CN209656905U - Six component marine electromagnetic data measuring units and ocean controllable source electromagnetic survey system - Google Patents
Six component marine electromagnetic data measuring units and ocean controllable source electromagnetic survey system Download PDFInfo
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- CN209656905U CN209656905U CN201920221108.1U CN201920221108U CN209656905U CN 209656905 U CN209656905 U CN 209656905U CN 201920221108 U CN201920221108 U CN 201920221108U CN 209656905 U CN209656905 U CN 209656905U
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Abstract
The utility model belongs to ocean applied geophysics Exploration Domain, is related to underwater and sea floor object detection technology.Six component marine electromagnetic data measuring units, it is characterised in that: including three-component electric field sensing unit and three-component magnetic field sensing cell;The three-component electric field sensing unit is made of three mutually orthogonal electric-field sensors, for measuring the ocean three-component electric field data of present position;The three-component magnetic field sensing cell is made of three mutually orthogonal magnetic field sensors, for measuring the ocean three-component magnetic field data of its present position.The six component marine electromagnetic data measuring units and ocean controllable source electromagnetic survey system of the utility model can be used to detect underwater mobile or static target, the Polymetallic Minerals resource on exploration sea bed, the gas hydrates of seabed underground and petroleum resources, investigation Marine Geology structure and construction.
Description
Technical field
The utility model belongs to ocean applied geophysics Exploration Domain, is related to underwater and sea floor object detection technology.
Background technique
There are mainly three types of current marine electromagnetic data acquisition modes, first is that independent marine electromagnetic data acquisition station is heavy
Bottom, excitaton source drag, such as sea-floor electromagnetic acquisition station and big function that EMGS, OHM and Schlumberger generally use in the world
Rate drags field source, has laid seabed acquisition station in advance, is then tow under water by emission source ship along cable direction above acquisition station
The mobile excitation of controllable electric dipole current source, controllable source electromagnetism and magnetotelluric data acquisition can be completed at the same time.Such as
The three-component magnetic field and three-component electric field marine electromagnetic data acquisition station that ZL201210449479.8 is announced are exactly sinking type independence
Marine electromagnetic data acquisition station;Second is that marine electromagnetic data acquisition cable with excite cable synchronize drag, as PGS company is proposed one
Kind pull-type ocean controllable source electric field data acquisition system.The system only acquires an electric field component along cable direction, does not adopt
Collect any magnetic-field component data.Do not measure any magnetic-field component marine electromagnetic field data be it is incomplete, be unfavorable for sea
The electrical property feature of bottom geologic structure and reservoir carries out detailed understanding and analysis.In addition, its electrode along cable direction distribution
Be not it is equally distributed, the cable near the acquisition vessel is just distributed very sparse.In addition, this pull-type ocean controllable source electricity
Field data acquisition system is only capable of carrying out the electric field data collecting work of the frequency domain of time-domain or single frequency point respectively;Third is that electromagnetism
Cable sinks to the bottom laying, excitaton source drags for data acquisition, and there is presently no actual applications, such as CN102472829A to disclose a kind of sea
Bottom electromechanical cable data acquire cable system, and working method is sea-floor electromagnetic cable (EM OBC-ElectroMagnetic
Ocean Bottom Cable) by cable boat be first launch be routed to seabed, then tow under water by emission source ship along cable side
To controllable electric dipole current source away from a certain distance of seabed move ahead and into seawater emit controllable current waveform, by throwing in advance
Put the electromechanical cable acquisition sea-floor electromagnetic data for being routed to seabed.After data acquire, cable boat recycles sea-floor electromagnetic cable,
Dispensing is routed to new measurement work area, then the repeatedly data Collecting operation of sea-floor electromagnetic signal.
The detection of mesh first three main marine electromagnetic or exploitation method be all using the linear dipole along the towing of cable direction
Current source.That there are mode of excitation is single for this single linear electric dipole current source, excitation direction is single, excitation limited area, nothing
Method carries out the difficulty of the comprehensive excitation of large area to the three-dimensional geologic of underwater detected target and seabed underground, is difficult to underwater
Detected target and the three-dimensional geologic of seabed underground are accurately and reliably imaged.It is post non of low resistance body additionally, due to seawater, uses
When electric dipole current source excites in the seawater, most excitation current is concentrated in the seawater of two emitting antennas, is worn
Saturating seawater reaches the electric current very little of stratum depths under seabed, the electromagnetic anomaly signal for causing seabed deep under ground geologic body to generate
Signal-to-noise ratio is extremely low, significantly limits the ability of ocean EM exploration equipment detection seabed deep under ground geologic objective.
Utility model content
In view of it is existing along cable direction towing single linear electric dipole current source there are the problem of, the utility model provides
A kind of ocean controllable source electromagnetic survey system and method.
The technical issues of in order to solve the utility model, first technical solution that the utility model uses is: six components
Marine electromagnetic data measuring unit, including three-component electric field sensing unit and three-component magnetic field sensing cell;The three-component
Electric field sensing unit is made of three mutually orthogonal electric-field sensors, for measuring the ocean three-component electric field number of present position
According to;The three-component magnetic field sensing cell is made of three mutually orthogonal magnetic field sensors, for measuring its present position
Ocean three-component magnetic field data.
The electric-field sensor is unpolarizable electrode pair, and unpolarizable electrode material is metal or nonmetallic materials.
The magnetic field sensor is induction type magnetic field sensor or fluxgate type magnetic field sensor, or super
Magnetic conduction field sensor or be cold atom magnetic field sensor.
Second technical solution that the utility model solves the use of its technical problem is: ocean controllable source electromagnetic surveying system
System, including induction source, six component marine electromagnetic data measuring units, control computer;The induction source is underwater for exciting
Target or seabed geologic body below generate induced current and induced magnetic field;The six component marine electromagnetic data measuring units
For measuring the induced current and magnetic field sensor signal that submarine target or seabed geologic body below generate;The control calculates
Machine is used to power to the six component marine electromagnetic data measuring units, and is detected, demarcated to it, parameter setting, hair
Control command is sent, the marine electromagnetic data of six component marine electromagnetic data measuring units measurement is handled, is shown, quality is supervised
Control and storage.
Further, the induction source includes being laid in the following Electromagnetic Launching source in sea, current emission source, power supply electricity
Cable;The Electromagnetic Launching source is connect by service cable with current emission source.
Further, the Electromagnetic Launching source is the loop line coil connecting with current emission source.
Further, the surrounding of the loop line coil is laid with four pairs of transmitting antennas, and the transmitting antenna passes through power supply
Cable is connect with current emission source.
As a kind of preferred embodiment of the utility model, the six equidistant cloth of component marine electromagnetic data measuring unit
It sets on acquisition cable, the acquisition cable is equipped with floating ball, one or several acquisition cable genesis analysis is in the loop line wire frame
Portion.
Further, the three-component magnetic field sensing cell is set in qually spaced on the acquisition cable, the three-component
Electric field sensing unit is laid centered on three-component magnetic field sensing cell, and one of electric-field sensor is along acquisition cable direction cloth
If other two electric-field sensor be laid in respectively with acquisition cable it is vertical both vertically as well as horizontally on.
Further, a three-component attitude transducer is disposed beside the three-component magnetic field sensing cell, it is synchronous
Three-component attitude data is recorded, rotation processing is carried out to collected three-component magnetic field and three-component electric field data for the later period.
As another preferred embodiment of the utility model, the six component marine electromagnetic data measuring units setting exists
In frame, aluminium alloy pressure-bearing cabin is equipped in the frame;Data acquisition/analog-to-digital conversion is provided in the aluminium alloy pressure-bearing cabin
Module, data memory module, three-component attitude transducer;Data acquisition/the analog-to-digital conversion module is for acquiring six components sea
Foreign electromagnetic data measuring unit and the signal of three-component attitude transducer output simultaneously convert a signal into digital signal, by described
Data memory module is stored.
Double clamper modules are installed inside current emission source, double clamper modules can guarantee the form of emission current waveform with
Quality, double clampers have high voltage clamper shaping to the rising edge and failing edge of emission current waveform, and rising edge passes through high voltage
It is linear to be promoted, emission current peak amplitude is promoted, is reduced by induction reactance bring wave distortion;Emission current waveform failing edge passes through
High voltage constant pressure clamper, linear rapid decrease.
Sinking clump weight, the steel wire or rope and instrument that clump weight passes through connection sonar release device are connected with below the frame
Device frame is fixed together, and six component marine electromagnetism acquisition units sink to sea by the clump weight that apparatus frame lower part connects
Bottom.Glass floating ball is installed, frame relies on glass floating ball fixed above frame after separating with clump weight above the frame
Sea is floated to be recycled.
The ocean controllable source electromagnetic survey system of the utility model can be used to detect underwater mobile or static target,
It can be used for the Polymetallic Minerals resource on exploration sea bed, the gas hydrates and oil gas money of seabed underground can also be explored
Marine Geology structure and construction are investigated in source.
Detailed description of the invention
Fig. 1 is that the ocean controllable source electromagnetic survey system of the utility model and six laying for component sea-floor electromagnetic acquisition station are shown
It is intended to;
Fig. 2 is that the ocean controllable source electromagnetic survey system of the utility model and the plane of six component sea-floor electromagnetic acquisition stations are bowed
View;
Fig. 3 is that the ocean controllable source electromagnetic survey system of the utility model and six component marine electromagnetic data of pull-type are adopted
Collection cable lays schematic diagram;
Fig. 4 is the ocean controllable source electromagnetic survey system and the acquisition of six component marine electromagnetic data of pull-type of the utility model
The plane top view of cable;
Fig. 5 is the current waveform figure and clamp voltage figure of conventional constant voltage clamp methods;
Fig. 6 is the ocean controllable source electromagnetic survey system of the utility model, the current waveform figure of the double clamp methods of constant pressure and
Clamp voltage figure;
Fig. 7 is the double clamp circuit schematic diagrams of ocean controllable source electromagnetic survey system of the utility model.
Description of symbols: 1, marine electromagnetic detecting ship;2, current emission source;3, service cable;4, the first electrode couple electricity
Stream source transmitting antenna;5, the second electrode couple current source transmitting antenna;6, third electrode couple current source transmitting antenna;7, the 4th antithesis
Electrode current source transmitting antenna;8, big loop line induced magnetism coil;9, six component sea-floor electromagnetic data collection station;10, vertical magnetic field
Sensor;11, East and West direction horizontal magnetic field sensor;12, north-south horizontal magnetic field sensor;13, East and West direction horizontal component of electric field senses
Device;14, north-south horizontal component of electric field sensor;15, vertical electric field sensor;16, marine electromagnetic data acquires cable;17, floating ball;
18, three-component magnetic field sensing cell;19, East and West direction electric-field sensor;20, north-south electric-field sensor;21, vertical electric field senses
Device.
Specific embodiment
The ocean controllable source electromagnetic survey system of the utility model is made specifically with reference to the accompanying drawings and examples
Bright and description.
Embodiment 1 refers to Fig. 1 and Fig. 2, and the ocean controllable source electromagnetic survey system of the present embodiment is mainly by marine electromagnetic
The high-power controllable current emission source 2 that disposes on 1 quarter deck of detecting ship is laid in undersea big loop line induced magnetism coil
8, the four electrode couple current sources laid along big 8 surrounding of loop line induced magnetism coil: the first electrode couple current source transmitting antenna 4;The
Two electrode couple current source transmitting antennas 5;Third electrode couple current source transmitting antenna 6;4th electrode couple current source transmitting antenna 7,
It is laid in multiple six components sea-floor electromagnetic data collection stations 9, the control computer composition in seabed.Big loop line induced magnetism coil 8
Pass through service cable 3 respectively with four electrode couple current sources to connect with high-power controllable electric magnetic source transmitter 2.
As depicted in figs. 1 and 2, six component sea-floor electromagnetic data collection stations 9 include frame, are equipped with vertical magnetic field on frame
Sensor 10, East and West direction horizontal magnetic field sensor 11,12 East and West direction horizontal component of electric field sensor 13 of north-south horizontal magnetic field sensor,
North-south horizontal component of electric field sensor 14, vertical electric field sensor 15;Three magnetic field sensors are mutually orthogonal, three electric-field sensors
It is mutually orthogonal, for measuring the seabed three-component magnetic field data and electric field data of its present position.
Aluminium alloy pressure-bearing cabin is also installed in frame, data acquisition/analog-to-digital conversion module, number is provided in aluminium alloy pressure-bearing cabin
According to memory module, three-component attitude transducer, rechargeable battery;Data acquisition/analog-to-digital conversion module is for acquiring six components electricity
Collected signal is simultaneously converted to digital signal by Magnetic Sensor and the signal of three-component attitude transducer output, is deposited by data
Storage module is stored.
Sinking clump weight is connected with below frame, clump weight is solid by the steel wire or rope and frame of connection sonar release device
It is scheduled on together, six component sea-floor electromagnetic data collection stations 9 sink to seabed by the clump weight that lower frame connects.Above frame
Glass floating ball is installed, the frame of six component sea-floor electromagnetic data collection stations 9 is fixed after separating with clump weight by above frame
Glass floating ball float to sea and recycled.
Control computer is adopted to each data of six component sea-floor electromagnetic data collection stations 9 and marine electromagnetic data acquisition cable 16
Collect unit and sensor unit power supply, each acquisition unit and sensor are detected, demarcated, parameter setting, sends control life
It enables, by the processing of marine electromagnetic data real-time perfoming, display, quality monitoring and the storage of acquisition.
Embodiment 2 refers to Fig. 3 and Fig. 4, and the ocean controllable source electromagnetic survey system of the present embodiment is mainly by marine electromagnetic
The high-power controllable current emission source 2 that disposes on 1 quarter deck of detecting ship is laid in undersea big loop line induced magnetism coil
8, the four electrode couple current sources laid along big 8 surrounding of loop line induced magnetism coil: the first electrode couple current source transmitting antenna 4;The
Two electrode couple current source transmitting antennas 5;Third electrode couple current source transmitting antenna 6;4th electrode couple current source transmitting antenna 7,
Pull one or several marine electromagnetic data acquisition cable 16, the control computer composition inside big loop line induced magnetism coil 8.
As shown in figure 3, being equipped with floating ball 17, three-component magnetic field sensing cell 18, East and West direction electric field on marine electromagnetic data acquisition cable 16
Sensor 19, north-south electric-field sensor 20, vertical electric field sensor 21.Three-component magnetic field sensing cell 18 by three mutually just
The magnetic field sensor of friendship forms.Centered on three-component magnetic field sensing cell 18, north-south electric-field sensor 20 is along acquisition cable side
To laying, East and West direction electric-field sensor 19 and vertical electric field sensor 21 are orthogonal with north-south electric-field sensor 20 respectively, and
East and West direction electric-field sensor 19 and vertical electric field sensor 21 are also orthogonal.It is disposed beside each three-component magnetic field sensing cell 18
One three-component attitude transducer, is not shown in the figure, synchronous recording three-component attitude data, for the later period to collected three points
It measures magnetic field and three-component electric field data carries out rotation processing.
Due to ocean controllable current source system emit in the sea be kilo-ampere high current, general high-power electric current
For the high-power current signal of the alternation that emission source emits it in the moment turned on and off, the waveform of electric current can be because be transmitted back to
Induction reactance in road and serious distortion occurs, as shown in figure 5, in non-linear rising and non-linear decline.In order to reduce by induction reactance
Bring wave distortion, the utility model are installed inside the high-power current emission source 2 on 1 quarter deck of marine electromagnetic detecting ship
Have double clamper modules, working principle as shown in fig. 6, double clamper modules can guarantee the form and quality of emission current waveform,
Double clampers have high voltage clamper shaping to the rising edge and failing edge of emission current waveform, and rising edge is mentioned by high voltage linear
It rises, promotes emission current peak amplitude, reduce by induction reactance bring wave distortion;Emission current waveform failing edge passes through high voltage
Constant pressure clamper, linear rapid decrease.Double clamper modular circuit structures are as shown in fig. 7, comprises high pressure clamper source and clamper control are opened
Q5 composition is closed, wherein high pressure clamper source is by RNAnd CNComposition, by adjusting high pressure clamper source RNAnd CNParameter and control switch Q5
Turn-on deadline timing, storage energy when failing edge is turned off quickly releases and feeds back to rising edge, realizes rise-time of current
Fast lifting, while making failing edge rapid decrease.
The ocean controllable source electromagnetic survey system of the utility model, specific implementation process are as follows:
First, in accordance with pre-designed coordinate and spacing, six component sea-floor electromagnetic data collection stations 9 are launched to quasi- and are visited
Survey the seabed in target sea area.
Path then is pulled according to pre-designed emission source, will be connected by marine electromagnetic detecting ship 1 high-power controllable
The big loop line induced magnetism coil 8 and compound four orientation electric dipole current source transmitting antenna in current emission source 2 are deployed under sea;And
One or several six component marines electromagnetic data acquisition cable 16 is laid in inside big loop line induced magnetism coil 8.
Start high-power controllable current emission source 2, by four pairs of comprehensive electric dipole current source transmitting antennas to same in the sea
Step or the high-power current signal for successively emitting different pscudo-random codc modulations;Simultaneously by big loop line induced magnetism coil
8 emit the high-power alternating current of different pscudo-random codc modulations, are generating big loop line induced magnetism coil 8 in the sea vertically
Alternating magnetic field signal in sea level;The two can synchronize the three-dimensional geologic to submarine target or seabed underground in the sea simultaneously
Controllable current source signal is excited, it can also be individually to submarine target or seabed underground geologic bodies excitation controllable current in the sea
Source signal.
The six component sea-floor electromagnetic data collection stations 9 for being laid in seabed acquire six component controllable source sea-floor electromagnetic data;It drags
It drags the six component marine electromagnetic datas acquisition cable 16 at big 8 middle part of loop line induced magnetism coil and acquires six component controllable source oceans electricity
Magnetic data;The two can simultaneously synchronous acquisition marine electromagnetic data, can also individually acquire marine electromagnetic data.
When occurring underwater or mobile target or static target close to seabed in search coverage, due to submarine target and sea
Water has huge electrical property difference (high conductivity (metal) or high resistivity (composite material) submarine target), is laid in seabed
Six component sea-floor electromagnetic data collection stations 9 or the marine electromagnetic data pulled inside big loop line induced magnetism coil 8 acquire cable
16 can measure marine electromagnetic exception caused by underwater mobile or static target.
The real-time processing of the marine electromagnetic data measured is explained by control computer, so that it may in detection sea area
Timely find movement or static target underwater or close to seabed.When underwater moving target be changed by motion state it is static
Or silent (suspension) state, laying underwater underwater sound sensing unit at this time will be unable to detect or monitor underwater static target,
And marine electromagnetic signal sensing unit at this time still is able to the marine electromagnetic field disturbed when occurring by measuring submarine target
Reliably detect and monitor submarine target.
When seabed underground occurs with the presence of the geologic body with country rock electrical property difference in search coverage, it is laid in the six of seabed
Component sea-floor electromagnetic data collection station 9 or the marine electromagnetic data pulled inside big loop line induced magnetism coil 8 acquire cable 16
It is abnormal that the marine electromagnetic as caused by underground and geologic body of the country rock there are electrical property difference can be measured.By controlling computer
It carries out processing in real time to the marine electromagnetic data that measures to explain, so that it may which discovery seabed underground has and country rock in detection sea area
There are the geologic bodies of electrical property difference.
The ocean controllable source electromagnetic survey system of the utility model, by the following three-dimensional geologic of submarine target and seabed
Comprehensive electromagnetism excitation (illumination), the signal-to-noise ratio of underwater detected target can be greatlyd improve, accurately and reliably detect water
Lower movement or in water target and the seabed three-dimensional geologic below of hovering or seabed silence.It solves to make extensively in current industry
It is single along the single electric dipole current source excitation direction of tow direction, excitation limited area, can not be to detected submarine target
Or the three-dimensional geologic of seabed underground carries out the problem of the comprehensive excitation of large area.
The ocean controllable source electromagnetic survey system and marine electromagnetic data acquisition method of the utility model can be used to visit
Underwater mobile or static target is surveyed, can be used for the Polymetallic Minerals resource on exploration sea bed, seabed can also be explored
Under gas hydrates and petroleum resources, investigate Marine Geology structure and construction.
Claims (12)
1. six component marine electromagnetic data measuring units, it is characterised in that: including three-component electric field sensing unit and three-component magnetic
Field sensing unit;The three-component electric field sensing unit is made of three mutually orthogonal electric-field sensors, for measuring
Locate the ocean three-component electric field data of position;The three-component magnetic field sensing cell is by three mutually orthogonal magnetic field sensors
Composition, for measuring the ocean three-component magnetic field data of its present position.
2. six component marines electromagnetic data measuring unit according to claim 1, it is characterised in that: the electric field sensing
Device is unpolarizable electrode pair, and unpolarizable electrode material is metal or nonmetallic materials.
3. six component marines electromagnetic data measuring unit according to claim 1, it is characterised in that: the magnetic field sensing
Device is induction type magnetic field sensor fluxgate type magnetic field sensor or cryogenic magnetic field sensor or is cold original
Sub- magnetic field sensor.
4. a kind of ocean controllable source electromagnetic survey system, it is characterised in that: including described in any item six components of claim 1-3
Marine electromagnetic data measuring unit, induction source, control computer;The induction source is for exciting submarine target or seabed or less
Geologic body generate induced current and induced magnetic field;The six component marine electromagnetic data measuring units are for measuring underwater mesh
The induced current and magnetic field sensor signal that mark or seabed geologic body below generate;The control computer is used for described
The power supply of six component marine electromagnetic data measuring units, and it is detected, is demarcated, parameter setting, sends control command, to six
The marine electromagnetic data of component marine electromagnetic data measuring unit measurement handled, shown, quality monitoring and storage.
5. controllable source electromagnetic survey system in ocean according to claim 4, it is characterised in that: the induction source includes cloth
It is located at the following Electromagnetic Launching source in sea, current emission source, service cable;The Electromagnetic Launching source passes through service cable and electric current
Emission source connection.
6. controllable source electromagnetic survey system in ocean according to claim 5, it is characterised in that: the Electromagnetic Launching source is
The loop line coil being connect with current emission source.
7. controllable source electromagnetic survey system in ocean according to claim 6, it is characterised in that: the four of the loop line coil
It is laid with four pairs of transmitting antennas week, the transmitting antenna is connect by service cable with current emission source.
8. controllable source electromagnetic survey system in ocean according to claim 6 or 7, it is characterised in that: six component marine electromagnetism
DATA REASONING unit is equally spaced on acquisition cable, and the acquisition cable is equipped with floating ball, one or several acquisition cable longitudinally divides
Cloth is inside the loop line wire frame.
9. controllable source electromagnetic survey system in ocean according to claim 8, it is characterised in that: the three-component magnetic field sensing
Unit is set in qually spaced on the acquisition cable, during the three-component electric field sensing unit with three-component magnetic field sensing cell is
The heart is laid, and one of electric-field sensor is laid along acquisition cable direction, other two electric-field sensor is laid in and acquires respectively
Cable it is vertical both vertically as well as horizontally on.
10. controllable source electromagnetic survey system in ocean according to claim 9, it is characterised in that: in the three-component magnetic
A three-component attitude transducer, synchronous recording three-component attitude data, for the later period to acquisition are disposed beside the sensing unit of field
The three-component magnetic field arrived and three-component electric field data carry out rotation processing.
11. controllable source electromagnetic survey system in ocean according to claim 5, it is characterised in that: six component marines
Electromagnetic data measuring unit is arranged in frame, and aluminium alloy pressure-bearing cabin is equipped in the frame;In the aluminium alloy pressure-bearing cabin
It is provided with data acquisition/analog-to-digital conversion module, data memory module, three-component attitude transducer;Data acquisition/the modulus turns
Mold changing block is used to acquire the signal that six component marine electromagnetic data measuring units and three-component attitude transducer export and by signal
Digital signal is converted to, is stored by the data memory module.
12. according to the described in any item ocean controllable source electromagnetic survey systems of claim 5-7,9-11, it is characterised in that: described
Current emission source inside double clamper modules are installed.
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109738958A (en) * | 2019-02-21 | 2019-05-10 | 山东蓝海可燃冰勘探开发研究院有限公司 | A kind of ocean controllable source electromagnetic survey system |
CN111323829A (en) * | 2020-04-02 | 2020-06-23 | 青岛海洋科学与技术国家实验室发展中心 | Ocean electromagnetic detector |
CN114688955A (en) * | 2022-03-02 | 2022-07-01 | 中国人民解放军海军工程大学 | Rapid cross positioning method for underwater electric field source |
-
2019
- 2019-02-21 CN CN201920221108.1U patent/CN209656905U/en not_active Expired - Fee Related
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109738958A (en) * | 2019-02-21 | 2019-05-10 | 山东蓝海可燃冰勘探开发研究院有限公司 | A kind of ocean controllable source electromagnetic survey system |
CN109738958B (en) * | 2019-02-21 | 2024-03-19 | 山东蓝海可燃冰勘探开发研究院有限公司 | Ocean controllable source electromagnetic detection system |
CN111323829A (en) * | 2020-04-02 | 2020-06-23 | 青岛海洋科学与技术国家实验室发展中心 | Ocean electromagnetic detector |
CN114688955A (en) * | 2022-03-02 | 2022-07-01 | 中国人民解放军海军工程大学 | Rapid cross positioning method for underwater electric field source |
CN114688955B (en) * | 2022-03-02 | 2023-03-14 | 中国人民解放军海军工程大学 | Rapid cross positioning method for underwater electric field source |
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