Portable venturi tube joint

Through the design of a portable Venturi pipe joint, the Venturi effect is used to absorb indoor accumulated water and reuse it for fire extinguishing, solving the problem of indoor water accumulation caused by existing fire extinguishing equipment, improving fire extinguishing efficiency and reducing secondary damage.

CN223366138UActive Publication Date: 2025-09-23YONGZHOU CITY LINGLING DISTRICT FIRE RESCUE BRIGADE (YONGZHOU CITY LINGLING DISTRICT FIRE RESCUE BUREAU)
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Patent Information

Application Number
CN202422466905.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-12
Publication Date
2025-09-23
Estimated Expiration
2034-10-12

AI Technical Summary

Technical Problem

Existing fire-fighting equipment mainly relies on large amounts of water resources to extinguish fires, which leads to serious water accumulation indoors and damages facilities such as furniture, electrical appliances and floors.

Method used

A portable Venturi pipe joint is designed to use the Venturi effect to suck indoor accumulated water into the pipe and reuse it for fire extinguishing. Through the structural design of the male water inlet section, contraction section, throat, diffusion section and mother belt water outlet section, combined with the external liquid suction section and water filter, the accumulated water can be filtered and reused.

Benefits of technology

By absorbing and reusing accumulated water, the amount of water accumulated indoors can be significantly reduced, the fire extinguishing effect can be enhanced, and secondary damage can be reduced. The simple structure makes it easy to carry and install, and it can adapt to complex fire scenes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of fire-fighting equipment, in particular to a portable venturi pipe joint, which is characterized in that a male port water inlet section of the venturi pipe joint is connected with a fire-fighting hose, high-pressure water flow in the fire-fighting hose enters the venturi pipe joint, and the high-pressure water flow enters a contraction section, so that the water flow speed is increased, the pressure is reduced, and the accelerated water flow enters a throat; due to the low-pressure effect of the throat, the outer liquid suction section can suck accumulated water from the indoor ground and supplement the accumulated water into the throat, water flow mixed with the accumulated water enters a diffusion water channel in the diffusion section from the throat, and the decelerated water flow passes through the main belt water outlet section and is finally sprayed out through a connected fire-fighting lance head. By means of the Venturi effect, indoor accumulated water can be sucked into a pipeline and used for fire extinguishing again, continuous and stable water flow is guaranteed through secondary water supplementing fire extinguishing, the fire extinguishing effect is enhanced, the indoor accumulated water amount can be remarkably reduced by sucking and reusing the accumulated water, secondary damage caused by the accumulated water is reduced, and the joint is simple in structure and convenient to use. And firefighters can carry and install the device conveniently.
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Description

Technical Field

[0001] The utility model relates to the technical field of fire-fighting equipment, in particular to a portable Venturi pipe joint. Background Art

[0002] With the acceleration of urbanization, the height and complexity of modern buildings are constantly increasing, and the potential risk of fire is also rising. In order to protect people's lives and property safety, the research and development and application of fire-fighting equipment are particularly important. Traditional fire-fighting equipment includes fire extinguishers, fire hydrants, automatic sprinkler fire extinguishing systems, etc. These equipment can quickly control the fire when a fire occurs and reduce the losses caused by the fire. However, they also have some significant shortcomings in practical applications, especially in the process of indoor fire extinguishing, which easily causes a large amount of water accumulation.

[0003] Existing fire-fighting equipment mainly relies on large amounts of water resources for firefighting, which can lead to serious water accumulation indoors. Take fire hydrants as an example. Fire hydrants directly spray high-pressure water streams to extinguish fires by connecting water hoses. Since it is difficult to accurately control the amount of water sprayed, it is easy to cause excessive water in the room, resulting in serious water accumulation. Severe water accumulation will cause damage to furniture, electrical appliances, floors, etc., increasing property losses after a fire.

[0004] The present invention is proposed in view of the deficiencies in the prior art. Utility Model Content

[0005] Regarding the technical problem mentioned above, the existing fire extinguishing equipment mainly relies on a large amount of water resources to extinguish fires, which will cause serious water accumulation indoors and damage furniture, electrical appliances, floors, etc.

[0006] The technical solution adopted by the utility model to solve its technical problems is:

[0007] A portable venturi pipe joint includes a male water inlet section, a contraction section, a throat, a diffusion section and a mother belt water outlet section connected in sequence. The male water inlet section can be connected to a fire hose, and the mother belt water outlet section can be connected to a fire hose head. A contraction water channel is provided in the contraction section, and a diffusion water channel is provided in the diffusion section. Both the contraction water channel and the diffusion water channel are in a shape that gradually contracts toward the throat. The side wall of the throat is provided with an external liquid suction section connected thereto, and the external liquid suction section can absorb indoor accumulated water and replenish it into the throat.

[0008] In the portable Venturi tube joint as described above, the external liquid suction section includes an external liquid suction tube connected to the throat.

[0009] In the portable venturi tube joint as described above, the external liquid suction section further comprises a water filter provided on the free end of the external liquid suction tube, and the water filter can filter impurities in the indoor accumulated water.

[0010] In the portable venturi tube joint as described above, the water filter includes a filter housing communicated with the external liquid suction pipe and a filter screen arranged on the filter housing.

[0011] As described above, in a portable Venturi tube joint, the filter is arranged at the bottom of the filter housing, and the bottom of the filter housing is also provided with a plurality of support protrusions extending downward. The plurality of support protrusions can prevent the filter from contacting the ground. The plurality of support protrusions are arranged at intervals, and there is a water inlet gap between adjacent support protrusions.

[0012] In the portable venturi tube joint as described above, the external liquid suction section further comprises a connecting assembly provided between the external liquid suction tube and the water filter, and the connecting assembly comprises a water pipe joint, or the connecting assembly comprises a fluid universal joint.

[0013] In the portable venturi tube joint as described above, the external liquid suction section further comprises a buoyancy component provided on the water filter, and the buoyancy component can provide buoyancy for the water filter placed in indoor accumulated water.

[0014] In the portable venturi tube joint as described above, the buoyancy assembly includes an adjustable airbag and a first connecting member, and the adjustable airbag is connected to the water filter via the first connecting member.

[0015] In the portable venturi tube joint as described above, a second connecting member is provided between the external liquid suction section and the throat, enabling the two to be detachably connected.

[0016] In the portable Venturi pipe joint as described above, the contraction section is detachably connected to the male water inlet section and the throat, and the diffusion section is detachably connected to the female belt water outlet section and the throat.

[0017] The beneficial effects of the utility model are:

[0018] The portable venturi pipe joint of the utility model relates to the technical field of fire-fighting equipment. The male water inlet section of the venturi pipe joint is connected to the fire hose. The high-pressure water flow in the fire hose enters the venturi pipe joint, and the high-pressure water flow enters the contraction section, so that the water flow speed is increased, the pressure is reduced, and the accelerated water flow enters the throat. Due to the low-pressure effect of the throat, the external suction section can absorb the accumulated water from the indoor floor and replenish it into the throat. The water mixed with the accumulated water enters the diffusion water channel in the diffusion section from the throat. The decelerated water flow passes through the mother belt water outlet section and is finally sprayed out by the connected fire hose head; by utilizing the venturi effect, the indoor accumulated water can be sucked into the pipeline and reused for fire extinguishing. The secondary water replenishment fire extinguishing ensures a continuous and stable water flow, enhances the fire extinguishing effect, and by absorbing and reusing the accumulated water, the amount of accumulated water in the room can be significantly reduced, reducing the secondary damage caused by the accumulated water. In addition, the joint has a simple structure and is convenient for firefighters to carry and install.

[0019] The present invention will be further described below with reference to the accompanying drawings and specific implementation methods. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a structural diagram of the utility model;

[0021] Figure 2 It is a side view schematic diagram of the utility model;

[0022] Figure 3 for Figure 2 Schematic cross-sectional view along line AA;

[0023] Figure 4 This is one of the exploded schematic diagrams of the present utility model;

[0024] Figure 5 This is the second exploded schematic diagram of the present utility model;

[0025] Figure 6 This is an exploded schematic diagram of the water filter of the present utility model;

[0026] Figure 7 This is a schematic diagram of the assembly structure of the liquid universal joint, external liquid suction pipe, and water filter of the utility model;

[0027] Figure 8 It is a cross-sectional schematic diagram of the assembly of the liquid universal joint, the external liquid suction pipe, and the water filter of the utility model;

[0028] Figure 9 This is one of the exploded schematic diagrams of the liquid universal joint of the present utility model;

[0029] Figure 10 This is the second exploded schematic diagram of the liquid universal joint of the present invention. DETAILED DESCRIPTION

[0030] The following describes the embodiments of the present invention in detail with reference to the accompanying drawings.

[0031] like Figures 1 to 10 As shown, a portable venturi pipe joint of the present embodiment includes a male water inlet section 1, a contraction section 2, a throat 3, a diffusion section 4 and a mother belt water outlet section 5 connected in sequence, the male water inlet section 1 can be connected to a fire hose, the mother belt water outlet section 5 can be connected to a fire hose head, a contraction water channel 21 is provided in the contraction section 2, a diffusion water channel 41 is provided in the diffusion section 4, the contraction water channel 21 and the diffusion water channel 41 are both in a shape that gradually contracts toward the throat 3, and the side wall of the throat 3 is provided with an external liquid suction section 6 connected thereto, and the external liquid suction section 6 can absorb indoor accumulated water and replenish it into the throat 3.

[0032] Specifically, the working principle of the portable venturi pipe joint of this embodiment is based on the Venturi effect, which is a fluid dynamics phenomenon. When a fluid passes through a gradually converging pipe section, its flow rate increases and the pressure decreases; while when it passes through a diverging section, the flow rate decreases and the pressure increases. The specific working principle is as follows:

[0033] The public water inlet section 1 is connected to the fire hose, and the high-pressure water flow in the fire hose enters the Venturi pipe joint, and the high-pressure water flow enters the contraction section 2. Since the contraction water channel 21 is provided in the contraction section 2, the water flow cross-section gradually decreases, so that the water flow velocity increases and the pressure decreases. The accelerated water flow enters the throat 3. The cross-sectional area of ​​the throat 3 is small, so that the water flow velocity reaches the maximum, forming a significant low-pressure area. The side wall of the throat 3 is provided with an external liquid suction section 6. Due to the low-pressure effect of the throat 3, the external liquid suction section 6 can absorb the accumulated water from the indoor ground and replenish it into the throat 3, and the mixed The water flow combined with the accumulated water enters the diffusion water channel 41 in the diffusion section 4 from the throat 3, the water flow cross-section gradually increases, the water flow speed decreases, the pressure recovers, and the decelerated water flow passes through the mother belt water outlet section 5, and is finally sprayed out by the connected fire hose head to achieve fire extinguishing. The portable Venturi pipe joint of this embodiment uses the Venturi effect to suck the indoor accumulated water into the pipe and reuse it for fire extinguishing. Through secondary water replenishment fire extinguishing, a continuous and stable water flow is guaranteed, and the fire extinguishing effect is enhanced. Especially when water resources are limited, the fire extinguishing efficiency can be significantly improved.

[0034] In addition, it effectively reduces the use of fresh water resources and realizes the recycling of resources. By absorbing and reusing accumulated water, it can significantly reduce the amount of water accumulation in the room, reduce the damage caused by accumulated water to furniture, electrical appliances and floors, reduce the secondary damage caused by accumulated water, reduce the damage to indoor property caused by fire, and reduce the cost of repair after the fire.

[0035] The joint has a simple structure, is easy to carry and install, is suitable for various complex fire scenes, and enhances the emergency handling capabilities of firefighters.

[0036] Furthermore, when there is an available water source around the water supply trunk line of the water hose, with the help of the Venturi effect, the external liquid suction section 6 can not only absorb the accumulated water in the room, but also absorb the available water source around the water supply trunk line, so that water resources can be efficiently recycled during the fire extinguishing process, and the selection can be based on actual needs.

[0037] like Figures 1 to 10 As shown, the external liquid suction section 6 of this embodiment includes an external liquid suction pipe 61 connected to the throat 3. Due to the low-pressure area formed by the throat 3, the external liquid suction pipe 61 can absorb accumulated water from the indoor floor and replenish it into the throat 3, which has the advantages of simple structure and easy operation.

[0038] Preferably, the external liquid suction tube 61 can be a soft tube or a hard tube, and a suitable design can be selected according to actual needs.

[0039] like Figures 1 to 10 As shown, the external liquid suction section 6 of this embodiment further includes a water filter 62 provided on the free end of the external liquid suction pipe 61. The water filter 62 can effectively filter impurities in the accumulated water to prevent the impurities from clogging the pipe.

[0040] like Figures 1 to 10 As shown, the water filter 62 of this embodiment includes a filter housing 621 connected to the external liquid suction tube 61 and a filter screen 622 provided on the filter housing 621. Specifically, the filter housing 621 is installed at the free end of the external liquid suction tube 61 to ensure that the absorbed water flow first passes through the filter housing. The filter screen 622 is installed in the filter housing 621 and is specifically used to intercept impurities and particles in the water flow. In terms of design, the filter screen can effectively block larger particles. While maintaining a sufficient water flow speed, it does not affect the water absorption efficiency. Through effective filtration, the stability and continuity of the water flow are ensured, and the fire extinguishing operation is continuously supported.

[0041] Specifically, the filtering effect of the filter 622 can effectively prevent impurities from entering the pipeline, prevent pipeline blockage, ensure the normal operation of the equipment, reduce the maintenance requirements and costs caused by impurity blockage or equipment damage, and improve the continuous use efficiency of the equipment. In addition, the filtered water flow is cleaner, which helps to improve the quality and effect of the fire extinguishing water flow.

[0042] Furthermore, it reduces the wear of impurities on the inside of the equipment and extends the service life of the Venturi pipe joint and related equipment.

[0043] Furthermore, such a design effectively improves the adaptability of the Venturi pipe joint, enabling it to operate effectively in various complex fire scenes and ensuring that the water flow drawn from different water sources always maintains high quality.

[0044] like Figures 1 to 10 As shown, the filter screen 622 of this embodiment is arranged at the bottom of the filter housing 621 for preliminarily filtering impurities in the water. The bottom of the filter housing 621 is also provided with a plurality of support protrusions 623 extending downward. The plurality of support protrusions 623 can support the entire filter housing 621 to prevent the filter screen 622 from contacting and abutting the ground, thereby avoiding the situation where the filter screen 622 is attached to the ground and causing water flow obstruction.

[0045] Preferably, the plurality of support protrusions 623 are arranged at intervals, and there is a water inlet gap 624 between adjacent support protrusions 623, ensuring that water can smoothly enter the filter housing 621. Even when the filter housing 621 is placed flat or in contact with the ground, due to the design of the support protrusions 623, the part of the filter housing 621 with the filter screen 622 also has a certain gap with the ground, ensuring that the filter housing 621 can effectively absorb water.

[0046] Preferably, the filter housing 621 in this embodiment is in the shape of a trumpet that is narrow at the top and wide at the bottom. The trumpet-shaped design can naturally guide the water flow to the filter screen, thereby increasing the filtration efficiency. The wide lower structure can accommodate a larger filter screen area, increase the filtration capacity, and reduce the need for frequent cleaning. The larger contact area can further improve the filtration effect and ensure that more impurities are effectively intercepted.

[0047] Furthermore, the bottom of the trumpet-shaped filter housing 621 is wider, which helps to maintain stability underwater and is not easy to tip over or move. The support protrusions 623 further enhance its fixing effect to ensure that the filter screen does not contact the ground.

[0048] In other embodiments, multiple layers of filter screens can be provided inside the filter housing, with the aperture of each layer of filter screen gradually decreasing, thereby filtering impurities of different sizes in a graded manner. Such a design can improve the filtering accuracy and extend the service life of the main filter screen.

[0049] like Figures 1 to 10 As shown, the external liquid suction section 6 of this embodiment also includes a connecting component 7 provided between the external liquid suction tube 61 and the water filter 62, and the connecting component 7 includes a water pipe joint. Such a design facilitates the loading and unloading of the water filter 62 and the external liquid suction tube 61, simplifies the maintenance and cleaning process, and allows the user to easily replace or clean the water filter 62.

[0050] Preferably, in other embodiments, the connecting component 7 includes a fluid universal joint, which allows the external pipette 61 and the water filter 62 to rotate and move freely in multiple directions to adapt to forces in various directions generated during the pipetting process. The fluid universal joint prevents the movement of the external pipette 61 and the water filter 62 during the pipetting process from causing overturning through free rotation and flexible adjustment. The anti-overturning design ensures that the water filter is always in the correct working position during the pipetting process, avoiding the situation where air is sucked into the external pipette to block the water flow, thereby ensuring the continuity and efficiency of the pipetting.

[0051] Preferably, the fluid universal joint includes a connecting section 71, a water supply section 72 and a universal section 73, the connecting section 71 is connected to the external liquid suction tube 61, the water supply section 72 is connected to the water filter 62, and the universal section 73 is arranged between the connecting section 71 and the water supply section 72. The universal section 73 can change the angle between the connecting section 71 and the water supply section 72 so that the external liquid suction tube 61 and the water filter 62 can rotate and move freely in multiple directions.

[0052] Furthermore, the water filter has a certain weight, and the weight of the water filter itself can help it remain stable in the water and is not easily moved by external forces. The fluid universal joint allows the water filter to move and rotate freely in multiple directions to adapt to changes in external forces. By utilizing its own weight and the fluid universal joint, even if the external suction tube is dragged, the water filter can still maintain the correct position to a certain extent. The stable position of the water filter can prevent air from entering the pipeline, ensuring that the water flow is not interrupted. Through the stable position of the water filter, efficient water flow is continuously provided, enhancing the fire extinguishing effect.

[0053] Preferably, the universal section 73 includes a universal ball head 731 , and a water outlet hole 732 is provided in the universal ball head, so that the external suction pipe 61 can absorb the water filtered by the water filter 62 through the water outlet hole 732 .

[0054] Preferably, the universal section 73 further includes a spherical connecting portion 733 that matches the universal ball head 731.

[0055] The universal ball head 731 can rotate along the inner wall track of the spherical connecting portion 733 , thereby changing the angle between the external liquid suction tube 61 and the water filter 62 .

[0056] Preferably, when the spherical connecting part 733 is provided on the connecting section 71, the universal ball head 731 is provided on the water supply section 72; when the spherical connecting part 733 is provided on the water supply section 7, the universal ball head 731 is provided on the connecting section 71. The appropriate design can be selected according to actual needs.

[0057] Preferably, the fluid universal joint may also adopt the following structure:

[0058] The elastic joint design is made of flexible materials, which enables the joint to bend and twist within a certain range, providing multi-directional adaptability.

[0059] The swivel joint adopts a multi-layer joint design, allowing multiple angles of rotation while maintaining sealing.

[0060] Telescopic joints have a telescopic mechanism added to the joint, allowing for adjustment in length to suit different operating environments. The appropriate design can be selected based on actual needs.

[0061] like Figures 1 to 10 As shown, the external liquid suction section 6 of this embodiment also includes a buoyancy component 8 provided on the water filter 62. The buoyancy component 8 can provide buoyancy for the water filter 62 placed in the indoor water through the buoyancy of the buoyancy material, so that the water filter 62 is suspended at a certain water depth. This can ensure that when absorbing water in deep water areas, the water filter does not touch the bottom, and avoids blockage or damage caused by the filter screen contacting the ground.

[0062] Furthermore, the buoyancy component 8 ensures that the water filter is suspended in the water and does not touch the bottom, thereby effectively preventing the filter from being blocked and improving the water absorption efficiency.

[0063] Specifically, the buoyancy component 8 can ensure the stability of the water filter in the water and prevent the water filter from tipping over due to water flow or operational errors. The design of the buoyancy component 8 enables the water filter to move and adjust freely in the water, which is flexible and convenient to operate, thereby improving the user experience.

[0064] like Figures 1 to 10 As shown, the buoyancy assembly 8 of this embodiment includes an adjustable airbag and a first connecting member. The adjustable airbag is connected to the water filter 62 via the first connecting member. The immersion depth of the water filter can be adjusted by adjusting the buoyancy of the adjustable airbag.

[0065] Specifically, the adjustable airbag can adjust the buoyancy by inflating or deflating. By changing the volume of air inside the airbag, the buoyancy of the airbag is adjusted, thereby adjusting the submersion depth of the water filter in the water.

[0066] Specifically, the adjustable airbag is firmly connected to the water filter 62 through the first connecting member to ensure that the airbag will not fall off during the buoyancy adjustment process, thereby maintaining the stability of the water filter in the water.

[0067] Preferably, the first connecting member can be in the form of a snap, thread, hook, etc., which can firmly connect the adjustable airbag to the water filter 62, ensuring a firm connection between the adjustable airbag and the water filter, while allowing the airbag buoyancy adjustment to directly affect the water filter.

[0068] Specifically, the user fills air into the adjustable airbag to increase the volume and buoyancy of the airbag, causing the water filter to float up and reduce its immersion in water. The user releases air from the adjustable airbag to reduce the volume and buoyancy of the airbag, causing the water filter to sink and increase its immersion in water. The buoyancy of the airbag can be adjusted by inflating or deflating the airbag according to actual needs, thereby accurately controlling the immersion depth of the water filter, preventing the water filter from touching the bottom or floating too high, and ensuring the best water absorption effect.

[0069] Furthermore, by adjusting the buoyancy, the water filter is prevented from touching the bottom in deep water, thus avoiding clogging or damage of the filter screen, and improving the durability and reliability of the equipment.

[0070] Furthermore, the design of the buoyancy component 8 simplifies the operation process. The user can easily adjust the buoyancy by inflating or deflating the air bag to achieve flexible operation. The buoyancy adjustment function of the adjustable air bag enables the equipment to adapt to different water depth environments, thereby improving the versatility and applicability of the equipment.

[0071] Preferably, in other embodiments, the buoyancy assembly 8 may also adopt the following structure:

[0072] Fixed buoyancy blocks are usually made of lightweight materials such as foam plastic, polystyrene or other buoyant materials. These buoyancy blocks can be directly fixed on the water filter 62 to provide constant buoyancy and ensure that the water filter does not touch the bottom. They are suitable for scenarios where frequent buoyancy adjustment is not required and have the advantages of simple structure and low cost.

[0073] The adjustable buoyancy block is composed of multiple small buoyancy blocks that can be removed or added. Each buoyancy block can be fixed on the water filter 62 through a connector. The user can adjust the buoyancy by increasing or decreasing the number of buoyancy blocks as needed, flexibly adjusting the buoyancy size to adapt to different water depth requirements. By increasing or decreasing the buoyancy blocks, the water immersion depth of the water filter can be accurately controlled. The adjustment is flexible, the adaptability is strong, no complicated equipment and tools are required, and the operation is simple.

[0074] The telescopic buoyancy column is composed of multiple retractable buoyancy units. The length is adjusted through a mechanical structure. It usually uses waterproof materials and mechanical locking devices to ensure reliability. The length of the buoyancy column is adjusted through the telescopic mechanism, which changes the buoyancy point and the water immersion depth of the water filter. It is suitable for scenarios that require precise control of buoyancy.

[0075] The inflatable buoyancy chamber is composed of multiple independent inflatable chambers. Each chamber can be inflated or deflated separately. It uses waterproof materials and inflation and deflation valves. The buoyancy is adjusted by controlling the inflation volume of each inflatable chamber to control the water immersion depth of the water filter.

[0076] The buoyancy ring can be one or more annular buoyancy bodies installed around the water filter 62. The material can be foam, plastic or other lightweight materials with buoyancy. The buoyancy ring can provide surrounding buoyancy to ensure that the water filter remains level and stable in the water. The buoyancy can be changed by increasing or decreasing the number of buoyancy rings or adjusting the position of the rings to provide stable buoyancy and ensure the horizontal position of the water filter. The appropriate design can be selected according to actual needs.

[0077] like Figures 1 to 10 As shown, a second connecting member is provided between the external liquid suction section 6 and the throat 3 of this embodiment, which enables the two to be detachably connected. This design allows the external liquid suction section 6 and the throat 3 to be easily disassembled and assembled, and is convenient for cleaning, maintenance and replacement.

[0078] Preferably, the second connecting member can be connected by a thread, and the connection and disassembly of the external suction section 6 and the throat 3 can be achieved by tightening or loosening the thread; a snap-on structure can also be used to achieve quick connection and disassembly through simple insertion and removal actions; a quick connector with a sealing ring can also be used to achieve reliable connection and quick disassembly through docking and locking mechanisms. The appropriate design can be selected according to actual needs.

[0079] The user can select a suitable second connection member according to the needs, connect the external liquid suction section 6 and the throat 3, and achieve a stable connection by rotating the thread, inserting the buckle or connecting the quick connector.

[0080] Specifically, when the external liquid suction segment 6 needs to be cleaned, maintained or replaced, the user can easily remove the external liquid suction segment 6 from the throat 3 through the second connecting component. The detachable design makes the maintenance and replacement of the external liquid suction segment 6 more convenient, improves the maintenance efficiency and service life of the equipment, and the user can quickly replace the external liquid suction segment 6 according to different usage needs, thereby expanding the function of the equipment and diversifying the application scenarios.

[0081] like Figures 1 to 10 As shown, the contraction section 2 of this embodiment is detachably connected to the male water inlet section 1 and the throat 3, respectively, and the diffusion section 4 is detachably connected to the mother belt water outlet section 5 and the throat 3, respectively. With such a design, the entire joint structure is a combined structure. When a part is damaged, it can be replaced, or it can be replaced with parts of different sizes to adapt to water hoses, water guns and external suction tubes of different sizes.

[0082] Specifically, the contraction section 2 is detachably connected to the male water inlet section 1 and the throat 3, respectively, and can be connected in the form of threaded connection, snap connection or quick connector to achieve fast and stable connection and disassembly. The contraction section 2 is detachably connected to the male water inlet section 1 and the throat 3, respectively, to achieve contraction and guidance of the water flow, ensure the stability of the water flow and increase the flow rate, improve the maintainability and flexibility of the equipment, any part that is damaged can be replaced separately, reducing maintenance costs, adapting to water inlet sections and throats of different sizes and specifications, and enhancing the versatility of the equipment.

[0083] Specifically, the detachable connection between the diffuser section 4 and the mother belt water outlet section 5 and the throat 3 can also be achieved by threaded connection, snap connection or quick connector, etc., to achieve reliable connection and disassembly.

[0084] The diffuser section 4 is detachably connected to the mother belt water outlet section 5 and the throat 3 to achieve diffusion and guidance of the water flow, ensuring uniform distribution and deceleration of the water flow. Users can conveniently achieve a firm connection and easy disassembly of the diffuser section 4 with other sections by rotating the thread, inserting the buckle or locking the quick connector, thereby improving the replaceability of the equipment. Any damaged part can be quickly replaced, reducing downtime, and being able to adapt to water outlet sections and throats of different sizes and specifications, thereby enhancing the applicability of the equipment.

[0085] Furthermore, the various parts are connected in a detachable manner, which allows for quick disassembly and replacement, significantly improving the maintainability and repair efficiency of the equipment. Only the damaged parts need to be replaced, avoiding replacement of the entire equipment, reducing maintenance costs and waste of resources. By replacing parts of different sizes, the equipment can adapt to water hoses, water guns and external suction tubes of different specifications and sizes, enhancing the versatility and adaptability of the equipment. The detachable connection design makes operation easier and faster, reduces installation and disassembly time, and improves work efficiency.

[0086] Preferably, the diffusion section 4 and the contraction section 2 of this embodiment are both cylindrical. The cylindrical design is simple to manufacture, easy to process and install, reducing production costs and complexity. The cylindrical design matches other cylindrical connecting components to ensure the consistency and stability of the entire system structure. During the installation process, a quick and stable connection is achieved through a standardized cylindrical interface.

[0087] In other embodiments, the diffuser section 4 and the contraction section 2 are both trumpet-shaped, which are similar to or identical to the shapes of the corresponding diffuser water channel 41 and contraction water channel 21 .

[0088] Specifically, the contraction section 2 and the contraction waterway 21 are designed to be trumpet-shaped, so that the water flow can gradually contract before entering the throat 3. The trumpet-shaped structure gradually reduces the cross-sectional area of ​​the water flow, thereby increasing the flow rate. The trumpet-shaped design helps to reduce flow resistance, quickly increase the water flow speed, and enhance the water flow's jetting ability. The optimized trumpet shape makes the water flow contraction process more uniform, reducing turbulence and energy loss.

[0089] Specifically, the trumpet-shaped smooth curved surface further reduces the resistance of water flow and improves the flow efficiency of the fluid.

[0090] Preferably, the diffusion section 4 and the diffusion water channel 41 are designed to be trumpet-shaped, so that the water flow can gradually diffuse after leaving the throat 3. The trumpet-shaped structure gradually increases the cross-sectional area of ​​the water flow, thereby reducing the flow rate and ensuring uniform distribution of the water flow.

[0091] Furthermore, the smooth trumpet-shaped surface reduces water turbulence and energy loss, ensuring a smooth transition of the fluid. The optimized trumpet shape helps reduce energy loss during the diffusion process and improves fluid utilization efficiency.

[0092] The above-mentioned trumpet-shaped design can optimize the contraction and diffusion process of the water flow, improve the fluid mechanics performance of the system, and enhance the water flow efficiency. The trumpet-shaped design makes the water flow path more optimized, ensuring the uniformity and stability of the water flow during the contraction and diffusion process.

[0093] Specifically, the design of the trumpet-shaped structure is consistent with the shapes of the diffuser section 4 and the contraction section 2, which facilitates manufacturing and installation and improves the consistency and reliability of the product.

[0094] The above examples are merely used to further illustrate the technical content of the present invention for easier understanding by the reader. However, they do not limit the implementation of the present invention to these examples. Any technical extension or reinvention based on the present invention is protected by the present invention. The scope of protection of the present invention shall be determined by the claims.

Claims

1. A portable venturi pipe joint, characterized in that: The invention comprises a male water inlet section (1), a contraction section (2), a throat (3), a diffusion section (4) and a mother belt water outlet section (5) which are connected in sequence. The male water inlet section (1) can be connected to a fire hose, and the mother belt water outlet section (5) can be connected to a fire hose. A contraction water channel (21) is provided in the contraction section (2), and a diffusion water channel (41) is provided in the diffusion section (4). Both the contraction water channel (21) and the diffusion water channel (41) are in a shape that gradually contracts toward the throat (3). The side wall of the throat (3) is provided with an external liquid suction section (6) which is connected thereto. The external liquid suction section (6) can absorb indoor accumulated water and replenish it into the throat (3).

2. A portable venturi tube joint according to claim 1, characterized in that: The external liquid suction section (6) comprises an external liquid suction tube (61) connected to the throat (3).

3. The portable venturi tube connector according to claim 2, characterized in that: The external liquid suction section (6) further comprises a water filter (62) provided on the free end of the external liquid suction pipe (61), wherein the water filter (62) is capable of filtering impurities in the indoor accumulated water.

4. The portable venturi tube connector according to claim 3, characterized in that: The water filter (62) comprises a filter housing (621) in communication with the external liquid suction pipe (61) and a filter screen (622) provided on the filter housing (621).

5. The portable venturi tube connector according to claim 4, characterized in that: The filter screen (622) is provided at the bottom of the filter housing (621). The bottom of the filter housing (621) is further provided with a plurality of support protrusions (623) extending downwards. The plurality of support protrusions (623) can prevent the filter screen (622) from contacting the ground. The plurality of support protrusions (623) are arranged at intervals, and there is a water inlet gap (624) between adjacent support protrusions (623).

6. The portable venturi pipe joint according to claim 3, characterized in that: The external liquid suction section (6) further comprises a connecting assembly (7) provided between the external liquid suction pipe (61) and the water filter (62); the connecting assembly (7) comprises a water pipe joint, or the connecting assembly (7) comprises a fluid universal joint.

7. A portable venturi pipe joint according to any one of claims 3 to 6, characterized in that: The external liquid suction section (6) further comprises a buoyancy component (8) provided on the water filter (62), wherein the buoyancy component (8) is capable of providing buoyancy for the water filter (62) placed in the accumulated water in the room.

8. The portable venturi tube connector according to claim 7, characterized in that: The buoyancy component (8) comprises an adjustable airbag and a first connecting member, and the adjustable airbag is connected to the water filter (62) via the first connecting member.

9. The portable venturi tube connector according to claim 1, characterized in that: A second connecting member is provided between the external liquid suction section (6) and the throat (3), enabling the two to be detachably connected.

10. The portable venturi tube connector according to claim 1, characterized in that: The contraction section (2) is detachably connected to the male water inlet section (1) and the throat (3), and the diffusion section (4) is detachably connected to the mother belt water outlet section (5) and the throat (3).