CN204922516U - Viscous crude viscosity reduction device - Google Patents

Viscous crude viscosity reduction device Download PDF

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Publication number
CN204922516U
CN204922516U CN201520639088.1U CN201520639088U CN204922516U CN 204922516 U CN204922516 U CN 204922516U CN 201520639088 U CN201520639088 U CN 201520639088U CN 204922516 U CN204922516 U CN 204922516U
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China
Prior art keywords
filter screen
framework
rotating shaft
holding
support
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Withdrawn - After Issue
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CN201520639088.1U
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Chinese (zh)
Inventor
赵媛媛
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赵媛媛
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Abstract

The utility model provides a viscous crude viscosity reduction device, the fruit pick -up device includes a frame body, the rotary devic, agitating unit, heating device, holding device and divide oily device, be equipped with first sealing ring in the framework, first sealing washer, first filter screen, the second filter screen, collecting hopper and support ring, rotary device includes the motor, a first support, and a second support, first pivot, first dead lever and first gear, agitating unit includes first bracing piece, the second pivot, the second gear, puddler and third filter screen, heating device includes the heating rod, the heat conduction frame, first fixed block and second fixed block, holding device includes a holding device and the 2nd holding device, a holding device includes first crooked pole, first horizontal pole and down tube, and the 2nd holding device includes second horizontal pole and second support, divide oily device to include and divide oil clot, fourth filter screen, the 5th filter screen and cross the filter frame, be equipped with the second through -hole on the branch oil clot. The utility model discloses an it makes the great reduction of its viscosity to add the thermal agitation to the viscous crude.

Description

A kind of reducing thick oil viscosity device
Technical field
The present invention relates to petroleum technology field, particularly relate to a kind of reducing thick oil viscosity device.
Background technique
Oil, in recovery process, because viscous crude viscosity is comparatively large, have impact on the transport of viscous crude greatly, makes it be bonded on the inwall of petroleum pipeline, reduce the efficiency of petroleum transportation, and easily block petroleum pipeline, hauling operation cannot be gone on smoothly.
Therefore, need to provide a kind of new technological scheme to solve the problems of the technologies described above.
Summary of the invention
The object of this invention is to provide a kind of reducing thick oil viscosity device that can effectively solve the problems of the technologies described above.
In order to solve the problems of the technologies described above, the present invention adopts following technological scheme:
A kind of reducing thick oil viscosity device, described reducing thick oil viscosity device comprises framework, be arranged at the whirligig in described framework, be positioned at the stirring apparatus of described framework inside, be positioned at the heating equipment around described stirring apparatus, be arranged at the holding device in described framework and be positioned at point oily device below described stirring apparatus, described framework is provided with the first seal ring, be positioned at the first seal ring at right surface, be positioned at the first inner filter screen, be positioned at the second filter screen below described first filter screen, the support ring being positioned at the aggregate bin below the second described filter screen and being positioned at below described aggregate bin, described whirligig comprises motor, be positioned at the first support below described motor, be positioned at the first rotating shaft on the left of described motor, be positioned at the first fixing rod below described first rotating shaft and be arranged at the first gear of described first rotating shaft left end, described stirring apparatus comprises the first strut, be positioned at the second rotating shaft below described first strut, be arranged at the second gear in described second rotating shaft, rabble and the 3rd filter screen be positioned at below described second rotating shaft, described heating equipment comprises heating stick, be coated on the heat conduction frame around described heating stick, be positioned at the first fixed block of the upper and lower both sides of described heating stick and be positioned at the second fixed block of described heating stick side, described holding device comprises the first holding device and is positioned at the second holding device below described first holding device, described first holding device comprises the first bent stick, the first cross bar being positioned at described first bent stick side and the brace be positioned at below described first bent stick, described second holding device comprises the second cross bar and is positioned at the second support below described second cross bar, described point of oily device comprises a point oil clot, be positioned at the 4th filter screen of the described point oil clot left and right sides, the filter frame being positioned at the 5th filter screen below described 4th filter screen and being positioned at below described 5th filter screen, the upper end of described point of oil clot is fixedly connected with the lower surface of described 3rd filter screen, described point of oil clot is provided with the second through hole, described 4th filter screen is wavy, one end of described 4th filter screen is fixedly connected with the side of described point of oil clot, the other end of described 4th filter screen is fixedly connected with the internal surface of described framework, described 5th filter screen is cuboid, one end of described 5th filter screen is fixedly connected with the internal surface of described framework, the other end of described 5th filter screen is fixedly connected with the side of described point of oil clot, one end of described filter frame is fixedly connected with the lower surface of described framework 1, the other end of described filter frame is fixedly connected with the lower surface of described point of oil clot.
Described first seal ring is circular, described first seal ring horizontal positioned, the lower surface of described first seal ring is fixedly connected with the upper surface of described framework, described first seal ring is circular, described first filter screen is cylindrical body, described first filter screen horizontal positioned, the side of described first filter screen is fixedly connected with the internal surface of described framework.
Described second filter screen is cylindrical body, the side of described second filter screen is fixedly connected with the internal surface of described framework, the side of described aggregate bin is fixedly connected with the internal surface of described framework, the first through hole is provided with in described aggregate bin, described support ring is the cylinder that cross section is annulus, and the upper surface of described support ring is fixedly connected with the lower surface of described aggregate bin.
Described first support is L-type, one end of described first support is fixedly connected with the side of described framework, the other end of described first support is fixedly connected with the lower surface of described motor, described first fixing rod is zigzag, one end of described first fixing rod is fixedly connected with the side of described framework, and the other end of described first fixing rod is fixedly connected with the side of described motor.
Described first rotating shaft is cylindrical body, described first rotating shaft horizontal positioned, the right-hand member of described first rotating shaft is connected with described motor, the left end of described first rotating shaft extends to the inside of described framework through the first seal ring, described first gear is cross section is isosceles trapezoid, and the left surface of described first rotating shaft is fixedly connected with the right surface of described first gear.
Described first strut is cylindrical body, described first strut is vertically placed, the upper surface of described first strut is fixedly connected with the lower surface of described first filter screen, the lower end of described first strut leans on the upper surface of described second rotating shaft, described rabble is curved shape, and one end of described rabble is fixedly connected with the side of described second rotating shaft.
Described 3rd filter screen is cylindrical body, described 3rd filter screen horizontal positioned, and the side of described 3rd filter screen is fixedly connected with the internal surface of described framework, and the lower surface of described second rotating shaft is connected with the upper surface slide of described 3rd filter screen.
The cross section of described heat conduction frame is concave shape, and the two ends of described heat conduction frame are fixedly connected with the internal surface of described framework, and described heat conduction frame adopts Heat Conduction Material to make.
Described first bent stick is wavy, one end of described first bent stick is fixedly connected with the side of described framework, described first cross bar is cuboid, one end of described first cross bar is fixedly connected with described first bent stick, the lower end of described brace is fixedly connected with the side of described framework, and the upper end of described brace is fixedly connected with described first bent stick.
After adopting technique scheme, tool of the present invention has the following advantages:
Reducing thick oil viscosity apparatus structure of the present invention is simple, easy to use, by adding thermal agitation to viscous crude, its viscosity is reduced greatly, thus the convenient transport to viscous crude, substantially increase the conveying efficiency of oil, and compact of the present invention, reduce the spatial area taken.
Accompanying drawing explanation
Be described further below in conjunction with the embodiment of accompanying drawing to reducing thick oil viscosity device of the present invention:
Fig. 1 is the structural representation of reducing thick oil viscosity device of the present invention;
Embodiment
As shown in Figure 1, reducing thick oil viscosity device of the present invention comprise framework 1, the whirligig 2 be arranged in described framework 1, be positioned at described framework 1 inside stirring apparatus 3, be positioned at heating equipment 4 around described heating equipment 3, be arranged at the holding device 5 in described framework 1 and be positioned at point oily device 6 below described stirring apparatus 3.
As shown in Figure 1, described framework 1 is in hollow cylindrical body, described framework 1 is vertically placed, and described framework 1 is provided with the first seal ring 21, the support ring that is positioned at the first seal ring 12 at right surface, is positioned at the first inner filter screen 13, is positioned at the second filter screen 14 below described first filter screen 13, is positioned at the aggregate bin 15 below the second described filter screen 15 and is positioned at below described aggregate bin 15.Described first seal ring 21 is in circular, and described first seal ring 21 horizontal positioned, the lower surface of described first seal ring 21 is fixedly connected with the upper surface of described framework 1.Described first seal ring 12 is in circular, and described first seal ring 12 is arranged in described framework 1.Described first filter screen 13 is in cylindrical body, and described first filter screen 13 horizontal positioned, the side of described first filter screen 13 is fixedly connected with the internal surface of described framework 1.Described second filter screen 14 is in cylindrical body, and the side of described second filter screen 14 is fixedly connected with the internal surface of described framework 1.Described aggregate bin 15 is in hollow round table-like, and the side of described aggregate bin 15 is fixedly connected with the internal surface of described framework 1, is provided with the first through hole 151 in described aggregate bin 15, and described first through hole 151 is cylindrical shape.Described support ring is the cylinder that cross section is annulus, and the upper surface of described support ring is fixedly connected with the lower surface of described aggregate bin 15.
As shown in Figure 1, described whirligig 2 comprises motor 21, is positioned at the first support 22 below described motor 21, is positioned at the first rotating shaft 24 on the left of described motor 21, is positioned at the first fixing rod 23 below described first rotating shaft 24 and is arranged at the first gear 25 of described first rotating shaft 24 left end.Described first support 22 is in L-type, and one end of described first support 22 is fixedly connected with the side of described framework 1, and the other end of described first support 22 is fixedly connected with the lower surface of described motor 21.Described first fixing rod 23 is in zigzag, and one end of described first fixing rod 23 is fixedly connected with the side of described framework 1, and the other end of described first fixing rod 23 is fixedly connected with the side of described motor 21.Described first rotating shaft 24 is in cylindrical body, described first rotating shaft 24 horizontal positioned, the right-hand member of described first rotating shaft 24 is connected with described motor 21, makes described motor 21 drive described first rotating shaft 24 to rotate, and the left end of described first rotating shaft 24 extends to the inside of described framework 1 through the first seal ring 12.Described first gear 25 is isosceles trapezoid in cross section, and the left surface of described first rotating shaft 24 is fixedly connected with the right surface of described first gear 25.
As shown in Figure 1, described stirring apparatus 3 the 3rd filter screen 35 that comprises the first strut 33, be positioned at the second rotating shaft 31 below described first strut 33, the second gear 32 be arranged in described second rotating shaft 31, rabble 34 and be positioned at below described second rotating shaft 31.Described second rotating shaft 31 is in cylindrical body, and described second rotating shaft 31 is vertically placed, and described second rotating shaft 31 runs through the upper and lower surface of described second filter screen 14 and is slidably connected with it.The cross section of described second gear 32 is isosceles trapezoid, described second gear 32 horizontal positioned, and the upper surface of described second rotating shaft 31 is fixedly connected with the lower surface of described second gear 32, and described second gear 32 is interlocked mutually with described first gear 25.Described first strut 33 is in cylindrical body, described first strut 33 is vertically placed, the upper surface of described first strut 33 is fixedly connected with the lower surface of described first filter screen 13, and the lower end of described first strut 33 leans on the upper surface of described second rotating shaft 31.Described rabble 34 is provided with several, and described rabble 34 is in curved shape, and one end of described rabble 34 is fixedly connected with the side of described second rotating shaft 31.Described 3rd filter screen 35 is in cylindrical body, and described 3rd filter screen 35 horizontal positioned, the side of described 3rd filter screen 35 is fixedly connected with the internal surface of described framework 1, and the lower surface of described second rotating shaft 31 is connected with the upper surface slide of described 3rd filter screen 35.
As shown in Figure 1, described heating equipment 4 is provided with two and lays respectively at the left and right sides, and described heating equipment comprises heating stick 41, be coated on heat conduction frame 42 around described heating stick 41, be positioned at the first fixed block 43 of described heating stick about 41 both sides and be positioned at the second fixed block 44 of described heating stick 41 side.Described heating stick 41 is for heating.The cross section of described heat conduction frame 42 is concave shape, and the two ends of described heat conduction frame 42 are fixedly connected with the internal surface of described framework 1, and described heat conduction frame 42 adopts Heat Conduction Material to make.Described first fixed block 43 is provided with two and lays respectively at the both sides up and down of described heating stick 41, described first fixed block 43 is in cuboid, one end of described first fixed block 43 is fixedly connected with the internal surface of described heat conduction frame 42, and the other end of described first fixed block 43 is fixedly connected with described heating stick 41.Described second fixed block 44 is in cuboid, and one end of described second fixed block 44 is fixedly connected with the internal surface of described heat conduction frame 42, and the other end of described second fixed block 44 is fixedly connected with described heating stick 41.
As shown in Figure 1, described holding device 5 comprises the first holding device 51 and is positioned at the second holding device 52 below described first holding device 51.Described first holding device 51 is provided with two and lays respectively at the left and right sides, and described first holding device 51 comprises the first bent stick 511, the first cross bar 51 of being positioned at described first bent stick 511 side and the brace 513 be positioned at below described first bent stick 511.Described first bent stick 511 is in wavy, and one end of described first bent stick 511 is fixedly connected with the side of described framework 1.Described first cross bar 512 is in cuboid, and described first cross bar 512 horizontal positioned, one end of described first cross bar 512 is fixedly connected with described first bent stick 511.Described brace 513 is in skewed, and the lower end of described brace 513 is fixedly connected with the side of described framework 1, and the upper end of described brace 513 is fixedly connected with described first bent stick 511.Described second holding device 52 is provided with two and lays respectively at the left and right sides, and described second holding device 52 comprises the second cross bar 522 and is positioned at the second support 521 below described second cross bar 522.Described second cross bar 522 is in cuboid, and described second cross bar 522 horizontal positioned, one end of described second cross bar 522 is fixedly connected with the side of described framework 1.Described second support 521 is in L-type, and one end of described second support 521 is fixedly connected with the side of described framework 1, and the other end of described second support 521 is fixedly connected with the lower surface of described second cross bar 522.
As shown in Figure 1, described point of oily device 6 comprise point oil clot 61, the 4th filter screen 62 that is positioned at described point oil clot 61 left and right sides, the filter frame 64 that is positioned at the 5th filter screen 63 below described 4th filter screen 62 and is positioned at below described 5th filter screen 63.The upper end of described point of oil clot 61 is fixedly connected with the lower surface of described 3rd filter screen 35, the upper end of described point of oil clot 61 is trapezoidal, and lower end is cuboid, and described point of oil clot 61 is provided with the second through hole 611, described second through hole 611 is cylindrical body, described second through hole 611 horizontal positioned.Described 4th filter screen 62 is in wavy, and one end of described 4th filter screen 62 is fixedly connected with the side of described point of oil clot 61, and the other end of described 4th filter screen 62 is fixedly connected with the internal surface of described framework 1.Described 5th filter screen 63 is in cuboid, and described 5th filter screen 63 horizontal positioned, one end of described 5th filter screen 63 is fixedly connected with the internal surface of described framework 1, and the other end of described 5th filter screen 63 is fixedly connected with the side of described point of oil clot 61.Described filter frame 64 is provided with two and lays respectively at the left and right sides, and one end of described filter frame 64 is fixedly connected with the lower surface of described framework 1, and the other end of described filter frame 64 is fixedly connected with the lower surface of described point of oil clot 61.
As shown in Figure 1, when described reducing thick oil viscosity device of the present invention uses, first framework 1 is linked into operation, the first seal ring 11 plays the effect of sealing simultaneously, prevents oil seepage.Then starting electrical machinery 21, first rotating shaft 24 is rotated, and then the second rotating shaft 31 is rotated, rabble 34 can be stirred oil, first filter screen 13 and the second filter screen 14 pairs of oil filter simultaneously, heating stick 41 starts heating, oil temperature is raised, under the effect of stirring and heat, the viscosity of viscous crude reduces greatly, then below is entered into through the 3rd filter screen 35, then discharge after the 4th filter screen 62, the 5th filter screen 63 and filter frame 64, described holding device 5 person easy to use hold.So far, reducing thick oil viscosity device of the present invention using process is described.
The above; be only the specific embodiment of the present invention, but protection scope of the present invention is not limited thereto, any those skilled in the art are in the technical scope that the present invention discloses; change can be expected easily or replace, all should be encompassed within protection scope of the present invention.Therefore, protection scope of the present invention should be as the criterion with the protection domain of described claim.

Claims (9)

1. a reducing thick oil viscosity device, it is characterized in that: described reducing thick oil viscosity device comprises framework, be arranged at the whirligig in described framework, be positioned at the stirring apparatus of described framework inside, be positioned at the heating equipment around described stirring apparatus, be arranged at the holding device in described framework and be positioned at point oily device below described stirring apparatus, described framework is provided with the first seal ring, be positioned at the first seal ring at right surface, be positioned at the first inner filter screen, be positioned at the second filter screen below described first filter screen, the support ring being positioned at the aggregate bin below the second described filter screen and being positioned at below described aggregate bin, described whirligig comprises motor, be positioned at the first support below described motor, be positioned at the first rotating shaft on the left of described motor, be positioned at the first fixing rod below described first rotating shaft and be arranged at the first gear of described first rotating shaft left end, described stirring apparatus comprises the first strut, be positioned at the second rotating shaft below described first strut, be arranged at the second gear in described second rotating shaft, rabble and the 3rd filter screen be positioned at below described second rotating shaft, described heating equipment comprises heating stick, be coated on the heat conduction frame around described heating stick, be positioned at the first fixed block of the upper and lower both sides of described heating stick and be positioned at the second fixed block of described heating stick side, described holding device comprises the first holding device and is positioned at the second holding device below described first holding device, described first holding device comprises the first bent stick, the first cross bar being positioned at described first bent stick side and the brace be positioned at below described first bent stick, described second holding device comprises the second cross bar and is positioned at the second support below described second cross bar, described point of oily device comprises a point oil clot, be positioned at the 4th filter screen of the described point oil clot left and right sides, the filter frame being positioned at the 5th filter screen below described 4th filter screen and being positioned at below described 5th filter screen, the upper end of described point of oil clot is fixedly connected with the lower surface of described 3rd filter screen, described point of oil clot is provided with the second through hole, described 4th filter screen is wavy, one end of described 4th filter screen is fixedly connected with the side of described point of oil clot, the other end of described 4th filter screen is fixedly connected with the internal surface of described framework, described 5th filter screen is cuboid, one end of described 5th filter screen is fixedly connected with the internal surface of described framework, the other end of described 5th filter screen is fixedly connected with the side of described point of oil clot, one end of described filter frame is fixedly connected with the lower surface of described framework 1, the other end of described filter frame is fixedly connected with the lower surface of described point of oil clot.
2. reducing thick oil viscosity device according to claim 1, it is characterized in that: described first seal ring is circular, described first seal ring horizontal positioned, the lower surface of described first seal ring is fixedly connected with the upper surface of described framework, described first seal ring is circular, described first filter screen is cylindrical body, and described first filter screen horizontal positioned, the side of described first filter screen is fixedly connected with the internal surface of described framework.
3. reducing thick oil viscosity device according to claim 2, it is characterized in that: described second filter screen is cylindrical body, the side of described second filter screen is fixedly connected with the internal surface of described framework, the side of described aggregate bin is fixedly connected with the internal surface of described framework, the first through hole is provided with in described aggregate bin, described support ring is the cylinder that cross section is annulus, and the upper surface of described support ring is fixedly connected with the lower surface of described aggregate bin.
4. reducing thick oil viscosity device according to claim 3, it is characterized in that: described first support is L-type, one end of described first support is fixedly connected with the side of described framework, the other end of described first support is fixedly connected with the lower surface of described motor, described first fixing rod is zigzag, one end of described first fixing rod is fixedly connected with the side of described framework, and the other end of described first fixing rod is fixedly connected with the side of described motor.
5. reducing thick oil viscosity device according to claim 4, it is characterized in that: described first rotating shaft is cylindrical body, described first rotating shaft horizontal positioned, the right-hand member of described first rotating shaft is connected with described motor, the left end of described first rotating shaft extends to the inside of described framework through the first seal ring, described first gear is cross section is isosceles trapezoid, and the left surface of described first rotating shaft is fixedly connected with the right surface of described first gear.
6. reducing thick oil viscosity device according to claim 5, it is characterized in that: described first strut is cylindrical body, described first strut is vertically placed, the upper surface of described first strut is fixedly connected with the lower surface of described first filter screen, the lower end of described first strut leans on the upper surface of described second rotating shaft, described rabble is curved shape, and one end of described rabble is fixedly connected with the side of described second rotating shaft.
7. reducing thick oil viscosity device according to claim 6, it is characterized in that: described 3rd filter screen is cylindrical body, described 3rd filter screen horizontal positioned, the side of described 3rd filter screen is fixedly connected with the internal surface of described framework, and the lower surface of described second rotating shaft is connected with the upper surface slide of described 3rd filter screen.
8. reducing thick oil viscosity device according to claim 7, is characterized in that: the cross section of described heat conduction frame is concave shape, and the two ends of described heat conduction frame are fixedly connected with the internal surface of described framework, and described heat conduction frame adopts Heat Conduction Material to make.
9. reducing thick oil viscosity device according to claim 8, it is characterized in that: described first bent stick is wavy, one end of described first bent stick is fixedly connected with the side of described framework, described first cross bar is cuboid, one end of described first cross bar is fixedly connected with described first bent stick, the lower end of described brace is fixedly connected with the side of described framework, and the upper end of described brace is fixedly connected with described first bent stick.
CN201520639088.1U 2015-08-22 2015-08-22 Viscous crude viscosity reduction device Withdrawn - After Issue CN204922516U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520639088.1U CN204922516U (en) 2015-08-22 2015-08-22 Viscous crude viscosity reduction device

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Application Number Priority Date Filing Date Title
CN201520639088.1U CN204922516U (en) 2015-08-22 2015-08-22 Viscous crude viscosity reduction device

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105065915A (en) * 2015-08-22 2015-11-18 赵媛媛 Heavy oil viscosity reduction device
CN108590610A (en) * 2018-04-13 2018-09-28 王玉莲 Viscous crude oil viscosity reduction emulsification treatment equipment
CN110107813A (en) * 2019-05-08 2019-08-09 毛雨彤 Petroleum viscosity reduction conveying device
CN111396750A (en) * 2020-03-26 2020-07-10 武桂英 A pipeline transportation device that is used for severe cold district's reliability to be high

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105065915A (en) * 2015-08-22 2015-11-18 赵媛媛 Heavy oil viscosity reduction device
CN105065915B (en) * 2015-08-22 2017-07-18 赵媛媛 A kind of reducing thick oil viscosity device
CN108590610A (en) * 2018-04-13 2018-09-28 王玉莲 Viscous crude oil viscosity reduction emulsification treatment equipment
CN110107813A (en) * 2019-05-08 2019-08-09 毛雨彤 Petroleum viscosity reduction conveying device
CN111396750A (en) * 2020-03-26 2020-07-10 武桂英 A pipeline transportation device that is used for severe cold district's reliability to be high

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