Method for disassembling and/or assembling an underwater section of a retractable thruster unit
09708032 ยท 2017-07-18
Assignee
Inventors
Cpc classification
Y10T29/49819
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B63B85/00
PERFORMING OPERATIONS; TRANSPORTING
B63B17/0018
PERFORMING OPERATIONS; TRANSPORTING
B63H25/42
PERFORMING OPERATIONS; TRANSPORTING
B63H2005/1254
PERFORMING OPERATIONS; TRANSPORTING
B63H2025/425
PERFORMING OPERATIONS; TRANSPORTING
B63H5/125
PERFORMING OPERATIONS; TRANSPORTING
International classification
B63H25/42
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A method for disassembling and/or assembling an underwater section of a retractable thruster unit of a swimming vessel. A supporting cradle is detachably fixed to the underwater section from below, and the thruster unit is lifted so that the underwater section is at least partly brought inside the well formed in the bottom of the vessel. Lifting wires of an auxiliary lift are connected to the supporting cradle for supporting the thruster unit. Water is drained from the well, and the lower gear is disengaged and the intermediate section and the lower gear are sealed. After that water is let to ingress into the well and the underwater section is lowered down by the auxiliary lift to dock bottom or sea bed, from where the underwater section is picked up with a crane.
Claims
1. A method for at least one of disassembling and assembling an underwater section of a retractable thruster unit of a swimming vessel, the thruster unit including an upper gear detachably connected to a power source, said underwater section including a lower gear and a propeller, and an intermediate section with a steering tube connecting the upper gear with the underwater section, said vessel being provided with a well formed in the bottom of the vessel, into which well said underwater section can be retracted when the thruster unit is out of operation, said well being closed upwards with a covering plate, whereby in disassembling the underwater section, the method comprising the steps of: a) fixing a supporting cradle detachably to the underwater section from below, disengaging the upper gear from the power source, and lifting the thruster unit so that the underwater section is at least partly brought inside the well and locking the thruster unit mechanically in place in the lifted position, b) connecting auxiliary lifting means provided with lifting wires to the supporting cradle for supporting the thruster unit, c) draining water from the well by supplying pressurized air into the well, d) loosening the joint between the lower gear and intermediate section of the thruster unit, e) lifting the upper gear and the intermediate section further and locking them mechanically in place while the cradle is supported in place by the auxiliary lifting means so that a space is formed between the intermediate section and the lower gear, and sealing the intermediate section and the lower gear to prevent water from getting into them, and f) letting water to ingress into the well and lowering the underwater section down by the auxiliary lifting means, attaching the wires of a crane, detaching the lifting wires of the auxiliary lifting means, and picking up the underwater section with the crane.
2. The method as claimed in claim 1, wherein sea valves are mounted on the upper face of the covering plate and holes are made in the covering plate at the sea valves, whereby the lifting wires of the auxiliary lifting means are set to run through said sea valves and holes from the auxiliary lifting means above the covering plate to the cradle.
3. The method as claimed in claim 2, wherein the holes in the covering plate are made by drilling.
4. The method as claimed in claim 3, wherein the holes in the covering plate are drilled through the sea valves.
5. The method as claimed in claim 2, wherein the holes in the covering plate are made by flame cutting to rough diameter and grinding to final diameter.
6. The method as claimed in claim 1, wherein the supporting cradle is floated below the underwater section and fixed to said underwater section by divers.
7. The method as claimed in claim 1, wherein providing supports for locking the thruster unit mechanically in place in the lifted position.
8. The method as claimed in claim 1, wherein providing the cradle with side guides and making them rest against the inner wall of the well for keeping the thruster unit centered in the well.
9. The method as claimed in claim 1, wherein providing the intermediate section and the lower gear with blinds for sealing to prevent water from getting into them, when a space is formed between the intermediate section and the lower gear.
10. The method as claimed in claim 1, wherein the underwater section with the cradle are lowered onto the dock bottom or sea bed for picking it up therefrom with the crane.
11. The method as claimed in claim 1, wherein the underwater section with the cradle are lifted to within the range of a shore-based crane, lifting equipment of which are attached to the under-side of the hull of the swimming vessel, whereby the underwater section with the cradle are picked up by said shore-based crane.
12. The method as claimed in claim 1, wherein the underwater section with the cradle are floated to within the range of a shore-based crane using buoyancy control, by which shore-based crane the underwater section with the cradle are picked up.
13. The method as claimed in claim 1, wherein the steps for fixing the supporting cradle to the underwater section, connecting the lifting wires of the auxiliary lifting means to the supporting cradle, disconnecting the lower gear from the intermediate section and sealing them, and connecting the lifting wires of the crane to the cradle are executed by divers.
14. The method as claimed in claim 1, wherein before starting at least one of the disassembly and assembly work the thruster unit is made airtight with plugging equipment and the airtightness of the thruster unit is secured.
15. The method as claimed in claim 1, wherein for assembling the thruster unit the steps of the method are executed in a reverse order to the disassembling process.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
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(9) The thruster unit 10 is mounted in a swimming vessel so that a well 17 is formed in the bottom 18 of the vessel. The well 17 is open downwards but the top of the well is provided with a covering plate 19 by which the well 17 is sealed and closed upwards. As shown in the drawings the upper gear 11 of the thruster unit 10 is placed above the covering plate 19 which is provided with a sealed lead-in through which the vertical steering tube 15 extends from the upper gear 11 to the lower gear 13 of the thruster unit 10. The well 17 is so dimensioned that in a lifted position the underwater section 12 of the thruster unit 10 comprising the lower gear 13 and the propeller 14 fits into it. The thruster unit 10 is retractable and provided with hydraulic lifting devices 20, e.g. cylinders by which the thruster unit 10 can be retracted so that the underwater section can be brought completely into the well 17 above the bottom 18 of the vessel and lowered back to the position shown in
(10) The stage depicted in
(11) At the stage shown in
(12)
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(14) The auxiliary lifting means 23, e.g. jacks are arranged above the covering plate 19, preferably above the water line of the vessel. So the wires 24 coming from said jacks 23 must go through the covering plate 19 to reach the underwater section 12 to which they are to be connected at connection points 25. Therefore the following preparations, as presented in
(15) As
(16) Before the lifting wires 24 of the auxiliary lifting means 23 are connected to the cradle 21, pipes for the lifting wires 24 are mounted and connected to the sea valves 33. So the lifting wires 24 are running through the sea valves 33 and inside said pipes, they are not running in a free space. After these preparations the lifting wires 24 are ready to be connected to the cradle 21 at the connection points 25. In order to keep the cradle 21 with the underwater section 12 of the thruster unit 10 centered in the well 17, adjustable side guides 27 are mounted on the structure of the cradle 21. Said side guides 27 are resting against the inner wall of the well 17.
(17) Next, the well 17 and the input shaft of the upper gear 11 are sealed and pressurized air is supplied into the well 17. The purpose of the pressure air supply is to drain water from the well 17. After water has been drained from the well 17 the joint 28 between the lower gear 13 and the steering tube 15, i.e. the intermediate section of the thruster unit 10 is loosened. When the joint 28 has been loosened the lifting wires 24 are tightened to keep the lower gear 13 at its present place. Then the steering tube 15 with the upper gear 11 of the thruster unit 10 are lifted, so that the upper and lower flanges 29, 30 of the joint 28 are separated from each other and a space is formed between said flanges 29, 30. This is shown in
(18) In the lifted position shown in
(19) Finally, in
(20) When the thruster unit or more precisely the underwater section 12 of the same is assembled back to its place or if a new underwater section will be assembled, the assembling process will be executed in a reverse order as explained above.
(21) Above, the invention has been described by way of examples with reference to the exemplifying embodiments illustrated in the accompanying drawings. The invention is, however, not confined to the exemplifying embodiments shown in the drawings alone, but the invention may vary within the scope of the inventive idea defined in the accompanying claims.