CN206470036U - A kind of wind-force analogue experiment installation - Google Patents

A kind of wind-force analogue experiment installation Download PDF

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Publication number
CN206470036U
CN206470036U CN201720150951.6U CN201720150951U CN206470036U CN 206470036 U CN206470036 U CN 206470036U CN 201720150951 U CN201720150951 U CN 201720150951U CN 206470036 U CN206470036 U CN 206470036U
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CN
China
Prior art keywords
wind
mobile platform
analogue experiment
airduct
experiment installation
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Expired - Fee Related
Application number
CN201720150951.6U
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Chinese (zh)
Inventor
戴威
李志强
余款田
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Hynix Hubei Electric Ltd By Share Ltd
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Hynix Hubei Electric Ltd By Share Ltd
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Priority to CN201720150951.6U priority Critical patent/CN206470036U/en
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Expired - Fee Related legal-status Critical Current
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Abstract

A kind of wind-force analogue experiment installation of the utility model, including a support and an air blower and a mobile platform, one airduct connects the air blower and the mobile platform, one elevating mechanism is located at the support and connects the mobile platform, the mobile platform is provided with a rotation platform of the upper area that the airduct is supported with a runing rest, one luffing mechanism connects the rotation platform and the airduct upper area, the air blower is connected with a frequency converter, the end of the upper area of the airduct has an air port shower nozzle, there is an air velocity transducer and a wind transducer outside the air port shower nozzle, the luffing mechanism and the rotation platform are respectively equipped with an elevation sensor and an angular transducer, a plc control modules are set in one main control computer, the plc control modules and the frequency converter, the air velocity transducer, the elevation sensor and the connection of the angular transducer and the wind transducer.The utility model adjustability is good, economical and practical.

Description

A kind of wind-force analogue experiment installation
Technical field
The utility model is related to unmanned vehicle flight test field, and in particular to a kind of wind-force analogue experiment installation.
Background technology
At present, unmanned vehicle formal input flight using will be to its flight as previous when wind loading rating test To ensure its flight stability when formally using.Existing wind-force analogue experiment installation can only do general simulated experiment, The various situations of actual natural wind, such as storm wind, fitful wind, mountain wind and uniform wind can not be simulated.In some professional institutions In laboratory, design large tunnel to simulate actual natural wind, but large tunnel involves great expense, and wind speed and direction is continuously adjusted The ability of section is weaker.
The content of the invention
In order to solve the above technical problems, the purpose of this utility model is the provision of a kind of wind-force analogue experiment installation, with Solve that existing actual natural wind simulation is single, cost is high and wind speed and direction continuously adjusts the defects such as ability is weak.
To achieve the above object, a kind of wind-force analogue experiment installation of the utility model, including a support and positioned at described One air blower in pedestal lower end region and the mobile platform being connected with the support, an airduct connect the air blower and institute Mobile platform is stated, an elevating mechanism is located at the support and connects the mobile platform, and the mobile platform is provided with a rotation Platform, the rotation platform has the upper area of the runing rest support airduct, and a luffing mechanism connects the rotation Platform and the airduct upper area, the air blower are connected with a frequency converter, and the end of the upper area of the airduct has There is an air velocity transducer and a wind transducer, the luffing mechanism and the rotation outside one air port shower nozzle, the air port shower nozzle Turn platform and be respectively equipped with an elevation sensor and an angular transducer, a main control computer to set a plc control modules, the plc controls Molding block and the frequency converter, the air velocity transducer, the elevation sensor and the angular transducer and the wind direction Sensor is connected by wireless network signal.
It is preferred that, an afterbody that the airduct includes being connected with shown air blower, be connected with the luffing mechanism one Portion and the connection afterbody and the connecting portion on the head, the connecting portion are made up of stretchable flexible material, the afterbody It is made up with the head of hard material.
It is preferred that, the lower end area of the support has an at least hoist engine, and the elevating mechanism is described including being arranged on At least certain assembly pulley of cantilever tip and connect the mobile platform and assemble conjunction with the corresponding fixed pulley and twine and be formed on There is an electric rotating machine, the electric rotating machine and the master in an at least rope for the corresponding hoist engine, the hoist engine Control machine is communicated to connect.
It is preferred that, each fixed pulley group is made up of two fixed pulleys, wherein fixed pulley described in one is located at the support The edge in a corner in the corner of four, top, another fixed pulley is located at the intermediate region of the cantilever tip, the shifting Moving platform is provided with least four stretching structures, and the lower end of four stretching structure connects four corner regions of the mobile platform, Its upper end is gathered to centre to be connected with the rope.
It is preferred that, the fixed pulley group has four, and the corresponding rope has four, and the hoist engine has four Individual, the stranded upper end with stretching structure described in four in one end of rope described in four is connected, its other end respectively with the corresponding volume Raise machine connection.
It is preferred that, a rotary electric machine and a central gear are provided with the mobile platform, the rotary electric machine has parallel Engaged in a motor gear of horizontal plane with the central gear, the central shaft of the central gear is fixed with the rotation platform Connection.
It is preferred that, swing up and down motor provided with one be connected with the luffing mechanism in the rotation platform.
It is preferred that, the control system in the plc control modules uses PID closed-loop control negative-feedback algorithms.
Compared with prior art, its advantage is the utility model:A kind of wind-force simulated experiment dress of the present utility model Put, the air blower connects the frequency converter, by controlling the plc control modules to control the frequency converter continuously to control The air blast wind speed of the air blower is made, so as to simulate the wind for being more than 7 grades.And passed positioned at the wind speed of the air port shower nozzle Real-time wind speed and direction information transmission is given the plc control modules by sensor and the wind transducer, is controlled by the plc Inside modules PID closed-loop controls negative-feedback algorithm processed, in real time as needed and actual conditions automatically control the frequency converter with The wind speed and direction of the wind of regulation simulation in real time such as the runing rest and the luffing mechanism, so that simulation wind has very It is strong to reconcile controllability, simulation wind is more truly more met actual natural wind, be favorably improved the accuracy of experimental result.
Brief description of the drawings
Fig. 1 is a kind of front view of wind-force analogue experiment installation of the utility model;
Fig. 2 is a kind of another angular views of wind-force analogue experiment installation of the utility model;
Fig. 3 is a kind of top view on wind-force analogue experiment installation top of the utility model;
Fig. 4 is a kind of schematic top plan view of the mobile platform of wind-force analogue experiment installation of the utility model.
Embodiment
To describe technology contents, construction feature, institute's reached purpose and effect of the utility model in detail, reality is hereby enumerated below Apply example and coordinate accompanying drawing to be explained in detail.
In description of the present utility model, it is to be understood that term " " center ", " longitudinal direction ", " transverse direction ", "front", "rear", The orientation or position relationship of the instruction such as "left", "right", " vertical ", " level ", " top ", " bottom ", " interior ", " outer " is based on accompanying drawing institutes The orientation or position relationship shown, is for only for ease of description the utility model and simplifies description, rather than indicate or imply and be signified Device or element must have specific orientation, with specific azimuth configuration and operation, therefore it is not intended that to this practicality The limitation of novel protected scope.
Refer to shown in Fig. 1, and with reference to shown in Fig. 2-4, the utility model provides a kind of wind-force analogue experiment installation, multiple The wind-force analogue experiment installation can simulate storm wind, fitful wind, mountain wind and uniform wind when coordinating, to test unmanned vehicle The wind loading rating flown in above-mentioned various wind, each wind-force analogue experiment installation includes a support 1 and positioned at the branch One air blower 2 of the lower end area of frame 1 and the mobile platform 4 being connected with the support 1, an airduct 3 connect the air blower 2 With the mobile platform 4, an elevating mechanism is set on the support 1 and the connection mobile platform 4, the mobile platform 4 There is a rotation platform 5, the rotation platform 5 supports the upper area of the airduct 3, a luffing mechanism with a runing rest 51 The 6 connection rotation platforms 5 and the upper area of the airduct 3, the air blower 2 is connected with a frequency converter (not shown), described The end of the upper area of airduct 3 has an air port shower nozzle 34, and the air port shower nozzle 34 is outer, and there is an air velocity transducer (not scheme Show) and a wind transducer (not shown), the luffing mechanism 6 and the rotation platform 5 are respectively equipped with an elevation sensor (not Diagram) and an angular transducer (not shown), a main control computer (not shown) is interior to set a plc control modules, the plc control modules With the frequency converter, the air velocity transducer, the elevation sensor and the angular transducer and the wind transducer Connected by wireless network signal.
It is preferred that, an afterbody 31 that the airduct 3 includes being connected with shown air blower 2, it is connected with the luffing mechanism 6 One head 33 and the connection afterbody 31 and the connecting portion 32 on the head 33, the connecting portion 32 is by stretchable flexible material Material is made, and the afterbody 31 and the head 33 are made up of hard material.
It is preferred that, the lower end area of the support 1 has an at least hoist engine 9, and the elevating mechanism includes being arranged on institute State at least certain assembly pulley 8 of cantilever tip and connect the mobile platform 4 and coordinate with the corresponding fixed pulley group 8 and Twining has an electric rotating machine, the electric rotating at least rope 7 for being formed on the corresponding hoist engine 9, the hoist engine 7 Machine is communicated to connect with the main control computer.
It is preferred that, each fixed pulley group 7 is made up of two fixed pulleys, wherein fixed pulley described in one is located at the support The edge in 1 corner in the corner of four, top, another fixed pulley is located at the intermediate region on the top of support 1, described Mobile platform 4 is provided with least four stretching structures 41, and the lower end of four stretching structure 41 connects four angles of the mobile platform 4 Settle in an area domain, its upper end is gathered to centre to be connected with the rope 7.
It is preferred that, the fixed pulley group 8 has four, and the corresponding rope 7 has four, and the hoist engine 9 has Four, the stranded upper end with stretching structure described in four 41 in one end of rope 7 is connected described in four, its other end respectively with it is corresponding The hoist engine 9 is connected.
It is preferred that, a rotary electric machine 42 and a central gear 43 are provided with the mobile platform 4, the rotary electric machine 42 has The motor gear 421 for being parallel to horizontal plane is engaged with the central gear 43, the central shaft of the central gear 43 and institute Rotation platform 5 is stated to be fixedly connected.
It is preferred that, swing up and down motor 52 provided with one be connected with the luffing mechanism in the rotation platform 5.
It is preferred that, the control system in the plc control modules uses PID closed-loop control negative-feedback algorithms.
In use, using wind-force analogue experiment installation described in four, wind-force analogue experiment installation described in four is 20 meters in the length of side Square profile, the frequency converter is controlled by the plc control modules to adjust the wind speed of simulation wind, it is each by control The corresponding elevating mechanism, the rotation platform 5 and the luffing mechanism 6 are controlled from the independent plc control modules, Make wind-force analogue experiment installation continuous action described in four and cooperate to simulate the storm wind in actual natural wind, fitful wind, mountain region Wind and uniform wind.Observe the wind loading rating of flight of the unmanned vehicle in above-mentioned various simulation wind.
Compared with prior art, its advantage is the utility model:A kind of wind-force simulated experiment dress of the present utility model Put, the air blower 2 connects the frequency converter, by controlling the plc control modules to control the frequency converter continuously to control The air blast wind speed of the air blower 2 is made, so as to simulate the wind for being more than 7 grades.And positioned at the wind of the air port shower nozzle 34 Real-time wind speed and direction information transmission is given the plc control modules by fast sensor and the wind transducer, passes through the plc PID closed-loop control negative-feedback algorithms inside control module, real-time as needed and actual conditions automatically control the frequency converter The wind speed and direction of wind is simulated with the regulation in real time such as the runing rest and the luffing mechanism, so that simulation wind has It is very strong to reconcile controllability, simulation wind is more truly more met actual natural wind, be favorably improved the accuracy of experimental result.
In summary, the only preferred embodiment of the utility model, does not limit protection domain of the present utility model with this, all The equivalent changes and modifications made according to the utility model the scope of the claims and description, is all that the utility model patent covers Within the scope of.

Claims (8)

1. a kind of wind-force analogue experiment installation, it is characterised in that:A drum including a support and positioned at the pedestal lower end region Blower fan and the mobile platform being connected with the support, an airduct connect the air blower and the mobile platform, a lifting Mechanism is located at the support and connects the mobile platform, and the mobile platform is provided with a rotation platform, the rotation platform The upper area of the airduct is supported with a runing rest, a luffing mechanism connects the rotation platform and the airduct upper end Region, the air blower is connected with a frequency converter, and the end of the upper area of the airduct has an air port shower nozzle, the air port There is an air velocity transducer and a wind transducer, the luffing mechanism and the rotation platform are respectively equipped with an elevation angle outside shower nozzle A plc control modules, the plc control modules and the frequency converter, institute are set in sensor and an angular transducer, a main control computer State air velocity transducer, the elevation sensor and the angular transducer and the wind transducer is connected by wireless network signal Connect.
2. a kind of wind-force analogue experiment installation according to claim 1, it is characterised in that:The airduct includes and shown drum One afterbody of blower fan connection, the head being connected with the luffing mechanism and the connection afterbody and the connecting portion on the head, The connecting portion is made up of stretchable flexible material, and the afterbody and the head are made up of hard material.
3. a kind of wind-force analogue experiment installation according to claim 1, it is characterised in that:The lower end area tool of the support There is an at least hoist engine, the elevating mechanism includes at least certain assembly pulley for being arranged on the cantilever tip and connects described move Moving platform simultaneously assembles at least rope for closing and twining and be formed on the corresponding hoist engine, the volume with the corresponding fixed pulley Raising has an electric rotating machine in machine, the electric rotating machine is communicated to connect with the main control computer.
4. a kind of wind-force analogue experiment installation according to claim 3, it is characterised in that:Each fixed pulley group is by two Individual fixed pulley composition, wherein fixed pulley described in one is located at the edge in a corner in described four corners of cantilever tip, Ling Yisuo The intermediate region that fixed pulley is located at the cantilever tip is stated, the mobile platform is provided with least four stretching structures, four lifting The lower end of structure connects four corner regions of the mobile platform, and its upper end is gathered to centre to be connected with the rope.
5. a kind of wind-force analogue experiment installation according to claim 4, it is characterised in that:The fixed pulley group has four Individual, the corresponding rope has four, and the hoist engine has four, and one end of rope described in four is stranded with being lifted described in four The upper end connection of structure, its other end is connected with the corresponding hoist engine respectively.
6. a kind of wind-force analogue experiment installation according to claim 1, it is characterised in that:One is provided with the mobile platform There is rotary electric machine and a central gear, the rotary electric machine motor gear parallel to horizontal plane to be nibbled with the central gear Close, the central shaft of the central gear is fixedly connected with the rotation platform.
7. a kind of wind-force analogue experiment installation according to claim 1, it is characterised in that:Be provided with the rotation platform with The one of the luffing mechanism connection swings up and down motor.
8. a kind of wind-force analogue experiment installation according to claim 1, it is characterised in that:In the plc control modules Control system uses PID closed-loop control negative-feedback algorithms.
CN201720150951.6U 2017-02-20 2017-02-20 A kind of wind-force analogue experiment installation Expired - Fee Related CN206470036U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720150951.6U CN206470036U (en) 2017-02-20 2017-02-20 A kind of wind-force analogue experiment installation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720150951.6U CN206470036U (en) 2017-02-20 2017-02-20 A kind of wind-force analogue experiment installation

Publications (1)

Publication Number Publication Date
CN206470036U true CN206470036U (en) 2017-09-05

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108106813A (en) * 2018-01-04 2018-06-01 高芹先 A kind of airplane skin material wind detection device
CN109029901A (en) * 2018-07-13 2018-12-18 中国空气动力研究与发展中心低速空气动力研究所 A kind of downburst analogy method
CN110006624A (en) * 2019-05-23 2019-07-12 重庆大学 The physical simulating method that Background wind is coupled with mobile cyclone
CN113280993A (en) * 2020-09-30 2021-08-20 东海县腾翔航空科技有限公司 Wind direction analogue means is used in aeronautical engineering research

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108106813A (en) * 2018-01-04 2018-06-01 高芹先 A kind of airplane skin material wind detection device
CN108106813B (en) * 2018-01-04 2019-01-01 宣城良知知识产权服务有限公司 A kind of airplane skin material wind detection device
CN109029901A (en) * 2018-07-13 2018-12-18 中国空气动力研究与发展中心低速空气动力研究所 A kind of downburst analogy method
CN110006624A (en) * 2019-05-23 2019-07-12 重庆大学 The physical simulating method that Background wind is coupled with mobile cyclone
CN110006624B (en) * 2019-05-23 2020-01-17 重庆大学 Physical simulation method for coupling background wind and mobile tornado
CN113280993A (en) * 2020-09-30 2021-08-20 东海县腾翔航空科技有限公司 Wind direction analogue means is used in aeronautical engineering research

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Granted publication date: 20170905

Termination date: 20200220