Movable power generation and illumination drainage pumping station
By introducing support frames and ventilation structures into the power generation lighting drainage pump station, the fixing problem of the equipment on uneven ground and insufficient heat dissipation is solved, and stable support and efficient heat dissipation are achieved to prevent rainwater from entering.
Patent Information
- Application Number
- CN202422090349.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-28
AI Technical Summary
The existing power generation lighting drainage pump station is not convenient to be fixed on uneven ground during use, has poor support effect and lacks an effective ventilation and heat dissipation structure, which can easily cause garbage and rainwater to enter the equipment.
A support frame and ventilation structure are designed. The support frame is stably supported by a threaded cylinder driven by an electric motor. The ventilation structure is quickly disassembled and installed and cleaned by a combination of multi-layer rubber rings and rain shielding pipes to prevent slippage and rainwater from entering.
It realizes stable support on uneven ground, simplifies the operation process, improves the heat dissipation effect, and effectively prevents garbage and rainwater from entering the equipment.
Smart Images

Figure CN223074891U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of the structure of a power generation, lighting and drainage pumping station, in particular to a mobile power generation, lighting and drainage pumping station. Background Art
[0002] A power generation, lighting and drainage pumping station is a mobile device integrating power generation, lighting and drainage functions, with a wide range of application scenarios and important practical values. Such pumping stations are usually equipped with diesel engines or gasoline engines as power sources, capable of driving large-flow water pumps for efficient drainage. At the same time, they also have a power generation function and can provide stable power support for the site. In the night or in an environment with insufficient light, the lighting function can ensure the smooth progress of operations. Power generation, lighting and drainage pumping stations are widely used in farmland irrigation, waterlogging drainage, flood control and drought relief, fire fighting water supply, sewage treatment, urban water supply and drainage and other occasions. Especially when there is small-space waterlogging emergency drainage caused by rainstorm and flood disasters, such pumping stations can play an important role and quickly respond to and effectively meet various drainage needs.
[0003] There are certain drawbacks in the use of existing power generation, lighting and drainage pumping stations. Traditional power generation, lighting and drainage pumping stations are not convenient to be fixed and stay on uneven ground, are easy to slide upwards, have poor supporting effects, the operation process of the supporting structure is not convenient and simple enough, and there is no ventilation and heat dissipation structure in the power generation, lighting and drainage pumping station, only heat dissipation holes, and it is easy for garbage and rainwater to enter the interior of the power generation, lighting and drainage pumping station. Content of the Utility Model
[0004] The main purpose of the utility model is to provide a mobile power generation, lighting and drainage pumping station, which can effectively solve the problems in the background art.
[0005] To achieve the above purpose, the technical solution adopted by the utility model is as follows:
[0006] A mobile power generation, lighting and drainage pumping station includes a base of the power generation and water pumping station. In the middle position of the upper surface of the base of the power generation and water pumping station, a main body of the power generation and water pumping station is fixedly installed. In the middle position of the lower surface of the base of the power generation and water pumping station, rubber wheels are movably installed. Inside the door frame on the side surface of the main body of the power generation and water pumping station, a movable door is movably installed through a hinge. On the upper surface of the main body of the power generation and water pumping station, a lighting rack is fixedly installed. On the front and rear surfaces of the base of the power generation and water pumping station, near both ends, a support frame is fixedly installed. On the front and rear surfaces of the main body of the power generation and water pumping station, near the lower end, a ventilation structure is fixedly installed. In the middle position of the front surface of the base of the power generation and water pumping station, a towing bar is fixedly installed. Near the front end of the lower surface of the towing bar, a universal wheel is fixedly installed. At the front end of the towing bar, a towing frame is movably installed.
[0007] Preferably, the support frame includes a fixed frame, an internally threaded limit cylinder, an externally threaded cylinder, an electric motor, a control switch, a limit pin, a support leg, a fixing nail, a foot pedal rod, a rubber sleeve, a circular ring pad, a sponge pad, and a rubber pad.
[0008] Preferably, the fixed frame is fixedly installed at positions near both ends of the front and rear surfaces of the base of the power generation water pump station. The internally threaded limit cylinder is fixedly installed inside the fixed frame. The externally threaded cylinder is arranged inside the internally threaded limit cylinder. The electric motor is arranged at the upper position inside the internally threaded limit cylinder. The control switch is fixedly installed at a position near the upper end outside the internally threaded limit cylinder. The limit pin is inserted into the through hole at the lower end of the internally threaded limit cylinder. Through holes are provided on the outer side of the externally threaded cylinder. The limit pin passes through the through holes on the outer side of the externally threaded cylinder. The number of through holes provided on the outer side of the externally threaded cylinder is several, and the through holes on the outer side of the externally threaded cylinder are evenly distributed. The limit strip on the outer side of the electric motor is stuck into the sliding groove on the inner side of the internally threaded limit cylinder. The lower end of the rotating shaft of the electric motor is fixedly connected to the upper end of the externally threaded cylinder.
[0009] Preferably, the support leg is fixedly installed at the central position of the lower surface of the externally threaded cylinder. The fixing nail is arranged inside the support leg. The front end of the foot pedal rod passes through the guide through hole outside the support leg and is fixedly connected to the upper end of the fixing nail. The rubber sleeve is sleeved on the upper end of the foot pedal rod. The circular ring pad is sleeved in the annular groove at the lower end of the support leg. The sponge pad is fixedly installed on the lower surface of the circular ring pad. The rubber pad is fixedly installed on the lower surface of the rubber pad. Grooves are provided on the lower surface of the rubber pad.
[0010] Preferably, the ventilation structure includes a ventilation fan, an iron ring, a first rubber ring, a first magnet ring, a separation net, a second rubber ring, a third rubber ring, a second magnet ring, and a rain shield pipe.
[0011] Preferably, the ventilation fan is fixedly installed at positions near the lower ends of the front and rear surfaces of the main body of the power generation water pump station. The iron ring is fixedly installed on the rear surface of the ventilation fan. The first rubber ring is attached to the rear surface of the ventilation fan. The first magnet ring is fixedly installed on the rear surface of the first rubber ring. The separation net is fixedly installed inside the first magnet ring. The second rubber ring is fixedly installed on the rear surface of the first magnet ring.
[0012] Preferably, the third rubber ring is attached to the rear surface of the second rubber ring. The second magnet ring is fixedly installed on the rear surface of the third rubber ring. The rain shield pipe is fixedly installed on the rear surface of the second magnet ring.
[0013] Compared with the prior art, the utility model has the following beneficial effects:
[0014] In the present utility model, through the provided support frame, the support frame enables the power generation, lighting, and drainage pumping station to park on uneven ground. The operation process is convenient, the operation method is simple, the support effect is better, it is not easy to slip upward, and the lower end is fixed in the ground, having an anti-slip and fixing effect. Through the provided ventilation structure, the ventilation structure can accelerate the air flow inside the power generation, lighting, and drainage pumping station, playing a role in heat dissipation. The heat dissipation effect is better, it can be disassembled and spliced, can be cleaned and maintained, and has a rain shielding and filtering structure, which can prevent garbage and rainwater from entering the interior of the power generation and pumping station main body. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is the overall structural schematic diagram of a mobile power generation, lighting, and drainage pumping station of the present utility model;
[0016] Figure 2 is the exploded schematic diagram of the support frame structure of a mobile power generation, lighting, and drainage pumping station of the present utility model;
[0017] Figure 3 is the exploded schematic diagram of the ventilation structure of a mobile power generation, lighting, and drainage pumping station of the present utility model;
[0018] Figure 4 is a mobile power generation, lighting, and drainage pumping station of the present utility model Figure 3 partial enlarged schematic diagram of part A therein;
[0019] Figure 5 is a mobile power generation, lighting, and drainage pumping station of the present utility model Figure 3 partial enlarged schematic diagram of part B therein;
[0020] Figure 6 is a mobile power generation, lighting, and drainage pumping station of the present utility model Figure 2 partial enlarged schematic diagram of part C therein.
[0021] In the figure: 1, base of the power generation and pumping station; 2, main body of the power generation and pumping station; 3, rubber wheels; 4, movable door; 5, lighting rack; 6, support frame; 601, fixed frame; 602, internal thread limiting cylinder; 603, external thread cylinder; 604, electric motor; 605, control switch; 606, limit pin; 607, support leg; 608, fixing nail; 609, foot pedal rod; 610, rubber sleeve; 611, ring gasket; 612, sponge pad; 613, rubber pad; 7, ventilation structure; 701, ventilation fan; 702, iron ring; 703, first rubber ring; 704, first magnet ring; 705, isolation net; 706, second rubber ring; 707, third rubber ring; 708, second magnet ring; 709, rain shielding pipe; 8, towing rod; 9, universal wheel; 10, towing rack. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0022] To make the technical means, creative features, achieved purposes and functions realized by the present utility model easy to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0023] As Figures 1-6 shown, a mobile power generation lighting and drainage pumping station includes a power generation pumping station base 1. In the middle of the upper surface of the power generation pumping station base 1, a power generation pumping station main body 2 is fixedly installed. A rubber wheel 3 is movably installed at the middle position of the lower surface of the power generation pumping station base 1. A movable door 4 is movably installed through a hinge within the door frame on the side of the power generation pumping station main body 2. A lighting frame 5 is fixedly installed on the upper surface of the power generation pumping station main body 2. Support frames 6 are fixedly installed at positions near both ends on the front and rear surfaces of the power generation pumping station base 1. Ventilation structures 7 are fixedly installed at positions near the lower ends on the front and rear surfaces of the power generation pumping station main body 2. A towing bar 8 is fixedly installed at the middle position of the front surface of the power generation pumping station base 1. A universal wheel 9 is fixedly installed at a position near the front end of the lower surface of the towing bar 8. A towing frame 10 is movably installed at the front end of the towing bar 8. The support frames 6 enable the power generation lighting and drainage pumping station to stop on uneven ground, with convenient operation process, simple operation method, better support effect, not easy to slip upward, and the lower end is fixed in the ground, having an anti-slip and fixing effect. The ventilation structures 7 can accelerate the air flow inside the power generation lighting and drainage pumping station, play a role in heat dissipation, have a better heat dissipation effect, can be disassembled and spliced, can be cleaned and maintained, and have a rain shielding and filtering structure, which can prevent garbage and rainwater from entering the interior of the power generation pumping station main body 2.
[0024] The support frame 6 includes a fixed frame 601, an internally threaded limiting cylinder 602, an externally threaded cylinder 603, an electric motor 604, a control switch 605, a limiting pin 606, a support leg 607, a fixing nail 608, a foot pedal rod 609, a rubber sleeve 610, a circular ring pad 611, a sponge pad 612 and a rubber pad 613; the fixed frame 601 is fixedly installed at positions near both ends of the front and rear surfaces of the base 1 of the power generation pump station, the internally threaded limiting cylinder 602 is fixedly installed inside the fixed frame 601, the externally threaded cylinder 603 is arranged inside the internally threaded limiting cylinder 602, the electric motor 604 is arranged at the upper position inside the internally threaded limiting cylinder 602, the control switch 605 is fixedly installed at a position near the upper end outside the internally threaded limiting cylinder 602, the limiting pin 606 is inserted into the through hole at the lower end of the internally threaded limiting cylinder 602, through holes are provided on the outer side of the externally threaded cylinder 603, the limiting pin 606 passes through the through holes on the outer side of the externally threaded cylinder 603, and the number of through holes provided on the outer side of the externally threaded cylinder 603 is several, and the through holes on the outer side of the externally threaded cylinder 603 are evenly distributed, the limiting strip on the outer side of the electric motor 604 is clamped into the sliding groove on the inner side of the internally threaded limiting cylinder 602, and the lower end of the rotating shaft of the electric motor 604 is fixedly connected to the upper end of the externally threaded cylinder 603; the support leg 607 is fixedly installed at the central position of the lower surface of the externally threaded cylinder 603, the fixing nail 608 is arranged inside the support leg 607, the front end of the foot pedal rod 609 passes through the guide through hole outside the support leg 607 and is fixedly connected to the upper end of the fixing nail 608, the rubber sleeve 610 is sleeved on the upper end of the foot pedal rod 609, the circular ring pad 611 is sleeved in the annular groove at the lower end of the support leg 607, the sponge pad 612 is fixedly installed on the lower surface of the circular ring pad 611, the rubber pad 613 is fixedly installed on the lower surface of the rubber pad 613, and grooves are provided on the lower surface of the rubber pad 613; the ventilation structure 7 includes a ventilation fan 701, an iron ring 702, a first rubber ring 703, a first magnet ring 704, a separation net 705, a second rubber ring 706, a third rubber ring 707, a second magnet ring 708 and a rain shield pipe 709; the ventilation fan 701 is fixedly installed at positions near the lower end of the front and rear surfaces of the main body 2 of the power generation pump station, the iron ring 702 is fixedly installed on the rear surface of the ventilation fan 701, the first rubber ring 703 is attached to the rear surface of the ventilation fan 701, the first magnet ring 704 is fixedly installed on the rear surface of the first rubber ring 703, the separation net 705 is fixedly installed inside the first magnet ring 704, and the second rubber ring 706 is fixedly installed on the rear surface of the first magnet ring 704; the third rubber ring 707 is attached to the rear surface of the second rubber ring 706, the second magnet ring 708 is fixedly installed on the rear surface of the third rubber ring 707, and the rain shield pipe 709 is fixedly installed on the rear surface of the second magnet ring 708.
[0025] It should be noted that the utility model is a mobile power generation, lighting and drainage pump station. When in use, the front end of the traction frame 10 is installed on the traction vehicle, and the power generation, lighting and drainage pump station is dragged by the rubber wheel 3 and the universal wheel 9. The lighting is performed by the lighting frame 5, and the movable door 4 is opened. The operation of connecting the pipes and wiring is performed in the main body 2 of the power generation water pump station. In the support frame 6, the limit pin 606 in the through hole at the lower end of the internal thread limit cylinder 602 is pulled out, and the control switch 605 is pressed to turn on the electric motor 604. The electric motor 604 drives the external thread cylinder 603 to rotate, and the external thread cylinder 603 rotates and extends out of the internal thread limit cylinder 602. During the process, the electric motor 604 Move along the inside of the internal thread limit cylinder 602 until the annular pad 611 is against the ground through the sponge pad 612 and the rubber pad 613, and then insert the limit pin 606 into the through hole at the lower end of the internal thread limit cylinder 602, and pass through the through hole on the outside of the external thread cylinder 603 to prevent the external thread cylinder 603 from slipping upwards. The sponge pad 612 makes the rubber pad 613 fit the ground more closely, and the rubber pad 613 plays an anti-skid role. The groove on the lower surface of the rubber pad 613 increases the friction force. Then, the foot pedal 609 can be stepped down until the lower end of the fixing nail 608 is inserted into the ground for fixing, and the rubber sleeve 610 prevents the fixing nail 608 from slipping inside the support leg 607. The support frame 6 allows the power generation, lighting and drainage pump station to be parked on an uneven ground. The operation process is convenient, the operation method is simple, the support effect is better, it is not easy to slide upward, and the lower end is fixed in the ground, which has anti-slip and fixing effects. In the ventilation structure 7, the ventilation fan 701 can accelerate the air flow inside the power generation water pump station body 2 to play a role in heat dissipation. When it is not rainy, the rain shielding pipe 709 can be directly removed, and the isolation net 705 in the No. 1 magnetic circle 704 plays a filtering role to prevent garbage from being sucked into the interior of the power generation water pump station body 2. When it rains, the rain shielding pipe 709 is reinstalled through the No. 2 magnetic circle 708, so that the No. 2 magnetic circle 708 is separated from the No. 2 rubber The rubber ring 706 is adsorbed together with the No. 3 rubber ring 707 and the No. 1 magnetic ring 704. When cleaning the ventilation fan 701, the isolation net 705 and the rain shielding tube 709, the iron ring 702, the No. 1 magnetic ring 704 and the No. 2 magnetic ring 708 are opened, and the isolation net 705 and the rain shielding tube 709 are removed. The No. 1 rubber ring 703, the No. 2 rubber ring 706 and the No. 3 rubber ring 707 play a sealing role. The ventilation structure 7 can accelerate the air flow in the power generation, lighting and drainage pump station and play a role in heat dissipation. The heat dissipation effect is better, it can be disassembled and spliced, can be cleaned and maintained, and has a rain shielding and filtering structure to prevent garbage and rainwater from entering the main body 2 of the power generation water pump station.
[0026] The above has shown and described the basic principles, main features and advantages of the present utility model. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and all these changes and improvements fall within the scope of the present utility model claimed. The scope of protection claimed by the present utility model is defined by the appended claims and their equivalents.
Claims
1. A mobile power generation, lighting and drainage pumping station, characterized in that: It includes the base (1) of the power generation pump station. In the middle position of the upper surface of the base (1) of the power generation pump station, a power generation pump station main body (2) is fixedly installed. At the middle position of the lower surface of the base (1) of the power generation pump station, rubber wheels (3) are movably installed. Inside the door frame on the side of the power generation pump station main body (2), a movable door (4) is movably installed through a hinge. On the upper surface of the power generation pump station main body (2), a lighting frame (5) is fixedly installed. At the positions near both ends of the front and rear surfaces of the base (1) of the power generation pump station, support frames (6) are fixedly installed. At the positions near the lower ends of the front and rear surfaces of the power generation pump station main body (2), a ventilation structure (7) is fixedly installed. At the middle position of the front surface of the base (1) of the power generation pump station, a towing bar (8) is fixedly installed. At the position near the front end of the lower surface of the towing bar (8), a universal wheel (9) is fixedly installed. At the front end of the towing bar (8), a towing frame (10) is movably installed.
2. The mobile power generation lighting and drainage pumping station according to claim 1, characterized in that: The support frame (6) includes a fixed frame (601), an internally threaded limit cylinder (602), an externally threaded cylinder (603), an electric motor (604), a control switch (605), a limit pin (606), a support leg (607), a fixing nail (608), a foot pedal rod (609), a rubber sleeve (610), a ring gasket (611), a sponge gasket (612) and a rubber gasket (613).
3. The mobile power generation lighting and drainage pumping station according to claim 2, wherein: The fixed frame (601) is fixedly installed at the positions near both ends of the front and rear surfaces of the base (1) of the power generation pump station. The internally threaded limit cylinder (602) is fixedly installed inside the fixed frame (601). The externally threaded cylinder (603) is arranged inside the internally threaded limit cylinder (602). The electric motor (604) is arranged at the upper position inside the internally threaded limit cylinder (602). The control switch (605) is fixedly installed at the position near the upper end on the outside of the internally threaded limit cylinder (602). The limit pin (606) is inserted into the through hole at the lower end of the internally threaded limit cylinder (602). Through holes are opened on the outside of the externally threaded cylinder (603). The limit pin (606) passes through the through holes on the outside of the externally threaded cylinder (603). The number of through holes opened on the outside of the externally threaded cylinder (603) is several, and the through holes on the outside of the externally threaded cylinder (603) are evenly distributed. The limit strip on the outside of the electric motor (604) is stuck into the sliding groove on the inside of the internally threaded limit cylinder (602). The lower end of the rotating shaft of the electric motor (604) is fixedly connected to the upper end of the externally threaded cylinder (603).
4. The mobile power generation, lighting and drainage pumping station according to claim 3, wherein: The said supporting leg (607) is fixedly installed at the central position of the lower surface of the external thread cylinder (603). The fixing nail (608) is arranged inside the supporting leg (607). The front end of the foot pedal rod (609) passes through the guide rail through hole outside the supporting leg (607) and is fixedly connected to the upper end of the fixing nail (608). The rubber sleeve (610) is sleeved on the upper end of the foot pedal rod (609). The circular ring gasket (611) is sleeved in the annular groove at the lower end of the supporting leg (607). The sponge gasket (612) is fixedly installed on the lower surface of the circular ring gasket (611). The rubber gasket (613) is fixedly installed on the lower surface of the rubber gasket (613). A groove is formed on the lower surface of the rubber gasket (613).
5. A mobile power generation, lighting and drainage pumping station according to claim 4, characterized in that: The said ventilation structure (7) includes a ventilation fan (701), an iron ring (702), a first rubber ring (703), a first magnet ring (704), an isolation net (705), a second rubber ring (706), a third rubber ring (707), a second magnet ring (708) and a rain shielding pipe (709).
6. A mobile power generation, lighting and drainage pumping station according to claim 5, characterized in that: The ventilation fan (701) is fixedly installed at the position near the lower end of the front and rear surfaces of the main body (2) of the power generation and water pumping station. The iron ring (702) is fixedly installed on the rear surface of the ventilation fan (701). The first rubber ring (703) is attached to the rear surface of the ventilation fan (701). The first magnet ring (704) is fixedly installed on the rear surface of the first rubber ring (703). The isolation net (705) is fixedly installed inside the first magnet ring (704). The second rubber ring (706) is fixedly installed on the rear surface of the first magnet ring (704).
7. A mobile power generation, lighting and drainage pumping station according to claim 6, characterized in that: The third rubber ring (707) is attached to the rear surface of the second rubber ring (706). The second magnet ring (708) is fixedly installed on the rear surface of the third rubber ring (707). The rain shielding pipe (709) is fixedly installed on the rear surface of the second magnet ring (708).