CN204855549U - Forest ecosystem apoplexy factor monitoring devices - Google Patents

Forest ecosystem apoplexy factor monitoring devices Download PDF

Info

Publication number
CN204855549U
CN204855549U CN201520499608.3U CN201520499608U CN204855549U CN 204855549 U CN204855549 U CN 204855549U CN 201520499608 U CN201520499608 U CN 201520499608U CN 204855549 U CN204855549 U CN 204855549U
Authority
CN
China
Prior art keywords
wind
sensor box
wind speed
measuring device
arm
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201520499608.3U
Other languages
Chinese (zh)
Inventor
王全波
宋纯彦
李若林
冯妍
刘旭平
陈瑶
邵英男
韩立冬
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Heilongjiang Forestry Engineering And Environment Institute
Original Assignee
Heilongjiang Forestry Engineering And Environment Institute
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Heilongjiang Forestry Engineering And Environment Institute filed Critical Heilongjiang Forestry Engineering And Environment Institute
Priority to CN201520499608.3U priority Critical patent/CN204855549U/en
Application granted granted Critical
Publication of CN204855549U publication Critical patent/CN204855549U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Indicating Or Recording The Presence, Absence, Or Direction Of Movement (AREA)
  • Testing Or Calibration Of Command Recording Devices (AREA)

Abstract

Forest ecosystem apoplexy factor monitoring devices belongs to the ecological protective apparatus field of forest. Current wind factor measuring device can only single measurement wind speed or wind direction. The utility model discloses the constitution includes: wind vane, polorus (1), a sensor cartridge (4), B sensor cartridge (9) and two air speed measuring device of from top to bottom setting gradually with the axle center, the mark wing (16) surperficial cartridge glo -stick (17) of wind vane, (8) connection B sensor cartridge (9) is protected through the arc of two symmetries in A sensor cartridge (4), B sensor cartridge (9) top installation B air speed measuring device, and industry control case (11) is installed to the bottom of B sensor cartridge (9), a sensor cartridge (4) and B sensor cartridge (9) surperficial insert solar cell panel (13), through pressure sensor (23) between two air speed measuring device vane (21) and wind pressure bowl (22). The utility model discloses can monitor the information of wind speed, wind direction and the wind pressure of place environment apoplexy factor simultaneously.

Description

Forest ecosystem apoplexy factor monitoring device
Technical field
The utility model relates to a kind of forest ecosystem apoplexy factor monitoring device.
Background technology
Existing wind factor measurement mechanism can only single-measurement wind speed or wind direction.And measuring wind speed part is single unit, there is the inaccurate phenomenon of measuring wind speed.Wind speed or direction measuring apparatus are placed on and detect ground, in information access process, be difficult to the geographic position determining measurement mechanism, information access process is loaded down with trivial details.
Utility model content
The purpose of this utility model is can only single-measurement wind speed or wind direction in order to solve existing wind factor measurement mechanism, and measuring wind speed part is single unit, there is the inaccurate problem of measuring wind speed.And a kind of forest ecosystem apoplexy factor monitoring device is proposed.
A kind of forest ecosystem apoplexy factor monitoring device, its composition comprises: the weathervane from top to bottom set gradually, dumb card, A wind speed measuring device and B wind speed measuring device, described weathervane is arranged on the top of A arm by rotating shaft, A arm bottom is fixedly mounted on the top of dumb card, the bottom of dumb card is fixedly mounted on the top of A sensor box, the bottom fixed installation B arm of A sensor box, A wind speed measuring device is installed by rotating shaft in the bottom of B arm, and wind transducer and air velocity transducer are installed in A sensor box inside;
A sensor box connects B sensor box by two symmetrically arranged arc retaining frames, the top fixed installation C arm of B sensor box, B wind speed measuring device is installed by rotating shaft in the top of C arm, and industrial control box is installed in the bottom of B sensor box, the bottom fixed installation triangle thread ring flange of industrial control box; Air velocity transducer is installed, mount controller in industrial control box in B sensor box inside;
A sensor box and B sensor box surface insert solar panel;
A arm, dumb card, A sensor box, A wind speed measuring device, B wind speed measuring device, B sensor box and industrial control box concentric are arranged; Wherein,
Weathervane comprises the strength of character at middle part, and strength of character two ends fixedly mount weathercock and the mark wing respectively, and mark wing surface arranges two row's grooves, plug-in mounting glo-stick in groove along strength of character bearing of trend symmetry; The strength of character vertically connects wind direction dwang, after wind direction dwang passes rotating shaft and A arm successively, and the wind transducer cooperating installed with A sensor box inside;
A wind speed measuring device and B wind speed measuring device comprise one group of translation wind bar respectively, one end of every root translation wind bar is fixedly connected on wind speed dwang, the other end of every root translation wind bar fixedly mounts vane respectively, each vane inwall arranges blast bowl, is connected between vane and blast bowl by pressure transducer; After every root wind speed dwang passes B arm and C arm successively, with air velocity transducer cooperating;
Pressure transducer, solar panel, wind transducer and two air velocity transducers are by electric wire connection control device, and electric wire is laid in the cavity of arc retaining frame.
The beneficial effects of the utility model are:
The forest ecosystem apoplexy factor monitoring device of the utility model design comprises one group of direction determining device and two groups of wind speed measuring devices, the arm for direction indicator of instruction wind direction is set below the weathercock of weathervane, arm for direction indicator is located and is provided azimuth information intuitively on dumb card, and groove is set on the mark wing of weathervane for replacing the glo-stick of inefficacy, the serviceable life of extension fixture, reduce job costs, and by glo-stick be set to install, maintainer accurately provides the positional information of whole device.
By two groups of wind speed measuring devices, measuring wind speed is carried out to measured forest ecosystem; the wind speed information that comprehensive two groups of wind speed measuring devices obtain; ensure the accuracy of measuring wind speed; and provide electric energy by the work that the solar panel that two sensor surfaces are arranged is industrial control box, embody the effect of clean energyization and the protection energy.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model;
Fig. 2 is each sensor of relating to of the utility model and industrial control box internal controller annexation schematic diagram;
Embodiment
Embodiment one:
The forest ecosystem apoplexy factor monitoring device of present embodiment, its composition comprises: the weathervane from top to bottom set gradually, dumb card 1, A wind speed measuring device and B wind speed measuring device, described weathervane is arranged on the top of A arm 3 by rotating shaft 2, A arm 3 bottom is fixedly mounted on the top of dumb card 1, the bottom of dumb card 1 is fixedly mounted on the top of A sensor box 4, the bottom fixed installation B arm 5 of A sensor box 4, A wind speed measuring device is installed by rotating shaft 2 in the bottom of B arm 5, wind transducer 6 and air velocity transducer 7 are installed in A sensor box 4 inside,
A sensor box 4 connects B sensor box 9 by two symmetrically arranged arc retaining frames 8, the top fixed installation C arm 10 of B sensor box 9, B wind speed measuring device is installed by rotating shaft 2 in the top of C arm 10, industrial control box 11 is installed in the bottom of B sensor box 9, the bottom fixed installation triangle thread ring flange of industrial control box 11; Air velocity transducer 7 is installed, mount controller 12 in industrial control box 11 in B sensor box 9 inside;
A sensor box 4 and the surperficial insert solar panel 13 of B sensor box 9;
A arm 3, dumb card 1, A sensor box 4, A wind speed measuring device, B wind speed measuring device, B sensor box 9 and industrial control box 11 concentric are arranged; Wherein,
Weathervane comprises the strength of character 14 at middle part, and the strength of character 14 two ends fixedly mount weathercock 15 and the mark wing 16 respectively, and the mark wing 16 surface arranges two row's grooves, plug-in mounting glo-stick 17 in groove along the strength of character 14 bearing of trend symmetry; The strength of character 14 vertically connects wind direction dwang 18, after wind direction dwang 18 passes rotating shaft 2 and A arm 3 successively, and wind transducer 6 cooperating installed with A sensor box 4 inside;
A wind speed measuring device and B wind speed measuring device comprise one group of translation wind bar 19 respectively, one end of every root translation wind bar 19 is fixedly connected on wind speed dwang 20, the other end of every root translation wind bar 19 fixedly mounts vane 21 respectively, each vane 21 inwall arranges blast bowl 22, is connected between vane 21 and blast bowl 22 by pressure transducer 23; After every root wind speed dwang 20 passes B arm 5 and C arm 10 successively, with air velocity transducer 7 cooperating; The Action of Wind pressure experienced on pressure transducer 23, makes wind speed measuring device have the effect obtaining wind speed and wind-force two kinds of values by blast bowl 22;
Pressure transducer 23, solar panel 13, wind transducer 6 and two air velocity transducers 7 are by electric wire connection control device 12, and electric wire is laid in the cavity of arc retaining frame 8.
Embodiment two:
With embodiment one unlike, the forest ecosystem apoplexy factor monitoring device of present embodiment, weathercock 15 bottom vertical installation direction pointer 24.
Embodiment three:
With embodiment one or two unlike, the forest ecosystem apoplexy factor monitoring device of present embodiment, the top of dumb card 1 is provided with arc shoulder, accelerates water velocity, avoids rainwater to retain formation etching condition.
Embodiment four:
With embodiment three unlike, the forest ecosystem apoplexy factor monitoring device of present embodiment, is characterized in that: described B sensor box 9 top be provided with arc shoulder, accelerate water velocity, avoid rainwater to retain formation etching condition.
Embodiment five:
With embodiment one, two or four unlike, the forest ecosystem apoplexy factor monitoring device of present embodiment, is characterized in that: two row described groove is symmetrically arranged amongst the strength of character 14 both sides, often organize groove be 135-150 ° of angle.
Embodiment six:
With embodiment five unlike, the forest ecosystem apoplexy factor monitoring device of present embodiment, is characterized in that: two row described groove is symmetrically arranged amongst the strength of character 14 both sides, often organize groove be 140 ° of angles.
Embodiment seven:
With embodiment one, two, four or six unlike, the forest ecosystem apoplexy factor monitoring device of present embodiment, the described groove of two rows is symmetrically arranged amongst the strength of character 14 both sides, and often organizing groove is 145 ° of angles.
Principle of work:
Wind makes weathervane deflect, the strength of character of weathervane drives wind direction dwang to rotate in A arm and A sensor box, make the wind direction information that the acquisition of the wind transducer in A sensor box weathervane represents, and by wind direction information transmission to the controller in industrial control box, for calculating or remote transmission.
Because dumb card determines correct guide north pointer direction when mounted, arm for direction indicator bottom it is driven to specify wind direction on dumb card by weathercock.Obtain azimuth information intuitively.
Simultaneously, wind makes the vane of two wind speed measuring devices stressed, translation wind bar is driven to rotate, thus make translation wind bar wind speed dwang connected vertically and air velocity transducer cooperating, obtain the wind speed information that wind speed measuring device obtains, and by wind direction information transmission to the controller in industrial control box, for calculating or remote transmission.And vane stressed while, utilize pressure transducer wind-force size information to be transferred to controller in industrial control box, for calculating or remote transmission.
The accumulator storing the electric energy that solar panel is converted is set in industrial control box, when there is no the power supply of alternating current scene to charge in batteries, guarantee system is at the long-term steady operation of areas without electricity, the time interval of more new data is set by industrial computer, and by the wind factor real-time Transmission of acquisition to data analysis monitoring center.Embody the present invention simultaneously to the ability of wind speed, wind direction, anemometry, and it is high to have measuring accuracy, data storage capacity is large, long transmission distance, the advantage that reliability is high.

Claims (7)

1. a forest ecosystem apoplexy factor monitoring device, its composition comprises: the weathervane from top to bottom set gradually, dumb card (1), A wind speed measuring device and B wind speed measuring device, it is characterized in that: described weathervane is arranged on the top of A arm (3) by rotating shaft (2), A arm (3) bottom is fixedly mounted on the top of dumb card (1), the bottom of dumb card (1) is fixedly mounted on the top of A sensor box (4), bottom fixed installation B arm (5) of A sensor box (4), A wind speed measuring device is installed by rotating shaft (2) in the bottom of B arm (5), wind transducer (6) and air velocity transducer (7) are installed in A sensor box (4) inside,
A sensor box (4) connects B sensor box (9) by two symmetrically arranged arc retaining frames (8), top fixed installation C arm (10) of B sensor box (9), B wind speed measuring device is installed by rotating shaft (2) in the top of C arm (10), industrial control box (11) is installed in the bottom of B sensor box (9), the bottom fixed installation triangle thread ring flange of industrial control box (11); Air velocity transducer (7) is installed, industrial control box (11) interior mount controller (12) in B sensor box (9) inside;
A sensor box (4) and the surperficial insert solar panel (13) of B sensor box (9);
A arm (3), dumb card (1), A sensor box (4), A wind speed measuring device, B wind speed measuring device, B sensor box (9) and industrial control box (11) concentric are arranged; Wherein,
Weathervane comprises the strength of character (14) at middle part, the strength of character (14) two ends fixedly mount weathercock (15) and the mark wing (16) respectively, the mark wing (16) surface arranges two row's grooves, plug-in mounting glo-stick (17) in groove along the strength of character (14) bearing of trend symmetry; The strength of character (14) vertically connects wind direction dwang (18), after wind direction dwang (18) passes rotating shaft (2) and A arm (3) successively, wind transducer (6) cooperating installed with A sensor box (4) inside;
A wind speed measuring device and B wind speed measuring device comprise one group of translation wind bar (19) respectively, one end of every root translation wind bar (19) is fixedly connected on wind speed dwang (20), the other end of every root translation wind bar (19) fixedly mounts vane (21) respectively, each vane (21) inwall arranges blast bowl (22), is connected between vane (21) and blast bowl (22) by pressure transducer (23); After every root wind speed dwang (20) passes B arm (5) and C arm (10) successively, with air velocity transducer (7) cooperating;
Pressure transducer (23), solar panel (13), wind transducer (6) and two air velocity transducers (7) are by electric wire connection control device (12), and electric wire is laid in the cavity of arc retaining frame (8).
2. forest ecosystem apoplexy factor monitoring device according to claim 1, is characterized in that: weathercock (15) bottom of described weathervane arranges wind arrow (24), and wind arrow (24) is perpendicular to horizontal line.
3. forest ecosystem apoplexy factor monitoring device according to claim 1 or 2, is characterized in that: the top of dumb card (1) is provided with arc shoulder.
4. forest ecosystem apoplexy factor monitoring device according to claim 3, is characterized in that: described B sensor box (9) top is provided with arc shoulder.
5. forest ecosystem apoplexy factor monitoring device according to claim 1,2 or 4, is characterized in that: corresponding two grooves in the described strength of character (14) both sides are splayed arrangement, and two included groove angle are 135-150 °.
6. forest ecosystem apoplexy factor monitoring device according to claim 5, is characterized in that: the described groove of two rows is symmetrically arranged amongst the strength of character (14) both sides, and often organizing groove is 140 ° of angles.
7. forest ecosystem apoplexy factor monitoring device according to claim 1,2,4 or 6, is characterized in that: the described groove of two rows is symmetrically arranged amongst the strength of character (14) both sides, and often organizing groove is 145 ° of angles.
CN201520499608.3U 2015-07-10 2015-07-10 Forest ecosystem apoplexy factor monitoring devices Expired - Fee Related CN204855549U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520499608.3U CN204855549U (en) 2015-07-10 2015-07-10 Forest ecosystem apoplexy factor monitoring devices

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520499608.3U CN204855549U (en) 2015-07-10 2015-07-10 Forest ecosystem apoplexy factor monitoring devices

Publications (1)

Publication Number Publication Date
CN204855549U true CN204855549U (en) 2015-12-09

Family

ID=54746087

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520499608.3U Expired - Fee Related CN204855549U (en) 2015-07-10 2015-07-10 Forest ecosystem apoplexy factor monitoring devices

Country Status (1)

Country Link
CN (1) CN204855549U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106546372A (en) * 2016-12-12 2017-03-29 山东赛瑞智能科技有限公司 Real-time wind-force measuring system
WO2017146920A1 (en) * 2016-02-25 2017-08-31 Physical Optics Corporation Power-oriented weather sensor

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2017146920A1 (en) * 2016-02-25 2017-08-31 Physical Optics Corporation Power-oriented weather sensor
US10429546B1 (en) 2016-02-25 2019-10-01 Intellisense Systems, Inc. Weather sensor including vertically stacked multi-power modules
CN106546372A (en) * 2016-12-12 2017-03-29 山东赛瑞智能科技有限公司 Real-time wind-force measuring system

Similar Documents

Publication Publication Date Title
CN202720104U (en) Portable type high precision automatic sand collector and automatic sand collection system
US20140144227A1 (en) Real-time synchronous measuring system for multiple factors such as wind-blown sand electric field, sand particle charging and wind speed
CN204855549U (en) Forest ecosystem apoplexy factor monitoring devices
CN104567646B (en) A kind of link-type displacement monitor
CN101846507A (en) Automatic tunnel section measuring method and device thereof
CN202975041U (en) Wind speed and wind direction measuring device
CN204999519U (en) Two dimension tower crane squareness measurement device
CN211855783U (en) Wire wind load measuring device
CN202994823U (en) A simple wind direction gauge
CN202956091U (en) Icing monitoring device
CN207923679U (en) A kind of wind profile instrument based on LoRa
CN204239154U (en) Wind-driven generator tower sedimentation is tilted and vibrations safety monitoring system
CN207407959U (en) A kind of water level measurement system based on GPRS
CN206399428U (en) A kind of Multifunctional mapping instrument
CN203350271U (en) Three- dimensional anemometer
CN202420377U (en) Dynamic thickness testing device for absorbed glass mat (AGM) separators of storage batteries
CN204788349U (en) Transmission line wire jumper arc measuring device that hangs down
CN203587056U (en) Height measuring tool
CN210374957U (en) Coincidence degree measuring instrument of power supply tower foundation pile center and foundation bolt center
CN111337217A (en) Electronic sand collector capable of realizing automatic measurement
CN211496641U (en) Cable crane anchor ingot deformation measuring device
CN104133255A (en) Simple wind measuring device
CN202614655U (en) Pavement friction coefficient measurement device
CN203849304U (en) Packaging device for optical fiber current sensor
CN103245325B (en) Automatic floor elevation monitoring system and monitoring method thereof

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CB03 Change of inventor or designer information

Inventor after: Wang Quanbo

Inventor after: Liu Yulong

Inventor after: Huang Qingwen

Inventor after: Zhang Xiaowei

Inventor after: Liu Yankun

Inventor after: Liu Xuping

Inventor after: Han Lidong

Inventor after: Song Chunyan

Inventor after: Feng Yan

Inventor after: Chen Yao

Inventor after: Shao Yingnan

Inventor before: Wang Quanbo

Inventor before: Song Chunyan

Inventor before: Li Ruolin

Inventor before: Feng Yan

Inventor before: Liu Xuping

Inventor before: Chen Yao

Inventor before: Shao Yingnan

Inventor before: Han Lidong

COR Change of bibliographic data
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20151209

Termination date: 20170710