CN108171933A - The long-range earthquake prewarning device in remote mountain areas - Google Patents

The long-range earthquake prewarning device in remote mountain areas Download PDF

Info

Publication number
CN108171933A
CN108171933A CN201810011306.5A CN201810011306A CN108171933A CN 108171933 A CN108171933 A CN 108171933A CN 201810011306 A CN201810011306 A CN 201810011306A CN 108171933 A CN108171933 A CN 108171933A
Authority
CN
China
Prior art keywords
housing
pipe
water
support column
long
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.)
Pending
Application number
CN201810011306.5A
Other languages
Chinese (zh)
Inventor
张建
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.)
Chengdu Point Point Technology Co Ltd
Original Assignee
Chengdu Point Point Technology Co Ltd
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 Chengdu Point Point Technology Co Ltd filed Critical Chengdu Point Point Technology Co Ltd
Priority to CN201810011306.5A priority Critical patent/CN108171933A/en
Publication of CN108171933A publication Critical patent/CN108171933A/en
Pending legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/02Alarms for ensuring the safety of persons
    • G08B21/10Alarms for ensuring the safety of persons responsive to calamitous events, e.g. tornados or earthquakes
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01VGEOPHYSICS; GRAVITATIONAL MEASUREMENTS; DETECTING MASSES OR OBJECTS; TAGS
    • G01V1/00Seismology; Seismic or acoustic prospecting or detecting
    • G01V1/01Measuring or predicting earthquakes

Landscapes

  • Life Sciences & Earth Sciences (AREA)
  • Physics & Mathematics (AREA)
  • Geology (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • Environmental & Geological Engineering (AREA)
  • General Physics & Mathematics (AREA)
  • Business, Economics & Management (AREA)
  • Emergency Management (AREA)
  • Engineering & Computer Science (AREA)
  • Acoustics & Sound (AREA)
  • Remote Sensing (AREA)
  • Geophysics (AREA)
  • Geophysics And Detection Of Objects (AREA)

Abstract

The invention discloses the long-range earthquake prewarning devices in remote mountain areas, including housing, the housing lower surface is fixedly connected with four support columns, case top is provided with water inlet pipe, housing bottom is provided with outlet pipe, the water inlet pipe connects enclosure interior and exterior space with outlet pipe, the water inlet pipe top is connected with water storage funnel, several tilted-putted baffles are provided in housing, and the inclined direction of two neighboring baffle is different, the inner space of housing is separated into several compartments by baffle from top to bottom, water hole is provided on baffle, the water hole connects two adjacent compartments.The present invention disclosure satisfy that the Geography monitor demand of mountain area complicated landform, and the time difference of enclosure interior is flowed through by flow and can judge the slight inclination of earthquake prediction apparatus, improves the accuracy of monitoring;Meanwhile water storage funnel can store water when rainy, it is reasonable using rainwater to have achieved the purpose that, has saved operating cost, has reduced monitoring cost.

Description

The long-range earthquake prewarning device in remote mountain areas
Technical field
The present invention relates to earthquake prediction apparatus fields, and in particular to the long-range earthquake prewarning device in remote mountain areas.
Background technology
Earthquake be also known as earthquake, vibrate, be vibration caused by during earth's crust quick release of energy, during which can generate earthquake A kind of natural phenomena of wave.Mutual extrusion and collision between plate and plate on the earth causes edge of plate and plate interiors to generate The changing of the relative positions and rupture are the main reason for causing earthquake.
According to statistics, the annual earthquake that more than 500 ten thousand secondary earthquakes about occur, i.e., up to ten thousand times to occur daily on the earth.Wherein absolutely It is most of too small or too far, so that people are imperceptible;It can cause the earthquake about one of especially severe disaster twice.Earthquake Caused disaster may be huge, therefore how predict that earthquake is always that scientists are wanted to solve the problems, such as.
At present, predict that the mode of earthquake is various, one of which is to judge certain by monitoring the variation of ground inclination degree Whether the soil in one region generates movement, and this earthquake prediction apparatus is generally positioned at the more complicated mountain area of landform.It is but existing Prediction meanss be not only not suitable for the landform of mountain area complexity, while do not utilize the abundant rainwater resource in mountain area reasonably, cause Monitoring cost is high, does not have promotional value.
Invention content
The purpose of the present invention is to provide the long-range earthquake prewarning device in remote mountain areas, to solve existing earthquake prediction apparatus Being not suitable for mountain area complicated landform, monitoring cost is high simultaneously, does not have the problem of universal application value.
The present invention is achieved through the following technical solutions:
The long-range earthquake prewarning device in remote mountain areas, including housing, the housing lower surface is fixedly connected with four support columns, Case top is provided with water inlet pipe, and housing bottom is provided with outlet pipe, the water inlet pipe connected with outlet pipe enclosure interior with it is outer Portion space, the water inlet pipe top are connected with water storage funnel, several tilted-putted baffles are provided in housing, and two neighboring The inclined direction of baffle is different, and the inner space of housing is separated into several compartments, was provided on baffle by baffle from top to bottom Water hole, the water hole connect two adjacent compartments.
Although the prior art can judge the tendency of landform so as to predict whether to send out according to the tilt variation degree of landform Radix Rehmanniae shakes, but this kind of device is generally unsuitable for complicated alpine terrain.For example, pass through the horizontal journey of infrared detection landform Degree, but this detection is required to find original marking point in each measure, and original marking point may be due to the change of landform Change or the variation of environment and change, causing to measure inaccurate or even original marking point can be by wild animal to destroying.Together When, the prior art fails reasonably to utilize the abundant rainwater resource in mountain area, it is impossible to accomplish long lasting for monitoring, monitoring cost Height does not have widely promotional value.
To solve the above-mentioned problems, the present invention provides a kind of novel earthquake prediction apparatus.The device be likewise supplied with housing, Four support columns of housing lower surface are fixedly connected on, be arranged on the water inlet pipe of case top and are arranged on the water outlet of housing bottom It manages, corresponding valve is both provided with to switch water inlet pipe and outlet pipe on water inlet pipe and outlet pipe.Unlike, inside the device Several tilted-putted baffles are provided with, term inclination refers to that baffle is not horizontal positioned, but has centainly with horizontal plane Angle, it is preferable that the angle of baffle and horizontal plane is 5-15 °, and the number of baffle is 7-15.During specific setting, angle and gear Plate number matches, such as angle is 7 °, and baffle is 15, and the purpose is to make sluggish flow to flow through each baffle, prolongs Time of the long flow in housing, hereafter will be detailed for judging whether earthquake prediction apparatus tilts to generate the larger time difference It describes in detail bright.The inclined direction of two neighboring baffle is not both the accuracy in order to improve monitoring, no matter earthquake prediction apparatus towards which A direction is slightly slanted, and the region that flow flows through baffle can change, thus the time in housing can also generate difference. The inner space of housing is separated into several compartments by baffle from top to bottom, i.e. the inner wall of the side of baffle and housing connects, several The inner space of housing is then divided into several top-down compartments by baffle, and the water hole set on baffle is used for flow from position Compartment in top flows to underlying compartment, and the shape of flowing hole can be strip.The water storage of water inlet pipe top connection Funnel is used to lay in monitoring of the rainwater for earthquake prediction apparatus when raining.
The action principle of the earthquake prediction apparatus is that flow is passed through into housing, and flow flows through the part area of a baffle It flows on next baffle from flowing hole behind domain, is finally flowed out from outlet pipe after flowing successively through each baffle.Since flow only can It is flowed through in a part for baffle under gravity, if earthquake prediction apparatus generates inclination, no matter whichaway tilts, Angle between all baffles and horizontal plane can generate variation, then flow flows through region on each baffle, the time also can Variation is generated, variation can be also generated so as to flow through the total time of enclosure interior.In certain period of time such as one day or convection current in several days Total time through enclosure interior is monitored and records, you can the inclined degree of landform is accomplished to monitor.
Specifically, according to the length of different landform selection support columns housing bottom surface to be kept to be parallel to horizontal plane, this State is original state.After installation is complete, certain water is put into water storage funnel, it is preferable that divided in water storage funnel Put two water levels mark, may insure that the water flow being passed through is certain when measuring every time in this way, be conducive to measurement standardization and into One step improves the accuracy of measurement result.Open valve later, and time T1 is recorded, flow is waited for be flowed from outlet pipe later Go out, time T2 recorded when outflow first is dripped, can be adjusted by the flow velocity of water inlet pipe according to actual conditions by valve, But it is necessary to ensure that the flow measured every time and roughly the same by the flow velocity of water inlet pipe, and flow is made to flow through enclosure interior space Time difference long enough, usual time difference are 3~6 minutes.Time difference △ T0 is obtained by T2 and T1.Patrolman is certain later △ T are detected after period again, by observing the variation of △ T to judge whether earthquake prediction apparatus tilts, if data show △ T Gradually increase or be gradually reduced, be likely to landform and gradually changing, if △ T cataclysms, in the possibility that remover is significantly damaged Property when, need to enhance your vigilance, close observation, and other earthquake prediction apparatus for combining this area's setting whether there is identical feelings Condition is further to judge.
It disclosure satisfy that the Geography monitor demand of mountain area complicated landform by above structure, enclosure interior flowed through by flow Time difference can judge the slight inclination of earthquake prediction apparatus, improve the accuracy of monitoring;Meanwhile water storage funnel can be Water is stored when rainy, it is reasonable using rainwater to have achieved the purpose that, has saved operating cost, has reduced monitoring cost.
Further, the protection pipe of upward opening is further included, support column bottom end passes through the opening on protection pipe top and stretches into Inside protection pipe, protection pipe is coaxial with support column, 1.5~2 times of a diameter of support column diameter of protection pipe top end opening;Support Column bottom end is connected by the bottom of second spring and protection pipe, and the side of support column is connected by the first spring and the inner wall of protection pipe It connects.When the wind-force of region is stronger, due to using rigid connection between prediction meanss and its support column, what support column was subject to Stress is larger to be likely to occur and fractures or the ground movement of support column surrounding, and prediction meanss is caused irreversibly to tilt;And or The attack of person animal causes device to generate irreversible inclination.Device can just be safeguarded after a certain period, not only maintain It is next pretty troublesome, and can may be damaged again quickly after safeguarding.Inclined device can generate data when obtaining time difference data The problem of deviation is larger in turn results in prediction error, perhaps only irreversible caused by strong wind to be inclined such that control terminal is produced Radix Rehmanniae shape occurs great change, the false judgment that the possibility height needs of earthquake are enhanced your vigilance occurs.
To solve the above-mentioned problems, the bottom of every support column is respectively positioned in a protection pipe, i.e., protection pipe top is set There is opening, the bottom end of support column passes through the opening and stretches into the inside of protection pipe, and protection pipe is coaxial with support column, i.e. the mother of the two Line is conllinear.The side of support column is provided with the side of several first springs, the first spring connection support column and protection pipe, support Several second springs, the bottom connection of second spring and protection pipe are provided on column lower surface.In general, the spring of second spring is strong Degree, because second spring plays the role of load-bearing, is mainly responsible for support column vertically more than the spring strength of the first spring Reset, tensioning spring may be used in second spring;First spring is mainly used for the reset of support column radially, it is ensured that it is not It collides with the side wall of protection pipe.The diameter of protection pipe top end opening needs the diameter more than support column, so that support column It radially can back and forth be shaken in protection pipe, it is preferable that the 1.5 of a diameter of support column diameter of protection pipe top end opening~ 2 times, this distance is used to limit the amplitude of fluctuation of prediction meanss, it is preferable that the 1.5 of a diameter of support column diameter of top end opening Times, excessive amplitude of fluctuation easily causes that spring reset is difficult and effect that too small amplitude of fluctuation unloads de-stress is poor.When positioned at ground When earthquake prediction apparatus above face is acted on by external force, such as the wind that wind scale is larger, prediction meanss can generate shaking, by In the first spring and the synergistic effect of second spring, support column can shake in protection pipe, and then elastic force counteracts wind to pre- Survey the part stress of device effect so that support column will not be caused to fracture by excessive stress, simultaneously because only support column Shaking is generated, protection pipe receives that active force is small, therefore the soil around protection pipe will not loosen, the stability of prediction meanss, Safety is protected.Similarly, when wild animal hit earthquake prediction apparatus when, shaking of the support column in protection pipe unload in addition to The stress that fractional prediction device is subject to, is effectively protected prediction meanss;When there is hail to pound to prediction meanss, support column is vertical Move down equally can removal part impulse force, increase the service life of prediction meanss.
To sum up, by above structure, when earthquake prediction apparatus is by temporary external impact, the first bullet can be passed through The synergistic effect of spring and second spring so that support column is shaken in protection pipe with the removable part component of stress, reduces support column and pre- The probability of device damage is surveyed, support column, prediction meanss is avoided to generate the inaccurate survey caused by irreversible inclination in impact Amount, after external impact removes, under the synergistic effect of the first spring and second spring, before the gradual recovery stress effect of support column Its position in protection pipe, to ensure the accuracy of prediction meanss monitoring;Protection pipe also plays support column certain protection Effect avoids soil layer from extruding being caused to be allowed to fracture to support column during slowly moving;Reduce the dimension of earthquake prediction apparatus Number is repaiied, reduces maintenance cost, prediction meanss is enable to be applied to the monitoring in complicated landform mountain area for a long time.
As the improvement project of the present invention, the second infrared distance measuring device is provided in water inlet pipe, described second is infrared Range unit is electrically connected with being arranged on into the second processor in water pipe outer wall, and the first infrared distance measurement dress is provided in outlet pipe It puts, first infrared distance measuring device is electrically connected with the first processor being arranged in water outlet pipe outer wall;The first processor Network interface is both provided with second processor.Infrared distance measuring device can use miniature infrared range-measurement system, and infrared range-measurement system leads to Its infrared transmitting device is crossed with the variation of time difference caused by infrared receiver to judge whether there is flow to pass through.When When second infrared distance measuring device detects that the time difference of Infrared emitting and receiving changes, telecommunications is sent to second processor Number, second processor receives the terminal such as mobile phone or remote terminal by radio network interface to testing staff after signal Signal is sent, records time T1;Similarly, it when the first infrared distance measuring device detects time difference variation, is sent out to first processor Electric signals, first processor are sent out after receiving signal by terminal from radio network interface to testing staff or remote terminal The number of delivering letters records time T2.Testing staff calculates flow according to collected T1 and T2 and flows through the time difference of enclosure interior simultaneously Record.By above structure, automanual monitoring is realized, monitoring data are more accurate relative to artificial record, further carry The high accuracy rate of monitoring.
Further, the outlet pipe includes horizontal segment and vertical section, and first infrared distance measuring device is arranged on water outlet On the inner wall of the vertical section of pipe.Outlet pipe can be arranged to a bend pipe structure, and the first infrared distance measuring device is arranged on water outlet In the vertical section of pipe, ponding is avoided to be deposited in horizontal segment, the first infrared distance measuring device is caused to record the time in advance, is improved The accuracy of monitoring.
Further, the valve on water inlet pipe is electrically connected with third processor, and network is provided in the third processor Interface.Third processor received by network interface be turned on and off to control after signal valve opening on water inlet pipe or It closes, which is the prior art, is enabled a user to by above structure through mobile phone terminal or remote terminal network control The opening and closing of valve processed.
Further, the top of the housing is dome structure.It is dome structure, i.e. circular arc by the top design of housing Top so that object be not easy case top accumulate, so as to reduce due to substance stack and caused by prediction meanss it is inclined Probability, while dome structure reduces windage so that housing is influenced to reduce by wind-force.
Further, it is provided with strainer in the water storage funnel.Strainer can prevent the substances such as fallen leaves, silt from falling into water storage Water inlet pipe is blocked in funnel, while is also prevented from the volume in housing being caused to change after silt enters housing, so as to influence The time difference of flow.
Compared with prior art, the present invention it has the following advantages and advantages:
1st, the present invention disclosure satisfy that the Geography monitor demand of mountain area complicated landform, and the time of enclosure interior is flowed through by flow Difference can judge the slight inclination of earthquake prediction apparatus, improve the accuracy of monitoring;Meanwhile water storage funnel can rain When store water, it is reasonable using rainwater to have achieved the purpose that, has saved operating cost, has reduced monitoring cost;
2nd, when earthquake prediction apparatus is by temporary external impact, the first spring and the association of second spring can be passed through Same-action so that support column is shaken in protection pipe with the removable part component of stress, reduces support column and the probability of prediction meanss damage, Support column, prediction meanss is avoided to generate the inaccurate measurement caused by irreversible inclination in impact, when external impact removes Afterwards, under the synergistic effect of the first spring and second spring, its position in protection pipe before the gradual recovery stress effect of support column It puts, to ensure the accuracy of prediction meanss monitoring;Protection pipe also plays support column certain protective effect, avoids soil layer slow Support column is caused to squeeze in mobile process and is allowed to fracture;Reduce the maintenance frequency of earthquake prediction apparatus, reduce repair Cost enables prediction meanss to be applied to the monitoring in complicated landform mountain area for a long time.
Description of the drawings
Attached drawing described herein is used for providing further understanding the embodiment of the present invention, forms one of the application Point, do not form the restriction to the embodiment of the present invention.In the accompanying drawings:
Fig. 1 is the structure diagram of the specific embodiment of the invention;
Fig. 2 is the partial cutaway schematic of outlet pipe of the present invention.
Label and corresponding parts title in attached drawing:
1- protection pipes, 2- support columns, 3- baffles, the first springs of 4-, 5- second springs, 6- water holes, 7- first processors, 8- housings, 9- water storage funnels, 10- outlet pipes, the first infrared distance measuring devices of 11-, 12- second processors.
Specific embodiment
To make the objectives, technical solutions, and advantages of the present invention clearer, with reference to embodiment and attached drawing, to this Invention is described in further detail, and exemplary embodiment of the invention and its explanation are only used for explaining the present invention, do not make For limitation of the invention.
Embodiment 1:
The long-range earthquake prewarning device in remote mountain areas as shown in Figure 1, including housing 8,8 lower surface of housing is fixedly connected with four Root support column 2,8 top of housing are provided with water inlet pipe, and 8 bottom of housing is provided with outlet pipe 10, and water inlet pipe is connected with outlet pipe 10 8 inside of housing and exterior space, water inlet pipe top are connected with water storage funnel 9, and several tilted-putted baffles are provided in housing 3, and the inclined direction of two neighboring baffle 3 is different, the inner space of housing 8 is separated into several compartments by baffle 3 from top to bottom, Water hole 6 is provided on baffle 3, water hole 6 connects two adjacent compartments;Further include the protection pipe 1 of upward opening, support column 2 bottom ends pass through the opening on 1 top of protection pipe and stretch into inside protection pipe 1, and protection pipe 1 and support column 2 are coaxial, 1 top of protection pipe 1.5~2 times of 2 diameter of a diameter of support column of opening;2 bottom end of support column is connected by the bottom of second spring 5 and protection pipe 1 It connects, the side of support column 2 is connect by the first spring 4 with the inner wall of protection pipe 1;The top of housing 8 is dome structure;Water storage leaks Strainer is provided in bucket 9.
During installation, protection pipe 1 is put into soil layer, the depth that adjustment protection pipe 1 is inserted into soil layer so that 8 bottom of housing is parallel In horizontal plane.After installation is complete, certain water is put into water storage funnel 9.Open valve later, and time T1 is recorded, later Flow is waited for be flowed out from outlet pipe, time T2 is recorded when outflow first is dripped.Time difference △ T0 is obtained by T2 and T1.Later Patrolman detects △ T again after a certain period of time, judges earthquake prediction apparatus by observing the variation of different periods △ T Whether tilt, being likely to landform if △ T gradually increase or are gradually reduced is gradually changing, if △ T cataclysms, in remover It significantly during impaired possibility, needs to enhance your vigilance, close observation, and other earthquake prediction apparatus for combining this area's setting are It is no there is a situation where it is identical further to judge.
The present invention disclosure satisfy that the Geography monitor demand of mountain area complicated landform, and the time difference of enclosure interior is flowed through by flow It can judge the slight inclination of earthquake prediction apparatus, improve the accuracy of monitoring;Meanwhile water storage funnel 9 can rain When store water, it is reasonable using rainwater to have achieved the purpose that, has saved operating cost, has reduced monitoring cost.
Embodiment 2:
As depicted in figs. 1 and 2, on the basis of embodiment 1, the second infrared distance measuring device is provided in water inlet pipe, the Two infrared distance measuring devices are electrically connected with being arranged on into the second processor 12 in water pipe outer wall, and it is red to be provided with first in outlet pipe 10 Outer range unit 11, the first infrared distance measuring device 11 are electrically connected with the first processor 7 being arranged on 10 outer wall of outlet pipe;First Processor 7 is both provided with network interface with second processor 12;Outlet pipe 10 includes horizontal segment and vertical section, and described first is infrared Range unit 11 is arranged on the inner wall of the vertical section of outlet pipe 10;Valve on water inlet pipe is electrically connected with third processor, institute It states in third processor and is provided with network interface.By above-mentioned setting, testing staff can obtain T1, T2 simultaneously by mobile phone terminal The unlatching of water inlet pipe is controlled, improves the accuracy rate and convenience of monitoring;Alternatively, it is also possible to obtain data by remote terminal, The earthquake prediction apparatus is enabled to be placed on the monitoring that remote mountain areas carries out landform gradient for a long time.
Above-described specific embodiment has carried out the purpose of the present invention, technical solution and advantageous effect further It is described in detail, it should be understood that the foregoing is merely the specific embodiment of the present invention, is not intended to limit the present invention Protection domain, all within the spirits and principles of the present invention, any modification, equivalent substitution, improvement and etc. done should all include Within protection scope of the present invention.

Claims (7)

1. the long-range earthquake prewarning device in remote mountain areas, including housing (8), housing (8) lower surface is fixedly connected with four branch Dagger (2), housing (8) top are provided with water inlet pipe, and housing (8) bottom is provided with outlet pipe (10), the water inlet pipe and water outlet Manage (10) connection housing (8) inside and exterior space, which is characterized in that the water inlet pipe top is connected with water storage funnel (9), shell Several tilted-putted baffles (3) are provided in body (8), and the inclined direction of two neighboring baffle (3) is different, baffle (3) will The inner space of housing (8) is separated into several compartments from top to bottom, and water hole (6), the water hole are provided on baffle (3) (6) two adjacent compartments are connected.
2. the long-range earthquake prewarning device in remote mountain areas according to claim 1, which is characterized in that further include upward opening Protection pipe (1), support column (2) bottom end passes through the opening on protection pipe (1) top and to stretch into protection pipe (1) internal, protection pipe (1) with Support column (2) coaxially, 1.5~2 times of a diameter of support column (2) diameter of protection pipe (1) top end opening;Support column (2) bottom end It is connect by second spring (5) with the bottom of protection pipe (1), the side of support column (2) passes through the first spring (4) and protection pipe (1) inner wall connection.
3. the long-range earthquake prewarning device in remote mountain areas according to claim 1, which is characterized in that is provided in water inlet pipe Two infrared distance measuring devices, second infrared distance measuring device are electrically connected with being arranged on into the second processor (12) in water pipe outer wall It connects, is provided with the first infrared distance measuring device (11) in outlet pipe (10), first infrared distance measuring device (11) is with being arranged on out First processor (7) electrical connection on water pipe (10) outer wall;The first processor (7) is both provided with second processor (12) Network interface.
4. the long-range earthquake prewarning device in remote mountain areas according to claim 3, which is characterized in that outlet pipe (10) packet Horizontal segment and vertical section are included, on the inner wall of vertical section that first infrared distance measuring device (11) is arranged on outlet pipe (10).
5. the long-range earthquake prewarning device in remote mountain areas according to claim 3, which is characterized in that the valve electricity on water inlet pipe Third processor is connected with, network interface is provided in the third processor.
6. the long-range earthquake prewarning device in remote mountain areas according to claim 1, which is characterized in that the top of the housing (8) Portion is dome structure.
7. the long-range earthquake prewarning device in remote mountain areas according to claim 1, which is characterized in that the water storage funnel (9) Inside it is provided with strainer.
CN201810011306.5A 2018-01-05 2018-01-05 The long-range earthquake prewarning device in remote mountain areas Pending CN108171933A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201810011306.5A CN108171933A (en) 2018-01-05 2018-01-05 The long-range earthquake prewarning device in remote mountain areas

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201810011306.5A CN108171933A (en) 2018-01-05 2018-01-05 The long-range earthquake prewarning device in remote mountain areas

Publications (1)

Publication Number Publication Date
CN108171933A true CN108171933A (en) 2018-06-15

Family

ID=62517690

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201810011306.5A Pending CN108171933A (en) 2018-01-05 2018-01-05 The long-range earthquake prewarning device in remote mountain areas

Country Status (1)

Country Link
CN (1) CN108171933A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109764895A (en) * 2019-03-20 2019-05-17 中国地震局地壳应力研究所 A kind of fast and stable system and method for the inclination sensor for ground inclination monitoring
CN113390390A (en) * 2020-03-11 2021-09-14 特尔科股份有限公司 Intelligent safety management sensor for measuring safety related data of structure

Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1746700A (en) * 2005-10-11 2006-03-15 汪柏年 Method and device for measuring displacement/distance based on supersonic wave or sonic continuous sound-field phase-demodulating principle
CN201392403Y (en) * 2009-04-01 2010-01-27 杨士房 Simple earthquake prediction device
CN203204773U (en) * 2013-04-23 2013-09-18 余建华 Safety alarm device for vibration and tilt of house
CN104198003A (en) * 2014-09-22 2014-12-10 北京昌民技术有限公司 Ultrasonic flowmeter
CN105130134A (en) * 2015-09-29 2015-12-09 泗县峻林机械有限公司 Water filtration sand remover
CN105572766A (en) * 2015-12-25 2016-05-11 无锡信大气象传感网科技有限公司 Rain gauge capable of flow distribution and monitoring
CN105632107A (en) * 2014-10-31 2016-06-01 南京思摩特农业科技有限公司 Hillside land landslide early-warning method
JP2016136475A (en) * 2015-01-23 2016-07-28 日鐵住金建材株式会社 Inclination detection device and accident detection guard fence employing the same
KR20160098908A (en) * 2015-02-11 2016-08-19 한국전자통신연구원 Alerting method and alerting system
CN207883098U (en) * 2018-01-05 2018-09-18 成都点点通科技有限公司 A kind of long-range earthquake source of early warning in remote mountain areas

Patent Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1746700A (en) * 2005-10-11 2006-03-15 汪柏年 Method and device for measuring displacement/distance based on supersonic wave or sonic continuous sound-field phase-demodulating principle
CN201392403Y (en) * 2009-04-01 2010-01-27 杨士房 Simple earthquake prediction device
CN203204773U (en) * 2013-04-23 2013-09-18 余建华 Safety alarm device for vibration and tilt of house
CN104198003A (en) * 2014-09-22 2014-12-10 北京昌民技术有限公司 Ultrasonic flowmeter
CN105632107A (en) * 2014-10-31 2016-06-01 南京思摩特农业科技有限公司 Hillside land landslide early-warning method
JP2016136475A (en) * 2015-01-23 2016-07-28 日鐵住金建材株式会社 Inclination detection device and accident detection guard fence employing the same
KR20160098908A (en) * 2015-02-11 2016-08-19 한국전자통신연구원 Alerting method and alerting system
CN105130134A (en) * 2015-09-29 2015-12-09 泗县峻林机械有限公司 Water filtration sand remover
CN105572766A (en) * 2015-12-25 2016-05-11 无锡信大气象传感网科技有限公司 Rain gauge capable of flow distribution and monitoring
CN207883098U (en) * 2018-01-05 2018-09-18 成都点点通科技有限公司 A kind of long-range earthquake source of early warning in remote mountain areas

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109764895A (en) * 2019-03-20 2019-05-17 中国地震局地壳应力研究所 A kind of fast and stable system and method for the inclination sensor for ground inclination monitoring
CN109764895B (en) * 2019-03-20 2023-09-01 应急管理部国家自然灾害防治研究院 Quick stabilizing system and method for inclination sensor for ground inclination monitoring
CN113390390A (en) * 2020-03-11 2021-09-14 特尔科股份有限公司 Intelligent safety management sensor for measuring safety related data of structure

Similar Documents

Publication Publication Date Title
Panu et al. Challenges in drought research: some perspectives and future directions
Chase et al. Simulated impacts of historical land cover changes on global climate in northern winter
CN108171933A (en) The long-range earthquake prewarning device in remote mountain areas
CN109781373A (en) A kind of multi-direction Full-automatic high frequency gradient sand-taped instrument
CN107843713A (en) Mud-rock flow firing test rainfall simulation method
Jenicek et al. Canopy structure and topography effects on snow distribution at a catchment scale: Application of multivariate approaches
Marcial et al. Instrumental lahar monitoring at Mount Pinatubo
CN105897361A (en) Earthquake alarm broadcasting equipment and related method
CN207883098U (en) A kind of long-range earthquake source of early warning in remote mountain areas
CN207883097U (en) A kind of earthquake early-warning system
Walter et al. Calving event detection by observation of seiche effects on the Greenland fjords
Roeger et al. Verification of mesoscale numerical weather forecasts in mountainous terrain for application to avalanche prediction
CN107065040A (en) The long-range full-automatic rain fall monitor of pre- Geological disaster prevention
CN106501843A (en) A kind of identification determination methods to magnitude
CN108226993A (en) Earthquake early-warning system based on fluid induction mechanism
CN101118286A (en) Underground deep layer seismic monitoring system and working method thereof
Adams et al. Automated Terrestrial Laser Scanner measurements of small-scale snow avalanches
CN109141466A (en) A kind of synthesis display processing unit of Ship Equipment test data
CN108572403A (en) Rainfall gauge
CN209657448U (en) A kind of monitoring device calculated using mist
CN211628034U (en) Interactive coupling multi-dimensional intelligent collapse and rock fall monitoring system
CN205910356U (en) Hail feelings monitor
CN206649177U (en) Udometric water feed apparatus and rainfall gauge
RO132364A2 (en) Pluviometer with gprs data transmission
CN207366759U (en) A kind of shot detection system structure of suitable erection formula

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
AD01 Patent right deemed abandoned

Effective date of abandoning: 20230228

AD01 Patent right deemed abandoned