Adjustable pulse water distributor

By designing an adjustable pulse water distributor, the problems of siphon stability and particulate matter accumulation were solved, achieving stable pulse and sludge mixing that adapts to different influent conditions, and reducing equipment procurement costs.

CN224299021UActive Publication Date: 2026-05-29SHANDONG ZHAOJIN MOTIAN +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANDONG ZHAOJIN MOTIAN
Filing Date
2025-05-13
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Existing pulse distributors have poor siphon stability and unstable pulse cycles at low flow rates or high sludge concentrations, and are prone to particle accumulation, making them unsuitable for different influent conditions.

Method used

Design an adjustable pulse water distributor, comprising an inverted U-shaped water distribution main pipe and a siphon pipe structure, equipped with a water level regulating component and a siphon-breaking water level regulating component. By adjusting the critical height of the siphon and breaking the siphon, it can adapt to different inlet flow rates, and combined with a funnel-shaped water tank to collect particulate matter.

Benefits of technology

It enables wide adaptability adjustment of pulse cycle and influent flow rate, avoids diversified equipment procurement, saves costs, effectively removes particulate matter, and improves siphon stability and sludge mixing effect.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224299021U_ABST
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Abstract

The utility model relates to an adjustable pulse water distributor, it includes water tank, the water inlet pipe and the mud inlet pipe in water tank upper part, place in the water distribution main pipe of water tank, with the siphon of water distribution main pipe conduction, wherein the water distribution main pipe sets up in the water tank and presents the inverted U type structure, one end stretches out the water tank and is the water outlet of water distribution main pipe, one end is in the water tank and is the water inlet of water distribution main pipe, the siphon includes siphon main pipe, siphon auxiliary pipe and siphon destruction pipe, wherein the siphon main pipe with water distribution main pipe water inlet side conduction, siphon main pipe passes through siphon auxiliary pipe and siphon destruction pipe conduction, siphon auxiliary pipe still with water distribution main pipe top conduction, its characterized in with: water level adjusting spare is provided at water distribution main pipe water inlet.
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Description

Technical Field

[0001] This utility model relates to the technical field of industrial wastewater treatment equipment, specifically to an adjustable pulse water distributor. Background Technology

[0002] The pulse water distributor is suitable for applications such as hydrolysis acidification tanks and industrial wastewater treatment. It utilizes the siphon effect to achieve uniform distribution of wastewater at the bottom of the tank, while the sludge settling at the bottom is periodically agitated under the pulse action, achieving effective mixing of sludge.

[0003] Existing pulse water distributors have the following shortcomings:

[0004] 1. Poor siphon stability: Traditional single siphon tube designs are prone to start-up delays or incomplete destruction at low flow rates or high sludge concentrations, resulting in unstable pulse cycles and an inability to adjust the pulse cycle according to the influent conditions.

[0005] 2. Particle accumulation inside the water distributor: Traditional water distributors have a horizontal bottom, and the distribution pipe can only pump out a localized area of ​​sewage. When the sewage contains particles such as sludge, only sewage near the main distribution pipe can be pumped out. Sludge easily accumulates in other parts. Utility Model Content

[0006] To overcome the above-mentioned defects, this utility model provides an adjustable pulse water distributor, which will be advantageous.

[0007] To achieve the above objectives, the technical solution adopted by this utility model is: an adjustable pulse water distributor, comprising a water tank, an inlet pipe and a mud inlet pipe located at the top of the water tank, a main water distribution pipe placed inside the water tank, and a siphon pipe connected to the main water distribution pipe. The main water distribution pipe is arranged in an inverted U-shape inside the water tank, with one end extending out of the water tank as the outlet of the main water distribution pipe and the other end located inside the water tank as the inlet of the main water distribution pipe. The siphon pipe includes a main siphon pipe, a siphon auxiliary pipe, and a siphon breaking pipe. The main siphon pipe is connected to the inlet side of the main water distribution pipe, and the main siphon pipe is connected to the siphon breaking pipe through the siphon auxiliary pipe. The siphon auxiliary pipe is also connected to the top of the main water distribution pipe. The feature is that a water level regulating component is provided at the inlet of the main water distribution pipe.

[0008] A further technical feature of this utility model is:

[0009] The water level regulating component includes an external thread on the water distribution main pipe at the water inlet and an internal thread on the water distribution main pipe regulating pipe, wherein the internal thread of the water distribution main pipe regulating pipe matches the external thread on the water distribution main pipe.

[0010] One end of the siphon failure pipe is equipped with a siphon failure water level regulating component.

[0011] The siphon-damping water level regulating component includes an external thread of the siphon-damping pipe disposed at the port of the siphon-damping pipe, and a siphon-damping pipe regulating pipe with an internal thread, wherein the internal thread of the siphon-damping pipe regulating pipe matches the external thread of the siphon-damping pipe.

[0012] The bottom of the water tank has a bucket-shaped structure.

[0013] Compared with existing technologies, this utility model has the following advantages: 1) Because a water level regulating component is provided at the inlet of the main water distribution pipe, the critical height of the siphon can be changed to adapt to different inlet flow control conditions. 2) Because a siphon breaking water level regulating component is provided at one end of the siphon breaking pipe, it can be matched with the water level regulating component at the inlet of the main water distribution pipe, so that the pulse period and applicable inlet flow of the pulse water distributor can be more widely adjusted, making it applicable to a wider range of application environments, avoiding the need to purchase different pulse water distributors for different environments, thereby saving production equipment costs. 3) Because the bottom of the water tank has a bucket-shaped structure, it can collect particulate matter in the sewage, and by adjusting the water level regulating component provided at the inlet of the main water distribution pipe, the particulate matter can be siphoned out of the system.

[0014] These and other aspects of the present invention will be more clearly illustrated by referring to the embodiments described below. Attached Figure Description

[0015] The structure of this utility model, as well as its further objectives and advantages, will be better understood from the following description taken in conjunction with the accompanying drawings, wherein like reference numerals identify like elements:

[0016] Figure 1 This is a structural schematic diagram of one embodiment of the present invention. Detailed Implementation

[0017] The specific embodiments of this utility model will now be described in conjunction with the accompanying drawings.

[0018] like Figure 1As shown, according to a specific embodiment of the present invention, an adjustable pulse water distributor includes a water tank 1, an inlet pipe 2 and a mud inlet pipe 3 located at the top of the water tank, a main water distribution pipe 4 placed inside the water tank, and a siphon pipe 5 connected to the main water distribution pipe. The main water distribution pipe 4 is arranged in an inverted U-shape inside the water tank 1, with one end extending out of the water tank as the outlet of the main water distribution pipe and the other end located inside the water tank as the inlet of the main water distribution pipe. The siphon pipe 5 includes a main siphon pipe 51, a siphon auxiliary pipe 52, and a siphon breaking pipe 53. The main siphon pipe 51 is connected to the inlet side of the main water distribution pipe 4, and the main siphon pipe 51 is connected to the siphon breaking pipe 53 through the siphon auxiliary pipe 52. The siphon auxiliary pipe 53 is also connected to the top of the main water distribution pipe 4. The feature is that a water level regulating component 41 is provided at the inlet of the main water distribution pipe 4. In this embodiment, the water level regulating component includes an external thread 411 of the water distribution main pipe disposed at the water inlet of the water distribution main pipe, and a water distribution main pipe regulating pipe 412 with an internal thread, wherein the internal thread of the water distribution main pipe regulating pipe 412 matches the external thread 411 of the water distribution main pipe.

[0019] In addition, in this embodiment, a siphon-breaking water level regulating component 531 is provided at one end of the siphon-breaking pipe 53. The siphon-breaking water level regulating component 531 includes an external thread 532 of the siphon-breaking pipe provided at the port of the siphon-breaking pipe, and a siphon-breaking pipe regulating pipe 533 with an internal thread, wherein the internal thread of the siphon-breaking pipe regulating pipe 533 matches the external thread 532 of the siphon-breaking pipe.

[0020] In this embodiment, the bottom of the water tank 1 has a bucket-shaped structure.

[0021] Because a water level regulating component 41 is provided at the inlet of the main water distribution pipe 4, the critical height of the siphon can be changed by the water level regulating component 41 to adapt to different inlet flow control conditions; because a siphon breaking pipe 53 is provided at one end with a siphon breaking water level regulating component 531, it can be matched with the water level regulating component 41 at the inlet of the main water distribution pipe, so that the pulse period and applicable inlet flow of the pulse water distributor can be adjusted more widely, and it can be applied to a wider range of application environments, avoiding the need to purchase different pulse water distributors for different environments, thereby saving production equipment costs; because the bottom of the water tank 1 has a bucket-shaped structure, it can collect particulate matter in the sewage, and by adjusting the water level regulating component 41 provided at the inlet of the main water distribution pipe, the particulate matter is siphoned out of the system.

[0022] The technical content and features of this utility model have been disclosed above. However, it is understood that, under the inventive concept of this utility model, those skilled in the art can make various changes and improvements to the above structure, including combinations of the technical features disclosed or claimed herein, as well as other combinations that explicitly include these features. All such modifications and / or combinations fall within the technical field to which this utility model pertains and are within the protection scope of the claims of this utility model.

Claims

1. An adjustable pulse water distributor, comprising a water tank, an inlet pipe and a sludge inlet pipe located at the top of the water tank, a main water distribution pipe placed inside the water tank, and a siphon pipe connected to the main water distribution pipe, wherein the main water distribution pipe is arranged in an inverted U-shape inside the water tank, with one end extending out of the water tank as the outlet of the main water distribution pipe and the other end located inside the water tank as the inlet of the main water distribution pipe; the siphon pipe includes a main siphon pipe, a siphon auxiliary pipe, and a siphon breaking pipe, wherein the main siphon pipe is connected to the inlet side of the main water distribution pipe, the main siphon pipe is connected to the siphon breaking pipe through the siphon auxiliary pipe, and the siphon auxiliary pipe is also connected to the top of the main water distribution pipe, characterized in that: A water level regulating component is installed at the inlet of the main water distribution pipe.

2. The adjustable pulse water distributor as claimed in claim 1, characterized in that: the water level regulating component includes an external thread of the water distribution main pipe disposed at the water inlet of the water distribution main pipe, and a water distribution main pipe regulating pipe with an internal thread, wherein the internal thread of the water distribution main pipe regulating pipe matches the external thread of the water distribution main pipe.

3. The adjustable pulse water distributor as described in claim 1 or claim 2, characterized in that: One end of the siphon failure pipe is equipped with a siphon failure water level regulating component.

4. The adjustable pulse water distributor as described in claim 1, characterized in that: The siphon-damping water level regulating component includes an external thread of the siphon-damping pipe disposed at the port of the siphon-damping pipe, and a siphon-damping pipe regulating pipe with an internal thread, wherein the internal thread of the siphon-damping pipe regulating pipe matches the external thread of the siphon-damping pipe.

5. The adjustable pulse water distributor as described in claim 4, characterized in that: The bottom of the water tank has a bucket-shaped structure.