Portable house for oil field exploration based on new energy technology
By using a triangular splicing bracket and a sensor-driven photovoltaic panel and wind turbine system, the problems of power generation efficiency and light intake control in photovoltaic sunrooms have been solved, achieving efficient and safe energy supply.
Patent Information
- Application Number
- CN202423244922.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-12-27
AI Technical Summary
The fixed installation method of photovoltaic panels in traditional photovoltaic sunrooms cannot be flexibly adjusted according to changes in sunlight, which affects the power generation efficiency and the precise control of indoor lighting.
The photovoltaic panel and wind turbine system uses a triangular splicing bracket and wind direction and light sensors to drive the system. The system automatically adjusts the photovoltaic panels and wind turbine through a rotating ring and gear set, and combines a telescopic electromagnetic lock to protect the equipment in severe weather.
It enables efficient automatic adjustment of photovoltaic panels and wind turbines, improves energy collection efficiency, ensures equipment safety, and provides a stable and flexible energy supply.
Smart Images

Figure CN223567565U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to oilfield mobile board house technical field, concretely is a kind of mobile board house for oilfield survey based on new energy technology. BACKGROUND
[0002] As an innovative model of the integration of photovoltaic technology and architectural structure, photovoltaic sunroom ingeniously combines energy generation with living space. Its core feature lies in the use of transparent photovoltaic panels, which not only ensure adequate natural light indoors but also enable photovoltaic power generation. Despite these panels' good light transmission, their relatively high cost prompts designers to seek optimization solutions in continuous exploration. Currently, most photovoltaic sunrooms tend to embed large-area transparent photovoltaic panels in the top glass wall, aiming to reduce maintenance costs and enhance thermal insulation performance.
[0003] However, a major challenge faced by traditional photovoltaic sunrooms lies in the fixed installation method of their photovoltaic panels. This design cannot be flexibly adjusted according to changes in sunlight, limiting the maximization of power generation efficiency and affecting the precise control of indoor lighting. To break through this bottleneck, photovoltaic panel extension technology emerges, which endows photovoltaic panels with intelligent adjustment capabilities. Through this technology, photovoltaic panels can automatically adjust and move according to real-time lighting conditions, more efficiently capturing and utilizing sunlight, significantly improving the power generation efficiency and living comfort of photovoltaic sunrooms. In view of the above problems, there may be existing technical means to solve them in the prior art, but the present case intends to provide an alternative or replacement technical solution. SUMMARY
[0004] To achieve the above purpose, the utility model discloses a kind of mobile board house for oilfield survey based on new energy technology, comprising: mobile board house, triangular splicing support and power generation structure, the triangular splicing support is installed on the mobile board house, the power generation structure is installed on the triangular splicing support, the power generation structure includes: three photovoltaic panels, photovoltaic module, several wind supports, several wind-driven generators, several rotating rings, rotating gear set, rotating drive machine and several telescopic electromagnetic locks;
[0005] Three photovoltaic panels are installed on the triangular splicing support by the photovoltaic module, several rotating rings are inserted into the triangular splicing support by bearing, several wind supports are installed on several rotating rings respectively, several wind-driven generators are installed on several wind supports respectively, the rotating gear set is sleeved on several wind supports, the rotating drive machine driving end is connected to the rotating gear set, and several telescopic electromagnetic locks are evenly installed on the triangular splicing support.
[0006] It should be noted that, in the above, the mobile house is stably built in the oil field survey site through the triangular splicing support; the wind direction sensor and the light sensor perceive the environmental wind direction and the light intensity in real time, provide data support for energy collection, according to the data of the light sensor, the extension drive machine is operated, drives the extension gear set on the extension drive machine driving end, drives the extension bidirectional screw rod to rotate, and then drives the lifting limiting plate to lift in the concave type horizontal telescopic block, adjusts the position of the photovoltaic panel to maximize the reception of sunlight, the photovoltaic panel converts sunlight into electric energy through the photovoltaic assembly, and stores it in the battery in the mobile house (utilizing the photovoltaic effect of the photovoltaic panel, converts sunlight into direct current electric energy, and processes and stores it through the circuit system in the photovoltaic assembly).
[0007] Preferably, the photovoltaic assembly comprises two pairs of concave type horizontal telescopic blocks, a pair of lifting limiting plates, four pairs of lifting and stretching winches, a pair of extension supports, a pair of extension bidirectional screw rods, two pairs of extension screw pipes, an extension drive machine, an extension gear set and two pairs of photovoltaic electromagnetic locks.
[0008] The two pairs of concave type horizontal telescopic blocks are installed at the bottom end of the triangular splicing support, a pair of lifting limiting plates are movably inserted between the two pairs of concave type horizontal telescopic blocks, a pair of extension supports are installed at the bottom end of the triangular splicing support, a pair of extension bidirectional screw rods are inserted into the pair of extension supports, two pairs of extension screw pipes are inserted into the pair of lifting limiting plates, the extension gear set is installed on the pair of extension bidirectional screw rods, the extension drive machine driving end is connected to the extension gear set, two pairs of photovoltaic electromagnetic locks are installed on the two pairs of concave type horizontal telescopic blocks, four pairs of lifting and stretching winches are installed on the triangular splicing support, and the four pairs of lifting and stretching winches are connected to the pair of lifting limiting plates, and a pair of photovoltaic panels are installed on the pair of lifting limiting plates.
[0009] It should be noted that, in the above, after the wind direction sensor detects the change of the wind direction, the rotary drive machine drives the rotary ring on the wind power support to rotate through the rotary gear set, so that the wind driven generator is aligned with the wind direction, the wind driven generator rotates under the action of the wind, generates electric energy and is also stored in the battery, in severe weather conditions such as strong wind and heavy rain, the photovoltaic panel and the wind driven generator can be collected in emergency through the control of the telescopic electromagnetic lock and the photovoltaic electromagnetic lock, to protect the equipment from damage, and the lightning rod effectively prevents the damage of lightning to the mobile house and the equipment.
[0010] Preferably, the triangular splicing support is provided with a wind direction sensor.
[0011] Preferably, the triangular splicing support is provided with a plurality of light sensors.
[0012] Preferably, the prefabricated house is provided with a battery.
[0013] Preferably, the triangular splicing support is provided with a lightning rod. Beneficial effects
[0014] The utility model provides a kind of prefabricated house for oilfield survey based on new energy technology.It has the following beneficial effects, compared with prior art: the prefabricated house for oilfield survey integrates photovoltaic and wind energy collection technology, realizes efficient, stable energy supply;Its advantages are obvious: first, by triangular splicing support stable construction, ensure the stability of prefabricated house in oilfield survey site;At the same time, the application of wind direction sensor and light sensor provides accurate data support for energy collection, so that photovoltaic panel can automatically adjust angle according to light intensity, maximize to receive sunlight, improve photoelectric conversion efficiency.Wind turbine can be aligned automatically with wind direction changes, effectively capture wind energy;In adverse weather conditions, telescopic electromagnetic lock and photovoltaic electromagnetic lock can respond quickly, emergency retract photovoltaic panel and wind turbine, effectively protect equipment from damage.In addition, the setting of lightning rod provides reliable safety guarantee for prefabricated house and equipment, effectively prevents lightning damage.This design, which integrates stability, efficiency, safety and flexibility, makes the prefabricated house become the ideal energy solution for oilfield survey site. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is the front view sectional view schematic diagram of the prefabricated house for oilfield survey based on new energy technology of the utility model.
[0016] Figure 2 It is the bottom view sectional view schematic diagram of the prefabricated house for oilfield survey based on new energy technology of the utility model.
[0017] Figure 3 It is Figure 1 It is the partial close-up view of "A".
[0018] In the figure: 1, prefabricated house;2, triangular splicing support;3, photovoltaic panel;4, wind support;5, wind turbine;6, rotating ring;7, rotating gear set;8, concave type horizontal telescopic block;9, lifting limit plate;10, lifting stretch winch;11, expansion support;12, expansion bidirectional threaded rod;13, expansion threaded tube;14, expansion drive machine;15, expansion gear set;16, rotating drive machine. DETAILED DESCRIPTION
[0019] Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the scope of protection of the utility model.
[0020] By the person skilled in the art, all electrical components in the case are connected with their adapted power supply through wires, and the appropriate controller and encoder should be selected according to the actual situation to meet the control requirements. The specific connection and control sequence should be referred to the working principle below, and the electrical components are connected in the order of working sequence. The detailed connection means is the commonly known technology in the art. The working principle and process are mainly introduced below, and the electrical control is not described. Embodiment
[0021] The present application will be described in detail below with reference to the accompanying drawings, such as Figures 1-3As shown, the power generation structure is mounted on the triangular splicing support 2, and the power generation structure comprises three photovoltaic panels 3, a photovoltaic assembly, a plurality of wind support 4, a plurality of wind driven generators 5, a plurality of rotating circular rings 6, a rotating gear set 7, a rotating drive machine 16 and a plurality of telescopic electromagnetic locks; the three photovoltaic panels 3 are mounted on the triangular splicing support 2 through the photovoltaic assembly, the plurality of rotating circular rings 6 are inserted on the triangular splicing support 2 through bearings, the plurality of wind support 4 are respectively mounted on the plurality of rotating circular rings 6, the plurality of wind driven generators 5 are respectively mounted on the plurality of wind support 4, the rotating gear set 7 is sleeved on the plurality of wind support 4, the rotating drive machine 16 is connected to the rotating gear set 7 at the driving end, and the plurality of telescopic electromagnetic locks are uniformly mounted on the triangular splicing support 2; the photovoltaic assembly comprises two pairs of concave horizontal telescopic blocks 8, a pair of lifting limiting plates 9, four pairs of lifting and stretching winches 10, a pair of expansion supports 11, a pair of expansion bidirectional threaded rods 12, two pairs of expansion threaded pipes 13, an expansion drive machine 14, an expansion gear set 15 and two pairs of photovoltaic electromagnetic locks; the two pairs of concave horizontal telescopic blocks 8 are mounted at the bottom end of the triangular splicing support 2, the pair of lifting limiting plates 9 are movably inserted between the two pairs of concave horizontal telescopic blocks 8, the pair of expansion supports 11 are mounted at the bottom end of the triangular splicing support 2, the pair of expansion bidirectional threaded rods 12 are respectively inserted on the pair of expansion supports 11, the two pairs of expansion threaded pipes 13 are respectively inserted on the pair of lifting limiting plates 9, the expansion gear set 15 is mounted on the pair of expansion bidirectional threaded rods 12, the expansion drive machine 14 is connected to the expansion gear set 15 at the driving end, the two pairs of photovoltaic electromagnetic locks are respectively mounted on the two pairs of concave horizontal telescopic blocks 8, the four pairs of lifting and stretching winches 10 are respectively mounted on the triangular splicing support 2, and the four pairs of lifting and stretching winches 10 are respectively connected to the pair of lifting limiting plates 9, and the pair of photovoltaic panels 3 are mounted on the pair of lifting limiting plates 9; the triangular splicing support 2 is provided with a wind direction sensor; the triangular splicing support 2 is provided with a plurality of light sensors; the movable board house 1 is provided with a storage battery; and the triangular splicing support 2 is provided with a lightning rod.
[0022] According to the drawings Figures 1-3It is concluded that the mobile house 1 is stably built in the oil field survey site through the triangular splicing support 2; the wind direction sensor and the light sensor can real-time perceive the environmental wind direction and the light intensity, and provide data support for energy collection; according to the data of the light sensor, the extension driving machine 14 is operated to drive the extension gear set 15 on the driving end of the extension driving machine 14, drive the extension bidirectional screw rod 12 to rotate, and then drive the lifting limiting plate 9 to lift in the concave type horizontal telescopic block 8, adjust the position of the photovoltaic panel 3 to maximize the reception of sunlight; the photovoltaic panel 3 converts sunlight into electric energy through a photovoltaic assembly, and stores the electric energy in the storage battery in the mobile house 1 (utilizing the photovoltaic effect of the photovoltaic panel 3 to convert sunlight into direct current electric energy, and processing and storing the direct current electric energy through the circuit system in the photovoltaic assembly); after the wind direction sensor monitors the change of the wind direction, the rotary driving machine 16 drives the rotary ring 6 on the wind power support 4 to rotate through the rotary gear set 7, so that the wind driven generator 5 is aligned with the wind direction; the wind driven generator 5 rotates under the action of the wind to generate electric energy and store the electric energy in the storage battery as well; in the case of severe weather conditions, such as strong wind, heavy rain and the like, the photovoltaic panel 3 and the wind driven generator 5 can be collected in emergency through the control of the telescopic electromagnetic lock and the photovoltaic electromagnetic lock, so as to protect the equipment from being damaged; the lightning rod is arranged to effectively prevent the damage of lightning to the mobile house 1 and the equipment.
[0023] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A prefabricated house for oilfield exploration based on new energy technology, comprising: The prefabricated house, the triangular splicing bracket, and the power generation structure are provided. The triangular splicing bracket is installed on the prefabricated house, and the power generation structure is installed on the triangular splicing bracket. The power generation structure includes: three photovoltaic panels, photovoltaic modules, several wind turbine brackets, several wind turbine generators, several rotating rings, a rotating gear set, a rotating drive motor, and several telescopic electromagnetic locks. Three photovoltaic panels are mounted on the triangular splicing bracket via photovoltaic modules. Several rotating rings are inserted into the triangular splicing bracket via bearings. Several wind turbine supports are respectively mounted on several rotating rings. Several wind turbines are respectively mounted on several wind turbine supports. A rotating gear set is fitted onto several wind turbine supports. The drive end of the rotating drive motor is connected to the rotating gear set. Several telescopic electromagnetic locks are evenly installed on the triangular splicing bracket.
2. The prefabricated house for oilfield exploration based on new energy technology according to claim 1, characterized in that, The photovoltaic module includes: two pairs of concave horizontal telescopic blocks, one pair of lifting limit plates, four pairs of lifting and stretching winches, one pair of extension brackets, one pair of extension bidirectional threaded rods, two pairs of extension threaded pipes, an extension drive motor, an extension gear set, and two pairs of photovoltaic electromagnetic locks. Two pairs of concave horizontal telescopic blocks are installed at the bottom of the triangular splicing bracket. A pair of lifting limit plates are respectively movably inserted between the two pairs of concave horizontal telescopic blocks. A pair of expansion brackets are installed on the bottom of the triangular splicing bracket. A pair of expansion bidirectional threaded rods are respectively inserted into a pair of expansion brackets. Two pairs of expansion threaded tubes are respectively inserted into a pair of lifting limit plates. The expansion gear set is installed on a pair of expansion bidirectional threaded rods. The drive end of the expansion drive motor is connected to the expansion gear set. Two pairs of photovoltaic electromagnetic locks are respectively installed on two pairs of concave horizontal telescopic blocks. Four pairs of lifting and stretching winches are respectively installed on the triangular splicing bracket, and the four pairs of lifting and stretching winches are respectively connected to a pair of lifting limit plates. A pair of photovoltaic panels are installed on a pair of lifting limit plates.
3. The prefabricated house for oilfield exploration based on new energy technology according to claim 2, characterized in that, A wind direction sensor is installed on the triangular splicing bracket.
4. The prefabricated house for oilfield exploration based on new energy technology according to claim 3, characterized in that, Several light sensors are installed on the triangular splicing bracket.
5. A prefabricated house for oilfield exploration based on new energy technology according to claim 4, characterized in that, The prefabricated house is equipped with a storage battery.
6. The prefabricated house for oilfield exploration based on new energy technology according to claim 5, characterized in that, A lightning rod is installed on the triangular splicing bracket.