CN107271032A - Field geology reconnoitres safety monitoring system and method - Google Patents

Field geology reconnoitres safety monitoring system and method Download PDF

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Publication number
CN107271032A
CN107271032A CN201710444283.2A CN201710444283A CN107271032A CN 107271032 A CN107271032 A CN 107271032A CN 201710444283 A CN201710444283 A CN 201710444283A CN 107271032 A CN107271032 A CN 107271032A
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CN
China
Prior art keywords
safety monitoring
monitoring system
reconnoitres
field geology
lower casing
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Withdrawn
Application number
CN201710444283.2A
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Chinese (zh)
Inventor
宋鹰
杨建磊
斯特帕申科夫·安德烈
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China University of Petroleum East China
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China University of Petroleum East China
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Application filed by China University of Petroleum East China filed Critical China University of Petroleum East China
Priority to CN201710444283.2A priority Critical patent/CN107271032A/en
Publication of CN107271032A publication Critical patent/CN107271032A/en
Priority to PCT/CN2018/085973 priority patent/WO2018228086A1/en
Withdrawn legal-status Critical Current

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H23/00Percussion or vibration massage, e.g. using supersonic vibration; Suction-vibration massage; Massage with moving diaphragms
    • A61H23/02Percussion or vibration massage, e.g. using supersonic vibration; Suction-vibration massage; Massage with moving diaphragms with electric or magnetic drive
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01HMEASUREMENT OF MECHANICAL VIBRATIONS OR ULTRASONIC, SONIC OR INFRASONIC WAVES
    • G01H17/00Measuring mechanical vibrations or ultrasonic, sonic or infrasonic waves, not provided for in the preceding groups
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01SRADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
    • G01S19/00Satellite radio beacon positioning systems; Determining position, velocity or attitude using signals transmitted by such systems
    • G01S19/38Determining a navigation solution using signals transmitted by a satellite radio beacon positioning system
    • G01S19/39Determining a navigation solution using signals transmitted by a satellite radio beacon positioning system the satellite radio beacon positioning system transmitting time-stamped messages, e.g. GPS [Global Positioning System], GLONASS [Global Orbiting Navigation Satellite System] or GALILEO
    • G01S19/42Determining position
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B7/00Radio transmission systems, i.e. using radiation field
    • H04B7/14Relay systems
    • H04B7/15Active relay systems
    • H04B7/185Space-based or airborne stations; Stations for satellite systems
    • H04B7/1851Systems using a satellite or space-based relay

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  • Engineering & Computer Science (AREA)
  • Radar, Positioning & Navigation (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Remote Sensing (AREA)
  • Health & Medical Sciences (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Epidemiology (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Aviation & Aerospace Engineering (AREA)
  • Astronomy & Astrophysics (AREA)
  • Pain & Pain Management (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Rehabilitation Therapy (AREA)
  • Signal Processing (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Emergency Alarm Devices (AREA)
  • Measuring And Recording Apparatus For Diagnosis (AREA)

Abstract

Safety monitoring system and method are reconnoitred the invention discloses a kind of field geology, the system includes:For producing electric charge by compressing mineral to detect the vibrations wave detector of vibration, and by detect the electric charge number carry out the physiotherapy overcoat of quantitative physiotherapy to human body.It is an advantage of the invention that:It is simple in construction, including vibrations wave detector and physiotherapy overcoat, improve the safety coefficient of field geology preliminry basic research.In geologic prospect operation, the system can monitor the change of environment in time, be conducive to operating personnel to take measures to avoid the expansion of accident in time.After accident generation, based on the system possesses the Beidou satellite navigation system of independent intellectual property right by China, realization communicates with remote terminal, sends the specific coordinate of distress position and alarms and requires assistance.And in daily geology operation process, the present invention can realize the functions such as massage, physiotherapy, the comfort level of geologist is improved, alleviates intensive work to healthy injury, prevents the generation of various occupational diseases.

Description

Field geology reconnoitres safety monitoring system and method
Technical field
Safety monitoring system and method are reconnoitred the present invention relates to a kind of field geology.
Background technology
In prior art, outdoors exploration operation is the groundwork of geologist, and field geology is reconnoitred many in field etc. , there are many potential safety hazards for being difficult to expect, such as remote mountain areas, border area and high altitude localities, gas in the arduous area of environment Time is severe, condition is simple and crude, it is not smooth to communicate, and the natural calamity such as earthquake, landslide, mud-rock flow, large-scale wild animal often occurs Evil.Severe natural conditions bring great inconvenience to geologic prospect, there is huge potential safety hazard, and work as accident Afterwards, due to can not both determine the particular location of trapped person or contact can not be set up, it is difficult to implement timely, effective emergency management and rescue.
CN102185625A patent document discloses a kind of Portable field geological survey data real-time transmission system, its The backpack portable terminal born in bag is placed in for one, the backpack portable terminal includes:Data processing unit, for pair The data of collection are analyzed, handle after input, output, it is connected with data transmit-receive processor, voice gateways and video decoding Device;Data acquisition device, the related geologic data for gathering field geology disaster field is transferred to data processing unit;Communication Unit, the subsystem for data processing unit and supervisor station carries out the communication of related data.The significant drawback of prior art is: Function is single, it is impossible to effectively realize that field geology reconnoitres safety monitoring.
The content of the invention
In view of this, it is a primary object of the present invention to provide a kind of field geology to reconnoitre safety monitoring system, it is solved Field geology reconnoitres the technical problem of safety monitoring.
To reach above-mentioned purpose, the technical proposal of the invention is realized in this way:A kind of field geology reconnoitres safety monitoring System, it is characterised in that including:For detecting the vibrations wave detector of vibration by compressing mineral generation electric charge, and pass through Detect the electric charge number to carry out human body the physiotherapy overcoat of quantitative physiotherapy.
As another object of the present invention, a kind of field geology is also provided and reconnoitres safety monitoring method, it is characterised in that bag Include:Wave detector is shaken by compressing mineral generation electric charge to detect vibration;Physiotherapy overcoat by detect the number of the electric charge come Quantitative physiotherapy is carried out to human body.
The present invention has substantive distinguishing features following prominent and significant progressive relative to prior art:
It is simple in construction, including vibrations wave detector and physiotherapy overcoat, improve the safety coefficient of field geology preliminry basic research.On ground During matter exploration, the system can monitor the change of environment in time, in the great geology such as earthquake, mud-rock flow, cold wave or nature Disaster carries out effective early warning when occurring, and is conducive to operating personnel to take measures to avoid the expansion of accident in time, is also beneficial to operation The timely evacuation of personnel, flee from, it is to avoid casualties.After accident generation, the system possesses independent intellectual property right with China Based on Beidou satellite navigation system, its peculiar short message communication function is made full use of, realization communicates with remote terminal, sends and meets The specific coordinate of dangerous position and alarming is required assistance.And in daily geologic prospect operation process, the present invention can realize massage, reason The functions such as treatment, improve the comfort level of geologist, alleviate intensive work to healthy injury, prevent various occupational diseases Generation.
Brief description of the drawings
Fig. 1 is the schematic front view that field geology reconnoitres safety monitoring system.
Fig. 2 is that field geology reconnoitres the schematic top plan view after being covered in safety monitoring system opening.
Fig. 3 is the big-dipper satellite remote terminal schematic front view that field geology reconnoitres safety monitoring system.
Fig. 4 is the left view schematic diagram that field geology reconnoitres safety monitoring system.
Fig. 5 is that field geology reconnoitres the right side of safety monitoring system regarding schematic diagram.
Fig. 6 is that field geology reconnoitres the schematic top plan view after safety monitoring system removing overcoat.
Fig. 7 is that the right side that field geology is reconnoitred after safety monitoring system removing overcoat regards schematic diagram.
Fig. 8 is the schematic top plan view for the massage machine that field geology reconnoitres safety monitoring system.
Fig. 9 is the left view schematic diagram for the massage machine that field geology reconnoitres safety monitoring system.
Figure 10 is that the right side for the massage machine that field geology reconnoitres safety monitoring system regards schematic diagram.
Figure 11 is the schematic top plan view for the installation pedestal that field geology reconnoitres safety monitoring system.
Figure 12 is the schematic top plan view for the cam set that field geology reconnoitres safety monitoring system.
Figure 13 is the left view schematic diagram for the cam set that field geology reconnoitres safety monitoring system.
Figure 14 is the wiring schematic diagram for the electronic control module that field geology reconnoitres safety monitoring system.
Figure 15 is the schematic top plan view for the storing bin that field geology reconnoitres safety monitoring system.
Figure 16 is that the right side for the storing bin that field geology reconnoitres safety monitoring system regards schematic diagram.
Figure 17 is the schematic top plan view for the water storehouse that field geology reconnoitres safety monitoring system.
Figure 18 is that the right side for the water storehouse that field geology reconnoitres safety monitoring system regards schematic diagram.
Figure 19 is the schematic front view for the lower casing that field geology reconnoitres safety monitoring system.
Figure 20 is the schematic top plan view that field geology reconnoitres the displaying of safety monitoring system guide rail.
Figure 21 is that the right side for the lower casing that field geology reconnoitres safety monitoring system regards schematic diagram.
Figure 22 is the schematic top plan view for the physiotherapy overcoat that field geology reconnoitres safety monitoring system.
Figure 23 is the vibrations wave detector schematic front view that field geology reconnoitres safety monitoring system.
Figure 24 is that field geology reconnoitres the vibrations wave detector of safety monitoring system and removes the schematic top plan view of upper cover plate.
Embodiment
The invention will be further described with specific embodiment below in conjunction with the accompanying drawings, so that those skilled in the art can be with More fully understand the present invention and can be practiced, but illustrated embodiment is not as a limitation of the invention.
The present invention provides a kind of field geology and reconnoitres safety monitoring system, it is characterised in that including:For by compressing ore deposit Thing produces electric charge to detect the vibrations wave detector of vibration, and by detect the electric charge number human body is quantitatively managed The physiotherapy overcoat for the treatment of.
Preferably, lower casing and upper lid are additionally provided with, the lower casing constitutes the cavity of an endless totally-enclosed with upper lid, described Physiotherapy overcoat is enclosed in lower casing and covers the overall outside constituted with upper, and the vibrations wave detector is located at the outside of physiotherapy overcoat, The lower casing has been slidably connected T-shaped guide rail, and temperature sensor is set on the rear wall of lower casing, and the bottom right side of the lower casing is provided with Storing bin and water storehouse, and can be extracted out by T-shaped guide rail at lower casing right wall, electronic control module is also set up inside the lower casing, The electronic control module includes setting controller to position with big-dipper satellite and transmitter in a casing, the casing, the controller Pass through cable connection with big-dipper satellite positioning and transmitter.
Preferably, the massage machine in addition to inside lower casing, the massage machine includes installation pedestal, in the peace Fill and driving stepper motor cam set is set on pedestal.
As shown in Figure 1, Figure 2, Figure 3 shows, field geology reconnoitres safety monitoring system, including:Massage machine 1, electronic control module 2, Storing bin 3, water storehouse 4, lower casing 5, upper lid 6, physiotherapy overcoat 7, instruction input device 8, temperature sensor 9, vibrations wave detector 10, north Struggle against satellite remote terminal 11.
As shown in Fig. 2, Fig. 3, Fig. 4, Fig. 5, Fig. 6, Fig. 7, Figure 19, massage machine 1 is located inside lower casing 5, passes through screw 511st, screw 512, screw 513, screw 514 are fixed on the bottom of lower casing 5;Electronic control module 2 is located inside lower casing 5, passes through screw 2111st, screw 2112, screw 2113, screw 2114 are fixed on the bottom of lower casing 5;Storing bin 3 is located at the bottom right side of lower casing 5, leads to Cross T-rail 519 to be slidably connected with lower casing 5, can be extracted out at the right wall of lower casing 5;Water storehouse 4 is located at the bottom right side of lower casing 5, It is slidably connected, can be extracted out at the right wall of lower casing 5 with lower casing 5 by T-rail 520;Lower casing 5 passes through screw with upper lid 6 611st, screw 612, screw 613, screw 614 are coupled, and constitute the cavity of an endless totally-enclosed;Physiotherapy overcoat 7 is enclosed in The overall outside that lower casing 5 is constituted with upper lid 6;Instruction input device 8 is located at outside physiotherapy overcoat 7;Under temperature sensor 9 is located at On the rear wall of shell 5;Shake the outside that wave detector 10 is located at physiotherapy overcoat 7;Big-dipper satellite remote terminal 11 and the system main body without Direct physical relation.
As shown in figure 8, massage machine 1 by installation pedestal 111, stepper motor 112, stepper motor 113, stepper motor 114, Stepper motor 115, cam set 116, cam set 117 are constituted.
As shown in Fig. 9, Figure 10, Figure 11, installation pedestal 111 is integral structure, by base 1111, support 1112, support 1113rd, support 1114, support 1115 are constituted;Base 1111 is square plate, and four angles of base 1111 are respectively equipped with through hole 1116th, through hole 1117, through hole 1118, through hole 1119;Support 1112, support 1113, support 1114, support 1115 are identical, Support 1112, support 1113, support 1114, the top of support 1115 are provided with a manhole, support 1112, support 1113 On through hole it is coaxial, support 1114, support 1115 through hole it is coaxial, the through-bore axis on support 1112, support 1115 is same In horizontal plane;Stepper motor 112 is arranged on support 1112 by screw 1121, screw 1122, screw 1123, screw 1124; Stepper motor 113 is arranged on support 1113 by screw 1131, screw 1132, screw 1133, screw 1134;Stepper motor 114 are arranged on support 1114 by screw 1141, screw 1142, screw 1143, screw 1144;Stepper motor 115 passes through spiral shell Nail 1151, screw 1152, screw 1153, screw 1154 are arranged on support 1115;Stepper motor 112, stepper motor 113, step Stepper motor 114, the output shaft of stepper motor 115 be each passed through support 1112, support 1113, support 1114, on support 1115 Through hole, stepper motor 112, stepper motor 113 output shaft it is coaxial, stepper motor 114, stepper motor 115 output shaft it is coaxial, Stepper motor 112, stepper motor 115 output shaft in same level;Cam set 116 is installed on stepper motor 112, stepping On the output shaft of motor 113, the square blind hole in cam set 116 was formed with stepper motor 112, the output shaft of stepper motor 113 Cooperation is crossed, drives cam set 116 to rotate jointly by stepper motor 112, stepper motor 113;Cam set 117 is installed on stepper motor 114th, on the output shaft of stepper motor 115, the square blind hole in cam set 117 is exported with stepper motor 114, stepper motor 115 Axle formation interference fits, drive cam set 117 to rotate jointly by stepper motor 114, stepper motor 115.
As shown in Figure 12 and Figure 13, cam set 116 is integral structure, is made up of the cam of 3 coaxial lines, corner-sharing degree, phase Coupling part is a circular shaft structure between adjacent cam, and the flank of cam of outside two is respectively provided with a square blind hole, square blind hole axis with Camshaft line is overlapped;The structure of cam set 117 is identical with cam set 116.
As shown in Fig. 2, Figure 14, Figure 20, electronic control module 2 is by casing 211, acoustical generator 212, power supply 214, controller 217, step Stepper motor driver 219, charging inlet 220, big-dipper satellite positioning and transmitter 221 are constituted;Casing 211 is that a cuboid is supreme Top box body, acoustical generator 212, power supply 214, controller 217, stepper motor driver 219, big-dipper satellite positioning and transmitter 221 It is respectively positioned on inside casing 211, acoustical generator 212, power supply 214, controller 217, stepper motor driver 219, big-dipper satellite positioning And transmitter 221 is fixed on the bottom of casing 211 by screw respectively.
As shown in figure 14, connected between instruction input device 8 and controller 217 by cable 811;Acoustical generator 212 and control Connected between device 217 by cable 213;Connected between power supply 214 and controller 217 by cable 216;Power supply 214 and charging Connected between interface 220 by cable 215;Controller 217 is connected with temperature sensor 9 by cable 911;Controller 217 with Big-dipper satellite is positioned and transmitter 221 is connected by cable 222;Pass through between controller 217 and vibration signal processor 1018 Cable 1019 is connected;Connected between controller 217 and stepper motor driver 219 by cable 218;Stepper motor driver Connected between 219 and stepper motor 112 by cable 2192;Pass through electricity between stepper motor driver 219 and stepper motor 113 Cable 2194 is connected;Connected between stepper motor driver 219 and stepper motor 114 by cable 2193;Stepper motor driver Connected between 219 and stepper motor 115 by cable 2191;Tourmaline crystal 715 on physiotherapy overcoat 7 and controller 217 it Between by cable 714 be connected.
As shown in Figure 15, Figure 16, storing bin 3 is a cuboid uncovered box structure, and the bottom of storing bin 3 is provided with and led in T-shaped The T-slot that rail 519 is engaged, storing bin 3 is slided by through hole 523 on T-rail 519.
As shown in Figure 17, Figure 18, water storehouse 4 is the closed box structure of a cuboid, and the bottom of water storehouse 4 is provided with and led in T-shaped The T-slot that rail 520 is engaged, water storehouse 4 is slided by through hole 524 on T-rail 520.
As shown in Figure 19, Figure 20, Figure 21, lower casing 5 is to distinguish at the supreme lid body structure of a cuboid, 5 four angles of lower casing Provided with screwed hole 515, screwed hole 516, screwed hole 517, screwed hole 518, the bottom right of lower casing 5 is led provided with T-rail 519, T-shaped Tank wall is provided with through hole 521, through hole 522, through hole 525, through hole 526, the right side tank wall of lower casing 5 and set behind rail 520, lower casing 5 There are through hole 523, through hole 524;Inside the via through holes 523 of storing bin 3 insertion lower casing 5, in the via through holes 524 of water storehouse 4 insertion lower casing 5 Portion;The charging inlet 220 of power supply 214 is in through hole 521.
As shown in fig. 6, upper lid 6 is a rectangular flat structure, it is sequentially provided with four angles of upper lid 6 for screw 611, screw 612nd, the through hole that screw 613, screw 614 are passed through, upper lid 6 is provided with the rectangle leant out for cam set 116, cam set 117 and led to Hole 615.
As shown in Fig. 1, Fig. 4, Figure 22, physiotherapy overcoat 7 is made up of soft cloth material, and physiotherapy overcoat 7 is cuboid closed box knot Structure, the rear portion of physiotherapy overcoat 7 is provided with through hole 712, and through hole 521, through hole 522, through hole 525, the through hole 526 on the rear wall of lower casing 5 can lead to Cross through hole 712 to expose, the right wall of physiotherapy overcoat 7 is provided with through hole 713, storing bin 3 is exposed with water storehouse 4 by through hole 713, physiotherapy The bottom of overcoat 7 is provided with slide fastener 711;The upper surface of physiotherapy overcoat 7 is provided with tourmaline 715, can be used as physiology physiotherapy, tourmaline 715 are connected by cable 716, are finally connected through cable 714 with controller 217.
As shown in figure 20, instruction input device 8 is connected by cable 811 with controller 217, and cable 811 sequentially passes through through hole 712nd, through hole 522 enters internal system;Temperature sensor 9 is connected by cable 911 with controller 217, and cable 911 is sequentially passed through Through hole 712, through hole 526 enter internal system, predominantly detect environment temperature.
As shown in Figure 22, Figure 23, it is described vibrations wave detector 10 be cube structure by lower box 1011, upper cover plate 1012, Quartz piezoelectric sensor 1013, compression spring 1014, seismic mass 1015, slip polished rod 1016, middle block 1017, vibration signal Processor 1018 is constituted;Four screwed holes 1020 are arranged at the top of lower box 1011, by screw by lower box 1011 and upper cover plate 1012 are connected;Six quartz piezoelectric sensors 1013 be separately positioned on by lower box 1011 and upper cover plate 1012 constitute just cube On six inner surfaces of body box-structure, the outer end of six slip polished rods 1016 is respectively and vertically fixed at corresponding quartz piezoelectric On the surface of sensor 1013, the other end of six slip polished rods 1016 is separately fixed on middle middle block 1017; Six seismic mass 1015 are respectively fitted on slip polished rod 1016, and there are two compression springs 1014 at each two ends of seismic mass 1015 respectively It is enclosed on slip polished rod 1016, compression spring 1014 is in compressive state in balance;Six quartz piezoelectric crystals 1013 are through even Wire is connect to be connected on vibration signal processor 1018;Vibration signal processor 1018 passes through connecting wire 1019 and controller 217 are connected, and connecting wire 1019 sequentially passes through through hole 712, through hole 525 and entered in the cavity that lower casing 5 and upper lid 6 are constituted.
Big-dipper satellite remote terminal 11 and system body can be positioned without direct physical link with its internal big-dipper satellite And transmitter 221 sets up radio communication, big-dipper satellite remote terminal 11 is used for receiving big-dipper satellite positioning and transmitter 221 is sent Information.
The present invention also provides a kind of field geology and reconnoitres safety monitoring method, including:Wave detector is shaken by compressing mineral Electric charge is produced to detect vibration;Physiotherapy overcoat by detect the electric charge number quantitative physiotherapy is carried out to human body.
Instruction input device 8 can send the instruction of massage, music, temperature detection, shock detection and physiology physiotherapy detection, Massage instruction is sent through instruction input device 8, and controller 217 is sent to through connecting wire 811, and controller 217 will massage instruction warp Connecting wire 218 is sent to stepper motor driver 219, and stepper motor driver 219 again leads drive signal through connection respectively Line 2192, connecting wire 2194, connecting wire 2193, connecting wire 2191 are sent to stepper motor 112, stepper motor 113, step Stepper motor 114, stepper motor 115, Driving Stepping Motor 112, stepper motor 113, stepper motor 114, stepper motor 115 revolve Turn;In order to improve massage effect, increase massage force, reduce volume, stepper motor driver uses simultaneous techniques, coaxial respectively Dual-motors Driving cam set 116 and cam set 117 produce vibrations, to reach the purpose of significant shock massage.
Music instruction is sent through instruction input device 8, and controller 217 is sent to through cable 811, and controller 217 is by sound Happy play instruction is sent to acoustical generator 212 through cable 213, and acoustical generator 212 sends sound.
Temperature detection instruction is sent through instruction input device 8, is sent to controller 217 through cable 811, controller 217 is connected The circuit of temperature sensor 9, temperature sensor 9 works, the temperature of detection environment, and temperature value is transmitted through cable 911 in real time To controller 217, the temperature value received is transmitted to instruction input device 8 by controller 217 through cable 811, and instruction input device 8 will connect The temperature value received is shown on a display screen;When people investigate night in the wild to encamp, opening temperature detection, if environment temperature Degree change (such as sudden temperature drop), now controller 217 sends to instruct is transmitted to stepper motor driver 219, stepping through cable 218 Drive signal is sent to stepping by motor driver 219 through cable 2192, cable 2194, cable 2193, cable 2191 respectively again Motor 112, stepper motor 113, stepper motor 114, stepper motor 115, Driving Stepping Motor 112, stepper motor 113, stepping Motor 114, stepper motor 115 rotate, and remind people to note temperature shock in the way of massage vibrative;At the same time, controller 217 send alarm command sends acoustical generator 212 to through cable 213, and acoustical generator 212 is sent alarm, carried in the way of audible alarm Wake up people.
Shock detection instruction is sent through instruction input device 8, is sent to controller 217 through cable 811, controller 217 is controlled The circuit of vibrations wave detector 10 is connected, vibrations wave detector 10 works.When spot camping environment shakes, for example earthquake, landslide, Vibrations and then compression spring 1014 occur for the seismic mass 1015 inside mud-rock flow, the activity of large-scale wild animal, vibrations wave detector 10, Quartz piezoelectric sensor 1013 is produced signal, letter by the pressure of compression spring 1014 on horizontal (X or Y) and longitudinal direction (Z) direction Through cable 1019 controller 217 is sent to after number being handled through vibration signal processor 1018, and the one side of controller 217 passes through cable 213 send alarm command to acoustical generator 212, and acoustical generator 212 sends earthquake warning sound, on the other hand sent by cable 218 Instruct stepper motor driver 219, stepper motor driver 219 again by drive signal respectively through cable 2192, cable 2194, Cable 2193, cable 2191 are sent to stepper motor 112, stepper motor 113, stepper motor 114, stepper motor 115, driving step Stepper motor 112, stepper motor 113, stepper motor 114, stepper motor 115 rotate, and remind people.
Emergency instruction is sent through instruction input device 8, is sent to controller 217 through cable 811, controller 217 refers to emergency Order is transmitted to big-dipper satellite positioning and transmitter 221 through cable 222, and big-dipper satellite positioning and transmitter 221 are accurately positioned, by position Coordinate is transmitted to big-dipper satellite remote terminal 11 through satellite, and big-dipper satellite remote terminal 11 sends alarm, and on terminal display screen Show the position coordinates of indicator of trapped personnel.
Physiology physiotherapy detection instruction is sent through instruction input device 8, and controller 217, controller 217 are sent to through cable 811 The circuit of tourmaline 715 is connected in control, because tourmaline 715 has piezoelectricity and pyroelectricity, when human body is contacted with physiotherapy overcoat 7 When, tourmaline 715 is under pressure, and collection electric charge is assembled in the inside of tourmaline 715, size, compression with the compression degree of tourmaline 715 The length of time, produces voltage and current not of uniform size, controller 217, controller 217 is sent to by cable 716,714 The quantity that tourmaline 715 produces electric charge can be detected, so as to quantify to show that people connect on the display screen of instruction input device 8 The degree for the physiotherapy received.
Embodiment described above is only the preferred embodiment to absolutely prove the present invention and being lifted, protection model of the invention Enclose not limited to this.Equivalent substitute or conversion that those skilled in the art are made on the basis of the present invention, in the present invention Protection domain within.Protection scope of the present invention is defined by claims.

Claims (10)

1. a kind of field geology reconnoitres safety monitoring system, it is characterised in that including:For by compress mineral produce electric charge with Detect the vibrations wave detector of vibration, and outside how much physiotherapys to carry out quantitative physiotherapy to human body by detecting the electric charge Set.
2. field geology as claimed in claim 1 reconnoitres safety monitoring system, it is characterised in that be additionally provided with lower casing with it is upper Lid, the lower casing constitutes the cavity of an endless totally-enclosed with upper lid, and the physiotherapy overcoat is enclosed in lower casing and constituted with upper lid Overall outside, the vibrations wave detector be located at physiotherapy overcoat outside, the lower casing has been slidably connected T-shaped guide rail, under Temperature sensor is set on the rear wall of shell, and the bottom right side of the lower casing is provided with storing bin and water storehouse, and can pass through T-shaped guide rail Extracted out at lower casing right wall, electronic control module is also set up inside the lower casing, the electronic control module includes a casing, the casing Interior setting controller is positioned and transmitter with big-dipper satellite, and the controller is positioned with big-dipper satellite and transmitter is connected by cable Connect.
3. field geology as claimed in claim 2 reconnoitres safety monitoring system, it is characterised in that also including inside lower casing Massage machine, the massage machine include installation pedestal, in the installation pedestal set driving stepper motor cam set.
4. field geology as claimed in claim 3 reconnoitres safety monitoring system, it is characterised in that set automatically controlled inside lower casing Module, the electronic control module includes casing, acoustical generator is set in casing, the acoustical generator passes through cable connection controller.
5. field geology as claimed in claim 2 reconnoitres safety monitoring system, it is characterised in that the vibrations wave detector is vertical Cube structure, by lower box, upper cover plate, quartz piezoelectric sensor, compression spring, seismic mass, slip polished rod, middle block, shake Dynamic signal processor is constituted;There are four screwed holes at the top of lower box, lower box is connected with upper cover plate by screw;Six quartz Piezoelectric transducer is separately positioned on six inner surfaces of the regular cube box-structure being made up of lower box and upper cover plate, six The outer end for sliding polished rod is respectively and vertically fixed on corresponding quartz piezoelectric sensor surface, the other end of six slip polished rods It is separately fixed on middle middle block;Six seismic mass are respectively fitted on slip polished rod, each seismic mass two ends point There are not two compression springs to be enclosed on slip polished rod, compression spring is in compressive state in balance;Six quartz piezoelectric crystals It is connected to through connecting wire on vibration signal processor;Vibration signal processor is connected by connecting wire with controller, connection Wire sequentially passes through first through hole, the second through hole and entered in the cavity that lower casing and upper lid are constituted.
6. field geology as claimed in claim 3 reconnoitres safety monitoring system, it is characterised in that the electronic control module is also set up There are stepper motor driver and charging inlet.
7. field geology as claimed in claim 3 reconnoitres safety monitoring system, it is characterised in that the upper lid is put down for a rectangle Hardened structure, upper lid is provided with the rectangular through-hole leant out for cam set.
8. field geology as claimed in claim 6 reconnoitres safety monitoring system, it is characterised in that the physiotherapy overcoat upper surface Tourmaline crystal is installed, the tourmaline crystal is connected by cable connection with controller.
9. field geology as claimed in claim 3 reconnoitres safety monitoring system, it is characterised in that the big-dipper satellite positioning and Transmitter sets up radio communication with big-dipper satellite remote terminal.
10. a kind of field geology reconnoitres safety monitoring method, it is characterised in that including:
Wave detector is shaken by compressing mineral generation electric charge to detect vibration;
Physiotherapy overcoat by detect the electric charge number quantitative physiotherapy is carried out to human body.
CN201710444283.2A 2017-06-13 2017-06-13 Field geology reconnoitres safety monitoring system and method Withdrawn CN107271032A (en)

Priority Applications (2)

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CN201710444283.2A CN107271032A (en) 2017-06-13 2017-06-13 Field geology reconnoitres safety monitoring system and method
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2018228087A1 (en) * 2017-06-13 2018-12-20 中国石油大学(华东) Detection device based on piezoelectric property of geological mineral
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Families Citing this family (2)

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Family Cites Families (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5356369A (en) * 1992-06-11 1994-10-18 Kabushiki Kaisha Japan Health Portable vibration finger pressure massager
CN201488805U (en) * 2009-09-02 2010-05-26 成都科鑫电气有限公司 Piezoelectric type omnibearing vibration sensor
CN102371922A (en) * 2010-08-17 2012-03-14 焦登科 Vehicle-mounted safety automatic massage pillow
CN102830429A (en) * 2012-08-22 2012-12-19 安徽理工大学 Micro-seismic signal collection system
CN107271032A (en) * 2017-06-13 2017-10-20 中国石油大学(华东) Field geology reconnoitres safety monitoring system and method
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CN107037479A (en) * 2017-06-13 2017-08-11 山东科技大学 A kind of emergent safety pre-control system and method
CN107115107A (en) * 2017-06-13 2017-09-01 中国地质大学(武汉) A kind of travel at one's own expense's health monitoring and management system and method
CN107271800A (en) * 2017-06-13 2017-10-20 中国石油大学(华东) A kind of detection means and method based on geology mineral piezoelectricity
CN107065003A (en) * 2017-06-13 2017-08-18 山东科技大学 Safety monitoring and prior-warning device and method under high-noise environment
CN107290483A (en) * 2017-06-13 2017-10-24 山东科技大学 Multi-functional danger early warning, save oneself and prevention and cure of occupational disease device and method
CN107290078A (en) * 2017-06-13 2017-10-24 中国地质大学(武汉) Multifunction outdoor, which is explored, to be monitored and warning device and method

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2018228087A1 (en) * 2017-06-13 2018-12-20 中国石油大学(华东) Detection device based on piezoelectric property of geological mineral
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US11467296B2 (en) 2017-06-13 2022-10-11 China University Of Petroleum (East China) Detection device based on the piezoelectric property of geological mineral

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