Water level adjusting device
By detecting water level changes with a float ball and automatically adjusting the water level using the first and second adjustment components, the problem of existing water level adjustment equipment relying on manual operation and high costs is solved, achieving automated and low-cost water level control.
Patent Information
- Application Number
- CN202520786292.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-23
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-23
AI Technical Summary
Existing water level regulation equipment relies on manual operation, which increases labor costs, while intelligent equipment is expensive.
The system uses a float to detect water level changes and automatically adjusts the water level through a first adjustment component and a second adjustment component, including a positioning rod, a connecting rod, a float, a first water supply pipe, and a second water supply pipe, to achieve automated water level control.
It achieves automated water level regulation, reduces equipment costs, minimizes manual intervention, and lowers labor costs.
Smart Images

Figure CN223955997U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to pool detection technical field especially relates to a water level regulating equipment. BACKGROUND
[0002] The water storage pool is a water storage structure for storing water resources, which is commonly used in the fields of agricultural irrigation, industrial water and the like, and a water level regulating equipment is usually arranged in the water storage pool to control the rise and fall of the water level in the water storage pool, so as to ensure that the water storage pool can normally operate according to the design requirements.
[0003] In the existing water level regulating equipment, the relatively traditional water level regulating equipment still relies on the staff to manually supplement water or adjust according to the external information such as weather and environment, which increases the labor cost, and the intelligent water level regulating system has good regulating effect and can realize real-time adjustment of the water level, but has the problem of high equipment cost.
[0004] Therefore, a water level regulating equipment capable of reducing cost and realizing real-time adjustment of the water level height is proposed to solve the above problems. UTILITY MODEL CONTENTS
[0005] The utility model aims at the above-mentioned deficiencies and provides a water level regulating equipment capable of realizing real-time adjustment of the water level height while reducing cost.
[0006] To solve the above technical problems, the utility model adopts the following technical scheme: a water level regulating equipment for a water storage pool, comprising:
[0007] The measuring component comprises a positioning rod vertically arranged in the water storage pool, and the top height of the positioning rod is the same as the predetermined water level height of the fluid medium, and a connecting rod is rotationally arranged at the top of the positioning rod, and a floating ball capable of floating on the water surface of the fluid medium is arranged on the connecting rod.
[0008] The adjusting component is arranged in the water storage pool and comprises a first adjusting assembly arranged on one side of the positioning rod, one end of the first adjusting assembly is connected with the connecting rod, and the first adjusting assembly is used for pumping out the fluid medium of the water storage pool, and the adjusting component further comprises a second adjusting assembly arranged on the other side of the positioning rod, one end of the second adjusting assembly is connected with the connecting rod, and the second adjusting assembly is used for conveying the fluid medium into the water storage pool.
[0009] Further, the first adjusting assembly comprises a first water pipe vertically arranged in the water storage pool, a first connecting barrel in communication with the inside of the water storage pool is arranged at the top of the first water pipe, a first adjusting block connected with the rotating connection position of the connecting rod and the positioning rod is arranged in the first connecting barrel, and the first adjusting block is an arc-shaped block.
[0010] Further, the second adjusting assembly comprises a second water pipe vertically arranged in the water storage pool, the bottom of the second water pipe is in communication with an external water conveying component, a second connecting barrel in communication with the inside of the water storage pool is arranged at the top of the second water pipe, a second adjusting block connected with the rotating connection position of the connecting rod and the positioning rod is arranged in the second connecting barrel, the second adjusting block is an arc-shaped block, and the arc-shaped missing part of the second adjusting block is arranged opposite to the arc-shaped missing part of the first adjusting block; when the arc surface end of the second adjusting block is in contact with the top of the second water pipe, the second adjusting block is used for blocking the first water pipe, and the first adjusting block is separated from the first connecting barrel.
[0011] Further, the positioning rod is a telescopic rod, and the top of the telescopic end of the connecting rod is rotatably connected with the telescopic end of the positioning rod, and the positioning rod is used for adjusting the position height of the connecting rod.
[0012] Further, the first water pipe and the second water pipe are telescopic sleeves, the first connecting barrel and the second connecting barrel are arranged at the top of the telescopic end of the corresponding water pipe respectively, when the telescopic end of the positioning rod moves up and down, the connecting rod drives each water pipe to move together through the first connecting barrel and the second connecting barrel.
[0013] Further, the second adjusting assembly further comprises a trigger unit arranged in the second connecting barrel, the trigger unit is signal-connected with a control unit, the control unit is signal-connected with a water conveying component, when the second adjusting block is in contact with the trigger unit, the trigger unit sends a signal of conveying fluid medium to the water conveying component through the control unit.
[0014] Further, the first connecting barrel and the second connecting barrel are respectively provided with sieve holes for preventing impurities from entering the inside of the corresponding connecting barrel.
[0015] The beneficial effects of the utility model are as follows:
[0016] The utility model discloses, through the water level height variation of floating ball detection fluid medium and drive first adjusting assembly or second adjusting assembly work, when the water level height of fluid medium is higher than the predetermined value, and the floating ball rises with water level and drives the transmission rod to rotate upwards, first adjusting assembly will fluid medium of water storage pool draw out now, until the water level of fluid medium drops to the predetermined value, when the water level height of fluid medium is lower than the predetermined value, and the floating ball drops with water level and drives the transmission rod to rotate downwards, second adjusting assembly transports fluid medium to water storage pool now, until the water level of fluid medium rises to the predetermined value, compared with the water level regulation system of prior art, the equipment cost is lower, and the whole process does not need manual intervention, reduces manpower cost. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is the perspective view of water level regulation equipment of the utility model;
[0018] Figure 2 It is the structure view of first adjusting assembly;
[0019] Figure 3 It is the structure view of second adjusting assembly;
[0020] Figure 4 It is Figure 3 The enlarged view of A in middle.
[0021] In the figure:
[0022] 01, water storage pool;1, measuring part;11, positioning rod;12, connecting rod;13, floating ball;2, adjusting part;21, first adjusting assembly;211, first water pipe;212, first connecting barrel;213, first adjusting block;22, second adjusting assembly;221, second water pipe;222, second connecting barrel;223, second adjusting block;23, trigger unit;3, screen hole. DETAILED DESCRIPTION
[0023] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model, and obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. The embodiments in the application and the features in the embodiments can be combined with each other without conflict. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the protection scope of the utility model.
[0024] Please refer to Figures 1-4 The utility model discloses a water level regulation equipment for water storage pool 01, comprising;
[0025] The measuring component 1 comprises a positioning rod 11 vertically arranged in the water storage pool 01, and the top of the positioning rod 11 is at the same height as the predetermined water level of the fluid medium, the top of the positioning rod 11 is rotationally provided with a connecting rod 12, the connecting rod 12 is provided with a float ball 13 capable of floating on the water surface of the fluid medium, the float ball 13 is used for measuring the water level depth and is capable of moving up and down with the change of the water level.
[0026] The adjusting component 2 is arranged in the water storage pool 01 and comprises a first adjusting assembly 21 arranged on one side of the positioning rod 11, one end of the first adjusting assembly 21 is connected with the rotating connection position of the connecting rod 12 and the positioning rod 11, and the first adjusting assembly 21 is used for pumping out the fluid medium in the water storage pool 01, and the adjusting component 2 further comprises a second adjusting assembly 22 arranged on the other side of the positioning rod 11, one end of the second adjusting assembly 22 is connected with the rotating connection position of the connecting rod 12 and the positioning rod 11, and the other end of the second adjusting assembly 22 is connected with an external water conveying component (not shown in the figure), and the second adjusting assembly 22 is used for conveying the fluid medium into the water storage pool 01.
[0027] In the embodiment, when the water level of the fluid medium in the water storage pool 01 reaches a predetermined value, the float ball 13 is floated on the water surface of the fluid medium under the influence of the buoyancy, at this time, the float ball 13 is at the same height as the top of the positioning rod 11, and the connecting rod 12 is vertically arranged with the positioning rod 11, when the content of the fluid medium in the water storage pool 01 is higher than the predetermined value, the water level of the fluid medium rises and drives the float ball 13 to move upwards, at this time, the connecting rod 12 rotates upwards and pumps out the fluid medium in the water storage pool 01 through the first adjusting assembly 21, until the water level of the fluid medium drops to the predetermined height, the connecting rod 12 is vertically arranged with the positioning rod 11 again, at this time, the first adjusting assembly 21 stops working, when the content of the fluid medium in the water storage pool 01 is lower than the predetermined value, the water level of the fluid medium drops and drives the float ball 13 to move downwards, at this time, the connecting rod 12 rotates downwards and conveys the fluid medium into the water storage pool 01 through the second adjusting assembly 22, until the water level of the fluid medium rises to the predetermined height, and then the connecting rod 12 stops working.
[0028] In the embodiment, when the water level of the fluid medium in the water storage pool 01 reaches a predetermined value, the float ball 13 is floated on the water surface of the fluid medium under the influence of the buoyancy, at this time, the float ball 13 is at the same height as the top of the positioning rod 11, and the connecting rod 12 is vertically arranged with the positioning rod 11, when the content of the fluid medium in the water storage pool 01 is higher than the predetermined value, the water level of the fluid medium rises and drives the float ball 13 to move upwards, at this time, the connecting rod 12 rotates upwards and pumps out the fluid medium in the water storage pool 01 through the first adjusting assembly 21, until the water level of the fluid medium drops to the predetermined height, the connecting rod 12 is vertically arranged with the positioning rod 11 again, at this time, the first adjusting assembly 21 stops working, when the content of the fluid medium in the water storage pool 01 is lower than the predetermined value, the water level of the fluid medium drops and drives the float ball 13 to move downwards, at this time, the connecting rod 12 rotates downwards and conveys the fluid medium into the water storage pool 01 through the second adjusting assembly 22, until the water level of the fluid medium rises to the predetermined height, and then the connecting rod 12 stops working.
[0029] It should be noted that the fluid medium can be water, oil and other liquid medium.
[0030] In an embodiment, the first adjusting assembly 21 comprises a first water pipe 211 vertically arranged in the water storage pool 01, the bottom of the first water pipe 211 penetrates through the water storage pool 01 and is in communication with an external storage pool (which can also be a downstream river or lake), the top of the first water pipe 211 is provided with a first connecting cylinder 212, the first connecting cylinder 212 is also provided with an opening in communication with the inside of the water storage pool 01, the first connecting cylinder 212 is provided with a first adjusting block 213 connected with the rotating connection position of the connecting rod 12 and the positioning rod 11, and the first adjusting block 213 is an arc-shaped block, when the arc-shaped end of the first adjusting block 213 is in contact with the top of the first water pipe 211, the first adjusting block 213 is used for plugging the first water pipe 211, when the connecting rod 12 rotates, the first adjusting block 213 is driven to rotate together and controls the opening and closing of the first water pipe 211.
[0031] In this way, when the water level is higher than the predetermined value, the connecting rod 12 rotates upwards to drive the first adjusting block 213 to rotate together, at this time, the arc-shaped end of the first adjusting block 213 is away from the top of the first water pipe 211, at this time, the first water pipe 211 is opened, the fluid medium in the water storage pool 01 enters the first sleeve 215 through the opening in the first connecting cylinder 212, and then flows out of the water storage pool 01 through the first water pipe 211, until the water level in the water storage pool 01 decreases to the predetermined value, at this time, the connecting rod 12 drives the first adjusting block 213 to rotate downwards, until the connecting rod 12 is vertically arranged with the positioning rod 11 again, at this time, the arc-shaped end of the first adjusting block 213 is in contact with the first water pipe 211 and plugs the first water pipe 211, and the fluid medium no longer flows into the first water pipe 211.
[0032] In an embodiment, the second adjusting assembly 22 comprises a second water pipe 221 vertically arranged in the water storage pool 01, the bottom of the second water pipe 221 penetrates through the water storage pool 01 and is in communication with an external water delivery component, the water delivery component is used for delivering fluid medium into the second water pipe 221, the top of the second water pipe 221 is provided with a second connecting cylinder 222, the second connecting cylinder 222 is provided with an opening in communication with the inside of the water storage pool 01, the second connecting cylinder 222 is provided with a second adjusting block 223 connected with the rotating connection position of the connecting rod 12 and the positioning rod 11, the second adjusting block 223 is an arc-shaped block, and the arc-shaped missing part of the second adjusting block 223 is arranged opposite to the arc-shaped missing part of the first adjusting block 213, when the arc-shaped end of the second adjusting block 223 is in contact with the top of the second water pipe 221, the second adjusting block 223 is used for plugging the first water pipe 211, at the same time, the first adjusting block 213 is separated from the first connecting cylinder 212, when the connecting rod 12 rotates, the second adjusting block 223 is driven to rotate together and controls the opening and closing of the second water pipe 221.
[0033] In this way, when the water level is lower than the predetermined value, the floating ball 13 drives the connecting rod 12 to rotate downward and drives the second adjusting block 223 to rotate, until the arc surface end of the second adjusting block 223 is away from the top opening of the second water delivery pipe 221, at this time the second water delivery pipe 221 is opened, the fluid medium in the second water delivery pipe 221 flows into the water storage pool 01 through the opening of the second connecting cylinder 222, thereby water supply to the water storage pool 01, until the water level returns to the predetermined value, at this time the connecting rod 12 drives the second adjusting block 223 to rotate upward, until the second adjusting block 223 blocks the second water delivery pipe 221, at this time the fluid medium no longer flows into the water storage pool 01, and the water supply is stopped.
[0034] It should be noted that when the connecting rod 12 rotates downward, the first adjusting block 213 can still block the first water delivery pipe 211, so as to avoid that the first water delivery pipe 211 is accidentally opened when the water storage pool 01 is water supplied, and when the connecting rod 12 rotates upward, the second adjusting block 223 can still block the second water delivery pipe 221, so as to avoid that the second water delivery pipe 221 is accidentally opened when the water storage pool 01 is drained.
[0035] In an embodiment, the positioning rod 11 is a telescopic rod, and the connecting rod 12 is rotationally connected to the top of the telescopic end of the positioning rod 11, and the positioning rod 11 is used to adjust the position height of the connecting rod 12,
[0036] The first water delivery pipe 211 and the second water delivery pipe 221 are both telescopic sleeves, the first connecting cylinder 212 is arranged at the top of the telescopic end of the first water delivery pipe 211, and the second connecting cylinder 222 is arranged at the top of the telescopic end of the second water delivery pipe 221, when the telescopic end of the positioning rod 11 moves up and down, the connecting rod 12 drives each water delivery pipe to move through the first connecting cylinder 212 and the second connecting cylinder 222.
[0037] In this way, when it is necessary to adjust the predetermined water level of the fluid medium in the water storage pool 01, the positioning rod 11 is lifted according to the predetermined water level, until the top of the telescopic end of the positioning rod 11 corresponds to the predetermined water level, so that when the floating ball 13 detects that the water level is at the predetermined value, the connecting rod 12 is always vertically arranged with the positioning rod 11, and at the same time, when the positioning rod 11 moves vertically, it drives each water delivery pipe to move through the first connecting cylinder 212 and the second connecting cylinder 222, thereby ensuring that the first adjusting assembly 21 and the second adjusting assembly 22 can normally work, and improving the applicability.
[0038] In an embodiment, the second adjusting assembly 22 further comprises a triggering unit 23 arranged in the second connecting cylinder 222, the triggering unit 23 is signal connected with a control unit (not shown in the figure), and the control unit is signal connected with a water delivery component, when the second adjusting block 223 contacts with the triggering unit 23, the triggering unit 23 sends a signal of conveying fluid medium to the water delivery component through the control unit.
[0039] Thus, when the water level is lower than the predetermined value, the second transmission rod 223 drives the second adjusting block 223 to rotate in the rotating direction of the connecting rod 12 until the second adjusting block 223 leaves the second water pipe 221, and meanwhile, the second adjusting block 223 contacts the triggering unit 23, the triggering unit 23 sends a signal of conveying fluid medium to the water conveying component through the control unit, thereby water supply is performed on the water storage pool 01, when the water level returns to the predetermined value, the second adjusting block 223 blocks the second water pipe 221 again, and meanwhile, the second adjusting block 223 is separated from the triggering unit 23, at this time, the triggering unit 23 no longer sends a signal to the control unit, and the water conveying component stops water supply, thereby power consumption is saved.
[0040] It should be noted that when the connecting rod 12 rotates upward, the second connecting cylinder 222 has enough space for the second adjusting block 223 to rotate in the rotating direction of the connecting rod 12 and not to contact the triggering unit 23, thereby avoiding that the triggering unit 23 is accidentally triggered when the water storage pool 01 is drained.
[0041] Preferably, the triggering unit 23 can adopt a momentary switch in the prior art.
[0042] In an embodiment, the openings of the first connecting cylinder 212 and the second connecting cylinder 222 are respectively provided with sieve holes 3 for preventing impurities from entering the corresponding connecting cylinder.
[0043] Thus, when the water storage pool 01 stores enough fluid medium, the sieve holes 3 are used for preventing large-volume impurities in the fluid medium from entering the corresponding connecting cylinder, thereby ensuring that the adjusting blocks can normally work.
[0044] It should be noted that if the embodiments of the utility model have directionality indication (such as up, down, left, right, front, back, etc.), the directionality indication is only used for explaining the relative position relationship, movement condition, etc. between components in a certain specific posture (as shown in the drawings), if the specific posture changes, the directionality indication also changes accordingly.
[0045] In addition, if the embodiments of the utility model have the description of "first", "second" and the like, the description of "first", "second" and the like is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one of the features. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on that a person skilled in the art can realize it, when the combination of technical solutions appears to be contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the utility model.
[0046] In addition, "a plurality of" means two or more.
[0047] The above merely provides the preferred embodiments of the present application, and is not intended to limit the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall fall within the protection scope of the present application.
Claims
1. A water level regulating device for a water storage tank (01) characterized in that, The utility model relates to a water storage tank height automatic adjusting device, including: a measuring component (1) comprising a positioning rod (11) vertically arranged in the water storage tank (01), the top of the positioning rod (11) being at the same height as the predetermined water level of the fluid medium, a connecting rod (12) being rotatably arranged at the top of the positioning rod (11), and a float ball (13) capable of floating on the water surface of the fluid medium being arranged on the connecting rod (12); an adjusting component (2) arranged in the water storage tank (01), comprising a first adjusting assembly (21) arranged on one side of the positioning rod (11), one end of the first adjusting assembly (21) being connected to the connecting rod (12) for pumping the fluid medium in the water storage tank (01), and further comprising a second adjusting assembly (22) arranged on the other side of the positioning rod (11), one end of the second adjusting assembly (22) being connected to the connecting rod (12), and the second adjusting assembly (22) being used for delivering the fluid medium into the water storage tank (01).
2. The water level regulating device according to claim 1, wherein: The first adjusting assembly (21) comprises a first water delivery pipe (211) vertically arranged in the water storage tank (01), the top of the first water delivery pipe (211) being provided with a first connecting cylinder (212) in communication with the inside of the water storage tank (01), the first connecting cylinder (212) being provided with a first adjusting block (213) connected to the rotating connection position of the connecting rod (12) and the positioning rod (11), and the first adjusting block (213) being an arc-shaped block, the first adjusting block (213) being used for blocking the first water delivery pipe (211) when the arc-shaped end of the first adjusting block (213) is in contact with the top of the first water delivery pipe (211).
3. The water level regulating device of claim 2, wherein: The second adjusting assembly (22) comprises a second water delivery pipe (221) vertically arranged in the water storage tank (01), the bottom of the second water delivery pipe (221) being in communication with an external water delivery component, and the top of the second water delivery pipe (221) being provided with a second connecting cylinder (222) in communication with the inside of the water storage tank (01), the second connecting cylinder (222) being provided with a second adjusting block (223) connected to the rotating connection position of the connecting rod (12) and the positioning rod (11), the second adjusting block (223) being an arc-shaped block, and the arc-shaped missing part of the second adjusting block (223) being arranged opposite to the arc-shaped missing part of the first adjusting block (213), the second adjusting block (223) being used for blocking the first water delivery pipe (211) when the arc-shaped end of the second adjusting block (223) is in contact with the top of the second water delivery pipe (221), and the first adjusting block (213) being separated from the first connecting cylinder (212).
4. The water level regulating device according to claim 3, wherein: The positioning rod (11) is a telescopic rod, the connecting rod (12) is rotatably connected to the top of the telescopic end of the positioning rod (11), and the positioning rod (11) is used for adjusting the position height of the connecting rod (12). And the first water pipe (211) and the second water pipe (221) are both telescopic sleeves, the first connecting cylinder (212) and the second connecting cylinder (222) are respectively arranged at the top end of the telescopic end of the corresponding water pipe, when the telescopic end of the positioning rod (11) moves up and down, the connecting rod (12) drives each water pipe to move through the first connecting cylinder (212) and the second connecting cylinder (222).
5. The water level regulating device according to claim 3, wherein: The second adjusting assembly (22) further comprises a trigger unit (23) arranged in the second connecting cylinder (222), the trigger unit (23) is signal connected with a control unit, the control unit is signal connected with a water delivery component, when the second adjusting block (223) contacts with the trigger unit (23), the trigger unit (23) sends a signal of conveying fluid medium to the water delivery component through the control unit.
6. The water level regulating device of claim 3, wherein: The first connecting cylinder (212) and the second connecting cylinder (222) are respectively provided with a sieve hole (3) at the opening for preventing impurities from entering the corresponding connecting cylinder.