/ High Frequency Welded(HFI)/ Electric Resistance Welded ERW linepipe when exposed to the same loading conditions, and that currently existing design standards for offshore applications may not be applicable.
An important issue is to establish how the spiral wound linepipe can be produced consistently to a high level of quality, and what is required by the design standard for spiral welded pipe to be fit for purpose for offshore use.
Some of the main areas of concern regarding the quality of spiral wound linepipe will be discussed.
The aim is to assess whether SAWH linepipe can be considered equivalent to SAWL and HFI/ERW linepipe.
The use of spiral welded linepipe (SAWH) for pipelines has generally been the most popular manufacturing choice of linepipe for onshore low pressure pipelines, pipelines transporting water, ship borne piping, or very shallow water, low pressure pipelines (= 500 ft).
Recently there has been more interest in the use of spiral wound linepipe, due to the following reasons:There are five new SAWH pipe mills in America with "state-of-the-art" technology.
SAWH linepipe is a cost-effective solution compared to the other manufacturing processes.
Generally, the chemical compositions, mechanical properties and dimensional tolerances are assumed to be comparable to SAWL pipe.
SAWH linepipe can be manufactured in 80 ft lengths with diameters from 20 to more than 100-inch OD and wall thicknesses ranging from approximately 9 to 25 mm.
Some SAWH pipe mills have coating capabilities for 80 ft pipe lengths (FBE and 3-layer coating systems).
80 ft pipe lengths could mean less fabrication costs for the installation contractors.
Related Results
Optimized Design of Pipe-in-Pipe Systems
Optimized Design of Pipe-in-Pipe Systems
Abstract
Deepwater subsea developments must address the flow assurance issues and increasingly these are forming a more critical part of the design. Pipe-in-pipe ...
Clad Steel Pipe for Corrosive Gas Transportation
Clad Steel Pipe for Corrosive Gas Transportation
ABSTRACT
This paper describes the applicability and reliability Of clad steel pipe and its welds in sour gas environments in comparison with those of 22%Cr-5.5%Ni...
Pipe-in-Pipe Swaged Field Joint for Reel Lay
Pipe-in-Pipe Swaged Field Joint for Reel Lay
Abstract
Subsea 7 and ITP InTerPipe (ITP) have developed a highly efficient Pipe in Pipe technology to be installed by the Reel-Lay method. This solution is based...
HDPE Cooling Water Pipe for Power Generation
HDPE Cooling Water Pipe for Power Generation
Cooling water pipe systems are a critical part of a power generation plant. If the cooling water pipe fails, the whole plant may shut down. Due to its high tensile strength steel p...
Impeller Matched Spiral Casing Design for Centrifugal Fans and Blowers
Impeller Matched Spiral Casing Design for Centrifugal Fans and Blowers
For particular applications, like large fans for thermal energy facilities making energy from waste, very special designs are needed for the impeller and the volute in order to acc...
Preparation and Performance Evaluation of Erosion Resistant Lining of Bimetallic Composite Pipe
Preparation and Performance Evaluation of Erosion Resistant Lining of Bimetallic Composite Pipe
Abstract
Erosion widely exists in oil and gas production and transmission pipelines, which seriously affects the service life of pipelines. Ordinary carbon steel pip...
Overtrawlability and Mechanical Damage of Pipe-in-Pipe
Overtrawlability and Mechanical Damage of Pipe-in-Pipe
A pipeline on the seabed may be struck by moving trawl gear, and that may damage the pipeline. Trenching can be a useful but expensive way to protect the pipeline. Pipe-in-pipe and...
Predicting Motions Of Long Towed Pipe String
Predicting Motions Of Long Towed Pipe String
ABSTRACT
A technique for predicting the motions during maneuvering of long towed pipe strings is presented. The numerical procedure is validated by comparing nume...

