Brine gas saturation detection device

By employing a liquid supply component and a gas delivery component in the brine gas saturation detection device, combined with a bevel gear transmission to drive centrifugal separation, the problems of large device footprint and cumbersome motor maintenance are solved, realizing a convenient device for brine detection and motor maintenance.

CN223692364UActive Publication Date: 2025-12-19四川省能源地质调查研究所
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Patent Information

Application Number
CN202423200705.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-12-19
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

Existing brine gas saturation detection devices occupy a large area, are inconvenient to transport, and have complicated motor maintenance.

Method used

A device for detecting the gas saturation of brine is designed. It uses a liquid supply component and a gas delivery component in the detection box. The centrifuge barrel is driven by a bevel gear to centrifuge the brine for centrifugal separation. The gas content is detected by a natural gas detector. The motor is located on one side of the detection box for easy maintenance.

Benefits of technology

The device size has been reduced, making it easier to transport, simplifying the motor maintenance process, and improving the convenience and efficiency of testing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of brine gas saturation detection, and particularly relates to a brine gas saturation detection device which comprises a bottom plate, a detection box is fixedly mounted at the top of the bottom plate, a second cavity, a first cavity and a third cavity are sequentially formed in the detection box from bottom to top, and a filter plate is fixedly mounted in the second cavity. A fixed column is fixedly installed in the first cavity, a centrifugal barrel is rotatably installed at the top of the fixed column, a power cavity is formed in the fixed column, and a second bevel gear is rotatably installed in the power cavity. When the whole device is used, brine detection can be completed only through one detection box, and the size of the whole device is reduced; the motor detection device is simple in structure and convenient to use, the motor is prevented from occupying a large field during use, meanwhile, transportation is facilitated, the motor is located on one side of the detection box, if the motor is damaged, the motor can be directly maintained, the detection box does not need to be disassembled, and more convenience and rapidness are achieved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to brine gas saturation detection technical field especially relates to a brine gas saturation detection device. BACKGROUND

[0002] Brine is a kind of water solution containing high concentration of salt. In chemistry, it is mainly a mixed solution of salts, and its composition varies due to different sources and uses.

[0003] For example, the Chinese patent with the announcement number CN221465457U discloses a brine gas saturation detection device, which comprises a mobile base plate, and impurity filtering boxes, gas-liquid separation boxes and natural gas detection boxes are placed at equal intervals on the top end of the mobile base plate. The utility model filters impurities from brine samples through the impurity filtering boxes, separates gas and liquid from the brine samples filtered of impurities through the gas-liquid separation boxes, and finally detects the content of natural gas in the separated gas through the natural gas detector in the natural gas detection box. The device integrates the functions of brine sampling, impurity filtering, gas-liquid separation and natural gas detection, and the impurity filtering boxes, gas-liquid separation boxes and natural gas detection boxes are clamped and fixed by the first turntable driving arc-shaped clamping plates, so that the detection device is convenient for flexible disassembly and assembly of each component, is more convenient than the existing detection method, can detect in time after brine sampling, and ensures the detection accuracy.

[0004] The above-mentioned patent has the following problems:

[0005] The patent has some shortcomings when in use, such as: the device uses impurity filtering boxes, gas-liquid separation boxes and natural gas detection boxes when in use, which leads to a large floor area of the overall device when in use and is inconvenient for transportation. Meanwhile, the motor in the device is located at the bottom of the gas-liquid separation box, and if the motor needs to be repaired due to damage, the gas-liquid separation box needs to be disassembled, and then the motor can be disassembled from the gas-liquid separation box, which is a relatively cumbersome process and wastes time. In view of this, the utility model provides a brine gas saturation detection device. UTILITY MODEL CONTENTS

[0006] The utility model aims at providing a brine gas saturation detection device to solve the problems in the background art.

[0007] Therefore, the utility model provides a brine gas saturation detection device, which comprises:

[0008] The bottom plate is fixedly installed with a detection box at the top, and the detection box is sequentially provided with a cavity two, a cavity one and a cavity three from bottom to top, the cavity two is fixedly installed with a filter plate, the cavity one is fixedly installed with a fixed column, the top of the fixed column is rotatably installed with a centrifugal barrel, the fixed column is provided with a power cavity, the power cavity is rotatably installed with a conical gear two, the power cavity is rotatably installed with a conical gear one on the side of the conical gear two, the left side of the detection box is fixedly installed with a motor through a plurality of bolts, the output end of the motor extends to the power cavity through the left side of the detection box and the fixed column and is connected with the conical gear one in the same shaft;

[0009] The natural gas detector is fixedly installed in the cavity three, the cavity three is rotatably installed with a sealing door two on one side, the cavity two is rotatably installed with a sealing door one on one side, the left side of the detection box is fixedly installed with a water pipe, one end of the water pipe is fixedly installed with a water pump two, the liquid inlet end of the water pump two is fixedly installed with a rubber hose, the front side of the detection box is fixedly installed with a pipe;

[0010] The liquid supply assembly is located on the rear side of the detection box and is used for conveying the liquid in the cavity two into the centrifugal barrel;

[0011] The gas conveying assembly is located on the front side of the detection box and is used for conveying the gas in the centrifugal barrel into the cavity three.

[0012] In the technical scheme, when in use, under the action of the four brake universal wheels, the staff can hold the handle and push the overall device to displace, and after the overall device is pushed to the area with brine, the staff can put one end of the rubber hose into the brine, then start the water pump two, the water pump two will draw the brine, the brine will enter the rubber hose, the brine in the rubber hose will enter the water pipe, and the brine in the water pipe will flow onto the filter plate in the cavity two to be filtered, so that the impurities in the brine can be filtered out, and after filtration, the brine will flow to the bottom of the cavity two, at this time, the liquid supply assembly is arranged to convey the brine in the cavity two into the centrifugal barrel, then start the motor, the output shaft of the motor will drive the bevel gear one to rotate, under the meshing action, the bevel gear one will drive the bevel gear two to rotate, then the bevel gear two will drive the centrifugal barrel to rotate and centrifugally separate the brine sample, when the liquid and gas in the brine are mixed together and rotate and flow, the centrifugal force received by the liquid is greater than that of the gas, so that the liquid collides with the inner wall of the centrifugal barrel and adheres to the inner wall, and the gas is centrifugally separated, at this time, the gas conveying assembly is arranged to convey the gas in the centrifugal barrel to the cavity three, finally, the natural gas content in the separated gas is detected by the natural gas detector, and the gas saturation of the brine sample is judged according to the detected natural gas content, the higher the natural gas content, the higher the gas saturation of the brine, and vice versa.

[0013] In the above technical scheme, further, the liquid supply assembly comprises:

[0014] The liquid inlet pipe is fixedly installed at the rear side of the detection box, one end of the liquid inlet pipe is fixedly installed with the water pump one, the liquid outlet end of the water pump one is fixedly installed with the liquid outlet pipe, one end of the liquid outlet pipe penetrates through the rear side of the detection box and extends into the centrifugal barrel, the other end of the liquid inlet pipe is located below the filter plate and communicates with the cavity two, and the liquid outlet pipe is fixedly connected with the detection box.

[0015] In the technical scheme, the water pump one is started to draw the brine in the cavity two through the liquid inlet pipe, then the brine enters the liquid outlet pipe, and the brine in the liquid outlet pipe flows into the centrifugal barrel.

[0016] In the above technical scheme, further, the gas conveying assembly comprises:

[0017] The connecting pipe two is fixedly installed at the front side of the detection box, one end of the connecting pipe two is fixedly installed with the air suction pump, the other end of the connecting pipe two penetrates through the front side of the detection box and extends into the centrifugal barrel, the air outlet end of the air suction pump is fixedly installed with the connecting pipe one, one end of the connecting pipe one penetrates through the top of the detection box and extends into the cavity three, and the connecting pipe one is fixedly connected with the detection box.

[0018] In the technical solution, the air extraction pump is started, the air extraction pump will extract the gas in the centrifugal barrel through the connecting pipe two, the gas in the connecting pipe two will enter the connecting pipe one, and the gas in the connecting pipe one will enter the cavity three.

[0019] In the above technical solution, further, the bottom of the bottom plate and the positions close to the four corners are fixedly installed with brake universal wheels, the top of the bottom plate and the rear side of the detection box are fixedly installed with a handle, and the top of the bottom plate and the left side of the detection box are fixedly installed with an L-shaped column.

[0020] In the technical solution, the four brake universal wheels and the handle are arranged to ensure that the overall device can be displaced, and the rubber hose can be wound on the L-shaped column when the device is not used.

[0021] In the above technical solution, further, the sealing door one is located above the filter plate, the bottom of the centrifugal barrel and one side of the fixed column are fixedly installed with a straight pipe, the straight pipe is located above the motor output shaft, the electronic control valve is installed on the straight pipe, and the through pipe is in communication with the cavity one.

[0022] In the technical solution, after the sealing door one is opened, the impurities on the filter plate can be cleaned, the electronic control valve is opened, the brine in the centrifugal barrel can be discharged from the straight pipe into the cavity one, and then the brine in the cavity one can be discharged from the through pipe to the outside.

[0023] In the above technical solution, further, the other end of the water pipe is located above the filter plate, and the other end of the water pipe is in communication with the cavity two.

[0024] In the technical solution, the water pipe can discharge the brine to the top of the filter plate for filtration.

[0025] In the above technical solution, further, the bevel gear two is engaged with the bevel gear one, the output shaft of the motor is rotatably connected with the detection box, the fixed column and the power cavity, the rear side of the detection box is fixedly installed with a digital display screen, the right side of the detection box is fixedly installed with an exhaust pipe, the exhaust pipe is in communication with the cavity three, and the digital display screen is electrically connected with the natural gas detector.

[0026] In the technical solution, under the engagement, the rotation of the bevel gear one can drive the rotation of the bevel gear two, the motor can be normally rotated, the digital display screen can display the value detected by the natural gas detector, and the gas in the cavity three can be discharged to the outside through the exhaust pipe.

[0027] The beneficial effects of the utility model are as follows:

[0028] The brine gas saturation detection device, through the cooperation between the detection box, the cavity one, the cavity two, the cavity three, the fixed column, the power cavity, the bevel gear one, the bevel gear two, the motor, the liquid supply assembly and the gas supply assembly, can complete the detection of the brine only by using one detection box, thereby reducing the volume of the overall device, avoiding occupying a large site during use, facilitating transportation, and the motor is located on one side of the detection box, so that the motor can be directly repaired without disassembling the detection box, which is more convenient and fast. BRIEF DESCRIPTION OF DRAWINGS

[0029] Figure 1 It is one of the overall structure schematic views of the utility model;

[0030] Figure 2 It is the second overall structure schematic view of the utility model;

[0031] Figure 3 It is one of the structure schematic views of the detection box in the utility model;

[0032] Figure 4 It is the second structure schematic view of the detection box in the utility model;

[0033] Figure 5 It is the structure schematic view of the fixed column in the utility model.

[0034] The marks in the drawing are:

[0035] 1, bottom plate; 2, brake universal wheel; 3, detection box; 4, sealing door one; 5, exhaust pipe; 6, bevel gear one; 7, liquid inlet pipe; 8, water pump one; 9, liquid outlet pipe; 10, connecting pipe one; 11, air pump; 12, connecting pipe two; 13, L-shaped column; 14, handle; 15, motor; 16, rubber hose; 17, water pump two; 18, water pipe; 19, sealing door two; 20, cavity one; 21, cavity two; 22, cavity three; 23, natural gas detector; 24, centrifugal barrel; 25, fixed column; 26, filter plate; 27, straight pipe; 28, power cavity; 29, bevel gear two; 30, through pipe; 31, digital display screen. DETAILED DESCRIPTION

[0036] The technical solutions in the embodiments of the application will be clearly described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, not all the embodiments. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art belong to the scope of protection of the application.

[0037] In the description of the present application, it should be noted that the terms used herein are merely for the purpose of describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. For the purpose of description, the sizes of the respective portions shown in the drawings are not drawn in accordance with the actual proportional relationship. The techniques, methods, and devices known to those of ordinary skill in the relevant art can not be discussed in detail, but should be considered as part of the authorized description. In all examples shown and discussed herein, any specific value should be interpreted as merely exemplary and not as a limitation. Therefore, other examples of exemplary embodiments can have different values. It should be noted that similar reference numerals and letters represent similar items in the following drawings, and therefore, once an item is defined in one drawing, it need not be further discussed in subsequent drawings.

[0038] It should be noted that the terms "first", "second", and the like in the description and claims of the present application are used to distinguish similar objects, and are not used to describe a particular order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so that the embodiments of the present application can be implemented in an order other than that illustrated or described herein, and the objects distinguished by "first", "second", etc. are generally a class, not limited to the number of objects, for example, the first object can be one or more. In addition, "and / or" in the specification and claims indicates at least one of the connected objects, and the character " / ", generally indicates that the associated objects before and after are in an "or" relationship.

[0039] It should be noted that in the description of the present application, the orientation or position relationship indicated by the terms such as "front, rear, upper, lower, left, right", "horizontal, vertical, perpendicular, horizontal" and "top, bottom" is generally based on the orientation or position relationship shown in the drawings, only for the purpose of facilitating the description of the present application and simplifying the description, without the opposite indication, these orientation terms do not indicate and imply that the indicated device or element must have a specific orientation or be constructed and operated in a specific orientation, therefore, it cannot be understood as a limitation on the scope of protection of the present application; the orientation terms "inner, outer" refer to the inner and outer relative to the contour of each component.

[0040] It should be noted that in this application, the terms "comprising", "including", or any other variant thereof are intended to cover a non-exclusive inclusion, so that a process, method, article, or apparatus that includes a list of elements not only includes those elements, but also includes other elements not expressly listed or inherent to such process, method, article, or apparatus. Without more limitations, an element defined by the statement "including a" does not exclude the presence of additional identical elements in the process, method, article, or apparatus that includes the element. In addition, it should be pointed out that the scope of the methods and apparatus in the embodiments of the present application is not limited to performing functions in the order shown or discussed, but can also include performing functions in a substantially simultaneous manner or in reverse order according to the functions involved, for example, the described method can be performed in an order different from that described, and various steps can also be added, omitted, or combined. In addition, the features described with reference to certain examples can be combined in other examples.

[0041] Embodiment 1:

[0042] Please refer to Figure 1 - Figure 5 As shown in the figure, the embodiment provides a brine gas saturation detection device, which comprises:

[0043] A bottom plate 1, a detection box 3 is fixedly installed on the top of the bottom plate 1, a cavity two 21, a cavity one 20 and a cavity three 22 are sequentially opened in the detection box 3 from bottom to top, a filter plate 26 is fixedly installed in the cavity two 21, a fixed column 25 is fixedly installed in the cavity one 20, a centrifugal barrel 24 is rotatably installed on the top of the fixed column 25, a power cavity 28 is opened in the fixed column 25, a bevel gear two 29 is rotatably installed in the power cavity 28, a bevel gear one 6 is rotatably installed in the power cavity 28 on one side of the bevel gear two 29, a motor 15 is fixedly installed on the left side of the detection box 3 through a plurality of bolts, and the output end of the motor 15 extends to the power cavity 28 through the left side of the detection box 3 and the fixed column 25 and is coaxially connected with the bevel gear one 6;

[0044] A natural gas detector 23 is fixedly installed in the cavity three 22, a sealing door two 19 is rotatably installed on one side of the cavity three 22, a sealing door one 4 is rotatably installed on one side of the cavity two 21, a water pipe 18 is fixedly installed on the left side of the detection box 3, a water pump two 17 is fixedly installed on one end of the water pipe 18, a rubber hose 16 is fixedly installed on the liquid inlet end of the water pump two 17, and a through pipe 30 is fixedly installed on the front side of the detection box 3;

[0045] A liquid supply assembly is located on the back side of the detection box 3 and is used to deliver the liquid in the cavity two 21 to the centrifugal barrel 24;

[0046] Gas delivery assembly, which is located on the front side of the detection box 3 and used to deliver the gas in the centrifugal barrel 24 to the cavity three 22.

[0047] Wherein, in use, under the action of the four brake universal wheels 2, the staff can hold the handle 14 and push the overall device to displace, push the overall device to the area with brine, then the staff can put one end of the rubber hose 16 into the brine, then start the water pump two 17, the water pump two 17 will extract the brine, the brine will enter the rubber hose 16, the brine in the rubber hose 16 will enter the water pipe 18, the brine in the water pipe 18 will flow onto the filter plate 26 in the cavity two 21 for filtration, so that the impurities in the brine can be filtered out, the filtered brine will flow into the bottom of the cavity two 21, at this time, the liquid supply assembly is arranged to deliver the brine in the cavity two 21 into the centrifugal barrel 24, then start the motor 15, the output shaft of the motor 15 will drive the bevel gear one 6 to rotate, under the meshing action, the bevel gear one 6 will drive the bevel gear two 29 to rotate, then the bevel gear two 29 will drive the centrifugal barrel 24 to rotate, the centrifugal barrel 24 rotates and centrifugal separates the brine sample, when the liquid and gas in the brine mix together and rotate and flow, the centrifugal force on the liquid is greater than that on the gas, so that the liquid collides with the inner wall of the centrifugal barrel 24 and adheres to it, while the gas is centrifugally separated, at this time, the gas delivery assembly is arranged to deliver the gas in the centrifugal barrel 24 to the cavity three 22, finally the natural gas content in the separated gas is detected by the natural gas detector 23, and the gas saturation of the brine sample is determined by the detected natural gas content, the higher the natural gas content, the higher the gas saturation of the brine, and vice versa.

[0048] Embodiment 2:

[0049] The embodiment provides a brine gas saturation detection device, in addition to the technical solutions of the above-mentioned embodiments, further having the following technical features, the liquid supply assembly comprises:

[0050] The liquid inlet pipe 7 is fixedly installed on the rear side of the detection box 3, one end of the liquid inlet pipe 7 is fixedly installed with the water pump one 8, the outlet end of the water pump one 8 is fixedly installed with the liquid outlet pipe 9, one end of the liquid outlet pipe 9 penetrates through the rear side of the detection box 3 and extends into the centrifugal barrel 24, the other end of the liquid inlet pipe 7 is located below the filter plate 26, and the other end of the liquid inlet pipe 7 is in communication with the cavity two 21, and the liquid outlet pipe 9 is fixedly connected with the detection box 3.

[0051] Wherein, start the water pump one 8, the water pump one 8 will extract the brine in the cavity two 21 through the liquid inlet pipe 7, then the brine will enter the liquid outlet pipe 9, and the brine in the liquid outlet pipe 9 will flow into the centrifugal barrel 24.

[0052] Embodiment 3:

[0053] The embodiment provides a brine gas saturation detection device, and in addition to comprising the technical scheme of the above embodiment, further has the following technical features, the gas delivery assembly comprises:

[0054] The connecting pipe two 12 is fixedly installed on the front side of the detection box 3, one end of the connecting pipe two 12 is fixedly installed with the air pump 11, the other end of the connecting pipe two 12 penetrates the front side of the detection box 3 and extends into the centrifugal barrel 24, the air outlet end of the air pump 11 is fixedly installed with the connecting pipe one 10, one end of the connecting pipe one 10 penetrates the top of the detection box 3 and extends into the cavity three 22, and the connecting pipe one 10 is fixedly connected with the detection box 3.

[0055] The air pump 11 is started, the air pump 11 will extract the gas in the centrifugal barrel 24 through the connecting pipe two 12, the gas in the connecting pipe two 12 will enter the connecting pipe one 10, and the gas in the connecting pipe one 10 will enter the cavity three 22.

[0056] Embodiment 4:

[0057] The embodiment provides a brine gas saturation detection device, and in addition to comprising the technical scheme of the above embodiment, further has the following technical features, the bottom of the bottom plate 1 and the positions close to the four corners are fixedly installed with brake universal wheels 2, the top of the bottom plate 1 and the rear side of the detection box 3 are fixedly installed with a handle 14, and the top of the bottom plate 1 and the left side of the detection box 3 are fixedly installed with an L-shaped column 13.

[0058] The four brake universal wheels 2 and the handle 14 are arranged, so that the overall device can be displaced, and the rubber hose 16 can be wound on the L-shaped column 13 when the device is not used.

[0059] Embodiment 5:

[0060] The embodiment provides a brine gas saturation detection device, and in addition to comprising the technical scheme of the above embodiment, further has the following technical features, the sealing door one 4 is located above the filter plate 26, the bottom of the centrifugal barrel 24 and one side of the fixed column 25 are fixedly installed with a straight pipe 27, the straight pipe 27 is located above the output shaft of the motor 15, the electronic control valve is installed on the straight pipe 27, and the through pipe 30 is in communication with the cavity one 20.

[0061] After the sealing door one 4 is opened, the impurities on the filter plate 26 can be cleaned, the electronic control valve is opened, the brine in the centrifugal barrel 24 can be discharged into the cavity one 20 from the straight pipe 27, and then the brine in the cavity one 20 is discharged to the outside from the through pipe 30.

[0062] Embodiment 6:

[0063] The embodiment provides a brine gas saturation detection device, in addition to comprising the technical scheme of the above embodiment, also has the following technical features, the other end of the water pipe 18 is located above the filter plate 26, the other end of the water pipe 18 is communicated with the cavity two 21.

[0064] Wherein, ensure that the water pipe 18 can be brine into the top of the filter plate 26 and filter.

[0065] Embodiment 7:

[0066] The embodiment provides a brine gas saturation detection device, in addition to comprising the technical scheme of the above embodiment, also has the following technical features, the other end of the water pipe 18 is located above the filter plate 26, the other end of the water pipe 18 is communicated with the cavity two 21.

[0067] Wherein, under the action of engagement, ensure that the bevel gear one 6 rotation can drive the bevel gear two 29 rotation, ensure that the motor 15 can rotate normally, ensure that the digital display screen 31 can display the value detected by the natural gas detector 23, ensure that the gas in the cavity three 22 can be discharged to the outside through the exhaust pipe 5.

[0068] It is worth mentioning that the structure and principle of the air pump 11, the water pump one 8, the water pump two 17, the natural gas detector 23, the centrifugal barrel 24 and the digital display screen 31 of the embodiment are prior art, and can be specifically referred to the comparison file (the announcement number is CN221465457U, and the patent name is a brine gas saturation detection device), and here is not repeated.

[0069] Working principle: in use, under the action of the four brake universal wheels 2, the worker can hold the handle 14 and push the overall device to displace, after pushing the overall device to the area with brine, the worker can put one end of the rubber hose 16 into the brine, then start the water pump two 17, the water pump two 17 will extract the brine, the brine in the rubber hose 16 will enter the water pipe 18, the brine in the water pipe 18 will flow onto the filter plate 26 in the cavity two 21 for filtration, so that the impurities in the brine can be filtered out, after filtration, the brine will flow to the bottom of the cavity two 21, at this time, start the water pump one 8, the water pump one 8 will extract the brine in the cavity two 21 through the liquid inlet pipe 7, then the brine will enter the liquid outlet pipe 9, the brine in the liquid outlet pipe 9 will flow into the centrifugal barrel 24, then start the motor 15, the output shaft of the motor 15 will drive the bevel gear one 6 to rotate, under the meshing action, the bevel gear one 6 will drive the bevel gear two 29 to rotate, then the bevel gear two 29 will drive the centrifugal barrel 24 to rotate, the centrifugal barrel 24 rotates and centrifugal separates the brine sample, when the liquid and gas in the brine mix together and rotate and flow, the centrifugal force on the liquid is greater than that on the gas, so that the liquid collides with the inner wall of the centrifugal barrel 24 and adheres to it, and the gas is centrifugally separated, at this time, start the air suction pump 11, the air suction pump 11 will extract the gas in the centrifugal barrel 24 through the connecting pipe two 12, the gas in the connecting pipe two 12 will enter the connecting pipe one 10, the gas in the connecting pipe one 10 will enter the cavity three 22, finally, the natural gas content in the separated gas is detected by the natural gas detector 23, and the gas saturation of the brine sample is determined by the detected natural gas content, the higher the natural gas content, the higher the gas saturation of the brine, and vice versa.

[0070] The embodiments of the present application are described above in conjunction with the drawings, the embodiments in the present application and the features in the embodiments can be combined with each other without conflict, the present application is not limited to the above specific embodiments, the above specific embodiments are only illustrative, not restrictive, those skilled in the art can make many forms under the inspiration of the present application without departing from the purpose of the present application and the scope protected by the claims, all of which belong to the protection of the present application.

Claims

1. A device for detecting the gas saturation of a brine, characterized in that, Include: The bottom plate (1), the top of the bottom plate (1) is fixedly installed with a detection box (3), the detection box (3) is sequentially provided with cavity two (21), cavity one (20) and cavity three (22) from bottom to top, the filter plate (26) is fixedly installed in the cavity two (21), the fixed column (25) is fixedly installed in the cavity one (20), the centrifugal barrel (24) is rotatably installed on the top of the fixed column (25), the power cavity (28) is formed in the fixed column (25), the bevel gear two (29) is rotatably installed in the power cavity (28), the bevel gear one (6) is rotatably installed on one side of the bevel gear two (29) in the power cavity (28), the motor (15) is fixedly installed on the left side of the detection box (3), the output end of the motor (15) extends to the power cavity (28) through the left side of the detection box (3) and the fixed column (25) and is coaxially connected with the bevel gear one (6); The natural gas detector (23) is fixedly installed in the cavity three (22), the sealing door two (19) is rotatably installed on one side of the cavity three (22), the sealing door one (4) is rotatably installed on one side of the cavity two (21), the water pipe (18) is fixedly installed on the left side of the detection box (3), one end of the water pipe (18) is fixedly installed with the water pump two (17), the inlet end of the water pump two (17) is fixedly installed with the rubber hose (16), the through pipe (30) is fixedly installed on the front side of the detection box (3); The liquid supply assembly is located on the rear side of the detection box (3) and is used for conveying the liquid in the cavity two (21) into the centrifugal barrel (24); The gas conveying assembly is located on the front side of the detection box (3) and is used for conveying the gas in the centrifugal barrel (24) into the cavity three (22).

2. A device for detecting the gas saturation of a brine according to claim 1, characterized in that, The liquid supply assembly comprises: The liquid inlet pipe (7) is fixedly installed on the rear side of the detection box (3), one end of the liquid inlet pipe (7) is fixedly installed with the water pump one (8), the outlet end of the water pump one (8) is fixedly installed with the liquid outlet pipe (9), one end of the liquid outlet pipe (9) extends into the centrifugal barrel (24) through the rear side of the detection box (3), the other end of the liquid inlet pipe (7) is located below the filter plate (26), and the other end of the liquid inlet pipe (7) is communicated with the cavity two (21), and the liquid outlet pipe (9) is fixedly connected with the detection box (3).

3. A device for detecting the gas saturation of a brine according to claim 1, characterized in that, The gas conveying assembly comprises: The connecting pipe two (12) is fixedly installed on the front side of the detection box (3), one end of the connecting pipe two (12) is fixedly installed with the air suction pump (11), the other end of the connecting pipe two (12) extends into the centrifugal barrel (24) through the front side of the detection box (3), the outlet end of the air suction pump (11) is fixedly installed with the connecting pipe one (10), one end of the connecting pipe one (10) extends into the cavity three (22) through the top of the detection box (3), and the connecting pipe one (10) is fixedly connected with the detection box (3).

4. The device for detecting gas saturation of brine according to claim 1, characterized in that, The bottom plate (1) is fixedly installed with brake universal wheel (2) at the bottom and near four corners, the top of the bottom plate (1) is fixedly installed with handle (14) at the rear side of detection box (3), the top of the bottom plate (1) is fixedly installed with L-shaped column (13) at the left side of detection box (3).

5. The device for detecting the gas saturation of brine according to claim 1, characterized in that, The sealing door (4) is above the filter plate (26), the bottom of the centrifugal barrel (24) is fixedly installed with straight pipe (27) at one side of fixed column (25), the straight pipe (27) is above the output shaft of motor (15), the straight pipe (27) is installed with electronic control valve, the through pipe (30) is communicated with cavity (20).

6. A device for detecting the gas saturation of brine according to claim 1, characterized in that, The other end of the water pipe (18) is above the filter plate (26), the other end of the water pipe (18) is communicated with cavity (21).

7. A device for detecting the gas saturation of brine according to claim 1, characterized in that, The tapered gear (29) is engaged with tapered gear (6), the output shaft of motor (15) is rotatably connected with detection box (3), fixed column (25) and power cavity (28), the rear side of detection box (3) is fixedly installed with digital display screen (31), the right side of detection box (3) is fixedly installed with exhaust pipe (5), the exhaust pipe (5) is communicated with cavity (22), the digital display screen (31) is electrically connected with natural gas detector (23).

Citation Information

Patent Citations

  • Brine gas saturation detection device

    CN221465457U