Device for Removal of Sediment From Inside Piles
20200306803 ยท 2020-10-01
Inventors
Cpc classification
B08B9/0433
PERFORMING OPERATIONS; TRANSPORTING
E02D5/32
FIXED CONSTRUCTIONS
B08B9/00
PERFORMING OPERATIONS; TRANSPORTING
E02D7/28
FIXED CONSTRUCTIONS
B08B13/00
PERFORMING OPERATIONS; TRANSPORTING
E02F5/00
FIXED CONSTRUCTIONS
International classification
B08B9/00
PERFORMING OPERATIONS; TRANSPORTING
B08B1/00
PERFORMING OPERATIONS; TRANSPORTING
B08B13/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Device for removal of sediment from inside piles being at least partly immersed in water, comprising an outer guiding unit arranged to be temporarily positioned on the top of a pile. The outer guiding unit envelopes at least one inner dredging unit being arranged to be lowered from within the outer guiding unit, the inner dredging unit at its lower end exhibiting movable jet nozzles arranged to loosen sediment. The inner dredging unit furthermore comprises a central passage which is connected to a discharge hose arranged to transport loosened sediment therefrom.
Claims
1-20. (canceled)
21. A device (10) for removal of sediment from inside piles (40) which are at least partially immersed in water, comprising an outer guiding unit (11) adapted for temporary positioning on top of a pile, at least one inner dredging unit (12) enveloped by the outer guiding unit and configured to be lowered from the outer guiding unit (11), wherein the inner dredging unit (12) has a lower end comprising movable jet nozzles (34) arranged to loosen sediment, and the dredging unit (12) comprises a central passage (35) in communication with a discharge hose (16) arranged to transport loosened sediment therefrom.
22. The device (10) as claimed in claim 21, wherein the outer guiding unit has a lower end with at least one attachment member (111) configured for attaching a hollow pile top.
23. The device (10) as claimed in claim 21, comprising at least one foot (33) on which the movable jet nozzles (34) are arranged, wherein movement of the nozzles (34) is provided by one or more from the group consisting of: i) nozzles being movable in relation to the foot (33), ii) the foot (33) being at least partly pivotal, and iii) the dredging unit (12) being pivotal in relation to the guiding unit (11).
24. The device (10) as claimed in claim 23, wherein the inner dredging unit (12) is configured to be moved vertically up and down independent from the operation of the nozzles (34).
25. The device (10) as claimed in claim 23, wherein the foot (33) is configured to be rotated either continuously in one rotational direction or to be rotated back and forth within a predetermined angular path.
26. The device (10) as claimed in claim 21, wherein water to the nozzles (34) is charged through swivels or flexible hoses.
27. The device (10) as claimed in claim 21, wherein the jet nozzles (34) receive water from at least one water pump (17, 19) in the inner dredging unit (12).
28. The device (10) as claimed in claim 23, wherein the foot (33) has a cross-section that is either a circular disc or plurality of extending arms.
29. The device (10) as claimed in claim 23, wherein the dredging unit (12) includes teeth (36) configured to mechanically loosen sediment.
30. The device (10) as claimed in claim 29, wherein the teeth (36) are moveable by being attached to a pivotal foot (33).
31. The device (10) as claimed in claim 21, comprising a source of at least one of electric energy and hydraulic energy.
32. The device (10) as claimed in claim 21, wherein the inner dredging unit (12) comprises an ejector pump (18) for inducing a suction force in the discharge hose (16).
33. The device (10) as claimed in claim 21, comprising a water pump (17), wherein the inner dredging unit (12) comprises lateral cleaning nozzles for receiving water from the water pump (17).
34. The device (10) as claimed in claim 22, comprising a rotatable part (30) that includes the foot (33) and a cleaning disc (31) provided with lateral cleaning nozzles that receive water from a water pump (17).
35. The device (10) as claimed in claim 34, wherein the rotatable part (30) comprises brushes arranged to brush internal walls of a pile (40).
36. The device (10) as claimed in claim 27, wherein the inner dredging unit (12) comprises a high-pressure or ultrahigh-pressure pump (19) configured to provide water to separate jet nozzles (34) at a pressure greater than that provided by the water pump (17), wherein the pressure provided by the high-pressure or ultrahigh-pressure pump (19) is greater than 100 bar.
37. The device (10) as claimed in claim 23, wherein the pivotal foot (33) is turned by a motor (20) that is powered either electrically or hydraulically.
38. The device (10) as claimed in claim 21, wherein the inner dredging unit (12) is configured to be lowered from the outer guiding unit (11) by a device selected from the group consisting of a winch (14) and a wire (14), a pitch rack and a hydraulic cylinder.
39. The device (10) as claimed in claim 21, wherein the inner dredging unit (12) includes hydraulic cutting equipment that is either permanently attached or detachable.
40. The device (10) as claimed in claim 21, wherein the inner dredging unit (12) is configured to connect to additional tools for performing work within the pile (40) and on a wall of the pile (40).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Below, the present invention is described in further detail in the form of non-limiting exemplary embodiments, with reference to the enclosed drawings.
[0020]
[0021]
[0022] The
[0023]
[0024]
[0025]
DETAILED DESCRIPTION
[0026] It should be emphasized that the drawings are simple principle drawings which do not necessarily show correct proportions between different elements or the mutual position of elements which are optimal in a practical embodiment.
[0027]
[0028] The device 10 comprises an outer guiding unit 11 with a diameter adapted to the diameter of a pile 40 from which dredging is to be performed and with an attachment member 111 suited to be received on top of the pile 40, steadily resting on top of the pile. The attachment can be of different configurations and may as an example have an area shaped as an inverted U, suitable for enveloping the upper end of the pile and an area which forms a conical skirt, contributing to centre the device on the pile. It is not necessarily any kind of locking mechanism between the guiding unit to the pile in question.
[0029] Furthermore, the device 10 comprises an inner dredging unit 12 which is suspended from the outer guiding unit 11 with a wire 13 which can be shortened or extended by means of a winch 14 suitable for subsea operation. Alternatively, a hydraulic cylinder or a pitch rack can be used to raise and lower the inner dredging unit 12.
[0030] The device has a power supply 15 at the surface. Units which can be operated with electric current comprises a water puma 17 for providing water to the different nozzles which are described in further detail below, an ejector pump 18 arranged to pump out released material through a discharge hose 16, optionally an ultra-high pressure for supplying water at extremely high pressure to jet nozzles, a motor 18 arranged to turn a pivotal lower part 30 of the device 10 and optionally an hydraulic aggregate 21. A high-pressure or ultra-high pressure pump can provide water at a pressure of more than 100 bar, preferably more than 200 bar, typically from 500 to 2000 bar.
[0031] The pivotal part 30 of the dredging unit 12 comprises a foot 33 with jet nozzles 34 receiving water from the pump 17, alternatively from the high pressure pump 19. At the centre of the foot 33 there is an opening with communicates with the outlet 16 and which, during operation, exhibits a sub-pressure generated by the ejector pump 18. The jet nozzles 34 can have different orientations but it is preferred that at least some of them are directed towards the centre to move released sediment inwards to the centre opening 35. Even if the jet nozzles 34 in
[0032] Above the foot 18 typically a circular disc 31 with cleaning nozzles is arranged and also a circular disc 32 provided with brushes along its periphery. Both mentioned discs 31 and 32 and the foot 33 will be rotated by the motor 20 when it is operated. More than one disc provided with cleaning nozzles may be provided and also more than one brushing disc 32, for example a brushing disc 32 over a disc 31 with cleaning nozzles and a brushing disc 32 below said disc 31 with cleaning nozzles. Alternatively, brushes may be applied with different types of brushing material on different brushing discs or even different types of brushing material along the periphery of one and the same brushing disc.
[0033] The cleaning nozzles on the disc 31 can be supplied with water from a pump 17 providing a lower pressure than the pressure of the water supplied to the jet nozzles 34 under the foot 33.
[0034] In
[0035] The discharge hose 16 must be arranged unhindered through an opening at the top of the outer guiding unit 11 or include a telescopically extendable part allowing the inner dredging unit 12 to move up and down in relation to the outer guiding unit 11 without being subjected to tension or bending. Same applies for the current supply 15 which for example can include a reel at the top of the outer guiding unit 11.
[0036] The power demanding units of the inner dredging unit may all be operated with electric power, but one or more may also be powered hydraulically.
[0037]
[0038] Furthermore, in
[0039] At its lower end, the outer guiding unit exhibits at least one attachment member suitable for being attached to the top of a hollow pile. It may have the shape of an inverted U profile which run circularly around the entire lower edge of the guiding unit 11. It may also have the shape of shorter profiles suitable for surrounding smaller parts of the top of an open cylinder structure, such as a pile; e.g. three profiles, mutually separated by angles of 120 degrees along a real or imaginary circular periphery at the lower end of the guiding unit. Alternatively, such shorter profiles may be radially displaceable in order to be adapted to piles of varying diameters.
[0040]
[0041]
[0042]
[0043]
[0044] Also in the case of embodiments comprising a circular disc, the nozzles and teeth, if present, may be arranged along curved lines as well as straight lines.
[0045]
[0046]
[0047]
[0048] The four feet may or may not be identically equipped with regard to nozzles and, optionally, teeth. For example, one foot in each station can be equipped with nozzles only and the other one with teeth only.
[0049] The device can be equipped with separate nozzles, arranged on the foot or over the foot, which are laterally directed and arranged to be supplied with water of ultrahigh pressure and which is suitable for removing rust, concrete and fouling.