Reservoir level detector

By employing an arc-shaped baffle and inner and outer float ring structures in the reservoir water level detector, the influence of floating objects is isolated, solving the problem of traditional water level detectors being easily interfered with by floating objects, and achieving accuracy and stability in water level monitoring.

CN223910332UActive Publication Date: 2026-02-13ZHAOYUAN JINDU WATER CONSERVANCY SURVEY & DESIGN CO LTD
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Patent Information

Application Number
CN202520711617.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-15
Publication Date
2026-02-13
Estimated Expiration
2035-04-15

AI Technical Summary

Technical Problem

Traditional reservoir water level detectors are easily affected by floating debris, leading to inaccurate monitoring data.

Method used

A reservoir water level detector was designed, which adopts an arc-shaped baffle and an inner and outer float structure. The arc-shaped baffle isolates floating objects and ensures the stable floating of the inner float and the slide plate, thereby achieving accurate water level monitoring.

Benefits of technology

It effectively isolates floating objects from interference, ensuring the accuracy and stability of water level monitoring, avoiding obstruction of the view by floating objects, and improving monitoring precision.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of reservoir monitoring, and particularly relates to a reservoir level detector which comprises a bottom frame and a connecting rod, the bottom of the connecting rod is connected with the top of the bottom frame in a clamping mode, a sliding plate is connected to the outer wall of the connecting rod in a sliding mode, an outer floating ring is arranged on the outer wall of the bottom frame and the outer wall of the connecting rod in a sleeved mode, and an annular bottom plate is installed below the outer floating ring. An annular butt joint plate is installed at the top end of the annular bottom plate, two symmetrical arc-shaped partition plates are connected to the annular butt joint plate in a clamped mode, and inner floating rings are arranged in the arc-shaped partition plates. The arc-shaped partition plate is arranged on the outer side of the inner floating ring and is matched with the outer floating ring, the annular bottom plate and the annular butt-joint plate to form an assembly capable of positioning the arc-shaped partition plate, so that the inner floating ring, the push rod and the sliding plate can be prevented from being influenced by floating objects, the inner floating ring, the push rod and the sliding plate stably float on the water surface, and the monitoring accuracy of the sliding plate on the water level is ensured; and the sliding plates can be prevented from being shielded by the arc-shaped partition plates.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of reservoir monitoring, specifically relates to a reservoir water level detector. BACKGROUND

[0002] In the field of reservoir water level monitoring, accurately grasping water level change has vital significance for rational allocation of water resources, flood control and disaster reduction and guaranteeing the ecological environment and resident safety around the reservoir, the traditional reservoir water level detector has many drawbacks, for example, its monitoring element is easily affected by the floating objects in the reservoir, there are various floating objects such as branches and waterweeds in the reservoir, when these floating objects accumulate around the water level monitoring element in large quantities, the normal floating of the monitoring element can be interfered, leading to that it cannot accurately reflect the real change of water level, thereby seriously affecting the accuracy of monitoring data. UTILITY MODEL CONTENT

[0003] The utility model provides a reservoir water level detector, solves the technical problem that the existing monitor is easy to be affected by floating sundries when floatingly monitoring water level.

[0004] The utility model provides the following technical scheme:

[0005] A reservoir water level detector, including the base frame and the connecting rod, the connecting rod bottom is connected with the base frame top snap fit, the connecting rod outer wall is slidably connected with the sliding plate, the base frame and the connecting rod outer wall are equipped with the outer float ring, the annular bottom plate is installed below the outer float ring, the annular butt joint plate is installed at the annular bottom plate top, two symmetrical arc-shaped partition plates are connected with the snap fit on the annular butt joint plate, the inner float ring is equipped in the arc-shaped partition plate, the push rod is fixedly connected with the inner float ring top, the push rod top is corresponding with the sliding plate.

[0006] Wherein, the sliding plate top is equipped with the limiting sleeve, the limiting sleeve is slidably connected with the connecting rod outer wall, and the sliding plate and the limiting sleeve are connected through the connecting inclined rod.

[0007] Wherein, the annular butt joint plate top is equipped with the clamping groove, and the arc-shaped partition plate bottom is matched with the clamping groove.

[0008] Wherein, the annular butt joint plate inner center is equipped with the lower limiting ring, and the annular butt joint plate and the lower limiting ring are connected through the lower fixed rod, and the lower limiting ring is sleeved on the connecting rod outside.

[0009] Wherein, the arc-shaped partition plate center is equipped with the upper limiting ring, and the upper fixed rod is installed on the upper limiting ring outer wall, and one end of the upper fixed rod is detachably connected with the arc-shaped partition plate inner wall.

[0010] The arc-shaped partition plate is fixedly connected with a side plate, the outer floating ring is fixedly connected with a butt joint rod, and the butt joint rod is detachably connected with a connecting ring.

[0011] The outer floating ring and the annular bottom plate are connected through a hanger rod, and multiple hanger rods are staggered.

[0012] The beneficial effects of the utility model are that: the arc-shaped partition plate is arranged outside the inner floating ring, and the arc-shaped partition plate, the outer floating ring, the annular bottom plate and the annular butt joint plate form an assembly capable of positioning the position of the arc-shaped partition plate, so that the inner floating ring, the push rod and the sliding plate can avoid being affected by floating objects, the inner floating ring, the push rod and the sliding plate can be ensured to stably float on the water surface, the monitoring accuracy of the sliding plate on the water level of the water surface can be ensured, and the sliding plate can avoid being shielded by the arc-shaped partition plate.

[0013] The parts not involved in the device are the same as or can be realized by the prior art. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a three-dimensional structure schematic view of the utility model;

[0015] Figure 2 It is a three-dimensional structure schematic view of the arc-shaped partition plate in the utility model;

[0016] Figure 3 It is a sectional structure schematic view of the annular bottom plate in the utility model;

[0017] Figure 4 It is a three-dimensional structure schematic view of the annular bottom plate in the utility model.

[0018] In the drawing: 1, chassis; 11, connecting rod; 12, sliding plate; 13, limiting sleeve; 14, connecting inclined rod; 2, outer floating ring; 21, annular bottom plate; 211, hanger rod; 22, annular butt joint plate; 221, clamping groove; 23, arc-shaped partition plate; 24, side plate; 25, butt joint rod; 26, connecting ring; 27, lower limiting ring; 271, lower fixed rod; 28, upper limiting ring; 281, upper fixed rod; 3, inner floating ring; 31, push rod. DETAILED DESCRIPTION

[0019] Please refer to Figures 1-4 The utility model provides the following technical scheme: a reservoir water level detector, including chassis 1 and connecting rod 11, connecting rod 11 bottom and chassis 1 top snap fit connection, connecting rod 11 outer wall sliding connection has the sliding plate 12, and the outer floating ring 2 of chassis 1 and connecting rod 11 outer wall sleeve is equipped with, and the annular bottom plate 21 of outer floating ring 2 below is installed, and the annular butt joint plate 22 of annular bottom plate 21 top end is installed, and the two symmetrical arc-shaped partition plate 23 of annular butt joint plate 22 is snap fit connection, and the inner floating ring 3 of arc-shaped partition plate 23 is equipped with, and the push rod 31 of inner floating ring 3 top end fixed connection has, and push rod 31 top and sliding plate 12 correspond.

[0020] In the embodiment: the chassis 1 is the carrier of the bearing device, through the chassis 1 can be installed in the reservoir water storage area pool bottom, at this time can be installed through the clamping connection of the chassis 1 top, the chassis 1 and the connecting rod 11 can be limited to the inner float 3 which is sleeved on the outer wall, the inner float 3 can float on the water surface, and the annular bottom plate 21 fixedly connected at the bottom end of the inner float 3 can be supported below the outer float 2 after the inner float 3 floats on the water surface, at this time the annular butt joint plate 22 fixedly connected on the annular bottom plate 21 can be installed on two symmetrical arc-shaped partitions 23, at this time the upper part of the arc-shaped partition 23 can be above the water surface after being connected to the annular butt joint plate 22, and the lower part of the arc-shaped partition 23 can be below the water surface, so that the arc-shaped partition 23 can be supported and supported by the outer float 2, so that the arc-shaped partition 23 can isolate the floating debris on the water surface, so that the debris is difficult to enter the arc-shaped partition 23, and the inner float 3 in the arc-shaped partition 23 is protected, so that the inner float 3 can float on the water surface without being affected by the debris, so that it can maintain the temperature of floating on the water surface, avoid being affected by more debris accumulation, so that the floating height of the inner float 3 is affected, thereby directly affecting the judgment of the water surface change, when the inner float 3 changes in height synchronously with the water surface, at this time the two push rods 31 installed on the inner float 3 can correspond to the bottom end of the sliding plate 12 slidably connected to the outer wall of the connecting rod 11, so that the inner float 3 can support the bottom end of the sliding plate 12 through the push rod 31, so that the sliding plate 12 can slide on the connecting rod 11 while being supported by the inner float 3 and the push rod 31, so that the height of the sliding plate 12 can be adjusted synchronously with the inner float 3, and at the same time, after the inner float 3 moves downward with the water surface, the push rod 31 moves downward, and the sliding plate 12 can slide downward and support on the push rod 31 under the action of its own gravity, so that the device can detect the water level height through the sliding plate 12 on the connecting rod 11 outer wall, according to the scale line engraved on the connecting rod 11 outer wall in advance, so that the sliding plate 12 can monitor the height change of the water level in real time, so that the device can ensure the accuracy of the inner float 3, the push rod 31 and the sliding plate 12 in monitoring the water level, and at the same time, the inner float 3 can be prevented from being in the arc-shaped partition 23, and the arc-shaped partition 23 can be prevented from shielding the view of the inner float 3, so that the water level height can be easily detected through the sliding plate 12.

[0021] The limiting sleeve 13 is arranged above the sliding plate 12 and is in sliding connection with the outer wall of the connecting rod 11, and the sliding plate 12 and the limiting sleeve 13 are connected through the connecting inclined rod 14; the limiting sleeve 13 arranged above the sliding plate 12 can be connected through the connecting inclined rod 14, so that when the sliding plate 12 slides up and down, the limiting sleeve 13 can slide and be limited on the outer wall of the connecting rod 11, the position of the sliding plate 12 is limited, and the horizontal up-and-down displacement of the sliding plate 12 is ensured, so that the water level can be accurately monitored.

[0022] The clamping groove 221 is arranged at the top of the annular butt joint plate 22, and the bottom of the arc-shaped partition plate 23 is matched with the clamping groove 221; the clamping groove 221 arranged at the top of the annular butt joint plate 22 can clamp the bottom of the arc-shaped partition plate 23, so that the arc-shaped partition plate 23 can be fixed on the annular butt joint plate 22, thereby supporting and positioning the position of the arc-shaped partition plate 23, so that the arc-shaped partition plate 23 can be in the inner wall of the outer floating ring 2, and the arc-shaped partition plate 23 can isolate the floating sundries on the water surface.

[0023] The lower limiting ring 27 is arranged at the center of the annular butt joint plate 22, the annular butt joint plate 22 and the lower limiting ring 27 are connected through the lower fixed rod 271, and the lower limiting ring 27 is arranged on the outer side of the connecting rod 11; the lower limiting ring 27 at the center of the annular butt joint plate 22 can be fixed on the inner wall of the annular butt joint plate 22 through the lower fixed rod 271, so that the lower limiting ring 27 can limit the position of the annular bottom plate 21 below the outer floating ring 2, so that the annular bottom plate 21 can be stably arranged at the outer side of the connecting rod 11 and the chassis 1, and the position of the center of the arc-shaped partition plate 23 can be kept corresponding to the chassis 1 and the connecting rod 11.

[0024] The upper limiting ring 28 is arranged at the center of the arc-shaped partition plate 23, the outer wall of the upper limiting ring 28 is provided with the upper fixed rod 281, and one end of the upper fixed rod 281 is detachably connected with the inner wall of the arc-shaped partition plate 23; the upper limiting ring 28 at the center of the annular butt joint plate 22 can be supported on the inner wall of the arc-shaped partition plate 23 through the upper fixed rod 281, so that the upper fixed rod 281 can limit the position of the top of the arc-shaped partition plate 23, so that the arc-shaped partition plate 23 can be kept on the outer side of the connecting rod 11 and the chassis 1, the sundries are isolated, space is provided for the floating of the inner floating ring 3, and the inner floating ring 3 can float on the outer side of the connecting rod 11 and the chassis 1.

[0025] The side plate 24 is fixedly connected to the outer wall of the arc-shaped partition plate 23, the butt joint rod 25 is fixedly connected to the outer floating ring 2, and the connecting ring 26 is detachably connected to the top of the butt joint rod 25; the side plate 24 fixedly connected to the outer wall of the arc-shaped partition plate 23 can be connected to the butt joint rod 25 arranged on the outer floating ring 2, so that after the connecting ring 26 is connected and limited on the top of the butt joint rod 25, the top of the arc-shaped partition plate 23 can be limited, and the arc-shaped partition plate 23 can be stably supported in the outer floating ring 2, thereby protecting the outer side of the inner floating ring 3.

[0026] The outer floating ring 2 and the annular bottom plate 21 are connected through the hangers 211, and a plurality of hangers 211 are staggered; the outer floating ring 2 and the annular bottom plate 21 are connected through the hangers 211, so that the annular bottom plate 21 can be stably supported below the outer floating ring 2 and support and position the bottom of the arc-shaped partition plate 23.

[0027] The working principle and use process of the utility model are as follows: the carrier chassis 1 of the bearing device is fixed on the bottom of the reservoir water storage area pool, the connecting rod 11 is clamped on the top of the chassis 1, the inner floating ring 3 floats on the water surface, the annular bottom plate 21 is supported below the outer floating ring 2, the two symmetrical arc-shaped partition plates 23 are clamped on the top of the annular butt joint plate 22 through the clamping grooves 221, the arc-shaped partition plates 23 are located in the inner wall of the outer floating ring 2, part is above water and part is underwater, when the water level of the reservoir changes, the inner floating ring 3 rises and falls synchronously with the water surface, the push rod 31 on the inner floating ring 3 corresponds to the bottom end of the sliding plate 12 on the outer wall of the connecting rod 11, the inner floating ring 3 supports the sliding plate 12 through the push rod 31, so that the sliding plate 12 can slide on the connecting rod 11, the height is synchronously adjusted with the inner floating ring 3, the limiting sleeve 13 above the sliding plate 12 is connected with the sliding plate 12 through the connecting inclined rod 14, so as to ensure the horizontal displacement of the sliding plate 12. When the inner floating ring 3 and the water surface move downward, the push rod 31 drives the sliding plate 12 to slide downward, the staff monitors the water level according to the height of the sliding plate 12 on the outer wall of the connecting rod 11, during use of the device, if the arc-shaped partition plate 23 and other components are damaged, the connecting ring 26 on the top of the butt joint rod 25 is disassembled, the arc-shaped partition plate 23 and other components can be checked and replaced, because the upper fixed rod 281 is detachably connected with the inner wall of the arc-shaped partition plate 23 and the arc-shaped partition plate 23 is detachably connected with the annular butt joint plate 22, the maintenance personnel can operate conveniently, which is beneficial to ensuring stable operation of the device and accurately monitoring the water level.

Claims

1. A reservoir water level detector comprising a chassis (1) and a connecting rod (11), characterized in that: The connecting rod (11) bottom is engaged with the top of the chassis (1), the connecting rod (11) outer wall is slidably connected with the sliding plate (12), the chassis (1) and the connecting rod (11) outer wall are sleeved with the outer float ring (2), the lower portion of the outer float ring (2) is provided with the annular bottom plate (21), the top of the annular bottom plate (21) is provided with the annular butt plate (22), the annular butt plate (22) is engaged with two symmetrical arc-shaped partitions (23), the arc-shaped partition (23) is provided with the inner float ring (3), the top of the inner float ring (3) is fixedly connected with the push rod (31), and the push rod (31) top is corresponding with the sliding plate (12).

2. A reservoir water level detector according to claim 1, characterised in that: The sliding plate (12) is provided with a limiting sleeve (13) above, the limiting sleeve (13) is slidably connected with the connecting rod (11) outer wall, and the sliding plate (12) and the limiting sleeve (13) are connected through the connecting inclined rod (14).

3. A reservoir water level detector according to claim 1, characterised in that: The annular butt plate (22) top is provided with a clamping groove (221), and the arc-shaped partition (23) bottom is matched with the clamping groove (221).

4. A reservoir water level detector according to claim 1, characterised in that: The annular butt plate (22) is provided with a lower limiting ring (27) at the center, and the annular butt plate (22) and the lower limiting ring (27) are connected through the lower fixed rod (271), and the lower limiting ring (27) is sleeved on the outer side of the connecting rod (11).

5. A reservoir water level detector according to claim 1, wherein: The arc-shaped partition (23) is provided with an upper limiting ring (28) at the center, and the outer wall of the upper limiting ring (28) is provided with an upper fixed rod (281), and one end of the upper fixed rod (281) is detachably connected with the inner wall of the arc-shaped partition (23).

6. A reservoir water level detector according to claim 1, characterised in that: The arc-shaped partition (23) is fixedly connected with the side plate (24), the outer float ring (2) is fixedly connected with the butt rod (25), and the butt rod (25) top is detachably connected with the connecting ring (26).

7. A reservoir water level detector according to claim 1, wherein: The outer float ring (2) and the annular bottom plate (21) are connected through the suspender (211), and a plurality of suspender (211) are staggered.