Hydraulic Excavation Around a Pipeline Buried Under Shallow Water
20200080282 ยท 2020-03-12
Inventors
Cpc classification
E02F3/9206
FIXED CONSTRUCTIONS
E02D19/12
FIXED CONSTRUCTIONS
E02F5/006
FIXED CONSTRUCTIONS
E02F5/10
FIXED CONSTRUCTIONS
International classification
E02D19/12
FIXED CONSTRUCTIONS
Abstract
A hydraulic excavation apparatus may be used for providing access to a pipeline buried under shallow water or in wetland locations, for example, in order to install an electro-mechanical clamp on the pipeline. This clamp can then be used for connecting externals anodes to the pipeline, for monitoring the level of corrosion protection of the pipeline, or for any other purpose.
Claims
1. A system for excavating soil around and above a pipeline buried under shallow water, the system comprising: a hydraulic excavation apparatus including: an enclosure wall having an inverted-U cutout at the bottom of each of two opposite portions of the enclosure wall; water jetting pipes; and hydraulic evacuation pipes; a floating vessel including: a hoisting system configured to lower and raise the hydraulic excavation apparatus through a retainer mounted on the floating vessel; a pressure jetting pump configured to fluidize soil by generating pressure jets at ends of the water jetting pipe; and a dredging pump configured to evacuate fluidized soil from inside the enclosure wall through the hydraulic evacuation pipes.
2. The system of claim 1, wherein the hydraulic excavation apparatus further includes a guide frame extending from the top of the enclosure wall.
3. A method for excavating soil around and above a pipeline buried under shallow water, the method comprising: providing a hydraulic excavation apparatus including: an enclosure wall having an inverted-U cutout at the bottom of each of two opposite portions of the enclosure wall; a guide frame extending from the top of the enclosure wall; water jetting pipes; and hydraulic evacuation pipes; lowering and raising the hydraulic excavation apparatus; fluidizing soil by generating with a pressure jetting pump pressure jets at ends of the water jetting pipe; and evacuating with a dredging pump fluidized soil from inside the enclosure wall through the hydraulic evacuation pipes.
4. The method of claim 3, further comprising effecting an electrical connection between an electro-mechanical clamp and the pipeline.
5. The method of claim 3, wherein the hydraulic excavation apparatus is lowered and raised through a retainer mounted on a floating vessel.
6. A hydraulic excavation apparatus including: an enclosure wall having an inverted-U cutout at the bottom of each of two opposite portions of the enclosure wall; a guide frame extending from the top of the enclosure wall; water jetting pipes, each water jetting pipe having an end located adjacent to a bottom end of the enclosure wall, each water jetting pipe being terminated by a first water jet nozzle; and hydraulic evacuation pipes, each hydraulic evacuation pipe including a port that is positioned near the bottom end of the enclosure wall, wherein the inverted-U cutout is formed in panels releasably secured to a portion of the enclosure wall attached to the guide frame.
7. The hydraulic excavation apparatus of claim 6, wherein at least one water jetting pipe further includes a second water jet nozzle located along the at least one water jetting pipe and configured to generate a pressure jet directed essentially horizontally, and wherein the first water jet nozzle is configured to generate a pressure jet directed essentially vertically.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] For a more detailed description of the embodiments of the disclosure, reference will now be made to the accompanying drawings, wherein:
[0012]
[0013]
[0014]
[0015]
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[0017]
DETAILED DESCRIPTION
[0018] It is to be understood that the following disclosure describes several exemplary embodiments for implementing different features, structures, or functions of the invention. Exemplary embodiments of components, arrangements, and configurations are described below to simplify the disclosure; however, these exemplary embodiments are provided merely as examples and are not intended to limit the scope of the invention. Additionally, the disclosure may repeat reference numerals and/or letters in the various exemplary embodiments and across the Figures provided herein. This repetition is for the purpose of simplicity and clarity and does not in itself dictate a relationship between the various exemplary embodiments and/or configurations discussed in the various Figures. Finally, the exemplary embodiments presented below may be combined in any combination of ways, i.e., any element from one exemplary embodiment may be used in any other exemplary embodiment, without departing from the scope of the disclosure.
[0019] The disclosure describes a hydraulic excavation apparatus that may be used for providing access to a pipeline buried under shallow water or in wetland locations, for example, in order to install an electro-mechanical clamp on the pipeline. This clamp can then be used for connecting externals anodes to the pipeline, for monitoring the level of corrosion protection of the pipeline, or for any other purpose.
[0020] Referring to
[0021] The hydraulic excavation apparatus 10 also comprises water jetting pipes 16 that may be attached inside the enclosure wall 12. The water jetting pipes 16 are connected to the outlet of a pump or pumps, for example, the pressure jetting pump 30 (shown in
[0022] The hydraulic excavation apparatus 10 also comprises hydraulic evacuation pipes 26 that may be attached inside the enclosure wall 12. The hydraulic evacuation pipes 26 may have a larger diameter than the water jetting pipes 16. Each hydraulic evacuation pipe 26 may include a single port 40 that is positioned near the bottom of the enclosure wall 12. These hydraulic evacuation pipes 26 are connected to the suction side of a pump or pumps, such as the dredging pump 32 (shown in
[0023] Referring to
[0024] Referring to
[0025] The pressure jetting pump 30 and the dredging pump 32, provided on the deck of the floating vessel 34 are connected by hoses (also numbered 16 and 26) to the water jetting pipes 16 and to hydraulic evacuation pipes 26, respectively, to provide hydraulic jetting and hydraulic evacuation capability. The guide frame 18, which extends from the top of the enclosure wall 12, is maintained vertical by the gantry 36 during deployment. The hydraulic excavation apparatus 10 may be deployed through a rectangular hole in the deck. The hydraulic excavation apparatus 10 is lowered to the mudline ML and/or raised on a floating vessel 34 by a hoisting system 14 mounted on the gantry 36. For example, the hoisting system 14 may include a pair of manual hoists on the sides of the gantry 36. Accordingly, the hoisting system 14 allows an operator to raise and lower the hydraulic excavation apparatus 10.
[0026] Once landed on the mudline ML, the hydraulic excavation apparatus 10 uses a combination of hydraulic jetting and hydraulic evacuation to excavate the soil inside the enclosure wall 12, which also allows the enclosure wall 12 to sink into the soil until it surrounds the pipeline 20.
[0027] Referring to
[0028] A water-filled volume or cavity is created around the pipeline 20 whereby the top and sides of the pipeline 20 are accessible. An electro-mechanical clamp can then be manually lowered through the open top of the enclosure wall 12 and easily installed on the pipeline 20. The guide frame 18 may provide visual guidance to the operators during installation of the electro-mechanical clamp.
[0029] Referring to
[0030] While the disclosure is susceptible to various modifications and alternative forms, specific embodiments thereof are shown by way of example in the drawings and description. It should be understood, however, that the drawings and detailed description thereto are not intended to limit the claims to the particular form disclosed, but on the contrary, the intention is to cover all modifications, equivalents, and alternatives falling within the scope of the claims.