CN104406813B - Polar region snow sample collection device - Google Patents

Polar region snow sample collection device Download PDF

Info

Publication number
CN104406813B
CN104406813B CN201410738713.8A CN201410738713A CN104406813B CN 104406813 B CN104406813 B CN 104406813B CN 201410738713 A CN201410738713 A CN 201410738713A CN 104406813 B CN104406813 B CN 104406813B
Authority
CN
China
Prior art keywords
screw
collection
leading screw
polar region
snow
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.)
Active
Application number
CN201410738713.8A
Other languages
Chinese (zh)
Other versions
CN104406813A (en
Inventor
窦银科
孙波
崔祥斌
常晓敏
王宇晖
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.)
Taiyuan University of Technology
Original Assignee
Taiyuan University of Technology
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 Taiyuan University of Technology filed Critical Taiyuan University of Technology
Priority to CN201410738713.8A priority Critical patent/CN104406813B/en
Publication of CN104406813A publication Critical patent/CN104406813A/en
Application granted granted Critical
Publication of CN104406813B publication Critical patent/CN104406813B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Sampling And Sample Adjustment (AREA)

Abstract

The invention discloses a polar region snow sample collection device, and belongs to the technical field of chemical laboratory analysis. The polar region snow sample collection device is applied to fixed-point collection on the snow samples in scientific investigation in the polar region. Compared with the existing polar region snow sample collection manner, the snow samples repeatedly collected by the polar region snow sample collection device has extremely high comparability, the sampling process is simple and rapid and the accuracy rate is high; the polar region snow sample collection device can be repeatedly used, is suitable for the special environment of south and north poles with wide territory, low temperature, heavy blizzard and multiple collection points, and is a manner for replacing the existing polar region snow sample collection manner.

Description

A kind of polar region snow core harvester
Technical field
A kind of polar region of present invention snow core harvester, belongs to assay technical field, is that one kind is applied in polar region scientific investigation In, snow core is carried out pinpoint the device of collection, compared with the snow core acquisition mode of existing polar region, adopted snow core has the present invention High comparability, is the substitute mode of existing polar region snow core acquisition mode.
Background technology
Enter 21 century, a large amount of consumption with the energy exacerbate global warming, it has been recognized that earth environment The great crises facing, than ever whenever all in the urgent need to comprehensive monitoring and research polar region environment and global environmental change. South poles accumulated snow and sea ice are the indicateing arms of Global climate change, and the ice and snow total amount of its storage is the pass of impact Global climate change Key factor.
Due to unique geographical position and geologic structure, in south poles ice sheet, contain to pass by hundreds thousand of years terrestrial climates With the precious information of environmental change, never it is subject to the artificial disturbance of the mankind for a long time.Therefore, to solar origin, In the physicisms such as continent forming process, the cycle of climate change and ecological succession history, south poles continent has Advantageous study condition, even not replaceable.
In south poles, section passes the examination, and the measurement to accumulated snow and monitoring are one important component parts of polar region scientific investigation, and applicant was once Repeatedly participate in Chinese Polar to investigate, this point is had an intimate knowledge.
Accumulated snow is mainly made up of ice, air and snow slush contained humidity, wherein based on ice pellets.The physical parameter master of accumulated snow Contained trace substance etc. in the liquid aqueous rate of snow depth to be included, density, accumulated snow, accumulated snow.
Due to special weather condition and the geographical position of south poles, the forming process of the accumulated snow of south poles be one very long Process, bottom accumulated snow is not changed all the year round, and more down the liquid aqueous rate of the higher accumulated snow of the longer density of snow of Formed age is also higher, leads to Cross the density of accumulated snow between analysis different layers, the Formed age of each interlayer accumulated snow can be extrapolated, by assay difference interlayer The trace substance content of accumulated snow can reflect the process of the pollution to environment for the mankind's activity and trend in global range.
Polar region snow core collection has its particularity it is desirable to different time each aspect in multi collect same place is with wide as far as possible Degree, same to depth, same to height, the snow core of same volume, meet the requirement of the situation of change of analysis snow core density and air bells laid, make Portraitlandscape compares, thus analyzing the trend of polar ice material balance.
At present, in south poles scientific investigation, the collection of snow core generally uses nivation cirque acquisition method, artificial behind selected collection point Dig the nivation cirque of one meter in diameter square, complete to carry out continuous sampling after stratigraphy profiles observation is taken pictures, each sample overburden depth root According to needing to be divided into multiple class such as 10cm, 20cm, 40cm.Because the amount of contained trace substance in south poles accumulated snow is considerably less, prevent Only sampling process artificial pollution snow core, sampling process must be carried out in strict accordance with purifying anti-pollution requirement, selects leeward wall with not Rust steel shovel and scraper plate trim sampling face, and operator need to wear clean garment, wear disposable clean glove and mask, with existing in advance Snow core is directly collected sealing in sample sack by the special sampling spade be aligned sampling face that laboratory purification was processed, take back domestic enter Row assay.
There are the following problems for existing nivation cirque acquisition method:
1. high labor intensive: gatherer process needs more than three people every time, need to dig the nivation cirque of 1 meter of square, after the completion of collection, Nivation cirque need to be backfilled and recover original appearance, under the adverse circumstances of polar region, seem extremely difficult.
2. gatherer process is loaded down with trivial details: operator need to wear clean garment, wear disposable clean glove and mask.
3. comparability is poor: causes comparability difference mainly by two reasons, one cannot find the last time because heavy snow covers Collection hole, even if find hole in comparability is not had with the adopted snow core of artificial destruction, can only separately ward off new footpath.It two is opened up newly Because accumulated snow height is to be continually changing in collection hole, the same aspect that this has comparability to determination brings difficulty, has wanted Identical depending on is impossible entirely.
Content of the invention
A kind of polar region of the present invention its goal of the invention of snow core harvester is: solves in prior art it cannot be guaranteed that repeatedly adopting The problems such as the adopted snow core of sample is the snow core of same sampled point and loses comparability, thus disclose a kind of fixed point different sampling stages Sampling apparatuses are repeated several times, maximum feature is repeatedly that adopted snow core has high comparability, especially adapt to south poles science and examine Examine in special environment and use.
A kind of polar region of present invention snow core harvester, is made up of drive mechanism, sampling mechanism, staving and height sensor (see accompanying drawing 1);Drive mechanism is made up of leading screw 1, screw 2, crank 3, screw 9 and support 10;Described leading screw 1 bottom is machined with The matching size of external screw thread, its relative dimensions and screw 2 female thread closes, and leading screw 1 screws in screw 2, and turn clockwise leading screw 1 Female 2 move down on leading screw 1, and rotate counterclockwise leading screw 1 screw 2 moves up on leading screw 1, leading screw 1 topmost centre bit Put and be machined with a female thread, its relative dimensions is closed with the externally threaded matching size of bolt 13, leading screw 1 topmost is machined with outer four Side, its relative dimensions and the interior four directions matching size conjunction of crank 3, are machined with a boss in the lower section in the outer four directions of leading screw 1, use end cap Fixing for leading screw 1 over the mount 10, screw about 2 centre position level weld a band steel, band steel is at screw 1/2nd three Weld an annulus, be conveniently connected with height sensor 11 bracing wire, band steel bores a circular hole at screw 2/2nds three, conveniently uses spiral shell The fixing collection pawl 4 of nail 9;Crank 3 has been fabricated to interior four directions while there being handle using band steel, and support 10 is processed into steel plate Collar plate shape, its external diameter is matched with the external diameter of collection bucket 14, and the both sides of centrage stay one fixed width remainder to cut away, support 10 bottom symmetrical is machined with two buckles, and the width of buckle is matched with the width of collection groove 8.Described sampling mechanism is by gathering Pawl 4, chute 5, bracket 6, collecting container 7 form;Described collection pawl 4 adopts band steel to make, and gathers width and the collection groove 8 of pawl 4 Width match, front portion is fabricated to downward hook type, and a circular hole is bored at the rear portion of collection pawl 4, convenient collection pawl 4 use screw 9 with On screw 2 welding band steel fix, chute 5 be fabricated to using stainless sheet steel dustpan shaped, dustpan mouth to lower band certain angle weld It is connected on bracket 6, bracket 6 and the band steel being welded on screw 2 weld.Staving is by gathering bucket 14 and protective cover 12 two parts group Become, described collection bucket 14 is fabricated to hollow cylinder using stainless sheet steel, and open topped bottom back cover, in collection bucket 14 staving Ten a plurality of collection grooves 8 have been uniformly and symmetrically distributed it, its depth is slightly shorter than the bottom of leading screw 1;Described height sensor 11 is from sizing Product stay wire sensor, installs over the mount 10, its bracing wire is connected with the annulus being welded on band steel on screw 2.
A kind of polar region of present invention snow core harvester, collection bucket 14 has been uniformly and symmetrically distributed a plurality of collection groove 8, and collection is once The only snow core of one collection groove 8 of collection, does not affect on the snow core of other collection grooves 8.If same 1 year period gathers once Minimum can use more than 10 years.If same 10 years periods collection is once minimum can use more than a century.
A kind of polar region of present invention snow core harvester has a characteristic that
1. many adopted snow cores, have high comparability;
2. sampling process simple and fast, accuracy rate is high;
3. can repeatedly use;
4. adapt to south poles region extensively, temperature is low, wind and snow is big, wait special environment more the collection point.
Brief description
Fig. 1 apparatus structure schematic diagram
Fig. 2 device a a generalized section
1. leading screw 2. screw 3. crank 4. collection pawl 5. chute, 6. bracket, 7. collecting container 8. collection groove
9. screw 10. support 11. height sensor 12. protective cover, 13. bolt 14. collection bucket.
Specific embodiment
Embodiment 1:
A kind of application in scientific investigation in the Antarctic for polar region of present invention snow core harvester.
1. install
After choosing collecting location, bored with snow and vertically make a call to a circular nivation cirque matching with collection bucket 14 external diameter, the whole series are adopted Acquisition means are vertically mounted in circular nivation cirque according to after accompanying drawing 1 assembling, reserved certain altitude between its top and snow plane.Compile Number, measurement longitude and latitude recording.Measure the height of collection pawl 4 and snow surface with box chi and note down, as snow altitude datum.
2. gatherer process
1.2. further illustrates a kind of gatherer process of polar region of present invention snow core harvester below in conjunction with the accompanying drawings.
(1). preamble works
The longitude and latitude being shown according to global positioning system, finds this harvester, checks digit.
Lay down bolt 13, remove protective cover 12, by support 10 together with leading screw 1, screw 2, crank 3, collection pawl 4, chute 5th, bracket 6 takes out from collection bucket 14 together, collection pawl 4 is rotated forward 180 ° centered on screw 9 and so that collection pawl 4 is stretched out and adopts Collection bucket 14, tightens screw 9.Above-mentioned part is reinstalled to together in collection bucket 14, notice that gathering pawl 4 must be inserted into gathering Corresponding collection groove 8 in, the buckle of the bottom of support 10 must snap in corresponding collection groove 8, and collecting container 7 is put into support On frame 6.Height sensor 11 is connected with height display instrument.Turn clockwise crank 3, screw 2, collection pawl 4, chute 5, bracket 6 And collecting container 7 moves downward along collection groove 8 together, stop the rotation crank 3 when gathering pawl 4 and touching snow surface, reads Height show value, is kept a record as actual snow height, and is made comparisons with snow altitude datum value, calculate difference.
(2). gatherer process
Turn clockwise crank 3, and screw 2, collection pawl 4, chute 5, bracket 6 and collecting container 7 are together along collection groove 8 Move downward, the snow core outside collection bucket 14 enters chute 5 by gathering groove 8 in collection pawl 4 in the presence of downwards, along chute 5 Flow in collecting container 7, when the height that height display instrument shows is identical with snow altitude datum, stop the rotation crank 3, will collect Container 7 takes out, in the container that adopted snow core is preserved, the time of the good collection of record, place (longitude and latitude), numbering, the height of snow core Degree and collector's name etc..
Continue the crank 3 that turns clockwise, screw 2, collection pawl 4, chute 5, bracket 6 and collecting container 7 are together along adopting Collection groove 8 moves downward, and the snow core outside collection bucket 14 enters chute 5 by gathering groove 8 in collection pawl 4 in the presence of downwards, along Chute 5 flows in collecting container 7, and when the height that height display instrument shows is 100mm, stop the rotation crank 3, by collecting container 7 taking-ups, in the container that adopted snow core is preserved, the time of the good collection of record, place (longitude and latitude), numbering, the height of snow core and Collector's name etc..
Continue to repeat said process up to the bottom of sampling groove 8, gatherer process terminates.
(3). subsequent operation
After gatherer process terminates, rotate counterclockwise crank 3, screw 2, collection pawl 4, chute 5, bracket 6 and collecting container 7 Move upwards along collection groove 8 together, when collection pawl 4 encounters support 10 bottom, crank 3 stops operating.By support 10 together with Leading screw 1, screw 2, crank 3, collection pawl 4, chute 5, bracket 6 take out from collection bucket 14 together, will gather pawl 4 with screw 9 Centered on 180 ° of back rotation make collection pawl 4 retract collection bucket 14 in, by above-mentioned part together reinstall to collection bucket 14 in. Remove height sensor 11 and height display instrument connecting line, height display instrument and collecting container 7 withdrawn, covers protective cover 12, Tighten bolt 13.
By above-mentioned sample mode and process, same collection point can be analyzed in laboratory, the different acquisition time, identical The situation of change of the adopted snow core of collection height, illustrates that a kind of polar region of present invention snow core harvester has high comparability.

Claims (2)

1. a kind of polar region snow core harvester, is made up of drive mechanism, sampling mechanism, staving and height sensor;Its feature exists It is made up of leading screw (1), screw (2), crank (3), screw (9) and support (10) in described drive mechanism;Leading screw (1) bottom adds Work has external screw thread, and the matching size of its relative dimensions and screw (2) female thread closes, and leading screw (1) screws in screw (2), clockwise Rotating threaded shaft (1) screw (2) moves down on leading screw (1), rotate counterclockwise leading screw (1) screw (2) on leading screw (1) upwards Mobile, leading screw (1) topmost center is machined with a female thread, its relative dimensions and the externally threaded matching size of bolt (13) Close, leading screw (1) topmost is machined with outer four directions, the interior four directions matching size of its relative dimensions and crank (3) closes, in leading screw (1) The lower section in outer four directions is machined with a boss, with end cap, leading screw (1) is fixed on support (10), in screw (2) interposition up and down Level of putting welds a band steel, and band steel welds an annulus at screw (2) 1/3rd, and convenient and height sensor (11) bracing wire connects Connect, band steel bores a circular hole at screw (2) 2/3rds, collection pawl (4) fixed by convenient screw (9), and crank (3) adopts band steel Be fabricated to interior four directions while there is handle, support (10) is processed into collar plate shape with steel plate, its external diameter with gather bucket (14) External diameter match, the both sides of centrage stay one fixed width remainder to cut away, and the bottom symmetrical of support (10) is machined with two Individual buckle, the width of buckle is matched with the width of collection groove (8);Described sampling mechanism is by gathering pawl (4), chute (5), bracket (6), collecting container (7) composition;Collection pawl (4) adopts band steel to make, and gathers the width of pawl (4) and the width phase of collection groove (8) Cooperation, front portion is fabricated to downward hook type, and a circular hole is bored at the rear portion of collection pawl (4), and convenient collection pawl (4) uses screw (9) and silk Band steel of female (2) upper welding is fixed, and chute (5) is fabricated to dustpan shaped using stainless sheet steel, and dustpan mouth is to lower band certain angle It is welded on bracket (6), bracket (6) and the band steel being welded on screw (2) weld;Described staving by gather bucket (14) and protection Cover (12) two parts composition;Collection bucket (14) is fabricated to hollow cylinder using stainless sheet steel, open topped bottom back cover, Collection bucket (14) staving has been uniformly and symmetrically distributed ten a plurality of collections groove (8), and its length is slightly shorter than the length of leading screw (1).
2. a kind of polar region snow core harvester according to claim 1 is it is characterised in that described height sensor (11) selects Use approved product stay wire sensor, be arranged on support (10), its bracing wire is connected with the annulus of the band steel being welded on screw (2) Connect.
CN201410738713.8A 2014-12-08 2014-12-08 Polar region snow sample collection device Active CN104406813B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410738713.8A CN104406813B (en) 2014-12-08 2014-12-08 Polar region snow sample collection device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410738713.8A CN104406813B (en) 2014-12-08 2014-12-08 Polar region snow sample collection device

Publications (2)

Publication Number Publication Date
CN104406813A CN104406813A (en) 2015-03-11
CN104406813B true CN104406813B (en) 2017-01-25

Family

ID=52644460

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201410738713.8A Active CN104406813B (en) 2014-12-08 2014-12-08 Polar region snow sample collection device

Country Status (1)

Country Link
CN (1) CN104406813B (en)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105973637B (en) * 2016-05-06 2019-01-11 中国科学院寒区旱区环境与工程研究所 A kind of field condition nivation cirque method of sampling
CN106365065B (en) * 2016-08-04 2019-08-09 内蒙古自治区林业科学研究院 Flux tassor dirt acquires apparatus for automatically lifting
CN109374851B (en) * 2018-10-23 2021-06-08 新疆林科院森林生态研究所 Forest monitoring snow sampler
CN109533082B (en) * 2019-01-07 2023-09-22 太原科技大学 Giant six-leg crawler foot polar region scientific vehicle
CN110940556B (en) * 2019-12-18 2024-06-04 内蒙古工业大学 Automatic layering sampling snow collecting experimental device

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6176326B1 (en) * 1998-10-06 2001-01-23 Soilcore, Inc. Soil sampling measuring device
CN2588360Y (en) * 2002-12-10 2003-11-26 刘春兰 Snow sampling device
FR2870342B1 (en) * 2004-05-17 2007-02-23 Agro Systemes S A Sa SYSTEM FOR THE USE OF A DEVICE FOR SAMPLING SAMPLES IN A SOIL OR A MATERIAL OF GRANULAR OR PULVERULENT CONSTITUTION
JP2010007270A (en) * 2008-06-25 2010-01-14 Sekisui House Ltd Ground sampling device
CN202119645U (en) * 2011-07-05 2012-01-18 王佟 Sampling device of flammable ice
CN202631296U (en) * 2012-04-06 2012-12-26 北京通尼科技有限公司 Icebreaking spiral sampler

Also Published As

Publication number Publication date
CN104406813A (en) 2015-03-11

Similar Documents

Publication Publication Date Title
CN104406813B (en) Polar region snow sample collection device
CN101551304B (en) Stratified sampler of water samples
CN210136089U (en) Multifunctional soil detection sampling device
CN202033357U (en) Root system CO2 in-situ automatic measuring device
CN203440370U (en) Fixed spore capture instrument
CN206683894U (en) A kind of Portable mobile mud sample acquisition machine
CN206057007U (en) The sample collecting apparatus of in-situ acquisition shallow water area Muddy Bottoms deposit
CN107247083A (en) A kind of heavy metals in farmland pollution on-line monitoring early warning and real time processing system and method
CN201434786Y (en) Water sample layered sampler
CN201464222U (en) Swamp wetland dew collector
CN109580276A (en) A kind of soil layering used for geological prospecting sampling save set and application method
CN201852726U (en) Trace gas acquisition device at different soil section gradients
CN206038353U (en) Novel sampling of precipitation isotope device
CN102735417B (en) Omni-directional sand transport monitoring method
CN218067113U (en) Sampler for collecting volatile organic compounds in soil
CN207816631U (en) Overlying water and sediment interstitial water one harvester
CN102487808B (en) Device for monitoring epiphytic algae in multiple-sediment river
Mitchell et al. Experimental design and instrumentation for analyzing solute concentrations and fluxes for quantifying biogeochemical processes in watersheds
CN105606407A (en) Tipping-bucket segmented sampling instrument for initial rainwater water-quality analysis
CN205898791U (en) Gangue leachate melts and infiltrates indoor simulation soil column device
WO2019077136A1 (en) Automatic water sampler apparatus
CN111487091B (en) Coupling device for synchronous layered sampling and hydrological test of overlying water and interstitial water
CN213209564U (en) Soil collector for forestry
CN213658360U (en) Rainwater collection device with quartering method sampling
CN113218688A (en) Investigation tool and investigation method for stream aquatic organism diversity

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant