This invention relates generally to apparatuses and methods for servicing piping and pipelines. More particularly, the invention relates to foam pigs which are inserted into the interior of a pipeline and are moved through the pipeline under differential pressure.
Foam pigs—made of plastic, polyurethane, or rubber material—are well known in the pipeline industry. Foam pigs, which are used for light duty cleaning of interior of pipes, are pre-formed and normally inserted into and removed from the pipeline at their full diameter through an access connection located at both ends of the pipeline. However, many applications arise that require a pig to be inserted and run mid-way of a pipeline section or into a pipeline section for which no same-sized pig launching system exits. These applications require expensive installation of pigging equipment. Additionally, for large diameter pipelines if the access connection for the foam pig must be substantially the same size as that of the pipeline, significantly greater cost is incurred by the pipeline operator in installing that access connection. A need exists for a foam pig that can be inserted through a significantly smaller diameter access connection—which opens into a much larger diameter pipeline—without incurring damage to the foam pig during the insertion process and reduces the cost associated with the installation of conventional pigging equipment.
This invention relates to a method and system for inserting or injecting a large diameter, preformed foam (slug) pig through a small diameter opening in a pipe or pipeline when the pipeline contains a pressurized product flow. The method includes the step of reducing the size or volume of the large diameter foam pig so that it can reside within a small diameter canister—or within a vacuum-packed bag housed within the canister—and injecting the reduced volume pig from the canister, through an access connection or branch fitting to the pipeline, and into an interior space of the larger diameter pipeline. As the foam pig is forced out of the canister and extruded into the interior space of the pipeline, the foam pig begins to significantly expand in diameter and volume and turns and travels downstream of the branch fitting, thereby reforming itself into its original (preferably cylindrical) shape, volume, and diameter and conforming to the pipeline. The method further includes the step of equalizing pressure between the branch fitting and the pipeline prior to the insertion step.
A system for inserting the foam pig into a pipeline includes a means for significantly reducing the volume of a large diameter foam pig prior to it being deposited into the pipeline so that the foam pig can reside within a small diameter canister connected to an access connection or branch fitting of the pipeline. The system also includes a means for injecting this reduced volume foam pig into the interior space of the pipeline. The injection means may be a mechanical, hydraulic or pneumatic ram, or differential pressure, or some combination thereof. One or more sandwich-style valves may be interposed between the ram and a pipe or canister containing the foam pig material and between the canister and the branch fitting of the pipeline. Means are provided for equalizing pressure between the branch fitting and the pressurized product flow prior to injecting the foam pig from the canister into the pipeline.
An object of this invention is to effectively introduce a large diameter foam pig into a pipeline through a significantly smaller diameter opening to the pipeline in order to clean the pipeline or separate product (or both). Another object of this invention is to provide an expandable foam pig that is pre-formed but significantly reduced in volume by vacuum packing or other means prior to its insertion into the pipeline. Yet another object of this invention is to introduce the foam pig in a pipeline containing a pressurized product flow. Still yet another object of this invention is to provide a means for injecting the form pig into the pipeline. A further object of this invention is to provide a foam pig that requires substantially less space to transport to the job site as compared to the final volume and size of the pig when deployed in the main pipeline. Another object of this invention is to provide a foam pig that requires a relatively small-diameter access connection as compared to the diameter of the main pipeline. Still yet another object of this invention is to provide a less expensive installation for inserting a foam pig into a section of pipeline having no pre-existing access connection or existing but smaller branch fitting connections. Another object of this invention is to provide a foam pig system that could be used in place of gel pigs. A final object of this invention is to provide a foam pig that returns to its original shape, volume, and diameter while residing in the pipeline
Preferred embodiments of a method and system for inserting a foam pig into a tubular member, such as a pipe or pipeline, when the tubular member contains a pressurized product flow will now be described by making reference to the drawings and the following elements illustrated in the drawings:
Referring to the drawings and first to
Canister 30 may be pre-loaded with foam pig 50 and transported to the job site as a complete unit or foam pig 50 may be transported independent of canister 30 and loaded into the canister 30 at the job site. Foam pig 50 is made of a foam material well known in the art for forming foam pigs. Canister 30 may be specifically sized to accommodate foam pig 50 and based upon such factors as the relationship between diameter DT of tubular member 10 and diameter DA of branch fitting 22, the desired finished size and length of the foam pig 50 (see
Referring to
As ram 42 begins its downward travel, foam pig 50 is forced downward and through access hole 24. A bag punch or ripper 33 may be located at a lower end of branch fitting 12 to puncture bag 32 (if used) and allow foam pig 50 to be released from bag 32. (Alternatively, bag 32 may be punctured prior to its insertion into canister 30.) As foam pig 50 is extruded into or enters interior space 26, it begins to expand substantially instantaneously and toward the inner walls of tubular member 20. Because of the pressurized product flow flowing through interior space 26, as foam pig 50 expands it also turns and travels downstream of access hole 24. If tubular member 20 contains no product flow, means for directing foam pig 50 downstream of access hole 24, such as a shoe horn-type arrangement (not shown), must be provided.
Referring now to
While a method and system for inserting a foam pig into a tubular member has been described with a certain degree of particularity, many changes may be made in the details of construction and the arrangement of components without departing from the spirit and scope of this disclosure. A method and system according to this disclosure, therefore, is limited only by the scope of the attached claims, including the full range of equivalency to which each element thereof is entitled.