CN203849012U - Test device for evaluating anti-blocking performance of anti-sand sieve tube - Google Patents

Test device for evaluating anti-blocking performance of anti-sand sieve tube Download PDF

Info

Publication number
CN203849012U
CN203849012U CN201420151334.4U CN201420151334U CN203849012U CN 203849012 U CN203849012 U CN 203849012U CN 201420151334 U CN201420151334 U CN 201420151334U CN 203849012 U CN203849012 U CN 203849012U
Authority
CN
China
Prior art keywords
control screen
sand control
sand
exemplar
coupling lever
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.)
Withdrawn - After Issue
Application number
CN201420151334.4U
Other languages
Chinese (zh)
Inventor
匡韶华
王宝权
张建军
朱富林
吕民
严蕾
孟庆菊
韩宗正
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.)
China Petroleum and Natural Gas Co Ltd
Original Assignee
China Petroleum and Natural Gas Co Ltd
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 China Petroleum and Natural Gas Co Ltd filed Critical China Petroleum and Natural Gas Co Ltd
Priority to CN201420151334.4U priority Critical patent/CN203849012U/en
Application granted granted Critical
Publication of CN203849012U publication Critical patent/CN203849012U/en
Anticipated expiration legal-status Critical
Withdrawn - After Issue legal-status Critical Current

Links

Landscapes

  • Road Paving Structures (AREA)

Abstract

The utility model discloses a test device for evaluating anti-blocking performance of an anti-sand sieve tube, which comprises a kettle body, a mixing assembly and a shunt tube, wherein an upper end cover of the kettle body is connected with the side wall of the kettle body in a detachable manner. The upper end cover is provided with a first hole. A lower end cover is provided with a liquid outlet. The kettle body is provided with a sand adding opening. The mixing assembly comprises a mixing paddle, a connecting rod and a coupling rod, wherein the mixing paddle contacts with an anti-sand sieve tube sample piece. One end of the connecting rod is connected with the mixing paddle, and the other end is connected with the coupling rod. The coupling rod is internally provided with a fluid channel of which the outlet is connected with one end of the shunt tube. One end of the shunt tube is matched with the mixing paddle. The test device further comprises a sample piece end cap and a test piece base. The sample piece end cap and the test piece base are respectively used for matching with and sealing the upper end and the lower end of the anti-sand sieve tube sample piece. The test device can evaluate the anti-blocking performance of the anti-sand sieve tube.

Description

A kind of sand control screen anti-blockage capability evaluation experimental device
Technical field
The utility model relates to technical field of petroleum extraction, particularly a kind of sand control screen anti-blockage capability evaluation experimental device.
Background technology
In technical field of petroleum extraction, during particularly for loose hydrocarbon-bearing pool exploitation, owing to generally shaking out, need to take sand-preventing process exploitation in recovery process.Current described sand-preventing process mainly adopts sand control screen to carry out sand control.
The sand control screen using in existing oil well comprises: wire wrapped screen, elastic screen, cutting seam sieve tube, metal wool screen casing, metal net screen casing, accurate composite microporous screen casing, pre-filling gravel screen pipe.Inside at described sand control screen is provided with filtering layer, i.e. sand block medium.The sand block medium for different sand control screens with different structure.In oil well production process, described sand control screen is positioned at oil well, when layer fluid is carried the materials such as stratum fine sand, mechanical impurity, clay shale by described sand control screen peripherally, particulate matter in fluid is easily stuck and viscous in the sand block medium inside of described sand control screen, forms and stops up.Described obstruction can cause the overcurrent hydraulic performance decline of described sand control screen, and fluid becomes large by the resistance to flow of described sand control screen, and oil well output reduces, and can cause oil well to stop production when serious.Therefore sand control screen anti-blockage capability is to affect oil well output and the key factor in sand control life-span.Described sand control screen before use, need to carry out test evaluation to its anti-blockage capability.
Because different sand control screens has the sand block medium of different structure, its anti-blockage capability there are differences.In actual use, in the situation that other performance of sand control screen meets the demands, should select as much as possible those to be not easy to be stopped up by particulate matter, i.e. the good sand control screen of anti-blockage capability.The described particulate matter that easily causes sand control screen to stop up mainly comprises: the gum asphalt in stratum fine silt, clay shale material, crude oil.
At present, the method for evaluating sand prevention screen casing anti-blockage capability is mainly to utilize sand control simulation test device, and by test sand control screen, under simulation sand control situation, fluid changes by described sand control screen pressure reduction the anti-blockage capability that carrys out evaluating sand prevention screen casing.Yet, be filled in the layer of sand outside described sand control screen, due to bridging action, self can form one deck sand block barrier.This sand block barrier, can stop that the particulate matters such as gum asphalt in stratum fine silt, clay shale material, crude oil enter the sand block medium of sand control screen, thereby may make test result be subject to the impact of described sand block barrier.
In order to remove described sand block barrier, within on 04 24th, 2013, Chinese patent specification CN103063422A discloses a kind of sand control screen sand block accuracy detecting device and detection method.As shown in Figure 1, described sand control screen sand block accuracy detecting device comprises: autoclave body 1, shunting webmaster 2 and mixing component 3.During use, sand control screen sample 4 is arranged on the inside of described autoclave body 1, and the periphery that described mixing component 3 is centered around sand control screen sample 4 rotates in a circumferential direction.Described mixing component 3 in the process of rotation, can remove sand block accuracy testing process in the sand block barrier of sand control screen sample 4 outer formation.
Because the test(ing) medium adopting in described sand control screen sand block accuracy checking method is that spherical sand grains and clear water are tested, by using described mixing component 3 can remove well the sand block barrier of sand control screen sample 4 outer formation.And the test(ing) medium that needs in sand control screen anti-clogging experiment to use is the mixture slurry of stratum fine silt, clay shale material and the crude oil with very strong adhesion, or there is the test slurry of similarity.Because described test slurry has very strong adhesion, easily at hollow and the place, dead angle of sand control screen sample 4 peripheries, pile up and stick.Described test slurry makes to test sand grains and can not fully contact with the filter element of described sand control screen sample 4 with sticking in the accumulation of sand control screen sample 4 peripheries, and then makes the peripheral sand block barriers that easily form of described sand control screen sample 4.And described sand block barrier relies on simple Stirring mode can not effectively be removed.
Utility model content
The purpose of this utility model is to provide a kind of sand control screen anti-blockage capability evaluation experimental device, the impact that anti-blockage capability was brought with the formation that reduces or eliminate sand block barrier as far as possible on evaluating sand prevention screen casing itself.
Above-mentioned purpose of the present utility model can adopt following technical proposal to realize:
A sand control screen anti-blockage capability evaluation experimental device, comprising: kettle, mixing component, isocon, wherein,
Described kettle comprises: upper end cover, bottom end cover, sidewall, and the upper end of described upper end cover and described sidewall is connected by dismountable mode, is provided with the first hole on described upper end cover, on described bottom end cover, is provided with liquid outlet, is provided with and adds sand mouth on described kettle;
Described mixing component comprises: paddle, connecting link, coupling lever; Wherein, described paddle comprises: body, blade, hairbrush, and described blade and hairbrush are separately positioned on the both sides of described body, and wherein said hairbrush is positioned at the side near described kettle axis; Described connecting link one end is connected with described paddle, and the other end is connected with described coupling lever; Described coupling lever extend into the inside of described kettle by described the first bore portion bar section, described coupling lever inside is provided with fluid passage;
Described isocon inlet end is connected with the one end that is positioned at fluid passage outlet on described coupling lever, and described isocon Way out is towards the body of described paddle.
In a preferred embodiment, described paddle is provided with cavity in the inside of body, and near a side of hairbrush, is provided with the perforate being connected with described cavity at body, and wherein, the cavity openend on described body is connected with the endpiece of described isocon.
In a preferred embodiment, be also provided with admission chamber on described upper end cover, the cavity wall of described admission chamber is provided with inlet, and the entrance of described coupling lever fluid passage is positioned at described admission chamber; Center in described admission chamber upper surface is also provided with the second hole, and described the second hole and the first hole are positioned on same axis, in described the first hole and the second inside, hole, is provided with rotating seal, for being sealed and matched of described coupling lever.
In a preferred embodiment, in described adding, on sand mouth, be also provided with removable cover.
In a preferred embodiment, described sand control screen anti-blockage capability evaluation experimental device also comprises actuator, and the output terminal of described actuator is connected with one end that described coupling lever stretches out described kettle.
In a preferred embodiment, described connecting link is telescopic expansion link.
In a preferred embodiment, described sand control screen anti-blockage capability evaluation experimental device also comprises for the exemplar plug of the upper end fitted seal with sand control screen exemplar with for the exemplar base of the lower end fitted seal with described sand control screen exemplar.
Feature of the present utility model and advantage are: sand control screen anti-blockage capability evaluation experimental device described in the utility model in use, the test fluid isocon of flowing through from the fluid passage of described coupling lever inside, then flow out from described isocon.The test fluid that flow out at described isocon place can flow on body and hairbrush thereof under Action of Gravity Field.Described test fluid flow to after described hairbrush, under the barrier effect of hairbrush and the Action of Gravity Field of test fluid self, can flow on the surface of sand control screen exemplar, thereby the surface of described sand control screen exemplar is had to certain souring.Add in addition at hairbrush and stir and scrub under effect, described test fluid is not easy pile up and stick at the hollow of described sand control screen exemplar periphery and place, dead angle, thereby reduce or removed the chance of sand block barrier formation, and then can obtain the anti-blockage capability of described sand control screen itself, the accuracy of warranty test result.
Accompanying drawing explanation
Fig. 1 is sand control screen sand block accuracy detecting device structural drawing in prior art;
Fig. 2 is sand control screen anti-blockage capability evaluation experimental device structural drawing in the utility model embodiment;
Fig. 3 is the cut-open view of sand control screen anti-blockage capability evaluation experimental device upper end cover in the utility model embodiment;
Fig. 4 is the cut-open view of sand control screen anti-blockage capability evaluation experimental device base in the utility model embodiment;
Fig. 5 is the cut-open view of sand control screen anti-blockage capability evaluation experimental device paddle in the utility model embodiment;
Fig. 6 is the cut-open view of sand control screen anti-blockage capability evaluation experimental device coupling lever in the utility model embodiment.
Embodiment
Below in conjunction with the drawings and specific embodiments, the technical solution of the utility model is elaborated, should understand these embodiment and only for the utility model is described, be not used in restriction scope of the present utility model, after having read the utility model, those skilled in the art all fall in the application's claims limited range the modification of the various equivalent form of values of the present utility model.
A kind of sand control screen anti-blockage capability evaluation experimental device is provided in the utility model embodiment, and as shown in Figure 2, it comprises: kettle 1, mixing component 3, isocon 4.In a preferred embodiment, described sand control screen anti-blockage capability evaluation experimental device also comprises: exemplar plug 21, exemplar base 22.
Wherein, described kettle 1, integral body can be a circular cylinder body structure, and it comprises: upper end cover 11, bottom end cover 12, sidewall 13.As shown in Figure 3, described upper end cover 11 is interlocked for the upper surface of the sidewall 13 with described kettle 1 upper end cover 11 of described kettle 1, can be on the whole circular lid.The mode that described upper end cover 11 and sidewall 13 fasten is dismountable being tightly connected.The described mode being tightly connected, can arrange O-ring seal for the position in described upper end cover 11 and sidewall 13 cooperations.At described kettle 1, be provided with and add sand mouth 111.Concrete, described in add the upper surface that sand mouth 111 can be arranged on upper end cover 11.In described adding on sand mouth 111, removable cover 112 can be set.When needs add sand, open described removable cover 112; When stopping adding sand, close described removable cover 112.While closing, described removable cover 112 and adding between sand mouth 111 for being tightly connected.On the upper end cover 11 of described kettle 1, be also provided with admission chamber 113.The cavity wall of described admission chamber 113 is provided with inlet 114, can connect outside fluid injection pipeline, for fluid injection by described inlet 114.
In a preferred embodiment, at described upper end cover 11 center, be provided with the first hole 115, be provided with the second hole 116 in addition at described admission chamber 113 center, described the first hole 115 and the second hole 116 are positioned on same axis.In described the first hole 115 and 116 inside, the second hole by rotating seal 5 is set, thereby realize and being sealed and matched of coupling lever 33.
The bottom end cover 12 of described kettle 1 is interlocked for the lower surface of the sidewall 13 with described kettle 1, can be on the whole circular lid.Described bottom end cover 12 is provided with liquid outlet 121.Described liquid outlet 121 can be the up big and down small funnel type of sectional area on the whole.In the upper port of described liquid outlet 121, be provided with exemplar base 22.Valve 122 is installed in the lower port of described liquid outlet 121.Described valve 122 is for controlling the circulation of liquid.On the lower surface of kettle 1 bottom end cover 12, support 6 can also be set.Described support 6 is for supporting described sand control screen anti-blockage capability evaluation experimental device.
Described exemplar plug 21 is for sealing the upper end of sand control screen exemplar 2.The upper end of the described sand control screen exemplar 2 of described exemplar plug 21 sealing specifically can be realized by an O-ring seal is upwards set within it in portion's week.Described exemplar plug 21 can be a circular lid on the whole, and the size of the size of described lid and described sand control screen exemplar 2 matches.The size of described exemplar plug 21 along with shown in described sand control screen exemplar 2 sizes variation and change.
Described exemplar base 22 is arranged between described sand control screen exemplar 2 and bottom end cover 12.As shown in Figure 4, described exemplar base 22 can be hollow notch cuttype shaft part on the whole.Described hollow space is communicated with liquid outlet 121.On described notch cuttype shaft part, be provided with the first seal groove 221 and the second seal groove 222.Wherein said the first seal groove 221 is interior by the inwall fitted seal of O-ring seal and described sand control screen exemplar 2 is set.The size of described exemplar base 22 first seal grooves 221 changes along with the variation of described sand control screen exemplar 2 sizes.Described the second seal groove 222 is interior by bottom end cover 12 fitted seal of O-ring seal and described kettle 1 are set.
During use, when sand control screen exemplar 2 be arranged on described kettle 1 interior after, described sand control screen exemplar 2 upper ends are tightly connected by exemplar plug 21, lower end is tightly connected by exemplar base 22.During connection, guarantee that the lower end of described sand control screen exemplar 2 and the liquid outlet 121 of kettle 1 are communicated with.Then filling test sand grains in the annular space between sand control screen exemplar 2 and kettle 1.
Described mixing component 3, is positioned at kettle 1 inside.Described mixing component 3 comprises: paddle 31, connecting link 32, coupling lever 33.
In the annular space of wherein said paddle 31 between sand control screen exemplar 2 and kettle 1.As shown in Figure 5, described paddle 31 comprises: body 310, blade 311, hairbrush 312.The body 310 of described paddle 31 is a U-shaped structure on the whole, and both sides are oar wall.At described paddle 31, back to a side of described sand control screen exemplar 2, be vertically provided with blade 311.Described blade 311 can evenly be intervally arranged along the oar wall of described paddle 31.At described paddle 31, over against a side of described sand control screen exemplar 2, be vertically provided with hairbrush 312.The number of described hairbrush 312 is preferably a plurality of.In use, described hairbrush 312 contacts with described sand control screen exemplar 2 described sand control screen anti-blockage capability evaluation experimental device.
The number of described paddle 31 is at least one.When the number of described paddle 31 is while being a plurality of, described paddle 31 is uniformly distributed around described coupling lever 33 lower ends.
In a preferred embodiment, the number of described paddle 31 is two, is symmetrically distributed in the both sides of described sand control screen exemplar 2.The upper end of described paddle 31 is connected with one end of described connecting link 32.After described paddle 31 is connected with described connecting link 32, both are in mutual plumbness.
Described connecting link 32 one end are connected with the upper end of described paddle 31, and the other end can be connected with the lower end of described coupling lever 33.The mode that described connecting link 32 is connected with described coupling lever 33 can, for welding, also can be connected described connecting link 32 by jointing is set with coupling lever 33.The quantity of the quantity of described connecting link 32 and described paddle 31 matches.Described connecting link 32 can be one, also can be many.When described connecting link 312 is many, described connecting link 32 is uniformly distributed around coupling lever 33 lower ends.In the utility model preferred embodiment, when the number of described paddle 31 is two, described connecting link 32 also can correspondence be set to two.
Described connecting link 32 can be that length can be carried out according to the size of described sand control screen exemplar 2 external diameters the expansion link 32 of corresponding adjusting in a preferred embodiment.When described sand control screen exemplar 2 external diameters are when larger, described expansion link 32 is corresponding is adjusted to longer state; When described sand control screen exemplar 2 external diameters hour, described expansion link 32 is corresponding is adjusted to shorter state.When described expansion link 32 regulates length, drive the paddle 31 being attached thereto to do corresponding mobile, make the position of described paddle 31 do corresponding adjusting, thereby adapt to the sand control screen exemplar 2 of different-diameter.
The lower end of described coupling lever 33 is connected with one end of described connecting link 32, and the upper end cover 11 that the other end passes described kettle 1 is connected with the output terminal of actuator 34.In the utility model preferred embodiment, described actuator 34 is preferably motor.Described coupling lever 33, when coordinating with described upper end cover 11, through the admission chamber 113 on upper end cover 11, and is tightly connected by rotating seal 5 and admission chamber 113.As shown in Figure 6, its inside has fluid passage 331 to the concrete structure of described coupling lever 33.331 tops, described fluid passage are provided with entrance 332.Described entrance 332 is positioned at admission chamber 113.The bottom of described fluid passage 331 is provided with outlet 333.The quantity of described outlet 333 can be one, can be also a plurality of.When the quantity of described outlet 333 is while being a plurality of, described outlet 333 is uniformly distributed around coupling lever 33 lower ends, and each outlet 333 connects an isocon 4, the corresponding paddle 31 of each root isocon 4.When the quantity of described paddle 31 is two, the quantity of described outlet 333 is also two.Described outlet 333 is positioned at admission chamber 113 outer, kettlies 1.
Described isocon 4, is positioned at kettle 1 inside.Described isocon 4 inlet ends are connected with the outlet 333 of the fluid passage 331 of coupling lever 33.Described isocon 4 Way outs are towards the body 310 of described paddle 31.When the test fluid isocon 4 of flowing through from the fluid passage 331 of described coupling lever 33 inside, then while flowing out from described isocon 4, the test fluid that flow out at described isocon 4 places is because Action of Gravity Field can flow on body 310 and hairbrush 312 thereof.Described test fluid flow to after described hairbrush 312, and under the barrier effect and self gravitation effect of hairbrush 312, described test fluid can flow on the surface of sand control screen exemplar 2.Described test fluid flows to behind the surface of sand control screen exemplar 2, the surface of described sand control screen exemplar 2 is had to certain souring, and stir and scrub under effect at hairbrush 312, described test fluid is not easy pile up and stick at the hollow of described sand control screen exemplar 2 peripheries and place, dead angle, can reduce or remove the sand block barrier that its periphery may form.
In a preferred embodiment, as shown in Figure 5, the middle part of described paddle 31 bodies 310 is provided with cavity 313.Described paddle 31 is vertically also provided with perforate 314 over against sand control screen exemplar 2 one sides.The number of described perforate 314 is at least one.Described perforate 314 is communicated with described cavity 313.Described perforate 314 is positioned on the position that homonymy is adjacent with described hairbrush 312.The endpiece of described isocon 4 is connected with cavity 313 openends of described paddle 31.When the described test fluid isocon 4 of flowing through from the fluid passage 331 of described coupling lever 33 inside, then while flowing out from described isocon 4, the test fluid that flow out at described isocon 4 places flows in the cavity 313 of body 310, then flows out from described perforate 314.The test fluid flowing out from described perforate 314 can inject directly on the surface of described sand control screen exemplar 2.Under the jet action of described fluid, described test fluid is not easy pile up and stick at the hollow of described sand control screen exemplar 2 peripheries and place, dead angle, thereby can reduce better or remove the sand block barrier that described sand control screen exemplar 2 peripheries may form.
In the utility model preferred embodiment, described isocon 4 is processed by rubber hose.The quantity of described isocon 4 can be one, also can be many.When the quantity of described isocon 4 is many, described many isocons 4 are uniformly distributed around coupling lever 33 lower ends.The quantity of the quantity of described isocon 4 and described outlet 333 matches, and when the quantity of described outlet 333 is two, the quantity of described isocon 4 is also two.
When described sand control screen anti-blockage capability evaluation experimental device is used: add the removable cover 112 on sand mouth 111 described in opening, add test sand grains from adding sand mouth 111, be filled in the annular space of 1 of sand control screen exemplar 2 and kettle.Described test sand grains refers to and adopts the quartz sand particle of different-grain diameter scope according to the test sand grains of certain ratio mixed preparing.Start described electric machine rotation; Along with the rotation of described motor, drive the coupling lever 33 connecting with it to rotate; By the rotation of described coupling lever 33, drive the connecting link 32 being attached thereto to rotate; By the rotation of described connecting link 32, drive the paddle 31 being attached thereto around the circumferential rotation of the periphery of sand control screen exemplar 2.Described paddle 31 can be piled up the sand block layer forming by failure test sand grains around the circumferential rotation of the periphery of sand control screen exemplar 2, and making to test sand grains can fully contact with gap or the duct of sand control screen exemplar 2.The outer field blade 311 of paddle 31 is for the test sand grains of fully stirring.The hard fibre hairbrush 312 of paddle 31 inner sides is for cleaning the test sand grains that is deposited in sand control screen exemplar 2 surfaces.
Test fluid enters admission chamber 113 from described inlet 114 in addition, from the fluid passage 331 of coupling lever 33 inside, enter different isocon 4 again, from isocon 4, enter in the cavity 313 of paddle 31, finally ejection from perforate 314, is injected in sand control screen exemplar 2 surfaces.Described test fluid tests slurry, refers to by the formulated clay polymkeric substance slurry of water, high molecular polymer and bentonitic clay.Wherein said high molecular polymer is for the gum asphalt of Simulation of Crude Oil, and described bentonitic clay is used for replacing clay shale.
Because sand control screen anti-clogging experiment adopts quartz sand particle and test fluid, test, the polymkeric substance in described quartz sand particle material and test fluid is easily attached on the surface of sand control screen exemplar 2, forms sand block layer.If be difficult to remove the sand block layer on described sand control screen exemplar 2 surfaces with simple hard fibre hairbrush 312.Particularly, for some screen casing exemplar, as elastic screen, its surperficial special construction makes 312 cleanings of hard fibre hairbrush less than particulate matter and the polymkeric substance of piling up and be attached on hollow place.Now due to the utility model can be from perforate 314 preferred embodiment ejecting fluid, thereby can clean, pile up and be attached on particulate matter and the polymkeric substance that the described hard fibre hairbrush 312 at place, dead angle does not reach, and then can guarantee to remove preferably the sand block layer on described sand control screen exemplar 2 surfaces, guarantee the accuracy of test result.
Sand control screen anti-blockage capability evaluation experimental device described in the utility model in use, the test fluid isocon 4 of flowing through from the fluid passage 331 of described coupling lever 33 inside, then flow out from described isocon 4.The test fluid that flow out at described isocon 4 places can flow on body 31 and hairbrush 312 thereof under Action of Gravity Field.Described test fluid flow to after described hairbrush 312, under the barrier effect of hairbrush 312 and the Action of Gravity Field of test fluid self, can flow on the surface of sand control screen exemplar 2, thereby the surface of described sand control screen exemplar 2 is had to certain souring.Add in addition at hairbrush 312 and stir and scrub under effect, described test fluid is not easy pile up and stick at the hollow of described sand control screen exemplar 2 peripheries and place, dead angle, thereby reduce or removed the chance of sand block barrier formation, and then can obtain the anti-blockage capability of described sand control screen itself, the accuracy of warranty test result.
The foregoing is only several embodiment of the present utility model, although the disclosed embodiment of the utility model as above, the embodiment that described content just adopts for the ease of understanding the utility model, is not intended to limit the utility model.Any the utility model person of ordinary skill in the field; do not departing under the prerequisite of the disclosed spirit and scope of the utility model; can in the formal and details of embodiment, do any modification and variation; but scope of patent protection of the present utility model, still must be as the criterion with the scope that appended claims was defined.

Claims (7)

1. a sand control screen anti-blockage capability evaluation experimental device, is characterized in that, comprising: kettle, mixing component, isocon, wherein,
Described kettle comprises: upper end cover, bottom end cover, sidewall, and the upper end of described upper end cover and described sidewall is connected by dismountable mode, is provided with the first hole on described upper end cover, on described bottom end cover, is provided with liquid outlet, is provided with and adds sand mouth on described kettle;
Described mixing component comprises: paddle, connecting link, coupling lever; Wherein, described paddle comprises: body, blade, hairbrush, and described blade and hairbrush are separately positioned on the both sides of described body, and wherein said hairbrush is positioned at the side near described kettle axis; Described connecting link one end is connected with described paddle, and the other end is connected with described coupling lever; Described coupling lever extend into the inside of described kettle by described the first bore portion bar section, described coupling lever inside is provided with fluid passage;
Described isocon inlet end is connected with the one end that is positioned at fluid passage outlet on described coupling lever, and described isocon Way out is towards the body of described paddle.
2. a kind of sand control screen anti-blockage capability evaluation experimental device as claimed in claim 1, it is characterized in that: described paddle is provided with cavity in the inside of body, and near a side of hairbrush, be provided with the perforate being connected with described cavity at body, wherein, the cavity openend on described body is connected with the endpiece of described isocon.
3. a kind of sand control screen anti-blockage capability evaluation experimental device as claimed in claim 1, it is characterized in that: on described upper end cover, be also provided with admission chamber, the cavity wall of described admission chamber is provided with inlet, and the entrance of described coupling lever fluid passage is positioned at described admission chamber; Center in described admission chamber upper surface is also provided with the second hole, and described the second hole and the first hole are positioned on same axis, in described the first hole and the second inside, hole, is provided with rotating seal, for being sealed and matched of described coupling lever.
4. a kind of sand control screen anti-blockage capability evaluation experimental device as claimed in claim 1, is characterized in that: in described adding, be also provided with removable cover on sand mouth.
5. a kind of sand control screen anti-blockage capability evaluation experimental device as claimed in claim 1, is characterized in that: also comprise actuator, the output terminal of described actuator is connected with one end that described coupling lever stretches out described kettle.
6. a kind of sand control screen anti-blockage capability evaluation experimental device as claimed in claim 1, is characterized in that: described connecting link is telescopic expansion link.
7. a kind of sand control screen anti-blockage capability evaluation experimental device as claimed in claim 1, is characterized in that: also comprise for the exemplar plug of the upper end fitted seal with sand control screen exemplar with for the exemplar base of the lower end fitted seal with described sand control screen exemplar.
CN201420151334.4U 2014-03-31 2014-03-31 Test device for evaluating anti-blocking performance of anti-sand sieve tube Withdrawn - After Issue CN203849012U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420151334.4U CN203849012U (en) 2014-03-31 2014-03-31 Test device for evaluating anti-blocking performance of anti-sand sieve tube

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420151334.4U CN203849012U (en) 2014-03-31 2014-03-31 Test device for evaluating anti-blocking performance of anti-sand sieve tube

Publications (1)

Publication Number Publication Date
CN203849012U true CN203849012U (en) 2014-09-24

Family

ID=51562015

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201420151334.4U Withdrawn - After Issue CN203849012U (en) 2014-03-31 2014-03-31 Test device for evaluating anti-blocking performance of anti-sand sieve tube

Country Status (1)

Country Link
CN (1) CN203849012U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103900806A (en) * 2014-03-31 2014-07-02 中国石油天然气股份有限公司 Anti-clogging ability evaluation test device and method for sand-control screen pipe
CN107860569A (en) * 2017-10-31 2018-03-30 中国石油大学(华东) The evaluation experimental device and method of sand control screen blocking characteristic during exploitation of gas hydrates

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103900806A (en) * 2014-03-31 2014-07-02 中国石油天然气股份有限公司 Anti-clogging ability evaluation test device and method for sand-control screen pipe
CN107860569A (en) * 2017-10-31 2018-03-30 中国石油大学(华东) The evaluation experimental device and method of sand control screen blocking characteristic during exploitation of gas hydrates

Similar Documents

Publication Publication Date Title
CN103900806B (en) Sand control screen anti-blockage capability evaluation experimental device
CN108982342A (en) A kind of high temperature and pressure Horizontal Wells For Gas Reservoirs sand control screen anti-erosion property evaluating apparatus and evaluation method and application
Houlsby Construction and design of cement grouting: a guide to grouting in rock foundations
US9022110B2 (en) Segmental flow-control method for flow-control filter string in oil-gas well and oil-gas well structure
CN112903961B (en) Using method of device for simulating underground drilling fluid circulation to form mud cakes
CN106948789A (en) A kind of environmentally friendly bag type paste underground intake transformation device and its method for blocking
CN205538625U (en) Experimental device for it scurries glued intensity of agent to be used for detecting sealing
CN102979505A (en) Well cementation cement sheath performance simulation experiment device and experiment method
CN203849012U (en) Test device for evaluating anti-blocking performance of anti-sand sieve tube
US10851616B2 (en) Wireline suspendable apparatus for sealing a subterranean well
CN103063422B (en) Sand control screen sand block accuracy detecting device and detection method
CN108196002A (en) A kind of fracture acidizing is with temporary stall to liquid device for evaluating performance and its test method
CN105547665A (en) Screen pipe sand-prevention test device and test method
CN205449698U (en) Anti outer crowded intensity experimental apparatus of sand control pipe under evaluation high temperature environment
CN100497845C (en) Mixed grouting device for blocking high-pressure groundwater and mixing method grouting process therefor
CN206419006U (en) A kind of vertical filtering desander
CN107218010B (en) Water plugging bridge plug for damaged drilling sleeve and double-bridge plug type water plugging method
CN205228802U (en) Screen pipe sand control test device
CN105134147B (en) A kind of sub-prime that can realize notes heterogeneous body well pattern model in the layer adopted
CN214576907U (en) Oil layer protection well-flushing device
CN110185410B (en) High-pressure seal inspection device and using method thereof
CN104947742B (en) A kind of motor-pumped well filtrate rotates back to action
KR20110091095A (en) Filter for water quality tele-monitoring system
CN216787922U (en) Easy unpicking and washing chemical grouting pump machine
CN115821881B (en) Compact sand filling method and auxiliary sand filling device for inclinometry water level common pipe

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20140924

Effective date of abandoning: 20160706

C25 Abandonment of patent right or utility model to avoid double patenting