A commissioning console for a wind boost device
By designing a commissioning console suitable for wind-powered propulsion devices, the lack of hardware control equipment for wind-powered propulsion rotors was solved, and the equipment's openability and portability were realized, thus meeting the commissioning requirements of wind-powered propulsion rotors.
Patent Information
- Application Number
- CN202521310203.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-25
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-06-25
AI Technical Summary
The lack of existing hardware control equipment for wind-powered booster rotors makes it difficult to monitor internal components such as motors, sensors, and limit wheels during actual operation, and there is a lack of land-based commissioning and monitoring methods.
A commissioning control console suitable for wind-powered booster devices was designed, including a main console body, a display terminal, a rotary openable operating panel, a ventilation and heat dissipation mechanism, and a walking mechanism. It is equipped with a host computer, a display terminal, an input terminal, a control switch panel, and a locking rod mechanism to realize the openability of the panel and the mobility of the console.
It simplifies equipment replacement, improves the structural stability and applicability of the debugging console, and is suitable for debugging sites of varying complexity, meeting the needs of long-term debugging tasks.
Smart Images

Figure CN224684469U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of ship energy-saving device control technology, specifically a commissioning control console suitable for wind-powered propulsion devices. Background Technology
[0002] With the approach of the third phase of EEDI (Energy Efficiency Design Index for New Ships), marine energy-saving devices are receiving increasing attention. Wind-powered propulsion rotors are a type of energy-saving device installed on ships. Utilizing the Magnus effect, they generate thrust in the ship's forward direction by rotating under crosswind or diagonal wind conditions, thus using wind energy to achieve a propulsive effect. However, since wind-powered propulsion rotors are still in the research stage in China, there is a lack of targeted control equipment in terms of hardware control. For example, in the actual operation of wind-powered propulsion rotors, necessary equipment such as internal motors, sensors, and limit wheels need to be strictly monitored. Furthermore, before actual ship trials, overall joint commissioning and monitoring of the operation of each rotor and its internal equipment must be carried out on land. Therefore, to fill the gap in control equipment for wind-powered propulsion devices, a land-based commissioning control console for wind-powered propulsion rotors is essential. Utility Model Content
[0003] The technical problem to be solved by this utility model is to provide a reasonable structural design for a commissioning control console suitable for wind-powered booster devices.
[0004] The technical problem to be solved by this utility model is achieved through the following technical solution: a commissioning control console suitable for wind-powered booster devices, the console comprising a main body with an internal cavity; A display terminal is located at the top of the main console body, and a flip-up panel is located on the top edge of the main console body above the display terminal; A rotating and opening control panel is installed in the middle of the main body of the control console. The rotating and opening control panel consists of a pair of rotating cabinets. The outer side of the pair of rotating cabinets is set as the connecting surface and the inner side is set as the assembly surface. The connecting surface of the rotating cabinets is hinged to the side wall of the main body of the control console near the side edge of the main body of the control console. After the pair of rotating cabinets rotates around the hinge point at a certain angle, their assembly surfaces fit together and form a complete rotating and opening control panel. A placement slot is provided in the middle of the rotating and opening control panel, and an input terminal is placed in the placement slot. A heat dissipation mechanism for ventilation and heat dissipation is provided on the middle side of the main body of the control console; A door is located at the bottom of the main console, and storage space is formed inside the main console located inside the door; A walking mechanism is installed on the bottom surface of the main console.
[0005] Preferably, a host computer is provided inside the main body of the control console, and the host computer is communicatively connected to a display terminal and an input terminal to display the status information of the wind-powered propulsion rotor.
[0006] Preferably, the flip-up panel is also provided with a lifting handle, a locking pin, and an expansion dock; The lifting handle is fixed to the bottom edge of the flip-up panel; The locking pins are provided in two sets, with locking holes for the locking pins to be inserted on the bottom edge of the flip-up panel and on both rotating cabinets. The expansion dock includes a LAN port and a USB interface, and is electrically connected to the host computer.
[0007] Preferably, a control switch panel connected to the host computer is fixedly installed on one of the rotating cabinets of the rotary open-type operating console. The control switch panel is equipped with a main power switch, a run / stop button, a dimming knob, a control mode selection switch, an emergency stop knob, an audible and visual alarm, a silencer button, a reset button, and a spare button.
[0008] Preferably, the display terminal is a display screen; The input terminal is a keyboard.
[0009] Preferably, a locking rod mechanism is installed between the pair of rotating cabinets. The locking rod mechanism includes a plug rod and a plug hole. The plug hole is fixed on the assembly surface of one of the rotating cabinets. One end of the plug rod is hinged to the assembly surface of one of the rotating cabinets, and the other end is provided with a hole through which the assembly surfaces of the two rotating cabinets can pass when they are in contact, thereby locking the bending head of the pair of rotating cabinets.
[0010] Preferably, one end of the hinged panel is hinged to the top edge of the console body, and a pneumatic strut is provided between the middle of the hinged panel and the top edge of the console body to support the hinged panel.
[0011] Preferably, a magnetic strip is fixedly installed on the side wall of the control console body below the two rotary cabinets; A push-pull handle for pushing and pulling the main body of the console is fixedly installed on the middle side wall of the main body of the console.
[0012] Preferably, an equipment bracket is fixedly installed on the inner wall of the control panel inside the switch door, and a door support is also provided between the switch door and the inner wall of the control panel to support the switch door.
[0013] Preferably, the rotation angle of the rotating cabinet is 180°.
[0014] Compared with the prior art, the beneficial technical effects of this utility model are as follows: all panels of the debugging console, namely the flip-up panels and the rotating opening operating platform, can be opened. This structure, in which all panels can be opened, reduces the difficulty for debugging personnel when replacing equipment. At the same time, the walking mechanism set at the bottom of the console makes the console movable, making it suitable for debugging sites of varying complexity. In addition, the locking pins, locking holes, and locking rod mechanisms set on the flip-up panels and the rotating opening operating platform can increase the structural stability and practicality of the debugging console, and make it meet the necessary conditions for long-term debugging tasks. Attached Figure Description
[0015] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a schematic diagram of the left-side structure when the flip-up panel of this utility model is opened; Figure 3 This is a top view of the rotating opening control panel and the opening and closing door of this utility model. Figure 4 This is a schematic diagram of the main structure of the rotary opening control panel and the door after opening according to this utility model. Figure 5 for Figure 4 A partially enlarged structural diagram.
[0016] In the diagram: 1. Main control unit; 2. Display terminal; 3. Flip-up panel; 4. Pneumatic strut; 5. Lifting handle; 6. Rotary cabinet; 7. Lock hole; 8. Expansion dock; 9. Connecting surface; 10. Assembly surface; 11. Control switch panel; 12. Placement slot; 13. Cable tray; 14. Insert rod; 15. Socket; 16. Bend; 17. Magnetic strip; 18. Push-pull handle; 19. Heat dissipation louver; 20. Opening / closing door; 21. Equipment bracket; 22. Door support; 23. Casters. Detailed Implementation
[0017] The specific technical solutions of this utility model are further described below with reference to the accompanying drawings, so as to enable those skilled in the art to further understand this utility model, without constituting a limitation on its rights.
[0018] Example 1, referring to Figure 1-5A commissioning control console suitable for wind-powered booster devices is provided. The console includes a main body 1 with an internal cavity. A host computer (not shown in the figure) is installed inside the main body 1. The host computer is existing technology, and its specific specifications and models can be selected according to the usage requirements. The host computer is connected to a display terminal and an input terminal to display the status information of the wind-powered booster rotor (not shown in the figure). The main body 1 can be made of profiles welded together. Its shape, structure and size can be customized according to the usage requirements, such as a trapezoidal structure on the side, etc. A display terminal 2, which is a display screen, is installed on the top of the main console body 1. A hinged panel 3 is installed on the top edge of the main console body above the display terminal 2. The hinged panel 3 is formed into a roughly square plate structure, such as a transparent acrylic plate. One end of the hinged panel 3 is hinged to the top edge of the main console body 1. A pneumatic strut 4 is installed between the middle of the hinged panel 3 and the top edge of the main console body 1 to support the hinged panel 3. The pneumatic strut 4 is existing technology, and its specifications can be selected according to usage requirements. This pneumatic strut 4 supports the hinged panel 3, ensuring it can be opened. The device is stable when closed. The hinged panel 3 is equipped with a pull handle 5, a locking pin (not shown), and an expansion dock 8. The pull handle 5 is fixed to the bottom edge of the hinged panel 3. Two sets of locking pins are provided, with locking holes 7 for insertion on the bottom edge of the hinged panel 3 and on both rotating cabinets 6. The locking pins are roughly cylindrical shaft structures, and the locking holes 7 are round holes. The expansion dock 8 includes a LAN port and a USB interface. The expansion dock 8 is electrically connected to the host computer. The expansion dock 8 is existing technology, and its specifications and models can be selected according to usage requirements. Additionally, a cable tray 13 can be provided on the edge of the rotating cabinet 6. It should be noted that since the wind turbine rotor generally uses one of the network ports of the host computer during commissioning, the expansion dock 8 does not affect the communication connection between the host computer and the rotor switch built into the wind turbine rotor. The USB interface on the expansion dock 8 makes it extremely convenient for commissioning personnel to deploy software. A rotating, openable control panel is installed in the middle of the main control unit 1. This horizontally positioned control panel consists of a pair of rotating cabinets 6, each roughly square-shaped box. The rotating cabinets 6 have a rotation angle of 180°. The outer surfaces of the rotating cabinets 6 are designated as connecting surfaces 9, and the inner surfaces as assembly surfaces 10. The connecting surfaces 9 and 10 are parallel. The connecting surfaces 9 of the rotating cabinets 6 are hinged to the side wall of the main control unit 1 near the side edge. This hinged structure can be achieved using hinges. Hinges not only provide a rotating connection but also possess high mechanical strength. After installation with bolts, the structural stability of the rotating, openable control panel is ensured. The two rotating cabinets 6 are rotated around the hinge at a certain angle so that their combined surfaces 10 fit together and form a complete rotating and opening operating table. A control switch panel 11 connected to the host computer is fixedly installed on one of the rotating cabinets 6 of the rotating and opening operating table. The control switch panel 11 is equipped with a main power switch, a run / stop button, a dimming knob, a control mode selection switch, an emergency stop knob, an audible and visual alarm, a silencer button, a reset button, and a spare button. A placement slot 12 is provided in the middle of the rotating and opening operating table. The placement slot 12 is formed into a roughly square slot structure. Its size and specifications can be selected according to the usage requirements. An input terminal, which is a keyboard, is placed in the placement slot 12. A locking mechanism is installed between a pair of rotating cabinets 6. The locking mechanism includes a plug rod 14 and a socket 15. The plug rod 14 is formed into a generally cylindrical rod structure. The socket 15 is fixed on the assembly surface 10 of one of the rotating cabinets 6. One end of the plug rod 14 is hinged to the assembly surface 10 of one of the rotating cabinets 6, and the other end is provided to pass through the socket 15 when the assembly surfaces 10 of the two rotating cabinets 6 are in contact, so as to lock the bending head 16 of the pair of rotating cabinets 6. A magnetic strip 17 is fixedly installed on the side wall of the control panel body 1 below the two rotating cabinets 6. The magnetic strip 17 is formed into a roughly square plate structure. The purpose of the magnetic strip 17 is to keep the two rotating cabinets 6 closed by magnetic force when they are closed, thereby improving the structural stability of the rotating and opening control panel. In addition, the magnetic strip 17 can be installed close to the bottom edge of the rotating cabinet 6, so as to prevent external dust from entering the rotating cabinet 6 through the gap between the magnetic strip 17 and the rotating cabinet 6 when the rotating cabinet 6 is closed. A push-pull handle 18 for pushing and pulling the console body 1 is fixedly provided on the middle side wall of the console body 1; A heat dissipation mechanism for ventilation and heat dissipation is provided on the middle side of the control console body 1. This heat dissipation mechanism can be a heat dissipation louver 19 provided on the middle side of the control console. A fan can be installed on the inner wall of the control console body 1 near the heat dissipation louver 19 according to the usage requirements, so as to blow out the heat inside the control console body 1. A switch door 20 is provided at the bottom of the main console body. The main console body 1 inside the switch door 20 forms a storage space. An equipment bracket 21 is fixed on the inner wall of the console inside the switch door 20. The equipment bracket 21 can be used to place cables and various test equipment to be used, such as network switches, PLCs, UPS power supplies, switching power supplies, serial servers and other equipment. In addition, a 20cm×20cm opening can be made at the bottom of the equipment bracket 21 to allow cables and signal lines to be connected to the wind-powered propulsion rotor being tested. A door support 22 is also provided between the switch door 20 and the inner wall of the control panel to support the switch door 20. The door support 22 is an existing technology and its specifications and models can be selected according to the usage requirements. Its design purpose is only to improve the structural stability of the switch door 20 when it is opened and closed. A walking mechanism is provided on the bottom surface of the main body 1 of the control console. The walking mechanism is a universal wheel 23 that is rotatably mounted on the bottom surface of the main body 1 of the control console.
[0019] When using the commissioning control console for wind-powered boosters, first push and pull the main body 1 of the console to the site using the push-pull handle 18, then remove the locking pin to open the flip-up panel 3. When it is necessary to open the rotating control panel, simply remove the insert rod 14 from the insertion hole 15 to rotate the two rotating cabinets 6 in opposite directions, which is very convenient. When it is necessary to retract the commissioning control console, simply rotate the two rotating cabinets 6 again, insert the insert rod 14 into the insertion hole 15 to merge the two rotating cabinets 6 into one, then close the flip-up panel 3 to the initial state, and finally insert the locking pin into the locking hole 7.
Claims
1. A commissioning control console suitable for wind-powered booster devices, characterized in that: The console includes a main body with an internal cavity; A display terminal is located at the top of the main console body, and a flip-up panel is also located at the top of the main console body. A rotating and opening control panel is installed in the middle of the main body of the control console. The rotating and opening control panel consists of a pair of rotating cabinets. The outer side of the pair of rotating cabinets is set as the connecting surface and the inner side is set as the assembly surface. The connecting surface of the rotating cabinets is hinged to the side wall of the main body of the control console near the side edge of the main body of the control console. After the pair of rotating cabinets rotates around the hinge point at a certain angle, their assembly surfaces fit together and form a complete rotating and opening control panel. A placement slot is provided in the middle of the rotating and opening control panel, and an input terminal is placed in the placement slot. A heat dissipation mechanism for ventilation and heat dissipation is provided on the middle side of the main body of the control console; A door is located at the bottom of the main console, and storage space is formed inside the main console located inside the door; A walking mechanism is installed on the bottom surface of the main console.
2. The commissioning control console for a wind-powered booster device according to claim 1, characterized in that: A host computer is installed inside the main console. The host computer is connected to a display terminal and an input terminal to display the status information of the wind-powered propulsion rotor.
3. A commissioning control console for a wind-powered booster device according to claim 2, characterized in that: The flip-up panel also features a pull handle, a locking pin, and an expansion dock. The lifting handle is fixed to the bottom edge of the flip-up panel; The locking pins are provided in two sets, with locking holes for the locking pins to be inserted on the bottom edge of the flip-up panel and on both rotating cabinets. The expansion dock includes a LAN port and a USB interface, and is electrically connected to the host computer.
4. A commissioning control console for a wind-powered booster device according to claim 2, characterized in that: A control switch panel that is electrically connected to the host computer is fixedly installed on one of the rotating cabinets of the rotary open-type control panel. The control switch panel is equipped with a main power switch, a run / stop button, a dimming knob, a control mode selection switch, an emergency stop knob, an audible and visual alarm, a silencer button, a reset button, and a spare button.
5. A commissioning control console for a wind-powered booster device according to any one of claims 1-4, characterized in that: The display terminal is a display screen; The input terminal is a keyboard.
6. A commissioning control console for a wind-powered booster device according to claim 1, characterized in that: A locking mechanism is installed between a pair of rotating cabinets. The locking mechanism includes a plug and a socket. The socket is fixed to the assembly surface of one of the rotating cabinets. One end of the plug is hinged to the assembly surface of one of the rotating cabinets, and the other end is provided so that it can pass through the socket when the assembly surfaces of the two rotating cabinets are in contact, thereby locking the bending head of the pair of rotating cabinets.
7. A commissioning control console for a wind-powered booster device according to claim 1, characterized in that: One end of the hinged panel is hinged to the top edge of the control console body, and a pneumatic strut is provided between the middle of the hinged panel and the top edge of the control console body to support the hinged panel.
8. A commissioning control console for a wind-powered booster device according to claim 1, characterized in that: A magnetic strip is fixedly installed on the side wall of the control panel below the two rotary cabinets; A push-pull handle for pushing and pulling the main body of the console is fixedly installed on the middle side wall of the main body of the console.
9. A commissioning control console for a wind-powered booster device according to claim 1, characterized in that: An equipment bracket is fixedly installed on the inner wall of the control panel inside the opening and closing door, and a door support is also installed between the opening and closing door and the inner wall of the control panel to support the opening and closing door.
10. A commissioning control console for a wind-powered booster device according to claim 1, characterized in that: The rotating cabinet has a rotation angle of 180°.