CN106693513A - Cyclic utilization sedimentation tank suitable for drilling water and cyclic utilization method - Google Patents

Cyclic utilization sedimentation tank suitable for drilling water and cyclic utilization method Download PDF

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Publication number
CN106693513A
CN106693513A CN201710068680.4A CN201710068680A CN106693513A CN 106693513 A CN106693513 A CN 106693513A CN 201710068680 A CN201710068680 A CN 201710068680A CN 106693513 A CN106693513 A CN 106693513A
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CN
China
Prior art keywords
sedimentation basin
mud
probing
precipitation chamber
drilling rod
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CN201710068680.4A
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Chinese (zh)
Inventor
黄向京
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HUNAN COMMUNICATION PLANNING AND PROSPECTING DESIGN ACADEMY
Hunan Provincial Communications Planning Survey and Design Institute Co Ltd
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HUNAN COMMUNICATION PLANNING AND PROSPECTING DESIGN ACADEMY
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Priority to CN201710068680.4A priority Critical patent/CN106693513A/en
Publication of CN106693513A publication Critical patent/CN106693513A/en
Pending legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D21/00Separation of suspended solid particles from liquids by sedimentation
    • B01D21/0012Settling tanks making use of filters, e.g. by floating layers of particulate material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D21/00Separation of suspended solid particles from liquids by sedimentation
    • B01D21/0039Settling tanks provided with contact surfaces, e.g. baffles, particles
    • B01D21/0042Baffles or guide plates
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D21/00Separation of suspended solid particles from liquids by sedimentation
    • B01D21/0039Settling tanks provided with contact surfaces, e.g. baffles, particles
    • B01D21/0069Making of contact surfaces, structural details, materials therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D21/00Separation of suspended solid particles from liquids by sedimentation
    • B01D21/02Settling tanks with single outlets for the separated liquid
    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21BEARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
    • E21B21/00Methods or apparatus for flushing boreholes, e.g. by use of exhaust air from motor
    • E21B21/01Arrangements for handling drilling fluids or cuttings outside the borehole, e.g. mud boxes

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  • Chemical Kinetics & Catalysis (AREA)
  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Geology (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Mining & Mineral Resources (AREA)
  • Environmental & Geological Engineering (AREA)
  • Fluid Mechanics (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • Geochemistry & Mineralogy (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Earth Drilling (AREA)

Abstract

The invention discloses a cyclic utilization sedimentation tank suitable for drilling water and a cyclic utilization method. The cyclic utilization sedimentation tank comprises a sedimentation tank body with an upward opening and further comprises a water collecting basin installed at the inlet end of the sedimentation tank body, communicated with the sedimentation tank body and used for collecting mud, wherein the sedimentation tank body is provided with at least two sequentially arranged sedimentation cavities, a partition plate is installed between adjacent sedimentation cavities and is provided with a chipping blocking part for the mud to pass through, the sedimentation cavity at the output end of the sedimentation tank body is connected with an inlet of a drill rod of a drilling machine through a mud delivery assembly, the drill rod of the drilling machine is inserted into the water collecting basin, and an outlet of the drill rod of the drilling machine is connected with the inner cavity of the water collecting basin. The cyclic utilization method has the advantages of cyclic utilization and rapid sedimentation. The cyclic utilization sedimentation tank has the advantages of being simple in structure, small in noise, low in cost, easy to operate, small in occupied area, small in environmental pollution and high in working efficiency.

Description

Sedimentation basin and circulation utilization method are recycled suitable for probing water
Technical field
The present invention relates to technical field of geotechnical investigation, and in particular to a kind of to recycle sedimentation basin suitable for probing water And circulation utilization method.
Background technology
With the high development of urban construction, many urban construction are all essential will to use drilling equipment, and traditional Drilling equipment has the shortcomings that noise is big, seriously polluted and material can not be recycled and cause serious waste, so in order to not The normal life of city dweller is influenceed, needs a kind of quiet, drilling equipment small and that material can be recycled of pollution badly to complete work Make, and the existing probing circulatory system is collectively constituted by equipment such as vibratory sieve, desander, desilter, cleaner and centrifuges Mechanical removal system, be characterized in coordinative composition of equipments, remove step by step, with easily controllable solid phase, mud property stabilization, mud damage Small advantage is lost less and pollutes, meanwhile, the system has the disadvantage that:(1)The species of plant equipment is various, and noise is big;(2)Apply The cost of work is greatly increased, and cost is sufficiently expensive;(3)Because plant equipment species is more, cause floor space big, it is impossible in complexity Constructed in landform;(4)Construction technology is sufficiently complex, it is necessary to the skilled worker of specialty, and needs to put into substantial amounts of manpower Material resources.
The content of the invention
The technical problem to be solved in the present invention is to overcome the shortcomings of that prior art is present, there is provided a kind of device structure is simple, Noise is small, low cost, easily operated, floor space are small, small and high working efficiency the following suitable for probing water of environmental pollution Ring utilizes sedimentation basin and circulation utilization method.
In order to solve the above technical problems, the present invention uses following technical scheme:
It is a kind of to recycle sedimentation basin suitable for probing water, upwardly opening sedimentation basin pond body is included, also including installing In sedimentation basin pond body upstream end and the reception basin for collecting mud that is connected with sedimentation basin pond body, the sedimentation basin pond body has At least two precipitation chambers being sequentially arranged, are provided with dividing plate between adjacent precipitation chamber, the dividing plate is provided with the gear passed through for mud Bits part, is connected by slurry transportation component positioned at the precipitation chamber of the sedimentation basin pond body output end with the import of probing driver drilling rod, The probing driver drilling rod inserts the reception basin, and the outlet of the probing driver drilling rod is connected with the inner chamber of the reception basin.
Above-mentioned recycles sedimentation basin suitable for probing water, it is preferred that the gear bits part is gear bits aperture plate, multiple The mesh size of the gear bits aperture plate is gradually reduced along the direction away from reception basin.
Above-mentioned recycles sedimentation basin suitable for probing water, it is preferred that the gear bits aperture plate is metal material system Part.
Above-mentioned recycles sedimentation basin suitable for probing water, it is preferred that the slurry transportation component includes mud Delivery pump, the water inlet of the slurry transportation pump is connected by pipeline with the precipitation chamber positioned at the sedimentation basin pond body output end, The delivery port of the slurry transportation pump is connected with the import of probing driver drilling rod.
Above-mentioned recycles sedimentation basin suitable for probing water, it is preferred that the slurry transportation component also includes peace Mounted in the outlet pipe in the precipitation chamber of the sedimentation basin pond body output end, one end of the outlet pipe is closed, outlet pipe The other end is connected through the side wall in precipitation chamber with the pipeline, and the outlet pipe is provided with multiple gear bits passed through for mud Hole.
Above-mentioned recycles sedimentation basin suitable for probing water, it is preferred that one end of the outlet pipe is fixed on institute State on the side inwall in precipitation chamber, the other end of outlet pipe is connected through the opposite side side wall in the precipitation chamber with the pipeline, many The individual gear bits hole uniform intervals arrangement.
Above-mentioned recycles sedimentation basin suitable for probing water, it is preferred that the outlet pipe is arranged close to described The position of sedimentation basin pond body output end inwall.
Above-mentioned recycles sedimentation basin suitable for probing water, it is preferred that the slurry transportation pump is suction pump.
Above-mentioned recycles sedimentation basin suitable for probing water, it is preferred that the pipeline is quality of rubber materials product.
A kind of circulation utilization method suitable for probing water using above-mentioned sedimentation basin, comprises the following steps:
(A)The mud of additive will be added to pour into probing driver drilling rod, opened drilling machine and constructed, drilling machine is filled in construction Enter the mud drilled in driver drilling rod can adulterate some sand bits by drill driver drilling rod outlets discharge and by reception basin collect after The precipitation chamber connected with reception basin is flow to, then other are flow to by the gear bits part successively from the precipitation chamber and precipitate chamber, During mud flowing, the gear bits part can stop that the debris such as husky bits, clod flow to adjacent precipitation chamber from precipitation chamber;
(B)Until mud is flow to positioned at the precipitation chamber of the sedimentation basin pond body output end, then should by the slurry transportation component Precipitate import of the mud in chamber by drilling driver drilling rod and be delivered to probing driver drilling rod;
(C)To be delivered to probing driver drilling rod mud in add additive, repeat it is middle unlatching drilling machine after the step of and step Suddenly, until construction is completed.
Compared with prior art, the advantage of the invention is that:It is of the invention to recycle precipitation suitable for probing water The device structure of pond and circulation utilization method is simple, low cost, noise are small, floor space is small, and simple place need to be only made in construction Reason does not deal with, and is applicable to the poor area of construction environment, and easily operated, only needs to install equipment i.e. before construction Can, other operations are not required to, and operation only need to be simply repeated in work progress, it is not necessary to the skilled worker of specialty, while tool Recycle and the characteristics of rapid precipitation, it is small not only to save labor and materials, environmental pollution, and high working efficiency.Should be applied to and bore Spy water recycle sedimentation basin and circulation utilization method have that device structure is simple, noise is small, low cost, it is easily operated, Floor space is small, environmental pollution is small and high working efficiency advantage.
Brief description of the drawings
Fig. 1 is the overlooking the structure diagram for recycling sedimentation basin suitable for probing water.
Fig. 2 is to illustrate suitable for the main sectional structure for recycling omission slurry transportation component sedimentation basin of probing water Figure.
Fig. 3 is the structural representation for recycling gear bits part sedimentation basin suitable for probing water.
Marginal data:
1st, sedimentation basin pond body;11st, chamber is precipitated;110th, the first precipitation chamber;111st, the second precipitation chamber;12nd, dividing plate;121st, gear bits part; 2nd, reception basin;3rd, slurry transportation component;31st, slurry transportation pump;32nd, pipeline;33rd, outlet pipe;331st, gear bits hole.
Specific embodiment
The present invention is described in further detail below in conjunction with the drawings and specific embodiments.
As shown in Figure 1 to Figure 3, the present embodiment suitable for probing water recycles sedimentation basin, includes and opens upward The sedimentation basin pond body 1 of mouth, also including the reception basin 2 for collecting mud, reception basin 2 is arranged on the upstream end of sedimentation basin pond body 1 simultaneously Connected with sedimentation basin pond body 1, sedimentation basin pond body 1 has at least two precipitation chambers 11 being sequentially arranged, between adjacent precipitation chamber 11 Dividing plate 12 is installed, dividing plate 12 is provided with the gear passed through for mud and considers part 121 to be worth doing, positioned at the precipitation chamber 11 of the output end of sedimentation basin pond body 1 It is connected with the import of probing driver drilling rod by slurry transportation component 3, probing driver drilling rod insertion reception basin 2 drills going out for driver drilling rod Mouth is connected with the inner chamber of reception basin 2.
Sedimentation basin pond body 1 is in cuboid in the present embodiment, and one piece of dividing plate is installed on length direction in sedimentation basin pond body 1 12, sedimentation basin pond body 1 is divided into two precipitation chambers 11 of size identical, two precipitation chambers 11 to be respectively the first precipitation by dividing plate 12 Chamber 111 is precipitated in chamber 110 and second, and the first precipitation chamber 110 connects with reception basin 2, and the second precipitation chamber 111 passes through slurry transportation component 3 are connected with the import of probing driver drilling rod.The dividing plate 12 of the present embodiment is placed vertically successively from top to down by sedimentation basin pond body 1 Gear bits part 121 and steel plate composition, in the bottom of sedimentation basin pond body 1, gear bits part 121 is fixed on steel plate top to Interal fixation.From brill The mud for visiting the outlet discharge of driver drilling rod first flow to the first precipitation chamber 110 after the collection of reception basin 2, then precipitates chamber 110 from first The second precipitation chamber 111 is flow to by keeping off bits part 121.During mud flowing, gear bits part 121 can stop husky bits in mud, The debris such as clod flow to the second precipitation chamber 111 from the first precipitation chamber 110.The mud flowing in the second precipitation chamber 111 is defeated by mud Import of the sending component by drilling driver drilling rod is transported in probing driver drilling rod, and the then outlet by drilling driver drilling rod is discharged and quilt Reception basin 2 is collected, then successively flow to the first precipitation chamber 110 and the second precipitation chamber 111, is repeated said process and is completed until constructing, It is achieved thereby that the recycling of mud.Chamber 110, second is precipitated by reception basin 2, first in mud and precipitates chamber 111 and mud During conveying assembly 3 flows, the particle in mud realizes thick, fine grained priority rapid precipitation after being screened by size grading, In addition, can also in work progress to mud in add the material such as coagulant to accelerate particle precipitation.
This is applied to that the simple structure for recycling sedimentation basin of probing water, low cost, noise be small, floor space is small, Need to only make simple process in construction or not deal with, be applicable to the poor area of construction environment, but it is easily operated, applying Only need to install equipment before work, be not required to other operations, and operation only need to be simply repeated in work progress, it is not necessary to specially The skilled worker of industry, meanwhile, the sedimentation basin that recycles that should be applied to probing water has the spy recycled with rapid precipitation Point, not only saving labor and materials, environmental pollution are small, and improve its operating efficiency.It is heavy that this is applied to recycling for probing water Shallow lake pond has that small simple structure, noise, low cost, easily operated, floor space be small, environmental pollution is small and high working efficiency excellent Point.
In the present embodiment, gear bits part 121 is gear bits aperture plate(As shown in Figure 3), the mesh size of multiple gear bits aperture plate is along remote Direction from reception basin 2 is gradually reduced.When the quantity more than two in chamber 11 is precipitated, the quantity for for example precipitating chamber 11 is three, Respectively preceding precipitation chamber, middle precipitation chamber and after precipitate chamber, preceding precipitation chamber, middle precipitation chamber and rear precipitation chamber are along sedimentation basin pond body 1 Length direction is sequentially arranged, wherein, preceding precipitation chamber connects with reception basin 2, chamber is precipitated afterwards and passes through slurry transportation component 3 and drilling machine The import of drilling rod is connected.Gear bits aperture plate between preceding precipitation chamber and middle precipitation chamber is that front considers aperture plate, middle precipitation chamber and rear precipitation to be worth doing Gear bits aperture plate between chamber keeps off bits aperture plate after being, the mesh of gear bits aperture plate is smaller than the mesh of front bits aperture plate afterwards.Mud is precipitated in the past Chamber flow to the debris of a part of larger specification during middle precipitation chamber(Sand bits, clod)Stopped by front bits aperture plate, the smaller rule of a part The debris of lattice can then pass through, and subsequent mud is therefrom precipitated when precipitating chamber after chamber flow to, and rear shred holding up plate can further stop the portion Point compared with precipitating chamber after the debris flow direction of small dimension, it is to avoid the part debris are transported to probing driver drilling rod and lead after being mixed into mud Probing driver drilling rod is caused to block.The gear bits aperture plate of the present embodiment is metal material product, can preferably play the effect for stopping debris.
In the present embodiment, slurry transportation component 3 includes slurry transportation pump 31, and the water inlet of slurry transportation pump 31 passes through pipeline 32 connect with the second precipitation chamber 111, and the delivery port of slurry transportation pump 31 is connected with the import of probing driver drilling rod.The mud of the present embodiment Slurry delivery pump 31 uses suction pump of the prior art, and the mud in the second precipitation chamber 111 is delivered to probing machine drill by suction pump In bar, recycling for mud is realized.The pipeline 32 of the present embodiment is quality of rubber materials product, with anti abrasive advantage, is carried The service life of pipeline 32 high.
The slurry transportation component 3 of the present embodiment also includes the outlet pipe 33 being arranged in the second precipitation chamber 111, outlet pipe 33 One end closing, the other end of outlet pipe 33 is connected with pipeline 32 through the side wall in the second precipitation chamber 111, set on outlet pipe 33 There is multiple for mud by keeping off bits hole 331.Mud in second precipitation chamber 111 flows into the inner chamber of outlet pipe 33 by keeping off bits hole 331 In, then be delivered in probing driver drilling rod by suction pump, the mesh that bits aperture plate is kept off in the present embodiment is 2mm long, the rectangle net of width 1mm Hole, the external diameter of outlet pipe 33 is 10cm, a diameter of 1mm in gear bits hole 331, and gear bits hole 331 can further filter miscellaneous in mud Thing, it is ensured that the normal operation of probing driver drilling rod.
Further, one end of outlet pipe 33 is fixed on the side inwall in the second precipitation chamber 111, outlet pipe 33 it is another The opposite side side wall through the second precipitation chamber 111 is held to be connected with pipeline 32, the multiple gear bits uniform intervals of hole 331 are arranged in outlet pipe On 33 so that mud can more smoothly flow therein outlet pipe 33.
The outlet pipe 33 of the present embodiment is arranged close to the position of the output end inwall of sedimentation basin pond body 1, that is, be arranged close to The position of one end inwall relative with dividing plate 12 in second precipitation chamber 111, mud flows into outlet pipe 33 again after fully precipitating, Have the advantages that sedimentation effect is good.
A kind of circulation utilization method suitable for probing water using above-mentioned sedimentation basin, comprises the following steps:
(A)Probing driver drilling rod will add the mud of additive to pour into drilling machine in inserting reception basin 2 through the circular hole on reception basin 2 Drilling rod, opens drilling machine and is constructed, and drilling machine pours into some the sand bits that can adulterate of the mud in probing driver drilling rod logical in construction Cross the outlet discharge of probing driver drilling rod and by flowing to the connected with reception basin 2 first precipitation chamber 110 after the collection of reception basin 2, then The second precipitation chamber 111 is flow to from the first precipitation chamber 110 by keeping off bits aperture plate, during mud flows, gear bits aperture plate can hinder The debris such as sand bits, clod flow to the second precipitation chamber 111 from the first precipitation chamber 110.
(B)During the mud in the second precipitation chamber 111 is flow to by gear bits hole 331 inflow outlet pipe 33 inner chamber, then by aspirating Pump is delivered to probing driver drilling rod by import of the pipeline 32 by the mud in the inner chamber of outlet pipe 33 by drilling driver drilling rod.
(C)Additive is added to being delivered in the mud of probing driver drilling rod, is repeated(A)Step after middle unlatching drilling machine It is rapid and(B)Step, until construction is completed.
The manufacturing process of the sedimentation basin of the present embodiment is:
(1)Sedimentation basin pond body 1 prefabricated first, sedimentation basin pond body 1 be upwardly opening cuboid, cuboid sedimentation basin pond body 1 by One block length be 80cm, the rectangular steel plates of a width of 40cm, two block lengths be 80cm, the rectangular steel plates of a width of 30cm, two block lengths be 40cm, The rectangular steel plates seamless welding of a width of 30cm is formed.Then dividing plate 12, dividing plate 12 are made according to the width of the inner chamber of sedimentation basin pond body 1 Formed with one piece of steel plate seamless welding by the gear bits aperture plate of quadrangle, the mesh of gear bits aperture plate is 2mm long, the rectangle net of width 1mm Hole, dividing plate 12 is inserted in sedimentation basin pond body 1, and dividing plate 12 is by 1 point of sedimentation basin pond body for size identical first precipitates the He of chamber 110 Second precipitation chamber 111.Prefabricated external diameter is the outlet pipe 33 of 10cm, and the gear of multiple uniform intervals arrangements is got on outlet pipe 33 Bits hole 331, a diameter of 1mm in gear bits hole 331.Prefabricated suction pump and pipeline 32, the diameter dimension of pipeline 32 is by outlet pipe 33 Diameter dimension determines.Outlet pipe 33 is placed in the inner chamber of the second precipitation chamber 111, one end of outlet pipe 33 is fixed on the second precipitation chamber On 111 side madial wall, the other end is connected through the second opposite side side wall for precipitating chamber 111 and with one end of pipeline 32.In advance Reception basin processed 2(As depicted in figs. 1 and 2), the part of reception basin 2 is made up of one side in the iron sheet bending of circular arc, circular arc half Footpath is 60cm, and a circular hole is made a call on reception basin 2, and the diameter dimension of circular hole is determined by the diameter dimension of probing driver drilling rod.
(2)Job site completes the work related to probing such as ground leveling, plug-in, by the sedimentation basin pond body for completing 1 is sent to job site, and then drilling machine is placed on ground, and probing driver drilling rod inserts reception basin 2 by the circular hole on reception basin 2 In, reception basin 2 is placed on the one end in the first precipitation chamber 110 and is connected with the first precipitation chamber 110.
(3)The other end of pipeline 32 is connected with the water inlet of suction pump, delivery port and the probing driver drilling rod of suction pump Import connect, then will add additive mud pour into probing driver drilling rod in and by above-mentioned recycling suitable for probing water Method is constructed, until construction is completed.
The quantity of the size of sedimentation basin pond body 1, the size and dimension of reception basin 2 and dividing plate 12 can root in the present embodiment Determine according to actual requirement of engineering.
The size that the mesh size, the size of outlet pipe 33 and gear bits hole 331 of bits aperture plate are kept off in the present embodiment can basis The concrete condition of job site determines.
The above is only the preferred embodiment of the present invention, protection scope of the present invention is not limited merely to above-described embodiment. To those of ordinary skill in the art, the modifications and variations resulting in the case where the technology of the present invention concept thereof is not departed from Should be regarded as protection scope of the present invention.

Claims (10)

1. it is a kind of to recycle sedimentation basin suitable for probing water, include upwardly opening sedimentation basin pond body(1), its feature It is:Also include being arranged on sedimentation basin pond body(1)Upstream end and with sedimentation basin pond body(1)Connection for collecting catchmenting for mud Basin(2), the sedimentation basin pond body(1)With at least two precipitation chambers being sequentially arranged(11), adjacent precipitation chamber(11)Between pacify Equipped with dividing plate(12), the dividing plate(12)It is provided with the gear passed through for mud and considers part to be worth doing(121), positioned at the sedimentation basin pond body(1)It is defeated Go out the precipitation chamber at end(11)By slurry transportation component(3)Import with probing driver drilling rod is connected, the probing driver drilling rod insertion The reception basin(2), it is described probing driver drilling rod outlet and the reception basin(2)Inner chamber be connected.
It is 2. according to claim 1 to recycle sedimentation basin suitable for probing water, it is characterised in that:The gear bits part (121)It is gear bits aperture plate, the mesh size of multiple gear bits aperture plates is along away from reception basin(2)Direction be gradually reduced.
It is 3. according to claim 2 to recycle sedimentation basin suitable for probing water, it is characterised in that:The gear bits grid Net is metal material product.
It is 4. according to claim 1 to recycle sedimentation basin suitable for probing water, it is characterised in that:The mud is defeated Sending component(3)Including slurry transportation pump(31), the slurry transportation pump(31)Water inlet pass through pipeline(32)With positioned at described Sedimentation basin pond body(1)The precipitation chamber of output end(11)Connection, the slurry transportation pump(31)Delivery port and probing driver drilling rod Import is connected.
It is 5. according to claim 4 to recycle sedimentation basin suitable for probing water, it is characterised in that:The mud is defeated Sending component(3)Also include being mounted on the sedimentation basin pond body(1)The precipitation chamber of output end(11)In outlet pipe(33), institute State outlet pipe(33)One end closing, outlet pipe(33)The other end through precipitation chamber(11)Side wall and the pipeline(32) It is connected, the outlet pipe(33)It is provided with multiple gear bits holes passed through for mud(331).
It is 6. according to claim 5 to recycle sedimentation basin suitable for probing water, it is characterised in that:The outlet pipe (33)One end be fixed on the precipitation chamber(11)Side inwall on, outlet pipe(33)The other end pass through the precipitation chamber(11) Opposite side side wall and the pipeline(32)It is connected, multiple gear bits holes(331)Uniform intervals are arranged.
It is 7. according to claim 5 to recycle sedimentation basin suitable for probing water, it is characterised in that:The outlet pipe (33)It is arranged close to the sedimentation basin pond body(1)The position of output end inwall.
It is 8. according to claim 4 to recycle sedimentation basin suitable for probing water, it is characterised in that:The mud is defeated Send pump(31)It is suction pump.
It is 9. according to claim 4 to recycle sedimentation basin suitable for probing water, it is characterised in that:The pipeline (32)It is quality of rubber materials product.
10. the circulation utilization method suitable for probing water of sedimentation basin described in a kind of use claim 1, it is characterised in that: Comprise the following steps:
(A)The mud of additive will be added to pour into probing driver drilling rod, opened drilling machine and constructed, drilling machine is filled in construction Enter the mud drilled in driver drilling rod can adulterate some sand bits by drill driver drilling rod outlets discharge and by reception basin(2)Collect After flow to and reception basin(2)The precipitation chamber of connection(11), then from the precipitation chamber(11)Part is considered to be worth doing by the gear(121)Successively It flow to other precipitation chambers(11), during mud flowing, the gear bits part(121)Husky bits, clod debris from precipitation can be stopped Chamber(11)It flow to adjacent precipitation chamber(11);
(B)Until mud is flow to positioned at the sedimentation basin pond body(1)The precipitation chamber of output end(11), then by the slurry transportation group Part(3)By the precipitation chamber(11)In import of the mud by drilling driver drilling rod be delivered to probing driver drilling rod;
(C)Additive is added to being delivered in the mud of probing driver drilling rod, is repeated(A)The step of after middle unlatching drilling machine and (B)Step, until construction is completed.
CN201710068680.4A 2017-02-08 2017-02-08 Cyclic utilization sedimentation tank suitable for drilling water and cyclic utilization method Pending CN106693513A (en)

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Cited By (3)

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Publication number Priority date Publication date Assignee Title
CN109184603A (en) * 2018-10-24 2019-01-11 国家电网有限公司 A kind of drilling equipment water circulating sedimentation tank
CN110080699A (en) * 2019-06-25 2019-08-02 山东黄金地质矿产勘查有限公司 A kind of environment-protective slurry circulatory system
CN110538506A (en) * 2019-09-25 2019-12-06 浙江海洋大学 transparent soil pore liquid recovery device and recovery method

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CN102704873A (en) * 2012-06-07 2012-10-03 徐守田 Construction equipment of hole drilling/punching cast-in-place pile with self-provided mud pit and mud separating device
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CN103615191A (en) * 2013-12-06 2014-03-05 中国石油大学(北京) Pumping-pressure reverse-circulation well drilling method and system
CN203736917U (en) * 2014-03-19 2014-07-30 林健生 Closed type water circulation filter
CN204002651U (en) * 2014-08-25 2014-12-10 北京南车时代机车车辆机械有限公司 A kind of jumbolter
CN104961321A (en) * 2015-05-19 2015-10-07 温州大学 Mud-water separation system and slurry circulation mud-water separation method
CN204959116U (en) * 2015-10-08 2016-01-13 巨石攀登电子基材有限公司 Coating agent oil return filter equipment
CN105971518A (en) * 2016-07-02 2016-09-28 天鸿建设集团有限公司 Guide drilling well pipe laying method
CN106014309A (en) * 2016-07-28 2016-10-12 成都高普石油工程技术有限公司 Solid control equipment for water-based drilling fluid
CN206597378U (en) * 2017-02-08 2017-10-31 湖南省交通规划勘察设计院 Sedimentation basin is recycled suitable for probing water

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109184603A (en) * 2018-10-24 2019-01-11 国家电网有限公司 A kind of drilling equipment water circulating sedimentation tank
CN110080699A (en) * 2019-06-25 2019-08-02 山东黄金地质矿产勘查有限公司 A kind of environment-protective slurry circulatory system
CN110538506A (en) * 2019-09-25 2019-12-06 浙江海洋大学 transparent soil pore liquid recovery device and recovery method
CN110538506B (en) * 2019-09-25 2023-10-13 浙江海洋大学 Transparent soil pore liquid recovery device and recovery method

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