CN205177099U - Device based on vibroscope and imaging device real -time supervision forecast mud -rock flow - Google Patents

Device based on vibroscope and imaging device real -time supervision forecast mud -rock flow Download PDF

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Publication number
CN205177099U
CN205177099U CN201520883124.9U CN201520883124U CN205177099U CN 205177099 U CN205177099 U CN 205177099U CN 201520883124 U CN201520883124 U CN 201520883124U CN 205177099 U CN205177099 U CN 205177099U
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China
Prior art keywords
vibroscope
transport module
mud
wireless transport
closed system
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Expired - Fee Related
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CN201520883124.9U
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Chinese (zh)
Inventor
张文
陈剑平
牛岑岑
徐佩华
苑晓青
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Jilin University
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Jilin University
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Priority to CN201520883124.9U priority Critical patent/CN205177099U/en
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Publication of CN205177099U publication Critical patent/CN205177099U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a device based on vibroscope and imaging device real -time supervision forecast mud -rock flow, including vibroscope, wireless transmission module, internet protocol camera, infrared night vision appearance, receipt host computer, image analysis processing system, toughened glass closed system, stake fixing system and solar battery, vibroscope, wireless transmission module, internet protocol camera, infrared night vision appearance and solar battery seal in the toughened glass closed system, the signal and the wireless transmission module of vibroscope are connected, wireless transmission module and division internet protocol camera and infrared night vision appearance signal connection, and wireless transmission module and receipt host computer signal connection receive the host computer and are connected with image analysis processing system, the toughened glass closed system is bound on stake fixing system, solar battery is vibroscope, internet protocol camera and the power supply of infrared night vision appearance. The utility model discloses can to the monitoring of mud -rock flow vibration signal with differentiate, to mud -rock flow image under the different light condition, automatic decipher its emergence scale and velocity of flow, realize the forecast to the mud -rock flow.

Description

The device of rubble flow is forecast based on vibration gauge and imaging device Real-Time Monitoring
Technical field
The utility model relates to a kind of monitoring prediction device, particularly a kind of device forecasting rubble flow based on vibration gauge and imaging device Real-Time Monitoring.
Background technology
Rubble flow is the common geologic hazard in a kind of mountain area, and the silt carried and boulder very easily bring about great losses to the people's lives and properties at the place of flowing through.Debris flow is unexpected, energy is large, damage capability is huge, carries out monitoring and prediction to rubble flow, and understanding in time the kinetic parameters such as the explosion time of rubble flow and flow velocity is carry out the important means that rubble flow prevents and reduces natural disasters.
At present, the monitoring and prediction of rubble flow mainly adopts artificial itinerant monitor system.And debris flow gully landform is dangerously steep, itinerant monitor system has great difficulty; And many rubble flow occur at dead of night, walk time and the touring visual field are all extremely restricted.Therefore, study a kind of novel rubble flow real time monitoring forecasting device, predict the generation of rubble flow in advance, and the generation scale of decipher rubble flow and flowing velocity, to the harmfulness reducing rubble flow, there is great meaning.
Summary of the invention
The purpose of this utility model is to provide a kind of device forecasting rubble flow based on vibration gauge and imaging device Real-Time Monitoring.Realize the monitoring to rubble flow vibration signal and differentiation; For rubble flow image in different light rays situation, automatic interpretation its generation scale and flow velocity, realize the forecast to rubble flow.
The utility model includes vibration gauge, wireless transport module, web camera, infrared viewing device, can carry out the Receiving Host of decipher, image analysis processing system, tempered glass closed system, timber fixed system and solar storage battery to rubble flow image, and vibration gauge, wireless transport module, web camera, infrared viewing device and solar storage battery are sealed in tempered glass closed system; The signal of vibration gauge is connected with wireless transport module, wireless transport module with open web camera and infrared viewing device signal is connected, wireless transport module is connected with Receiving Host signal, and Receiving Host is connected with image analysis processing system; Tempered glass closed system is bundled on timber fixed system; Solar storage battery is that vibration gauge, web camera and infrared viewing device are powered.
Described timber fixed system is made up of the timber of four diameter 0.3m, buried depth 1m, and the corner of tempered glass closed system is tied up respectively on four timbers.
The described tempered glass closed system being sealed with vibration gauge, wireless transport module, web camera, infrared viewing device and solar storage battery is arranged on debris flow gully top by timber fixed system.
The course of work of the present utility model and principle:
The utility model adopts the vibration signal of vibration gauge monitoring present position, when the frequency of vibration signal and duration meet in advance artificial setup parameter time, automatically opened just to infrared viewing device and the internet protocol camera system of rubble flow raceway groove by wireless transport module, take pictures in debris flow gully.After vibration signal disappears, automatically close infrared viewing device and web camera.Infrared viewing device image is mainly used in analyzing the gloomy image at night of light, and web camera image is mainly used in analyzing light image in good daytime.
Before being occurred by rubble flow, in cheuch, the RGB image code of each point is stored in the image analysis processing system in Receiving Host.When rubble flow occurs, infrared viewing device and web camera are opened and rubble flow image in the ditch taken automatically, and its each point RGB code transfers to Receiving Host by wireless transport module and is stored to image analysis processing system.Contrast two RGB code matrices and can screen whether rubble flow occurs, the profile of decipher rubble flow fluid, and judge its generation scale.
Owing to being provided with multiple vibration gauge and web camera, infrared viewing device, the mistiming of the rubble flow leading position monitored according to different location and distance, can calculate the flow parameters of rubble flow.
Vibration gauge, infrared viewing device and web camera have sufficient electricity to adopt solar storage battery to ensure, under ensureing at least 7 days continuous overcast and rainy situations, and vibration gauge continuous working; Ensure infrared viewing device and web camera continuous working more than 2 hours, maintain monitoring and forecasting system and normally work.
Adopt buried depth 1m, monitoring and forecasting system is fixed by four timbers of diameter 0.3m.Tempered glass is adopted to be closed by monitoring and forecasting system, both can ensure that monitoring and prediction instrument did not wash away the impact once in a while with stone by the immersion of rainwater, can ensure that again solar storage battery normally works, infrared viewing device and web camera use videotape to record or work of taking pictures unaffected.Outside the tempered glass closing on debris flow valley side, be provided with automatic water flushing system, after being opened into picture facility switching, automatic flushing tempered glass, ensures getting a clear view and image quality of imaging device.
Compared with prior art, the utility model has following useful technique effect:
Whether the utility model can screen the generation of rubble flow automatically, according to vibration frequency and the time of vibration of rubble flow, automatically opens imaging device and takes pictures to debris flow gully or record a video.The image code obtained carries out decipher by Radio Network System automatic transmission to indoor.The profile of automatic discrimination rubble flow, important parameter such as generation scale, flow velocity etc., realize the object of the monitoring and prediction of rubble flow.Adopt this monitoring and forecasting system manpower patrol to inquire about, greatly save manpower, ensure that the safety of staff.Adopt infrared viewing device and IP Camera to differentiate Parameter of mud-rock flow simultaneously, avoid the monitoring and forecasting system inefficacy because light intensity causes.In addition, owing to adopting solar storage battery and tempered glass closed system, continuous working and the security performance of monitoring and forecasting system is achieved.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
Fig. 2 is scheme of installation of the present utility model.
Wherein: 1-vibration gauge, 2-wireless transport module, 3-web camera, 4-infrared viewing device, 5-Receiving Host, 6-image analysis processing system, 7-tempered glass closed system, 8-timber fixed system, 9-solar storage battery, 10-debris flow gully top, 11-rubble flow raceway groove.
Embodiment
Participate in shown in Fig. 1 and Fig. 2, the utility model includes vibration gauge 1, wireless transport module 2, web camera 3, infrared viewing device 4, can carry out the Receiving Host 5 of decipher, image analysis processing system 6, tempered glass closed system 7, timber fixed system 8 and solar storage battery 9 to rubble flow image, and vibration gauge 1, wireless transport module 2, web camera 3, infrared viewing device 4 and solar storage battery 9 are sealed in tempered glass closed system 7; The signal of vibration gauge 1 is connected with wireless transport module 2, wireless transport module 2 with open web camera 3 and infrared viewing device 4 signal is connected, wireless transport module 2 is connected with Receiving Host 5 signal, and Receiving Host 5 is connected with image analysis processing system 6; Tempered glass closed system 7 is bundled on timber fixed system 8; Solar storage battery 9 is powered for vibration gauge 1, web camera 3 and infrared viewing device 4.
Described timber fixed system 8 is made up of the timber of four diameter 0.3m, buried depth 1m, and the corner of tempered glass closed system 7 is tied up respectively on four timbers.
As indicated with 2, the tempered glass closed system 7 being sealed with vibration gauge 1, wireless transport module 2, web camera 3, infrared viewing device 4 and solar storage battery 9 is arranged on debris flow gully top 10 by timber fixed system 8.
The course of work of the present utility model and principle:
Under different light rays intensity, web camera 3 and infrared viewing device 4 will be adopted to take pictures to rubble flow raceway groove 11 respectively, store the RGB code of rubble flow raceway groove 11, vibration gauge 1 moment monitoring vibration signal, according to vibration frequency and time of vibration, when judging that rubble flow occurs, wash away the tempered glass closed system 7 of raceway groove side, guarantee gets a clear view, and open web camera 3 and infrared viewing device 4 by wireless transport module 2, rubble flow raceway groove is taken pictures or recorded a video, the image document obtained transfers to Receiving Host 5 by wireless transport module 2, image analysis processing system 6 is for the rubble flow raceway groove image RGB code passed back and light intensity, select the profile of the image automatic interpretation rubble flow of web camera 3 or infrared viewing device 4, judge its generation scale.According to the rubble flow leading position of different monitoring location, the mean flow rate of decipher rubble flow.

Claims (3)

1. one kind is forecast the device of rubble flow based on vibration gauge and imaging device Real-Time Monitoring, it is characterized in that: include vibration gauge (1), wireless transport module (2), web camera (3), infrared viewing device (4), the Receiving Host (5) of decipher can be carried out to rubble flow image, image analysis processing system (6), tempered glass closed system (7), timber fixed system (8) and solar storage battery (9), vibration gauge (1), wireless transport module (2), web camera (3), infrared viewing device (4) and solar storage battery (9) are sealed in tempered glass closed system (7), the signal of vibration gauge (1) is connected with wireless transport module (2), wireless transport module (2) with open web camera (3) and infrared viewing device (4) signal is connected, wireless transport module (2) is connected with Receiving Host (5) signal, and Receiving Host (5) is connected with image analysis processing system (6), tempered glass closed system (7) is bundled on timber fixed system (8), solar storage battery (9) is vibration gauge (1), web camera (3) and infrared viewing device (4) power supply.
2. a kind of device forecasting rubble flow based on vibration gauge and imaging device Real-Time Monitoring according to claim 1, it is characterized in that: described timber fixed system (8) is made up of the timber of four diameter 0.3m, buried depth 1m, the corner of tempered glass closed system (7) is tied up respectively on four timbers.
3. a kind of device forecasting rubble flow based on vibration gauge and imaging device Real-Time Monitoring according to claim 1, is characterized in that: the described tempered glass closed system (7) being sealed with vibration gauge (1), wireless transport module (2), web camera (3), infrared viewing device (4) and solar storage battery (9) is arranged on debris flow gully top (10) by timber fixed system (8).
CN201520883124.9U 2015-11-09 2015-11-09 Device based on vibroscope and imaging device real -time supervision forecast mud -rock flow Expired - Fee Related CN205177099U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520883124.9U CN205177099U (en) 2015-11-09 2015-11-09 Device based on vibroscope and imaging device real -time supervision forecast mud -rock flow

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520883124.9U CN205177099U (en) 2015-11-09 2015-11-09 Device based on vibroscope and imaging device real -time supervision forecast mud -rock flow

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105225426A (en) * 2015-11-09 2016-01-06 吉林大学 The device of rubble flow is forecast based on vibration gauge and imaging device Real-Time Monitoring

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105225426A (en) * 2015-11-09 2016-01-06 吉林大学 The device of rubble flow is forecast based on vibration gauge and imaging device Real-Time Monitoring

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CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160420

Termination date: 20161109