Movable board house is surveyed with oil field based on new energy technology
Technical Field
The utility model relates to the technical field of oilfield movable houses, in particular to a movable house for oilfield survey based on a new energy technology.
Background
The photovoltaic sunlight house is taken as an innovative model of integrating photovoltaic technology and building structures, and skillfully integrates energy generation and living space. The solar energy photovoltaic power generation system is characterized in that a transparent photovoltaic panel is adopted, so that sufficient natural illumination in a room is ensured, and the photovoltaic power generation function is realized. Although these panels combine good light transmission, their relatively high cost has prompted designers to seek optimization solutions in constant search. Currently, most photovoltaic solar houses tend to embed large area transparent photovoltaic panels within the top glass wall, with the aim of reducing maintenance costs and enhancing thermal insulation performance.
However, a great challenge faced by conventional photovoltaic solar houses is the manner in which their photovoltaic panels are fixedly mounted. The design cannot be flexibly adjusted according to the sunlight change, so that the maximization of the power generation efficiency is limited, and the accurate regulation and control of the indoor light-emitting quantity are also influenced. In order to break through this bottleneck, photovoltaic panel telescoping techniques have evolved that impart intelligent tuning capabilities to photovoltaic panels. According to the technology, the photovoltaic panel can be automatically adjusted and moved according to the real-time illumination condition, so that sunlight is captured and utilized more efficiently, the power generation efficiency and the living comfort of a photovoltaic sunlight room are remarkably improved, and aiming at the problems, a technical means for solving the problems possibly exists in the prior art, but the scheme is intended to provide an alternative or alternative technical scheme.
Disclosure of utility model
The movable board house for oilfield investigation based on the new energy technology comprises a movable board house, a triangular splicing support and a power generation structure, wherein the triangular splicing support is arranged on the movable board house, the power generation structure is arranged on the triangular splicing support, and the power generation structure comprises three photovoltaic boards, a photovoltaic assembly, a plurality of wind power supports, a plurality of wind power generators, a plurality of rotary rings, a rotary gear set, a rotary driving machine and a plurality of telescopic electromagnetic locks;
The three photovoltaic panels are installed on the triangular splicing brackets through the photovoltaic modules, the plurality of rotary rings are inserted on the triangular splicing brackets through bearings, the plurality of wind power brackets are respectively installed on the plurality of rotary rings, the plurality of wind power generators are respectively installed on the plurality of wind power brackets, the rotary gear sets are sleeved on the plurality of wind power brackets, the driving ends of the rotary driving machines are connected to the rotary gear sets, and the plurality of telescopic electromagnetic locks are uniformly installed on the triangular splicing brackets;
In the above description, the movable plank house is firmly built on the oilfield survey site through the triangular splicing support, the wind direction sensor and the light sensor sense the ambient wind direction and the illumination intensity in real time, provide data support for energy collection, expand the driving machine to operate according to the data of the light sensor, drive the expansion gear set on the driving end of the expansion driving machine, drive the expansion bidirectional threaded rod to rotate, further drive the lifting limiting plate to lift in the concave horizontal telescopic block, adjust the position of the photovoltaic plate to maximally receive sunlight, convert the sunlight into electric energy through the photovoltaic module, store the electric energy in the storage battery in the movable plank house (utilize the photovoltaic effect of the photovoltaic plate to convert the sunlight into direct current electric energy, and process and store through the circuit system in the photovoltaic module).
Preferably, the photovoltaic module comprises two pairs of concave horizontal telescopic blocks, a pair of lifting limiting plates, four pairs of lifting stretching windlass, a pair of expansion brackets, a pair of expansion bidirectional threaded rods, two pairs of expansion threaded pipes, an expansion driver, an expansion gear set and two pairs of photovoltaic electromagnetic locks;
The two pairs of concave horizontal telescopic blocks are arranged at the bottom ends of the triangular splicing brackets, one pair of lifting limiting plates are movably inserted between the two pairs of concave horizontal telescopic blocks respectively, one pair of expansion brackets are arranged at the bottom ends of the triangular splicing brackets, one pair of expansion bidirectional threaded rods are inserted on one pair of expansion brackets respectively, two pairs of expansion threaded pipes are inserted on one pair of lifting limiting plates respectively, an expansion gear set is arranged on one pair of expansion bidirectional threaded rods, the driving end of an expansion driving machine is connected to the expansion gear set, two pairs of photovoltaic electromagnetic locks are arranged on the two pairs of concave horizontal telescopic blocks respectively, four pairs of lifting stretching windlass are respectively arranged on the triangular splicing brackets, and four pairs of lifting stretching windlass are respectively connected to one pair of lifting limiting plates, and one pair of photovoltaic plates are arranged on one pair of lifting limiting plates;
it should be noted that, in the above, after wind direction sensor detects wind direction change, rotary driving machine passes through the rotatory ring rotation on the rotatory gear train drive wind-force support, make aerogenerator aim at the wind direction, aerogenerator rotates under the effect of wind power, produce the electric energy and store in the battery equally, under bad weather conditions, like strong wind, storm rain etc. accessible control flexible electromagnetic lock and photovoltaic electromagnetic lock, promptly pack up photovoltaic board and aerogenerator, protection equipment avoids damaging, the lightning rod be provided with effectively prevent the damage of thunderbolt to activity board room and equipment.
Preferably, a wind direction sensor is arranged on the triangular splicing bracket.
Preferably, the triangle splicing bracket is provided with a plurality of light sensors.
Preferably, a storage battery is arranged on the movable house.
Preferably, lightning rods are arranged on the triangular splicing brackets.
Advantageous effects
The utility model provides a movable house for oilfield surveying based on a new energy technology. Compared with the prior art, the movable house for oilfield surveying based on the new energy technology integrates the photovoltaic and wind energy collection technology, so that efficient and stable energy supply is realized; the solar photovoltaic panel has the advantages that the solar photovoltaic panel is firmly built through the triangular splicing support, stability of the movable panel house in an oilfield survey site is guaranteed, meanwhile, the application of the wind direction sensor and the light sensor provides accurate data support for energy collection, the angle of the solar photovoltaic panel can be automatically adjusted according to light intensity, sunlight is received to the maximum extent, and photoelectric conversion efficiency is improved. The telescopic electromagnetic lock and the photovoltaic electromagnetic lock can respond rapidly under severe weather conditions, the photovoltaic panel and the wind power generator are retracted urgently, and the equipment is protected from damage. In addition, the arrangement of the lightning rod provides reliable safety guarantee for the movable house and equipment, and lightning damage is effectively prevented. The design integrating stability, high efficiency, safety and flexibility makes the movable house an ideal energy solution for oilfield survey sites.
Drawings
Fig. 1 is a schematic diagram of a cross-sectional front view of a mobile house for oilfield survey based on new energy technology.
Fig. 2 is a schematic diagram of a bottom cross-section of a mobile house for oilfield survey based on the new energy technology.
Fig. 3 is a partial enlarged view of "a" in fig. 1.
1, A movable house; 2, a triangle splicing bracket, 3, a photovoltaic panel, 4, a wind power bracket, 5, a wind power generator, 6, a rotary ring, 7, a rotary gear set, 8, a concave horizontal telescopic block, 9, a lifting limiting plate, 10, a lifting stretching winch, 11, an expansion bracket, 12, an expansion bidirectional threaded rod, 13, an expansion threaded pipe, 14, an expansion driving machine, 15, an expansion gear set, 16 and a rotary driving machine.
Detailed Description
All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
All electric parts and the adaptive power supply are connected through wires by the person skilled in the art, and a proper controller and encoder should be selected according to actual conditions so as to meet control requirements, specific connection and control sequence, and the electric connection is completed by referring to the following working principles in the working sequence among the electric parts, and the detailed connection means are known in the art, and mainly introduce the working principles and processes as follows, and do not describe the electric control.
Examples
The novel power generation structure is mounted on the triangular splicing bracket 2, and comprises three photovoltaic panels 3, photovoltaic components, a plurality of wind power brackets 4, a plurality of wind power generators 5, a plurality of rotary rings 6, a rotary gear set 7, a rotary driving machine 16 and a plurality of telescopic electromagnetic locks, as shown in fig. 1-3; the three photovoltaic panels 3 are installed on the triangle splicing brackets 2 through the photovoltaic modules, the plurality of rotary rings 6 are inserted on the triangle splicing brackets 2 through bearings, the plurality of wind power brackets 4 are respectively installed on the plurality of rotary rings 6, the plurality of wind power generators 5 are respectively installed on the plurality of wind power brackets 4, the rotary gear sets 7 are sleeved on the plurality of wind power brackets 4, the driving ends of the rotary driving machines 16 are connected to the rotary gear sets 7, the plurality of telescopic electromagnetic locks are uniformly installed on the triangle splicing brackets 2, the photovoltaic modules comprise two pairs of concave horizontal telescopic blocks 8, a pair of lifting limiting plates 9, four pairs of lifting stretching windlass 10, a pair of expansion brackets 11, a pair of expansion bidirectional 12, two pairs of expansion threaded pipes 13, an expansion driving machine 14, an expansion gear set 15 and two pairs of photovoltaic electromagnetic locks, the concave horizontal telescopic blocks 8 are installed at the bottom ends of the triangle splicing brackets 2, the pair of lifting plates 9 are respectively inserted on the pair of expansion threaded rods 11, the pair of horizontal telescopic blocks are respectively installed between the pair of expansion brackets 11, two pairs of expansion threaded pipes 13 are respectively inserted and installed on a pair of lifting limiting plates 9, an expansion gear set 15 is installed on a pair of expansion bidirectional threaded rods 12, the driving end of an expansion driving machine 14 is connected to the expansion gear set 15, two pairs of photovoltaic electromagnetic locks are respectively installed on two pairs of concave horizontal telescopic blocks 8, four pairs of lifting stretching windlass 10 are respectively installed on a triangular splicing bracket 2, four pairs of lifting stretching windlass 10 are respectively connected to a pair of lifting limiting plates 9, a pair of photovoltaic plates 3 are installed on a pair of lifting limiting plates 9, a wind direction sensor is arranged on the triangular splicing bracket 2, a plurality of light sensors are arranged on the triangular splicing bracket 2, a storage battery is arranged on a movable board room 1, and a lightning rod is arranged on the triangular splicing bracket 2.
According to the data of the light sensor, the expansion driving machine 14 operates to drive the expansion gear set 15 on the driving end of the expansion driving machine 14 to rotate according to the data of the light sensor, the expansion bidirectional threaded rod 12 is driven to rotate, the lifting limiting plate 9 is driven to lift in the concave horizontal telescopic block 8, the position of the photovoltaic plate 3 is adjusted to maximally receive sunlight, the photovoltaic plate 3 converts the sunlight into electric energy through a photovoltaic assembly and stores the electric energy in a storage battery in the movable plate 1 (photovoltaic effect of the photovoltaic plate 3 is utilized to convert the sunlight into direct current electric energy and processes and stores the electric energy through a circuit system in the photovoltaic assembly), after the wind direction sensor detects the change of the wind direction, the rotation driving machine 16 drives the rotation circular ring 6 on the wind power support 4 to rotate by the rotation driving machine 16 to enable the wind power generator 5 to aim at the wind direction, and the electric energy to be rotated under the action of the wind power to be stored in the storage battery, and the storage battery can be protected from being damaged by the lightning protection of the lightning protection device, such as a lightning protection device, and the like, and the lightning protection device, such as a lightning protection device, are arranged in the lightning protection device, and the like.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.