Novel slurry laboratory
The new mud laboratory, with its modular design and sealing device, solves the problems of traditional laboratories, such as limited functionality, long construction period, and short service life, and achieves a flexible, low-cost, efficient, and safe experimental environment.
Patent Information
- Application Number
- CN202422696640.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-06
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-11-06
AI Technical Summary
Traditional mud laboratories have limited functionality, long construction cycles, high costs, poor flexibility, and are difficult to meet diverse experimental needs. Furthermore, the corrosive effects of chemicals result in a short service life.
The new mud laboratory adopts a modular design, including modular laboratory rooms and connecting corridors. It can be assembled through a quick-connect structure, equipped with sealing devices and multifunctional laboratory blocks, and features flexible combination and good sealing performance. Independent modules are replaceable, and acid and alkali resistant materials and environmentally friendly pipelines are used.
It improves the flexibility and adaptability of the laboratory, shortens the construction cycle, reduces costs, extends the service life, and ensures experimental safety and result accuracy.
Smart Images

Figure CN223593879U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to barrack technical field, especially a novel mud laboratory. BACKGROUND
[0002] In petroleum exploration, building foundation construction and other related fields, the application of mud is extremely wide. The performance of mud is directly related to the quality and efficiency of engineering construction, therefore, the preparation, performance testing and improvement of mud occupy a pivotal position in engineering. The traditional mud laboratory mostly adopts fixed structure, and has problems of long construction period, high cost, poor flexibility and the like. Especially when carrying out different types of mud experiments, due to the difference of experimental conditions, the traditional laboratory often cannot meet the needs of various experiments, and needs a large amount of modification and adjustment, which not only increases the cost, but also affects the efficiency of experiment.
[0003] In addition, the existing mud laboratory has a single function, cannot complete various experimental tests, and due to the influence of the corrosiveness of chemical drugs on the inner wall of the barrack, the normal service life of the laboratory is short. UTILITY MODEL CONTENT
[0004] Therefore, the utility model aims at providing a novel mud laboratory to solve the problems of single function of barrack, low construction efficiency, long time consumption and difficulty in relocation in the prior art.
[0005] To achieve the above-mentioned purpose, the technical scheme of the utility model is as follows:
[0006] The utility model provides a novel mud laboratory, which comprises:
[0007] A first modularized barrack laboratory, a second modularized barrack laboratory, a third modularized barrack laboratory, a fourth modularized barrack laboratory and a connecting corridor;
[0008] The first modularized barrack laboratory and the second modularized barrack laboratory are fixedly connected to the first side of the connecting corridor;
[0009] The third modularized barrack laboratory and the fourth modularized barrack laboratory are fixedly connected to the second side opposite to the first side of the connecting corridor;
[0010] The mud laboratory further comprises a plurality of quick connection structures, and the first modularized barrack laboratory, the second modularized barrack laboratory, the third modularized barrack laboratory, the fourth modularized barrack laboratory and the connecting corridor are fixedly connected through the quick connection structures;
[0011] The new mud laboratory further comprises a sealing device arranged at the peripheral edge of the connecting corridor, comprising at least one sealing ring and / or a plate-shaped sealing strip tightly fitted with the contact surfaces of the first modular house laboratory, the second modular house laboratory and the connecting corridor, the third modular house laboratory, the fourth modular house laboratory and the connecting corridor, so as to form a seal.
[0012] The quick connection structure comprises at least one galvanized fixing bolt, two oppositely arranged arc-shaped back plates, and galvanized nuts arranged on both sides of the galvanized fixing bolt; the galvanized fixing bolt penetrates through the two arc-shaped back plates, and the galvanized nuts on both sides of the galvanized fixing bolt are tightened to fix the two arc-shaped back plates.
[0013] Further, the first modular house laboratory comprises a chemical storage room and a completion fluid and material detection room.
[0014] The second modular house laboratory comprises a high temperature and high pressure room and a conventional detection room.
[0015] The third modular house laboratory comprises a precision detection room.
[0016] The fourth modular house laboratory comprises an office area.
[0017] The precision detection room and the office area are communicated through the connecting corridor.
[0018] Further, an emergency door is arranged at an exit of the connecting corridor leading to the outside, and an escape lock is installed on the emergency door.
[0019] A stainless steel automatic induction door with face recognition function and fingerprint recognition function is arranged at the exit of the high temperature and high pressure room leading to the outside.
[0020] An anti-ballistic steel plate layer is installed in the side wall of the office area to improve the safety of the office area.
[0021] Further, a hazardous material storage cabinet is arranged in the chemical storage room, the hazardous material storage cabinet comprises a weak acid and weak base cabinet, a flammable alcohol and acetone cabinet, a flammable oil and paint cabinet, and a hydrochloric acid and nitric acid cabinet; an exhaust pipe connected with the outside is connected to the top of the hazardous material storage cabinet, for discharging the easily volatile gas to the outside through the exhaust pipe.
[0022] Further, the side walls of the new mud laboratory except the office area are sequentially provided with a container corrugated board layer, an A-grade thermal insulation material layer, a steel framework layer, and a fireproof bamboo-wood fiber plate layer from the outside to the inside.
[0023] The side wall of the office area is sequentially provided with a container corrugated board layer (21), a steel framework layer, a bulletproof steel plate layer, an A-grade thermal insulation material layer, a steel framework layer and a fireproof bamboo-wood fiber plate layer from the outside to the inside;
[0024] The floor of the new mud laboratory is paved with acid and alkali resistant glue boards.
[0025] Further, at least one experiment table is arranged in the well completion fluid and material detection room, the high temperature and high pressure room, the conventional detection room and the precision detection room respectively.
[0026] The tabletop of the experiment table is a ceramic acid and alkali resistant corrosion resistant panel, and the material of the table body is 304 stainless steel.
[0027] Further, a water supply pipeline is paved in the new mud laboratory.
[0028] The water supply pipeline comprises a hazardous chemical waste liquid pipeline and a domestic sewage drainage pipeline.
[0029] Further, a fume hood for discharging indoor gas to the outside is arranged in the high temperature and high pressure room.
[0030] Further, the top of the connecting corridor is arched.
[0031] Compared with the prior art, the utility model has the following advantages:
[0032] In the utility model, through modular design, the mud laboratory of the utility model can be flexibly combined and configured according to actual demand. The first modular house body laboratory, the second modular house body laboratory, the third modular house body laboratory, the fourth modular house body laboratory and the connecting corridor can independently exist, and can also be quickly assembled through the quick connection structure, forming a laboratory layout meeting different experimental requirements. This design greatly improves the flexibility and adaptability of the laboratory, so that the laboratory can easily cope with different types of mud experiments.
[0033] Modular design not only improves the flexibility of the laboratory, but also significantly shortens the construction period. Each module can be prefabricated in the factory, and only simple assembly and debugging are needed on site, which greatly reduces the construction time and labor cost. At the same time, due to the modular production mode, scale procurement and manufacturing can be realized, further reducing the construction cost of the laboratory.
[0034] The utility model sets up the new mud laboratory also includes sealing device at the circumferential edge of the connecting corridor, including at least one sealing ring and / or plate-shaped sealing strip, ensuring the effective isolation of the laboratory interior and the external environment. This design not only prevents the leakage of harmful gases or dust, but also ensures the stability and controllability of the internal environment of the laboratory, providing a safer and healthier working environment for the experimenters.
[0035] In view of the short service life of the conventional laboratory caused by chemical drug corrosion, the modular design of the mud laboratory can independently replace or repair each module.
[0036] Since the mud laboratory can be flexibly configured according to experimental requirements, different types of mud experiments can be carried out more efficiently. At the same time, good sealing performance and environmental control capability also ensure the accuracy and reliability of the experimental results. BRIEF DESCRIPTION OF DRAWINGS
[0037] The accompanying drawings, which form a part of this application, are included to provide a further understanding of the application and are incorporated herein in their entirety. The embodiments illustrated in the drawings are utilized to explain the present application and should not be construed as an improper limitation of the present application. In the drawings:
[0038] Figure 1 is a plan view of the present application;
[0039] Figure 2 is a B-direction view of the present application; Figure 1
[0040] Figure 3 is an A-direction view of the present application; Figure 1
[0041] Figure 4 is a G-direction view of the present application; Figure 1
[0042] Figure 5 is an enlarged view of M of the present application; Figure 1
[0043] Figure 6 is a top rainproof arrangement view of the present application;
[0044] Figure 7 is a novel mud laboratory side wall connecting structure view of the present application;
[0045] Figure 8 is a side wall structure view of other areas of the present application except the office area;
[0046] Figure 9 is a side wall structure view of the office area of the present application.
[0047] BRIEF DESCRIPTION OF DRAWINGS
[0048] 1, the first modular house body laboratory; 2, the second modular house body laboratory; 3, high temperature and high pressure chamber; 4, routine detection room; 5, connecting corridor; 6, the third modular house body laboratory; 7, the fourth modular house body laboratory; 8, completion well fluid and material detection room; 9, chemical storage room; 10, sealing ring; 11, decorative nail; 12, fixed support; 13, stainless steel panel; 14, plate-shaped sealing strip; 15, pressing plate; 16, rain cover; 17, rain strip; 18, butterfly nut; 19, gasket; 20, screw rod; 21, container corrugated board; 22, A-grade thermal insulation material; 23, steel skeleton; 24, fireproof bamboo wood fiber board; 25, bulletproof steel plate; 26, arc-shaped back plate; 27, bolted screw rod; 28, galvanized nut; 29, loose stop washer; 30, hazardous waste liquid pipeline; 31, domestic sewage drainage pipeline; 32, water supply pipeline; 33, weak acid and weak base cabinet; 34, flammable alcohol and acetone cabinet; 35, flammable oil and paint cabinet; 36, hydrochloric acid and nitric acid cabinet; 37, exhaust pipe; 38, test bench; 39, automatic induction door; 40, house ladder; 41, overhead line pole; 42, nitrogen cylinder cabin. DETAILED DESCRIPTION
[0049] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict.
[0050] In the description of the present application, it should be noted that the terms "upper", "lower", "inner", "back" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "first", "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0051] In addition, in the description of the present application, unless otherwise explicitly limited, the terms "mounting", "connection", "connection", "connecting member" should be understood broadly. For example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood in combination with the specific circumstances.
[0052] The present application will be described in detail below with reference to the accompanying drawings Figures 1 to 9 and in conjunction with the embodiments.
[0053] Overall, as Figure 1 and Figure 2As shown, this utility model provides a novel mud laboratory, comprising:
[0054] The first modular laboratory 1, the second modular laboratory 2, the third modular laboratory 6, the fourth modular laboratory 7, and the connecting corridor 5;
[0055] The first modular laboratory 1 and the second modular laboratory 2 are fixedly connected to the first side of the connecting corridor 5;
[0056] The third modular laboratory 1 and the fourth modular laboratory 2 are fixedly connected to the second side opposite to the first side of the connecting corridor 5;
[0057] The mud laboratory also includes multiple quick-connect structures. The first modular laboratory 1, the second modular laboratory 2, the third modular laboratory 6, the fourth modular laboratory 7, and the connecting corridor 5 are fixedly connected via these quick-connect structures to meet the requirements of rapid assembly, rapid placement, and rapid connection for use. In this embodiment, as... Figure 5 As shown, a fixing support 12 is provided on the stainless steel panel 13, and the fireproof bamboo and wood fiberboard 24 is fixed by inserting decorative nails 11 into the fixing support 12.
[0058] In a preferred embodiment, such as Figure 6 As shown, to enhance rainproof performance, a rain guard strip 17, a rain cover 16, and a pressure plate 15 are installed at the top of the doorway at the corridor connection. They are fixed to the top screw 20 by a wing nut 18 and a washer 19 to ensure waterproof performance and protection.
[0059] The novel mud laboratory also includes a sealing device arranged around the perimeter of the connecting corridor 5, including at least one sealing ring 10 and / or plate-shaped sealing strip 14. The sealing ring 10 and / or plate-shaped sealing strip 14 are tightly fitted with the contact surfaces of the first modular chamber laboratory 1, the second modular chamber laboratory 2 and the connecting corridor 5, and the third modular chamber laboratory 6 and the fourth modular chamber laboratory 7 and the connecting corridor 5 to form a seal.
[0060] like Figure 7 As shown, the quick-connect structure includes at least one galvanized fixing bolt 27, two opposing arched back plates 26, and galvanized nuts 28 disposed on both sides of the galvanized fixing bolt 27; the galvanized fixing bolt 27 passes through the two arched back plates 26 and the galvanized nuts 28 on both sides of the galvanized fixing bolt 27 are tightened to fix the two arched back plates 26, and the arched back plates 26 are disposed on the outer side of the side wall.
[0061] In one possible implementation, the first modular building laboratory 1 includes a chemical storage room 9 and a well completion fluid and materials testing room 8;
[0062] The second modular laboratory 2 includes a high-temperature and high-pressure chamber 3 and a conventional testing chamber 4;
[0063] The third modular laboratory 6 includes a precision testing room;
[0064] The fourth modular laboratory building 7 includes office areas;
[0065] The precision testing room and the office area are connected by connecting corridor 5.
[0066] In this embodiment, the functional blocks are connected into a whole by the connecting corridor 5, which realizes a relatively closed and sealed experimental environment, and meets the various environmental requirements of on-site mud experiments.
[0067] In one possible implementation, an exit connecting corridor 5 to the outside is provided with an emergency door, which is equipped with an escape lock.
[0068] like Figure 4 As shown, the exit of the high-temperature and high-pressure chamber 3 to the outside is equipped with a stainless steel automatic sensor door 39 with facial recognition and fingerprint recognition functions; in case of emergency, the escape function can be opened.
[0069] The side walls of the office area are equipped with bulletproof steel plates 25 to enhance the security of the office area.
[0070] Finally, each test area is divided into zones; therefore, the novel mud laboratory in this embodiment has extremely high safety.
[0071] In one possible implementation, such as Figure 3 As shown, the chemical storage room 9 is equipped with hazardous materials storage cabinets, including cabinets for weak acids and bases (33), flammable alcohol and acetone (34), flammable fuels and paints (35), and hydrochloric acid and nitric acid (36); these cabinets ensure the safe storage of experimental materials and minimize environmental hazards. The tops of the hazardous materials storage cabinets are connected to exhaust pipes (37) leading to the outside, allowing volatile gases to be released outdoors. This ensures that potentially volatile hazardous gases are released outdoors.
[0072] In one possible implementation, such as Figure 8 and Figure 9 As shown, apart from the office area, the side walls of other new mud laboratories, from the outside to the inside, are, in order, a container corrugated board layer 21, a Class A thermal insulation material layer 22, a steel frame layer 23, and a fireproof bamboo and wood fiberboard layer 24.
[0073] The side walls of the office area, from the outside to the inside, consist of a container corrugated board layer 21, a steel frame layer 23, a bulletproof steel plate layer 25, a Class A insulation material layer 22, a steel frame layer 23, and a fireproof bamboo and wood fiberboard layer 24.
[0074] The floor of the new mud laboratory is paved with acid and alkali resistant glue board.
[0075] At least one experimental table is arranged in the completion fluid and material detection room 8, the high temperature and high pressure room 3, the conventional detection room 4 and the precision detection room respectively.
[0076] The tabletop of the experimental table is ceramic acid and alkali resistant corrosion resistant panel, and the material of the table body is 304 stainless steel.
[0077] In the embodiment, in other areas outside the office area, the side wall from outdoor to indoor side includes container corrugated board layer 21, A-level thermal insulation material layer 22, steel skeleton layer 23 and fireproof bamboo fiber board layer 24 in turn; the office area simultaneously increases a layer of bulletproof steel plate 25 on the inside of the skeleton; the fireproof bamboo fiber board 24 on one side of the indoor side is water resistant and corrosion resistant, and acid and alkali resistant glue board is also paved on the indoor floor, so that the indoor corrosion resistant environment forms a relatively closed closed loop. The service life of the barrack is effectively increased. The tabletop of the experimental table in the barrack is ceramic acid and alkali resistant corrosion resistant panel, and the cabinet body is 304 stainless steel cabinet body, which also ensures the increase of the service life of the barrack. Therefore, the environmental protection and corrosion resistance of the new mud laboratory are very high.
[0078] In a possible implementation, a water supply pipeline 32 is paved in the new mud laboratory.
[0079] The water supply pipeline 32 includes a hazardous waste liquid pipeline 30 and a domestic sewage drainage pipeline 31.
[0080] In the embodiment, in order to ensure the environmental protection performance of the new mud laboratory: the water supply pipeline 32 of the new mud laboratory adopts the environmentally friendly PPR pipeline, and the 304 stainless steel faucet is configured; the drainage pipeline adopts the UPVC pipeline at important parts such as the turning part, and adopts the shunt discharge, that is, the hazardous waste liquid pipeline 30 and the domestic sewage drainage pipeline 31, so as to facilitate the centralized treatment of experimental waste liquid.
[0081] In a possible implementation, a fume hood for discharging indoor gas to outdoor is arranged in the high temperature and high pressure room. In the embodiment, the indoor ventilation and air conditioning system of the new mud laboratory is configured with the fume hood in the high temperature and high pressure room, so as to facilitate the discharge of experimental gas.
[0082] In a possible implementation, the top of the connecting corridor 5 is arched.
[0083] Compared with the traditional flat top structure, the arched top can better disperse the pressure caused by gravity and wind force, so as to have higher wind and pressure resistance in natural disasters or extreme weather conditions. The damage caused by these disasters can be effectively reduced.
[0084] In a preferred embodiment, to ensure the mobility of the new mud laboratory, the site only needs to have a compaction degree (≥0.9) and a sufficient drainage slope difference, i.e. an indoor and outdoor height difference ≥0.4 m, so that the combination can be placed and used. The power supply connection into the barrack is firm by adjusting the overhead line pole 41 to the top of the barrack body through the barrack ladder 40; the test gas source is provided into the indoor through the nitrogen gas bottle in the nitrogen gas bottle cabin 42; the external water supply and drainage pipelines are connected, and the laboratory can be put into use, and attention is paid to the special setting of the hazardous waste liquid pipeline, so that the experimental waste liquid can be specially collected and treated, and the influence of the laboratory on the local environment is almost ignored.
[0085] The above is only a preferred embodiment of the present application, and is not used to limit the present application, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A novel mud laboratory characterized in that, Comprise: The first modular house laboratory (1), the second modular house laboratory (2), the third modular house laboratory (6), the fourth modular house laboratory (7) and the connecting corridor (5); The first modular house laboratory (1) and the second modular house laboratory (2) are fixedly connected to the first side of the connecting corridor (5); The third modular house laboratory (6) and the fourth modular house laboratory (7) are fixedly connected to the second side opposite to the first side of the connecting corridor (5); The mud laboratory further comprises a plurality of quick connection structures, and the first modular house laboratory (1), the second modular house laboratory (2), the third modular house laboratory (6), the fourth modular house laboratory (7) and the connecting corridor (5) are fixedly connected through the quick connection structures; The novel mud laboratory further comprises a sealing device arranged at the circumferential edge of the connecting corridor (5), comprising at least one sealing ring (10) and / or a plate-shaped sealing strip (14), the sealing ring (10) and / or the plate-shaped sealing strip (14) are tightly fitted with the contact surfaces of the first modular house laboratory (1), the second modular house laboratory (2) and the connecting corridor (5), the contact surfaces of the third modular house laboratory (6), the fourth modular house laboratory (7) and the connecting corridor (5) to form a seal; The quick connection structure comprises at least one galvanized fixed bolt (27), two oppositely arranged arc-shaped back plates (26) and galvanized nuts (28) arranged on both sides of the galvanized fixed bolt (27); the galvanized fixed bolt (27) passes through the two arc-shaped back plates (26) and tightens the galvanized nuts (28) on both sides of the galvanized fixed bolt (27) to fix the two arc-shaped back plates (26).
2. The novel mud laboratory according to claim 1, wherein The first modular house laboratory (1) comprises a chemical storage room (9) and a completion fluid and material detection room (8); The second modular house laboratory (2) comprises a high temperature and high pressure room (3) and a conventional detection room (4); The third modular house laboratory (6) comprises a precision detection room; The fourth modular house laboratory (7) comprises an office area; The precision detection room and the office area are communicated through the connecting corridor (5).
3. The novel mud laboratory according to claim 2, wherein An exit of the connecting corridor (5) leading to the outside is provided with an emergency door, and an escape lock is installed on the emergency door; A stainless steel automatic sensing door (39) with face recognition function and fingerprint recognition function is arranged at the exit of the high temperature and high pressure room (3) leading to the outside; A bulletproof steel plate layer (25) is installed in the side wall of the office area to improve the safety of the office area.
4. The novel mud laboratory according to claim 2, wherein The chemical storage room (9) is provided with a hazardous material storage cabinet, which includes a weak acid and weak base cabinet (33), a flammable alcohol and acetone cabinet (34), a flammable oil and paint cabinet (35), and a hydrochloric acid and nitric acid cabinet (36). The top of the hazardous material storage cabinet is connected with an exhaust pipe (37) communicating with the outside, which is used to discharge the easily volatile gas to the outside through the exhaust pipe. 5.The novel mud laboratory according to claim 2, characterized in that, The side wall of the novel mud laboratory, except the office area, is sequentially provided with a container corrugated board layer (21), an A-grade thermal insulation material layer (22), a steel framework layer (23), and a fireproof bamboo-wood fiber board layer (24) from the outside to the inside. The side wall of the office area is sequentially provided with a container corrugated board layer (21), a steel framework layer (23), a bulletproof steel plate layer (25), an A-grade thermal insulation material layer (22), a steel framework layer (23), and a fireproof bamboo-wood fiber board layer (24) from the outside to the inside. The floor of the novel mud laboratory is paved with acid and alkali resistant glue boards. 6.The novel mud laboratory according to claim 2, characterized in that, At least one experimental table is arranged in each of the well completion fluid and material detection room (8), the high temperature and high pressure room (3), the conventional detection room (4), and the precision detection room. 7.The novel mud laboratory according to claim 1, characterized in that, The novel mud laboratory is paved with a water supply pipeline (32). The water supply pipeline (32) includes a hazardous waste liquid pipeline (30) and a domestic sewage drainage pipeline (31). 8.The novel mud laboratory according to claim 2, characterized in that, The high temperature and high pressure room is provided with a fume hood for discharging the indoor gas to the outside. 9.The novel mud laboratory according to claim 1, characterized in that, The top of the connecting corridor (5) is arched.