CN202166418U - Shell structure of ocean exploring device for aerial delivery - Google Patents

Shell structure of ocean exploring device for aerial delivery Download PDF

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Publication number
CN202166418U
CN202166418U CN2011202468643U CN201120246864U CN202166418U CN 202166418 U CN202166418 U CN 202166418U CN 2011202468643 U CN2011202468643 U CN 2011202468643U CN 201120246864 U CN201120246864 U CN 201120246864U CN 202166418 U CN202166418 U CN 202166418U
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CN
China
Prior art keywords
layer shell
internal layer
shell
outer casing
probe
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
CN2011202468643U
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Chinese (zh)
Inventor
刘凤
陈振涛
叶松
郑君杰
王晓蕾
焦冰
陈晓颖
翁兴国
尧怡陇
周树道
慕新仓
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METEOROLOGICAL COLLEGE UNIV OF TECHNOLOGY PLA
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METEOROLOGICAL COLLEGE UNIV OF TECHNOLOGY PLA
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Priority to CN2011202468643U priority Critical patent/CN202166418U/en
Application granted granted Critical
Publication of CN202166418U publication Critical patent/CN202166418U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to a shell structure of an ocean exploring device for aerial delivery, which comprises an inner layer shell and a detachable outer layer shell, wherein the exploring device is arranged inside the inner layer shell; and an expansion generating device is arranged at one end inside the outer layer shell so as to push the inner layer shell to slide in the outer layer shell. By arranging an expansion structure in a communication measuring bin, a sealing air cylinder generated during expansion can eject a probe carrier arranged inside a floating body and a power amplifier bin as well as other auxiliary devices, the outer layer shell expands, and the outer layer shell can contain the probe carrier, thereby playing a role increasing the buoyant force when a probe container enters water. When the outer layer shell is unexpanded, the probe carrier is statically positioned inside a main floating body, and the volume of the outer layer shell is reduced, thereby playing a role in the saving of probe onboard space.

Description

The marine locator shell structure that is used to drop
Technical field
The utility model belongs to the marine locator technical field, relates in particular to the shell structure of a kind of ocean temperature that is used to drop, salinity, depth detector.
Background technology
Aviation ocean temperature, salinity, depth of probe are a kind of circuit measuring unit that the aviation fixed point is thrown that is used for; When aerial entry, will receive the impact loading of water body to its generation; As throwing in as specific installation behind its contact sea in the inertia effect rapid entry that descends; Hydrographic features precision such as the dark salt of temperature that obtains under this state will reduce significantly, and therefore probe must depend on and load body (housing), is used for stable probe entry original state and entry job state.Simultaneously, hydrographic features such as the dark salt of temperature that probe is obtained also must be back to land, so probing shell also must possess the communication measurement storehouse, the relay function of realization signal passback.
Domestic expansion as yet aspect the research of airborne deserted oceanographic instrumentation correlation technique, still, the existing certain technological accumulation in boat-carrying expendable bathythermograph (XBT) the research and development aspect of similar low side in recent years.Develop the XBT model machine like National Bureau of Oceanography's Ocean Technology Centre, and in 2005 " national 863 Program marine monitoring technology theme standardization off-lying sea test ", tested, can obtain the synchronous data of standard of large tracts of land sea area section Temperature Distribution fast.In this system, because filing, demonstration, printing and the drafting temperature of probe fetched data-dark curve accomplishes by the boat-carrying unit, but all manual interventions of momentum that receive during the probe entry, so detector housing only need play the effect that protection is popped one's head in.Compare with aviation ocean temperature, salinity, depth of probe housing, do not have the data transmission relay function, do not have entry and keep center of gravity adjustment unit straight up, also do not have the buffer cell that reduces the momentum of going into instant water.
The manned airplane air dropping formula marine locator that U.S. Sippican company produces adopts telescopic shell structure; Utilize the becket of detector housing bottom to guarantee that detector remains attitude straight up; The impact that receives when utilizing the buffer action of housing top parachute to slow down the detector entry; And utilize the inertia in the aerial dropping process of detector to realize that probe unit separates with housing, the final completion measured temperature, salt, hydrographic features such as dark, drops formula ocean section sounding buoy housing with unmanned plane to compare; The detector housing volume of manned aircraft drop-falling type is bigger, dwindles the buoy quantity that the single navigation is thrown in greatly.
The utility model content
The technical matters that the utility model will solve:A kind of marine locator shell structure that can be used for dropping is provided, its inner ocean temperature, salinity, depth of probe of loading, through the housing that can compress and can expand, the momentum when reducing entry is guaranteed the data acquisition degree of accuracy of popping one's head in.
Technical scheme:The marine locator shell structure that is used to drop comprises internal layer shell and detachable outer casing, and detector is located in the internal layer shell, and the end in the outer casing is provided with the expansion generating means, slides in outer casing to promote internal layer shell.
Said internal layer shell comprises that by upper press cover the cavity that lower cover and over cap surround is provided with line bag and detector in the cavity.
The contact position of said internal layer shell and expansion generating means is provided with the power amplifier storehouse.
Said outer casing comprises communication measurement storehouse, buoyancy aid and battery compartment, and battery compartment is connected with internal layer shell, and outer casing is separable between buoyancy aid and battery compartment.
Said power amplifier storehouse is a moveable element.
There is the gap between said internal layer shell and outer casing, fills elastic filler.
Said expansion generating means is located at the bottom in communication measurement storehouse and the top in power amplifier storehouse.
Said battery compartment and lower cover are conjuncted structure.
Beneficial effect:The utility model is used for aerial the fixed point to be thrown in, and the housing that when rendering to the sea, loads probe is across the sea floating, steadily discharges probe later on.The probe signal that handle records in motion process is delivered to the receiver of land through RTTY.The housing that loads probe comprises communication measurement storehouse, buoyancy aid, battery compartment, power amplifier storehouse and probe carrier, constitutes inside and outside double Shell.Communication measurement storehouse, buoyancy aid and battery compartment constitute outer casing; The probe carrier that buoyancy aid is inner; Constitute the internal layer shell that carries the oceanographic hydrological element probe unit, it will be fixed on by the probe unit that line bag, marine hydrology sensor probe and auxiliary member constitute in it space that comprises.
Through in the communication measurement storehouse, expansion texture being set; The sealing gas column that produces during expansion can eject being positioned at inner probe carrier of buoyancy aid and power amplifier storehouse and other auxiliary member; Outer casing expands; Be that outer casing will comprise probe carrier, thereby play the buoyancy function when increasing the entry of probe container.When not expanding, the static main buoyancy aid inside that is positioned at of probe carrier, the outer casing volume-diminished has played the effect of practicing thrift the probe onboard spatial.
Momentum when this device solves entry through following two aspects absorbs problem: the one, utilize parachute (interface between parachute and the integral body has ready-made module, is not included in the shell structure); The 2nd, utilize the volume that the skyborne expansion of housing causes to increase, and then the momentum when realizing reducing entry.
As a kind of preferred structure of the utility model, except that buoyancy aid, each component units all adopts split-type structural; All have upper press cover and lower cover; Adopt between the last lower cover to be threaded, adopt such structure, can make internal layer shell and outer casing convenient disassembly.Battery compartment and probe carrier lower cover are conjuncted structure, because the inner sounding buoy of probe carrier is electron device, its work space sealing requirements is high, adopts such structure can guarantee that probe carrier presses down this end and has good sealing effectiveness.
Description of drawings
Fig. 1 is the cut-open view under the marine locator housing compressive state that is used to drop;
Fig. 2 is the cut-open view of marine locator housing under swelling state that is used to drop.
Embodiment
Not relating to all identical with the prior art prior art that maybe can adopt of part in the literary composition realizes.The following stated is the preferred embodiment of the utility model, but the utility model also is not limited to above only embodiment, on embodiment, does the protection domain that improvement also will be regarded as the utility model slightly.
Embodiment 1
The marine locator housing that is used to drop shown in Figure 1 is in compressive state, is made up of communication measurement storehouse 1, buoyancy aid 7 and battery compartment 9.Buoyancy aid 7 inner probe carrier upper press cover 5, probe carrier lower cover 8 and over caps 10 constitute internal layer shell, directly protect the probe unit of being made up of line bag 4 and temperature, salinity, depth of probe 6.Adopted a kind of self-expanding generating means 2 between communication measurement storehouse 1 and the power amplifier storehouse 3.
Cut-open view when Fig. 2 has provided the marine locator housing expansion that is used to drop; Wherein started expansion generating means 2; It will promote the bottommost that power amplifier storehouse 3, probe carrier upper press cover 5 and probe carrier lower cover 8 move to buoyancy aid 7, and the motion of said units makes buoyancy aid 7 separate with battery compartment 9, be connected with probe carrier lower cover 8 by the probe carrier upper press cover 5 that ejects; Compared to Figure 1; The outer casing volume of marine locator increases, and the communication measurement storehouse 1 except that comprising compressive state under, buoyancy aid 7 and the battery compartment 9 also will comprise probe carrier upper press cover 5 and probe carrier lower cover 8.
Embodiment 2
The marine locator shell structure that is used to drop comprises internal layer shell and detachable outer casing, and detector is located in the internal layer shell, and the end in the outer casing is provided with expansion generating means 2, slides in outer casing to promote internal layer shell.Said internal layer shell comprises that by upper press cover 5 lower cover 8 and the cavity that over cap 10 surrounds are provided with line bag 4 and detector 6 in the cavity.The contact position of internal layer shell and expansion generating means 2 is provided with power amplifier storehouse 3.Said outer casing comprises communication measurement storehouse 1, buoyancy aid 7 and battery compartment 9, and battery compartment 9 is connected with internal layer shell, and outer casing is separable between buoyancy aid 7 and battery compartment 9.Expansion generating means 2 is located on the communication measurement storehouse 1.Battery compartment 9 is conjuncted structure with lower cover 8.
Embodiment 3
The marine locator shell structure that is used to drop comprises internal layer shell and detachable outer casing, and detector is located in the internal layer shell, and the end in the outer casing is provided with expansion generating means 2, slides in outer casing to promote internal layer shell.Said internal layer shell comprises that by upper press cover 5 lower cover 8 and the cavity that over cap 10 surrounds are provided with line bag 4 and detector 6 in the cavity.The contact position of said internal layer shell and expansion generating means 2 is provided with power amplifier storehouse 3.Said outer casing comprises communication measurement storehouse 1, buoyancy aid 7 and battery compartment 9, and battery compartment 9 is connected with internal layer shell, and outer casing is separable between buoyancy aid 7 and battery compartment 9.Said power amplifier storehouse 3 is a moveable element.There is the gap between internal layer shell and outer casing, fills elastic filler.Said expansion generating means 2 is located at the bottom in communication measurement storehouse 1 and the top in power amplifier storehouse 3.Battery compartment 9 is conjuncted structure with lower cover 8.

Claims (8)

1. be used to the marine locator shell structure of dropping; It is characterized in that comprising internal layer shell and detachable outer casing; Detector is located in the internal layer shell, and the end in the outer casing is provided with expansion generating means (2), slides in outer casing to promote internal layer shell.
2. the marine locator shell structure that is used to drop according to claim 1; It is characterized in that said internal layer shell comprises by upper press cover (5); The cavity that lower cover (8) and over cap (10) surround is provided with line bag (4) and detector (6) in the cavity.
3. the marine locator shell structure that is used to drop according to claim 1 is characterized in that the contact position of said internal layer shell and expansion generating means (2) is provided with power amplifier storehouse (3).
4. according to the arbitrary described marine locator shell structure that is used to drop of claim 1~3; It is characterized in that said outer casing comprises communication measurement storehouse (1), buoyancy aid (7) and battery compartment (9); Battery compartment (9) is connected with internal layer shell, and outer casing is separable between buoyancy aid (7) and battery compartment (9).
5. the marine locator shell structure that is used to drop according to claim 3 is characterized in that said power amplifier storehouse (3) is moveable element.
6. the marine locator shell structure that is used to drop according to claim 4 is characterized in that having the gap between internal layer shell and outer casing, fills elastic filler.
7. the marine locator shell structure that is used to drop according to claim 4 is characterized in that said expansion generating means (2) is located at the bottom in communication measurement storehouse (1) and the top of power amplifier storehouse (3).
8. the marine locator shell structure that is used to drop according to claim 4 is characterized in that said battery compartment (9) and lower cover (8) are conjuncted structure.
CN2011202468643U 2011-07-14 2011-07-14 Shell structure of ocean exploring device for aerial delivery Expired - Fee Related CN202166418U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011202468643U CN202166418U (en) 2011-07-14 2011-07-14 Shell structure of ocean exploring device for aerial delivery

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Application Number Priority Date Filing Date Title
CN2011202468643U CN202166418U (en) 2011-07-14 2011-07-14 Shell structure of ocean exploring device for aerial delivery

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CN202166418U true CN202166418U (en) 2012-03-14

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102717891A (en) * 2012-07-05 2012-10-10 北京理工大学 Anti-air dispersion overload buffering device suitable for micro detection robot
CN103712605A (en) * 2013-11-25 2014-04-09 浙江大学 Underwater portable insertion-needle type bottom-supported profiler
CN112629501A (en) * 2020-12-01 2021-04-09 上海彩虹鱼海洋科技股份有限公司 Wave measuring device and method for measuring waves
CN113126180A (en) * 2021-04-20 2021-07-16 国家海洋技术中心 Unmanned autonomous sea air interface meteorological hydrological environment element integrated observation system
CN114235039A (en) * 2021-12-06 2022-03-25 航天新气象科技有限公司 Thermohaline depth gauge and matching device with same and carrying platform

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102717891A (en) * 2012-07-05 2012-10-10 北京理工大学 Anti-air dispersion overload buffering device suitable for micro detection robot
CN102717891B (en) * 2012-07-05 2015-05-20 北京理工大学 Anti-air dispersion overload buffering device suitable for micro detection robot
CN103712605A (en) * 2013-11-25 2014-04-09 浙江大学 Underwater portable insertion-needle type bottom-supported profiler
CN103712605B (en) * 2013-11-25 2015-11-18 浙江大学 Underwater portable contact pin type sits bottom profile instrument
CN112629501A (en) * 2020-12-01 2021-04-09 上海彩虹鱼海洋科技股份有限公司 Wave measuring device and method for measuring waves
CN113126180A (en) * 2021-04-20 2021-07-16 国家海洋技术中心 Unmanned autonomous sea air interface meteorological hydrological environment element integrated observation system
CN114235039A (en) * 2021-12-06 2022-03-25 航天新气象科技有限公司 Thermohaline depth gauge and matching device with same and carrying platform

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20120314

Termination date: 20140714

EXPY Termination of patent right or utility model