CN2724018Y - Novel composite earthquake wave detector - Google Patents

Novel composite earthquake wave detector Download PDF

Info

Publication number
CN2724018Y
CN2724018Y CN 200420042129 CN200420042129U CN2724018Y CN 2724018 Y CN2724018 Y CN 2724018Y CN 200420042129 CN200420042129 CN 200420042129 CN 200420042129 U CN200420042129 U CN 200420042129U CN 2724018 Y CN2724018 Y CN 2724018Y
Authority
CN
China
Prior art keywords
wave detector
ocean
housing
receiving set
nautical receiving
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN 200420042129
Other languages
Chinese (zh)
Inventor
赵昕
许平
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.)
CHAOBO SENSERS Co Ltd SHAANXI
Original Assignee
CHAOBO SENSERS Co Ltd SHAANXI
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 CHAOBO SENSERS Co Ltd SHAANXI filed Critical CHAOBO SENSERS Co Ltd SHAANXI
Priority to CN 200420042129 priority Critical patent/CN2724018Y/en
Application granted granted Critical
Publication of CN2724018Y publication Critical patent/CN2724018Y/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Abstract

The utility model relates to a novel compound geophone. The utility model is characterized in that the utility model is formed by the sequential connection of a sea hydrophone, a land detector component and a joint part; the sea hydrophone is fixed inside a housing arranged on one end of a main body, and the housing is made of acoustic transmission material; piezoelectric ceramic pieces of the sea hydrophone face frontally an acoustic wave receiving surface of the circular surface of the housing, the upper part of the housing is fixedly provided with a frequency modulation matcher of the sea hydrophone, and the piezoelectric ceramic pieces of the sea hydrophone are electrically connected with the frequency modulation matcher. Besides, the middle part of the main body is provided with a sleeve barrel housing in which a bracket is arranged, and the bracket is supported by a left support ring and a right support ring; a land detector is arranged in a hole of the support; the cavity of the sleeve barrel housing is filled with liquid damping oil; the other end of the main body is provided with the joint part, the end socket end of the joint part is provided with a cable which is electrically connected with the sea hydrophone and the signal output end of the land detector. The compound geophone can simultaneously detect transversal wave component in water and longitudinal wave component of sea bottom earthquakes, and thus the accuracy of earthquake information detection is raised.

Description

A kind of novel combined seismic wave detector
Affiliated technical field: the utility model relates to a kind of seismoreceiver, particularly about a kind of combined seismic wave detector.It belongs to the offshore geophysical prospecting fields of measurement.
Background technology: at present, offshore shooting adopts the ocean nautical receiving set to explore usually, because the shear stress of water is zero, does not therefore have shear wave in seawater, has only compressional wave.Compressional wave changes at the interface of seabed and water, forms transformed wave, and the seismic signal of catching from the seabed is changed, and distortion phenomenon can appear in the specifying information data.Adopt conventional ocean nautical receiving set that the seabed is explored, can produce the bright spot of seismic data usually, it is generally acknowledged that the bright spot position is likely that rock gas exists, but often for above-mentioned reasons, provided false bright spot signal, influence the efficient that seismic data detects.
Summary of the invention: the purpose of this utility model is to provide a kind of novel combined seismic wave detector, can be simultaneously the primary seismic wave component in the shear component in the water, seabed be had detection, increases the accuracy that earthquake information detects.
The purpose of this utility model is achieved in that a kind of novel combined seismic wave detector of design, it is characterized in that: it is connected to form successively by ocean nautical receiving set, land geophone assembly, shank, the ocean nautical receiving set is fixed in the housing of body one end, and housing is the acoustic window material housing; The sound wave receiving plane that faces the housing disc of the piezoelectric ceramic piece of ocean nautical receiving set, the fixing frequency modulation adaptation of ocean nautical receiving set on the top of housing, the piezoelectric ceramic piece in the nautical receiving set of ocean is electrically connected with the frequency modulation adaptation; At the middle part of body is the cover cylinder shell, in the cover cylinder shell support is arranged, and two support rings supported about support passed through; The land wave detector is arranged in the hole of support; In the cavity of cover cylinder shell fluid damping oil is arranged; The other end at body has shank, and the seal head end of shank has cable to be electrically connected with ocean nautical receiving set and land geophone signal output terminal.
The cover cylinder shell two ends at described body middle part are connected with the ocean nautical receiving set with shank by left end socket and right end socket respectively.
In end socket and the junction of overlapping cylinder shell bilayer " O " shape O-ring seal is arranged.
Described land wave detector has two, and being fixed on of the first from left right side overlapped in the cylinder shell.
Described ocean nautical receiving set is bonded on the substrate by the multi-disc piezoelectric ceramic piece and constitutes, and substrate is fixed on the sympathetic response shell cavity, constitutes a resonant body.
Described ocean nautical receiving set is a sound pressure sensor.
Described land wave detector is the compressional wave wave detector.
Support in the described cover cylinder shell is the self-equilibrating support, and promptly support can carry out 360 ° around turning axle and rotates freely, and makes wave detector adjust to best reception state at any time.
The present invention has following advantage.
Because ocean nautical receiving set and land wave detector are combined with each other, this compound be not simple assembling, be to guarantee that in design two kinds of different wave detectors all can carry out work by working method separately.On same acceptance point, the seismic signal that stratum below the seabed is reflected is up received by sound pressure sensor, synchronous signal also can produce reflection on the sea, the signal of reflection also can be received by sensor, but because the reflected signal that the effect land wave detector of reflection receives is opposite with the original signal phase place, therefore in the Data Processing process,, can eliminate the reverberation that seismic signal produces between sea and seabed by the signal operation stack of land wave detector and sound pressure sensor.And can reduce the difficulty of construction like this, improve operating efficiency.Compound wave detector and subsea cable bundle constructs, and the subsea cable construction that is installed in towing cable inside with sensor has same high-level efficiency, but in the collection of signal, better than the signal reception of bottom streamer.It is main because the ocean nautical receiving set in the outside of cable, has reduced the decay of cable wall to signal.The land wave detector is placed on runing rest, can adjust the attitude of received signal at any time, remains on the optimum position.Inject damping liquid in housing, can improve antijamming capability to external world, extraneous interference can not cause that support produces excessive swing and influences the reception of seismic signal.For entering of the seepage that prevents liquid in the housing and extraneous seawater, ad hoc meter two seals circle seals.The sealing of first road mainly prevents entering of seawater, and the sealing of second road mainly prevents the seepage of damping liquid.Handle in ocean nautical receiving set and connecting of cable, adopt the outside mode of crossing line, in work progress, hung up, add a shell specially for compound wave detector, in order to protect line and ocean nautical receiving set for preventing line.Prevent of the injury of extraneous bump to the ocean nautical receiving set.
Description of drawings: the utility model is described further below in conjunction with the embodiment accompanying drawing.
Fig. 1 is an embodiment contour structures synoptic diagram.
Fig. 2 is an embodiment inner structure synoptic diagram.
Among the figure, 1, the ocean nautical receiving set; 2, land geophone assembly; 3, cover cylinder shell; 4, joint; 5, cable; 6, line; 7, back casing; 8, thimble; 9, wave detector; 10, wave detector; 11, support; 12, end socket; 13, end socket; 14, support ring; 15, support ring; 16, O RunddichtringO; 17, screw.
Embodiment: embodiment as shown in Figure 1, the general structure of compound wave detector is divided into three parts, be respectively the right ocean nautical receiving set 1, the land geophone assembly 2 at middle part and the shank 4 on the left side.Ocean nautical receiving set 1 is fixed in the housing 7; Land geophone assembly 2 is fixed in the cover cylinder shell 3; Ocean nautical receiving set 1 is electrically connected by the cable 5 that line 6 and joint 4 are drawn respectively with the land geophone assembly 2 at middle part, outwards output signal.
Fig. 2 is an embodiment inner structure synoptic diagram, as shown in Figure 2 in the housing 7 on the right, the ocean nautical receiving set of being made up of the multi-disc piezoelectric ceramics 1 is installed in the bottom of housing 7 (the right), ocean nautical receiving set 1 is that a resonance organ for resonance is a sound pressure sensor, the position, plane of housing 7 is the signal receiving plane of ocean nautical receiving set, guarantees that signal evenly is received; On the top of housing, the frequency matching device is installed, in order to adjust resonance frequency, make its seismic exploration requirement contentedly.The output of signal is electrically connected with cable 5 by line 6, makes signal output to water surface work apparatus.Fixedly the housing 7 of ocean nautical receiving set 1 has end socket 13 to be connected with cover between the cylinder shell 3, and end socket 13 usefulness encapsulants are packaged together, and line 6 also is packaged together with it.At the cover support 11 of packing in the cylinder shell 3, the land wave detector has two wave detectors 9 and wave detector 10, being installed on cover cylinder shell 3 inner supports 11 of their the first from left right sides, support 11 is fixed in cover cylinder shell 3 by bearing and support ring 14,15, support 11 can rotate freely by 360 degree, the reception attitude of adjusting wave detector 9 is an optimum condition, fills with damping oil in cover cylinder shell 3.Rotating shaft output is adopted in signal output, and two ends adopt end socket to encapsulate, and lead passes by the hole in the end socket, and the center pit in end socket 12 is the liquid filling orifice, after liquid is filled with, again with its sealing.Adopt " O " RunddichtringO 16 to seal at the two ends of sleeve.Adopt screw 17 that sleeve and end socket are linked together.Joint 4 is sealed with end socket 12, and thimble 8 is housed in the hole of end socket 12, and cable is through on the thimble in order to increase strength of joint.The output line of line 6 and land wave detector all is connected on the output line of cable.Joint guarantees and cable jacket is to combine together in encapsulation, increases sealing.
In the utility model, be the needs according to the submarine operation, compound wave detector is bundled on the subsea cable, and enterprising line data signals collecting sinks to the bottom of the sea.Land wave detector by being positioned over the seabed is to the reception of seismic signal, and acquisition process can be distinguished true and false bright spot, reflects the submarine geology situation more accurately.Should be noted that present world's seismic prospecting forward high resolving power development, require wave detector to develop to high precision, broadband direction.And the utility model just is being based on this thought design.

Claims (8)

1, a kind of novel combined seismic wave detector, it is characterized in that: it is connected to form successively by ocean nautical receiving set, land geophone assembly, shank, and the ocean nautical receiving set is fixed in the housing of body one end, and housing is the acoustic window material housing; The sound wave receiving plane that faces the housing disc of the piezoelectric ceramic piece of ocean nautical receiving set, the fixing frequency modulation adaptation of ocean nautical receiving set on the top of housing, the piezoelectric ceramic piece in the nautical receiving set of ocean is electrically connected with the frequency modulation adaptation; At the middle part of body is the cover cylinder shell, in the cover cylinder shell support is arranged, and two support rings supported about support passed through; The land wave detector is arranged in the hole of support; In the cavity of cover cylinder shell fluid damping oil is arranged; The other end at body has shank, and the seal head end of shank has cable to be electrically connected with ocean nautical receiving set and land geophone signal output terminal.
2, a kind of novel combined seismic wave detector according to claim 1 is characterized in that: the cover cylinder shell two ends at described body middle part are connected with the ocean nautical receiving set with shank by left end socket and right end socket respectively.
3, a kind of novel combined seismic wave detector according to claim 2 is characterized in that: in end socket and the junction of overlapping cylinder shell bilayer " O " shape O-ring seal is arranged.
4, a kind of novel combined seismic wave detector according to claim 1, it is characterized in that: described land wave detector has two, and being fixed on of the first from left right side overlapped in the cylinder shell.
5, a kind of novel combined seismic wave detector according to claim 1 is characterized in that: described ocean nautical receiving set is bonded on the substrate by the multi-disc piezoelectric ceramic piece and constitutes, and substrate is fixed on the sympathetic response shell cavity, constitutes a resonant body.
6, a kind of novel combined seismic wave detector according to claim 1, it is characterized in that: described ocean nautical receiving set is a sound pressure sensor, and its frequency is chosen as in the 10-1000Hz scope.
7, a kind of novel combined seismic wave detector according to claim 1, it is characterized in that: described land wave detector is the compressional wave wave detector.
8, a kind of novel combined seismic wave detector according to claim 1 is characterized in that: the support in the described cover cylinder shell is the self-equilibrating support, and promptly support can carry out 360 ° around turning axle and rotates freely, and makes wave detector adjust to best reception state at any time.
CN 200420042129 2004-06-28 2004-06-28 Novel composite earthquake wave detector Expired - Fee Related CN2724018Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 200420042129 CN2724018Y (en) 2004-06-28 2004-06-28 Novel composite earthquake wave detector

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 200420042129 CN2724018Y (en) 2004-06-28 2004-06-28 Novel composite earthquake wave detector

Publications (1)

Publication Number Publication Date
CN2724018Y true CN2724018Y (en) 2005-09-07

Family

ID=35037642

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 200420042129 Expired - Fee Related CN2724018Y (en) 2004-06-28 2004-06-28 Novel composite earthquake wave detector

Country Status (1)

Country Link
CN (1) CN2724018Y (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101917655A (en) * 2010-08-13 2010-12-15 浙江大学 Resonant cavity microphone for detecting deep water sound waves
CN106932817A (en) * 2017-01-23 2017-07-07 中国人民解放军海军工程大学 A kind of piezoelectric transducer of comprehensive detection ground sound underwater sound signal

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101917655A (en) * 2010-08-13 2010-12-15 浙江大学 Resonant cavity microphone for detecting deep water sound waves
CN106932817A (en) * 2017-01-23 2017-07-07 中国人民解放军海军工程大学 A kind of piezoelectric transducer of comprehensive detection ground sound underwater sound signal

Similar Documents

Publication Publication Date Title
CN107422370B (en) Form pressure/speed sensitive towing cable twin shaft wave detector of three component type towing cables
US4870625A (en) Marine shear-wave detection system using single mode reflection boundary conversion technique
WO2022257429A1 (en) Submarine optical fiber four-component seismic instrument system and data collection method thereof
AU2003220706A2 (en) Apparatus and methods for multicomponent marine geophysical data gathering
Bialas et al. Ocean bottom seismometers
MXPA01010289A (en) Device for receiving seismic waves and method for coupling them with a solid environment.
CN100363753C (en) Novel composite earthquake demodulator
US20170371054A1 (en) Migrating a Horizontal Component of a Wavefield
US5581514A (en) Surface seismic profile system and method using vertical sensor
CN2724018Y (en) Novel composite earthquake wave detector
CN207829030U (en) Stake bottom hidden danger prospecting apparatus before pile foundation cast
CN109594977A (en) A kind of underground sonic system
CN107690592A (en) Seismic sensor cable
CN206848490U (en) A kind of dual sensor
CN209469427U (en) A kind of underground sonic system
CN1185506C (en) Method for measuring characteristic parameter of rupture and weak band in rock mass
CN100351649C (en) Ocean earthquake demodulator
CN201654244U (en) Shallow sea four-component earthquake information acquisition apparatus
CN107167837A (en) A kind of dual sensor
CN2833625Y (en) Marine seism hydrophorce with piezoelectric structure
CN213581364U (en) Installation device of micro-seismic detector
US20170371048A1 (en) Buried seismic sensor and method
CN210427818U (en) Four-edge high-sensitivity intertidal zone detector
CN212364605U (en) Array type well quarter-component optical fiber seismic data acquisition device
AU682728B2 (en) Surface seismic profile system and method using vertical sensor arrays

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
C19 Lapse of patent right due to non-payment of the annual fee
CF01 Termination of patent right due to non-payment of annual fee