Water channel structure of water heating type heater

The vertical arrangement of water troughs and guide pipes solves the problem of limited heating power in the horizontal design of water-heating heater water channels, achieves higher heating power and fluid heat exchange efficiency, optimizes space utilization and reduces maintenance costs.

CN223452264UActive Publication Date: 2025-10-17WUXI SHENGBANG ELECTRONICS CO LTD
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Patent Information

Application Number
CN202422524706.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-18
Publication Date
2025-10-17
Estimated Expiration
2034-10-18

AI Technical Summary

Technical Problem

The existing water-heating heater water channel has limited heating power in the horizontal design, and the space utilization is poor after the number of water tank rows is increased, which has a low cost-effectiveness.

Method used

The water tank is designed to be arranged vertically in a rectangular array of a times b, combined with a guide tube with a threaded inner wall and a filter screen design to optimize fluid flow and heat exchange efficiency.

Benefits of technology

Increasing the number of water tanks in a fixed space can improve heating power and fluid heat exchange efficiency, optimize space utilization, and reduce noise and maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

A water heating type heater water channel structure comprises a shell and a base connected with the bottom of the shell. A water tank for guiding fluid to pass through is formed in the shell; the multiple groups of water tanks are arranged in the direction vertical to the base, and the water tanks are arranged in a rectangular array of a multiplied by b and used for changing the arrangement mode of the water tanks; wherein the product of a multiplied by b is greater than 12; therefore, when the water tank of the water heating type heater is expanded, the water heating type heater depends on the extension in the horizontal direction, the limitation of height is avoided, and the problem that the cost performance of the water heating type heater for increasing the heating power of the water channel is low is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of heater water channel, especially relates to a water heating type heater water channel structure. BACKGROUND

[0002] In the field of modern electronic equipment heat dissipation technology, water heating type heater is widely used due to its high heat dissipation characteristics. This design usually adopts horizontal layout, which facilitates the reasonable layout of the shunt plate and PCBA (Printed Circuit Board Assembly).

[0003] However, although the water heating type heater water channel of horizontal design has certain advantages in layout, its heating power is limited to a certain extent. This limitation is mainly due to the heat conduction efficiency and fluid dynamics characteristics in the water channel design. In the horizontal design, the most effective way to increase the water tank is to increase the number of water tanks; however, due to the need to reserve a certain heat conduction gap for the water tank, the increase in the height of the heater shell will hinder the placement of surrounding parts; and, the increased height will have most of the space reserved for the heat conduction gap, resulting in a waste of valuable height resources; then, when facing the installation conditions of limited height, the ratio of expanding the water tank for increasing the heating power is low, and the cost performance is not high.

[0004] In order to overcome the limitations of the prior art, a new type of water heating type heater water channel design is needed, which should be able to provide higher heat conduction efficiency and better fluid dynamics performance.

[0005] In summary, although the existing water heating type heater water channel has excellent design in some aspects, its limitations in heating power cannot be ignored. SUMMARY

[0006] In view of the above technical problems, the utility model provides a water heating type heater water channel structure, which changes the placement direction of the water heating type heater water channel, so that the water heating type heater can rely more on the extension in the horizontal direction when expanding the water tank. Therefore, the utility model avoids the limitation of height and solves the problem of low cost performance of increasing the heating power of the water heating type heater water channel.

[0007] In order to achieve the above technical purpose, the utility model adopts the following technical means:

[0008] A water heating type heater water channel structure, comprising a shell and a base connected to the bottom of the shell; the shell is internally provided with a water tank for guiding fluid flow;

[0009] A plurality of said water tanks are arranged vertically to the direction of said base, and said water tanks are arranged in a rectangular queue of a*b, for changing the arrangement of said water tanks; wherein a and b are positive integers, and the product of a*b is greater than 12.

[0010] A middle part of said water tank is provided with a flow guide pipe with a threaded inner wall; wherein the fluid is turned over in said flow guide pipe, and the heat exchange side is changed when flowing in said water tank.

[0011] A filter screen is arranged at the water inlet of said water tank, for filtering the fluid entering said water tank.

[0012] Said filter screen is in sliding connection with said water tank, and said filter screen is separated from said water tank along a direction perpendicular to said water tank.

[0013] A sealing gasket is arranged between said filter screen and said water tank.

[0014] Said sealing gasket is a rubber gasket with high elasticity, for absorbing the vibration energy of said filter screen.

[0015] An inner wall of said water tank at the connection between said water tank and the outlet of said flow guide pipe is provided with a flow guide groove, for guiding the turned-over fluid to return to a straight flow state.

[0016] Advantages:

[0017] 1、The water heating type heater water channel structure of the utility model changes the placement direction of the water heating type heater water channel, so that the water heating type heater water channel is more dependent on the extension in the horizontal direction when the water tank is expanded; therefore, compared with the transverse placement, the utility model increases the number of water tanks in the fixed space, and improves the heating power of the water heating type heater water channel.

[0018] 2、The utility model sets the flow guide pipe with a threaded inner wall, so that the fluid flowing through the water tank can be turned over during the flow process, and the heat exchange surface is changed; therefore, the utility model can improve the heat exchange efficiency of the fluid per unit length, and improve the heating power of the water heating type heater water channel. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a structural schematic view of the water heating type heater water channel structure of the utility model.

[0020] In the figure: 1, shell; 2, base; 3, water tank. DETAILED DESCRIPTION

[0021] In order to better understand the above technical solutions, the above technical solutions will be described in detail in combination with the description of the drawings and the specific embodiments.

[0022] The utility model relates to a water heating type heater water channel structure as shown in the figure, which comprises a shell and a base connected to the bottom of the shell. Figure 1 The shell is internally provided with water channels for guiding fluid flow.

[0023] However, the increased height of the heater shell hinders the placement of surrounding components, and most of the increased space is used for reserving the heat conduction gap, resulting in the waste of valuable height resources.

[0024] Therefore, the utility model improves the utilization of space, effectively avoids the height limitation, improves the space utilization rate, and enhances the heating power.

[0025] The middle part of the water channel is provided with a flow guide pipe with a threaded inner wall.

[0026] A filter screen is arranged at the water inlet of the water channel to filter the fluid entering the water channel.

[0027] To ensure the sealing stability of the utility model, a sealing gasket is arranged between the filter screen and the water channel.

[0028] Further, to avoid the fluid impacting the filter screen and causing noise and reduced service life due to the impact of the filter screen on the shell, the sealing gasket is made of a high-elasticity rubber gasket to absorb the vibration energy of the filter screen.

[0029] In summary, the design of the filter screen facilitates the maintenance and cleaning of the interior of the heater.

[0030] At the connection between the water channel and the outlet of the flow guide pipe, the inner wall of the water channel is provided with a flow guide groove for guiding the inverted fluid to return to a straight flow state. Therefore, the utility model optimizes the fluid dynamics performance, and the design of the flow guide groove ensures the stability and continuity of fluid flow.

[0031] At the same time, the fluid flow temperature change and other parameters are monitored in real time during the whole working process, so that the system can work as expected, and the waterway structure is evaluated and optimized according to the operation data and feedback, so as to further improve the performance and reliability.

[0032] Working principle:

[0033] The fluid first enters the water heating heater waterway through the inlet of the system, is preliminarily filtered by the filter screen at the water inlet, and then enters the water tank after the impurities are removed.

[0034] Then, the fluid flows in the horizontal direction in the water tank. When flowing through the flow guide pipe, the fluid is turned over in the pipe due to the thread design of the inner wall of the flow guide pipe, the heat exchange surface is replaced, the heat exchange area is increased, and therefore the heat exchange efficiency of the utility model is improved.

[0035] Then, after turning over through the flow guide pipe, the fluid returns to the straight flow state through the flow guide groove arranged on the inner wall of the water tank, so as to ensure the stability and continuity of the fluid flow.

[0036] Finally, the heated fluid flows out from the outlet of the waterway structure, and the heating process is completed.

Claims

1. A water channel structure for a water-heating heater, comprising a housing and a base connected to the bottom of the housing; a water channel is provided inside the housing for guiding fluid to pass through; and is characterized by: Multiple groups of water tanks are set in a direction perpendicular to the base, and the water tanks are arranged in a rectangular queue of a times b, which is used to change the layout of the water tanks; wherein a and b are both positive integers, and the product of a times b is greater than 12.

2. The water channel structure of the water-heating heater according to claim 1, characterized in that: A flow guide tube with a threaded inner wall is provided in the middle of the water tank; wherein the fluid turns over in the flow guide tube, and the part close to the heat exchange side and the part away from the heat exchange side are replaced in position during the flow.

3. The water channel structure of the water-heating heater according to claim 1, characterized in that: A filter is provided at the water inlet of the water tank, which is used to filter the fluid entering the water tank.

4. The water channel structure of the water-heating heater according to claim 3, characterized in that: The filter screen is slidably connected to the water tank, and the filter screen is separated from the water tank along a direction perpendicular to the water tank.

5. The water channel structure of the water-heating heater according to claim 4, characterized in that: A sealing gasket is provided between the filter screen and the water tank.

6. The water channel structure of the water-heating heater according to claim 5, characterized in that: The sealing gasket is a rubber gasket with high elasticity, which is used to absorb the vibration energy of the filter screen.

7. The water channel structure of the water-heating heater according to claim 2, characterized in that: The inner wall of the water trough is provided with a guide groove; the guide groove is provided at the connection between the water trough and the outlet of the guide pipe, and is used to guide the overturned fluid back to a straight flow state.