CN106092500B - A kind of circular column leg Offshore Platform analog synthesis monitoring device - Google Patents

A kind of circular column leg Offshore Platform analog synthesis monitoring device Download PDF

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Publication number
CN106092500B
CN106092500B CN201610383517.2A CN201610383517A CN106092500B CN 106092500 B CN106092500 B CN 106092500B CN 201610383517 A CN201610383517 A CN 201610383517A CN 106092500 B CN106092500 B CN 106092500B
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China
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motor
gear
sliding rail
straight line
circular column
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CN201610383517.2A
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CN106092500A (en
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李德堂
余伟君
满令慧
丁行
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HAIAN DISCORY DETECTION INSTRUMENT Co.,Ltd.
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Zhoushan Powerise Aviation Technology Co Ltd
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01MTESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
    • G01M10/00Hydrodynamic testing; Arrangements in or on ship-testing tanks or water tunnels

Abstract

A kind of circular column leg Offshore Platform analog synthesis monitoring device, belong to field of ocean engineering, including controller, first sliding rail, first sliding block, vibrating motor, shock insulation plate, first movement block, first straight line motor, second gear, circular column leg, first electric pushrod, flake bearing, spray head, second electric pushrod, 4th motor, second movable block, second straight line motor, second motor, third motor, cylinder, strut, blower, supporting plate, first motor, first gear, belt, wheel carrier, idler wheel, rotating cylinder, casing, main platform body, second sliding rail, second sliding block, first rotating shaft, third gear, 4th gear, 5th motor, bearing piece, third sliding block, third sliding rail, second shaft and flange bearing, mounting flange bearing in bottom in the casing;The invention has the advantages that the case where when can completely simulation ocean platform is subjected to impact across the sea.

Description

A kind of circular column leg Offshore Platform analog synthesis monitoring device
Technical field
The present invention relates to a kind of circular column leg Offshore Platform analog synthesis monitoring devices, belong to ocean engineering technology neck Domain.
Background technique
Ocean platform provides production and life at sea to carry out the activities such as drilling well, oil recovery, transporting something containerized, observation, navigation, construction Ocean platform is installed in the sea by the structures of facility, make spud leg it is firm be installed to sea bottom surface, be very great engineering, New hand can not completely know that the various situations that ocean platform can be subjected to across the sea and ocean platform had rocks feelings Condition, in order to enable new hand preferably to participate in needing to give it training in the monitoring of ocean platform, simulation training at present be all with Based on PPT explanation, the monitoring to ocean platform cannot be got information about.In order to solve the above difficulties, it is complete to need to develop a energy The analog synthesis monitoring device of the case where when whole simulation ocean platform is subjected to impact across the sea.
Summary of the invention
The object of the present invention is to provide a kind of circular column leg Offshore Platform analog synthesis monitoring devices.
The problem to be solved in the present invention be current simulation training be all explained with PPT based on, ocean cannot be got information about The problem of the case where when platform is subjected to impact across the sea.
To achieve the purpose of the present invention, the technical solution adopted by the present invention is that:
A kind of circular column leg Offshore Platform analog synthesis monitoring device, including controller, the first sliding rail, the first sliding block, Vibrating motor, shock insulation plate, first movement block, first straight line motor, second gear, circular column leg, the first electric pushrod, flake axis Hold, spray head, the second electric pushrod, the 4th motor, the second movable block, second straight line motor, the second motor, third motor, cylinder, Strut, blower, supporting plate, first motor, first gear, belt, wheel carrier, idler wheel, rotating cylinder, casing, main platform body, the second sliding rail, Second sliding block, first rotating shaft, third gear, the 4th gear, the 5th motor, bearing piece, third sliding block, third sliding rail, the second shaft And flange bearing, bottom mounting flange bearing in the casing install the second shaft on flange bearing, are installed in the second shaft Three sliding rails each side install third sliding block on third sliding rail, and bearing piece is installed on third sliding block, the 5th electricity of installation in bearing piece Machine installs the 4th gear on the output shaft of the 5th motor, installs third gear on the right side of the 4th gear, third gear is mounted on first In shaft, first rotating shaft is mounted in bearing piece, and the second sliding block is installed in first rotating shaft, and the second sliding block is mounted on the second sliding rail, Second sliding rail is mounted under circular column leg, and rotating cylinder is installed on circular column leg, installs second gear on rotating cylinder, installation the on the right side of second gear One gear, first gear are mounted on the output shaft of first motor, and first motor is mounted on supporting plate, and supporting plate is mounted on circular column leg Right side, mounting platform main body on rotating cylinder install the first sliding rail on the left of rotating cylinder, install the first sliding block, vibrating motor on the first sliding rail Output shaft be mounted on the first sliding block, vibrating motor is mounted on shock insulation plate, and shock insulation plate is mounted on first movement block, first Movable block is mounted on first straight line motor, and first straight line motor is mounted on rotating cylinder, and wheel carrier is each side installed in casing, Two idler wheels are installed, the axis of idler wheel is connected by shaft coupling with the second motor, and the second motor is mounted on wheel carrier, belt on wheel carrier It is mounted on two idler wheels, third motor is installed on belt, cylinder is installed on the output shaft of third motor, on the piston rod of cylinder Strut is installed, two the first electric pushrods are installed on strut, the first electric pushrod front end is mounted on flake bearing, pacifies under strut Second straight line motor is filled, the second movable block is installed on second straight line motor, the 4th motor, the 4th motor are installed on the second movable block Output shaft on the second electric pushrod is installed, spray head is respectively installed on the flake bearing and the second electric pushrod in left side, is located at Blower is respectively installed on the flake bearing and the second electric pushrod on right side, controller is mounted in casing, and controller passes through conducting wire point Not with vibrating motor, first straight line motor, second straight line motor, the first electric pushrod, the second electric pushrod, spray head, blower, One motor, the second motor, third motor, the 4th motor and the 5th motor are connected.
The cylinder internal solenoid valve, solenoid valve are connected by conducting wire with controller.
4th motor is waterproof machine.
The invention has the advantages that controller controls the second electric motor starting, idler wheel is rotated, belt is rotated;Controller control Third electric motor starting processed rotates spray head and blower;Controller control cylinder does stretching motion, makes spray head and blower close to cylinder Leg;Controller controls two the first electric pushrods and does different stretching motions, makes spray head or blower run-off the straight, to adjust spray head Or the angle of blower;Controller controls second straight line electric motor starting, moves up and down the second movable block, leans on two spray heads mutually Closely, or keep two blowers close to each other;Controller controls the 4th electric motor starting, rotate spray head or blower, and blower simulates sea Piping and druming of the wind to ocean platform, spray head carry out beating of the wave simulated to ocean platform;Controller controls first straight line electric motor starting, First movement block is moved up and down, vibrating motor is moved up and down;Controller starts in vibrating motor, vibrates circular column leg, comes Simulate the vibration of the spud leg of ocean platform;Controller controls first motor starting, rotates first gear, revolves second gear Turn, is rotating cylinder rotation, to adjust the position of vibrating motor;Controller controls the 5th electric motor starting of side, makes ipsilateral the 4th Gear rotation, rotates ipsilateral third gear, moves ipsilateral first rotating shaft on the second sliding rail with the second sliding block, make Ipsilateral third sliding block moves on third sliding rail, rotates circular column leg, to simulate ocean platform in wave and extra large wind action Under the operating condition that rotates;Blower and spray head rotate the second shaft, circular column leg rotation are driven, to simulate ocean platform in wave With the operating condition rotated under the action of sea wind.
Detailed description of the invention
Fig. 1 is a kind of circular column leg Offshore Platform analog synthesis monitoring device overall structure figure of the present invention;
Fig. 2 is the enlarged structure schematic diagram of the portion a structure;
In figure: 1, controller 2, the first sliding rail 3, the first sliding block 4, vibrating motor 5, shock insulation plate 6, First movement block 7, first straight line motor 8, second gear 9, circular column leg 10, the first electric pushrod 11, fish It is straight that axis oculi holds 12, spray head 13, the second electric pushrod 14, the 4th motor 15, the second movable block 16, second Line motor 17, the second motor 18, third motor 19, cylinder 20, strut 21, blower 22, supporting plate 23, first motor 24, first gear 25, belt 26, wheel carrier 27, idler wheel 28, rotating cylinder 29, casing 30, main platform body 31, the second sliding rail 32, the second sliding block 33, first rotating shaft 34, third gear the 35, the 4th Gear 36, the 5th motor 37, bearing piece 38, third sliding block 39, third sliding rail 40, the second shaft 41, Flange bearing.
Specific embodiment
The present invention is further illustrated with reference to the accompanying drawings and embodiments.
A kind of circular column leg Offshore Platform analog synthesis monitoring device of the present invention, including controller 1, the first sliding rail 2, the One sliding block 3, vibrating motor 4, shock insulation plate 5, first movement block 6, first straight line motor 7, second gear 8, the 9, first electricity of circular column leg Dynamic push rod 10, flake bearing 11, spray head 12, the second electric pushrod 13, the 4th motor 14, the second movable block 15, second straight line electricity Machine 16, the second motor 17, third motor 18, cylinder 19, strut 20, blower 21, supporting plate 22, first motor 23, first gear 24, Belt 25, wheel carrier 26, idler wheel 27, rotating cylinder 28, casing 29, main platform body 30, the second sliding rail 31, the second sliding block 32, first rotating shaft 33, third gear 34, the 4th gear 35, the 5th motor 36, bearing piece 37, third sliding block 38, third sliding rail 39,40 and of the second shaft Flange bearing 41, bottom mounting flange bearing 41 in the casing 29 install the second shaft 40, the second shaft on flange bearing 41 Third sliding rail 39 is installed on 40, third sliding block 38 is each side installed on third sliding rail 39, bearing piece is installed on third sliding block 38 37, the 5th motor 36 is installed in bearing piece 37, the 4th gear 35 is installed on the output shaft of the 5th motor 36, is pacified on the right side of the 4th gear 35 Third gear 34 is filled, third gear 34 is mounted in first rotating shaft 33, and first rotating shaft 33 is mounted in bearing piece 37, first rotating shaft 33 The second sliding block 32 of upper installation, the second sliding block 32 are mounted on the second sliding rail 31, and the second sliding rail 31 is mounted under circular column leg 9, control Device 1 controls the 5th motor 36 starting of side, rotates the 4th ipsilateral gear 35, rotates ipsilateral third gear 34, make Ipsilateral first rotating shaft 33 moves on the second sliding rail 31 with the second sliding block 32, makes ipsilateral third sliding block 38 in third sliding rail It is moved on 39, rotates circular column leg 9, to simulate the operating condition that ocean platform rotates under the action of wave and sea wind;Cylinder Rotating cylinder 28 is installed on leg 9, second gear 8 is installed on rotating cylinder 28, first gear 24, first gear 24 are installed on the right side of second gear 8 It is mounted on the output shaft of first motor 23, first motor 23 is mounted on supporting plate 22, and controller 1 controls first motor 23 and opens It is dynamic, first gear 24 is rotated, second gear 8 is rotated, is that rotating cylinder 28 rotates, to adjust the position of vibrating motor 4;Supporting plate 22 It is mounted on the right side of circular column leg 9, mounting platform main body 30 on rotating cylinder 28 installs the first sliding rail 2 on the left of rotating cylinder 28, on the first sliding rail 2 First sliding block 3 is installed, the output shaft of vibrating motor 4 is mounted on the first sliding block 3, and vibrating motor 4 is mounted on shock insulation plate 5, control Device 1 processed vibrating motor 4 start, make circular column leg 9 vibrate, come simulate ocean platform spud leg vibration;Shock insulation plate 5 is mounted on On one movable block 6, first movement block 6 is mounted on first straight line motor 7, and first straight line motor 7 is mounted on rotating cylinder 28, control Device 1 controls first straight line motor 7 and starts, and moves up and down first movement block 6, moves up and down vibrating motor 4;It is left in casing 29 Wheel carrier 26 is respectively installed in right two sides, and two idler wheels 27 are installed on wheel carrier 26, and the axis of idler wheel 27 passes through shaft coupling and 17 phase of the second motor Even, the second motor 17 is mounted on wheel carrier 26, and controller 1 controls the starting of the second motor 17, rotates idler wheel 27, revolves belt 25 Turn;Belt 25 is mounted on two idler wheels 27, and third motor 18 is installed on belt 25, and controller 1 controls third motor 18 and starts, Rotate spray head 12 and blower 21;Cylinder 19,19 internal solenoid valve of cylinder are installed, solenoid valve leads on the output shaft of third motor 18 It crosses conducting wire to be connected with controller 1, controller 1 controls cylinder 19 and does stretching motion, makes spray head 12 and blower 21 close to circular column leg 9; Strut 20 is installed on the piston rod of cylinder 19, two the first electric pushrods 10,10 front end of the first electric pushrod are installed on strut 20 It is mounted on flake bearing 11, controller 1 controls two the first electric pushrods 10 and does different stretching motions, makes spray head 12 or wind 21 run-off the straight of machine, to adjust the angle of spray head 12 or blower 21;Strut 20 is lower to install second straight line motor 16, second straight line electricity Second movable block 15 is installed on machine 16, controller 1 controls second straight line motor 16 and starts, and the second movable block 15 is moved up and down, Keep two spray heads 12 close to each other, or keeps two blowers 21 close to each other;The 4th motor 14 of installation on second movable block 15, the 4th Motor 14 is waterproof machine, controller 1 controls the starting of the 4th motor 14, rotates spray head 12 or blower 21, and blower 21 is simulated Piping and druming of the sea wind to ocean platform, spray head 12 carry out beating of the wave simulated to ocean platform;Pacify on the output shaft of 4th motor 14 The second electric pushrod 13 is filled, spray head 12 is respectively installed on the flake bearing 11 and the second electric pushrod 13 in left side, is located at right side Flake bearing 11 and the second electric pushrod 13 on blower 21 is respectively installed, controller 1 is mounted in casing 29, and controller 1 passes through Conducting wire respectively with vibrating motor 4, first straight line motor 7, second straight line motor 16, the first electric pushrod 10, the second electric pushrod 13, spray head 12, blower 21, first motor 23, the second motor 17, third motor 18, the 4th motor 14 are connected with the 5th motor 36, Blower 21 and spray head 12 rotate the second shaft 40, drive circular column leg 9 to rotate, to simulate ocean platform in the work of wave and sea wind The operating condition rotated under.
Application method of the present invention: controller 1 controls the starting of the second motor 17, rotates idler wheel 27, rotates belt 25;Control Device 1 processed controls third motor 18 and starts, and rotates spray head 12 and blower 21;Controller 1 controls cylinder 19 and does stretching motion, makes to spray First 12 and blower 21 close to circular column leg 9;Controller 1 controls two the first electric pushrods 10 and does different stretching motions, makes spray head 12 or 21 run-off the straight of blower, to adjust the angle of spray head 12 or blower 21;Controller 1 controls second straight line motor 16 and starts, The second movable block 15 is moved up and down, keeps two spray heads 12 close to each other, or keeps two blowers 21 close to each other;Controller 1 is controlled The starting of the 4th motor 14 is made, spray head 12 or blower 21 are rotated, blower 21 simulates piping and druming of the sea wind to ocean platform, spray head 12 Carry out beating of the wave simulated to ocean platform;Controller 1 controls first straight line motor 7 and starts, and makes to move down on first movement block 6 It is dynamic, move up and down vibrating motor 4;Controller 1 starts in vibrating motor 4, vibrates circular column leg 9, to simulate ocean platform The vibration of spud leg;Controller 1 controls first motor 23 and starts, and rotates first gear 24, rotates second gear 8, is rotating cylinder 28 rotations, to adjust the position of vibrating motor 4;Controller 1 controls the 5th motor 36 starting of side, makes the 4th ipsilateral gear 35 rotations, rotate ipsilateral third gear 34, make ipsilateral first rotating shaft 33 with the second sliding block 32 on the second sliding rail 31 It is mobile, it moves ipsilateral third sliding block 38 on third sliding rail 39, rotates circular column leg 9, to simulate ocean platform in wave With the operating condition rotated under the action of sea wind;Blower 21 and spray head 12 rotate the second shaft 40, and circular column leg 9 is driven to rotate, To simulate the operating condition that ocean platform rotates under the action of wave and sea wind.

Claims (3)

1. a kind of circular column leg Offshore Platform analog synthesis monitoring device, including controller (1), the first sliding rail (2), the first cunning Block (3), vibrating motor (4), shock insulation plate (5), first movement block (6), first straight line motor (7), second gear (8), circular column leg (9), the first electric pushrod (10), flake bearing (11), spray head (12), the second electric pushrod (13), the 4th motor (14), second Movable block (15), second straight line motor (16), the second motor (17), third motor (18), cylinder (19), strut (20), blower (21), supporting plate (22), first motor (23), first gear (24), belt (25), wheel carrier (26), idler wheel (27), rotating cylinder (28), Casing (29), main platform body (30), the second sliding rail (31), the second sliding block (32), first rotating shaft (33), third gear (34), Four gears (35), the 5th motor (36), bearing piece (37), third sliding block (38), third sliding rail (39), the second shaft (40) and flange Bearing (41) installs second turn it is characterized in that: the casing (29) interior bottom mounting flange bearing (41) on flange bearing (41) Axis (40), installs third sliding rail (39) in the second shaft (40), and third sliding rail each side installs third sliding block on (39) (38), bearing piece (37) are installed on third sliding block (38), the 5th motor (36), the output of the 5th motor (36) is installed in bearing piece (37) 4th gear (35) is installed, third gear (34) are installed in the 4th gear (35) side, and third gear (34) is mounted on first on axis In shaft (33), first rotating shaft (33) is mounted on bearing piece (37), is installed in first rotating shaft (33) the second sliding block (32), and second is sliding Block (32) is mounted on the second sliding rail (31), and the second sliding rail (31) is mounted under circular column leg (9), and circular column leg installs rotating cylinder on (9) (28), second gear (8) are installed on rotating cylinder (28), first gear (24) is installed on the right side of second gear (8), first gear (24) peace On the output shaft of first motor (23), first motor (23) is mounted on supporting plate (22), and supporting plate (22) is mounted on circular column leg (9) on the right side of, the first sliding rail (2) are installed in mounting platform main body (30) on rotating cylinder (28), rotating cylinder (28) left side, on the first sliding rail (2) It installs the first sliding block (3), the output shaft of vibrating motor (4) is mounted on the first sliding block (3), and vibrating motor (4) is mounted on shock insulation On plate (5), shock insulation plate (5) is mounted on first movement block (6), and first movement block (6) is mounted on first straight line motor (7), First straight line motor (7) is mounted on rotating cylinder (28), each side installs wheel carrier (26) in casing (29), and wheel carrier is pacified on (26) Two idler wheels (27) are filled, the axis of idler wheel (27) is connected by shaft coupling with the second motor (17), and the second motor (17) is mounted on wheel On frame (26), belt (25) is mounted on two idler wheels (27), installs third motor (18) on belt (25), third motor (18) Output shaft on cylinder (19) are installed, strut (20) are installed on the piston rod of cylinder (19), two first are installed on strut (20) Electric pushrod (10), the first electric pushrod (10) front end are mounted on flake bearing (11), and strut installs second straight line under (20) Motor (16) is installed the second movable block (15) on second straight line motor (16), and the 4th motor is installed on the second movable block (15) (14), the second electric pushrod (13) are installed on the output shaft of the 4th motor (14), the flake bearing being located on the left of casing (29) (11) and on the second electric pushrod (13) each installation spray head (12), the flake bearing (11) and second on the right side of casing (29) are electric Each installation blower (21) on dynamic push rod (13), controller (1) are mounted in casing (29), controller (1) pass through conducting wire respectively with Vibrating motor (4), first straight line motor (7), second straight line motor (16), the first electric pushrod (10), the second electric pushrod (13), spray head (12), blower (21), first motor (23), the second motor (17), third motor (18), the 4th motor (14) and 5th motor (36) is connected.
2. a kind of circular column leg Offshore Platform analog synthesis monitoring device according to claim 1, it is characterized in that: described Cylinder (19) internal solenoid valve, solenoid valve are connected by conducting wire with controller (1).
3. a kind of circular column leg Offshore Platform analog synthesis monitoring device according to claim 1, it is characterized in that: described 4th motor (14) is waterproof machine.
CN201610383517.2A 2016-06-02 2016-06-02 A kind of circular column leg Offshore Platform analog synthesis monitoring device Active CN106092500B (en)

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CN109625165B (en) * 2018-12-07 2021-05-28 天津大学 Method for simulating motion of offshore floating structure

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