Water cooling pipe network for building exterior wall

CN224666237UActive Publication Date: 2026-08-21GUANGDONG GUOSHI ENGINEERING CONSULTING CO LTD
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Patent Information

Application Number
CN202521424067.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-08
Publication Date
2026-08-21
Estimated Expiration
2035-07-08

AI Technical Summary

Technical Problem

[0003]本实用新型的目的在于提供一种用于建筑外墙的水冷管网,旨在解决现有技术中水流从流出端开始渗水,水分被从前端的水管渗出蒸发,导致在流水过程中已经消耗一部分水资源,影响水资源的运输传导速度,同时加大水资源消耗,前端水资源由于靠近运输端导致水资源消耗远远大于水源运输终端,同时导致水资源不能均匀运输至毛细管中的问题

Benefits of technology

[0016]1)通过设有的在水流从主连通水管内流向另一端时,水流通过树状毛细管的漏斗状进水端迅速填满树状毛细管分支,树状毛细管分支的水流通过漏斗状的出水端流入环形流水管内,此时从主连通管分流的水流流入环形流水管内并从另一端的主连通水管流出在,在流出时,环形流水管的水流带动树状毛细管分支出水端的水流,加快树状毛细管内水流流速,并使水流更均匀传递至各处,使流动水流带走更多热量,提高降温效果;

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Abstract

The utility model provides a water cooling pipe network for building outer wall belongs to building technical field, including main support net, main support net both sides symmetry is equipped with main PVE hoop, is equipped with main through -water pipe in main PVE hoop, the top and bottom both sides sealed communication of main through -water pipe have annular water pipe, main through -water pipe one end is equipped with water inlet pipe, and main through -water pipe other end is equipped with water outlet pipe, and main through -water pipe top and bottom distribution sealed communication is equipped with a plurality of tree -like capillary, and tree -like capillary water inlet end is sealed with main through -water pipe Communication, and tree -like capillary water outlet end is sealed with annular water pipe inboard communication, the utility model provides a water cooling pipe network for building outer wall, is fixed in the wall top part flow drain pipe fixed at the wall root through being equipped with main water distributor pipe, connects water inlet pipe with main water distributor pipe, and water outlet pipe and shunt drain pipe are connected, and the aspect large -area lays multiple main through -water pipe.
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Description

Technical Field

[0001] This utility model belongs to the field of building technology, specifically relating to a water-cooled pipe network for building exterior walls. Background Technology

[0002] The existing capillary network installation involves first laying insulation boards on the wall or ceiling, then laying capillary mats on the insulation boards, and finally applying a 10mm thick layer of plaster on top. This construction is complex and takes up floor height. Furthermore, the existing capillary network cooling process requires integration with a fresh air system to achieve cooling. In contrast, the "A Water-Cooled Pipeline Structure for Building Exterior Walls" disclosed in application number "CN202222412689.1" represents an increasingly mature technology. This involves directly hanging the pipes on the exterior of the wall and covering the wall, with the water pipes then laid out... The device has seepage holes through which water slowly seeps out and evaporates, achieving a cooling effect through heat absorption during evaporation. However, the device also has the following drawbacks: During the water flow, water seeps out from the outlet end, and the water evaporates from the front end of the water pipe, resulting in the consumption of some water resources during the flow process. This affects the speed of water transport and conduction, and increases water consumption. The water resources at the front end are closer to the transport end, resulting in water consumption that is much greater than that at the water source transport terminal. At the same time, it also causes water resources to be unevenly transported into the capillary tube. Utility Model Content

[0003] The purpose of this utility model is to provide a water-cooled pipe network for building exterior walls, aiming to solve the problem in the existing technology where water seeps from the outlet end and evaporates from the water pipe at the front end, resulting in the consumption of some water resources during the water flow process, affecting the water transport and conduction speed, and increasing water consumption. The water resources at the front end are closer to the transport end, resulting in water consumption that is much greater than that at the water source transport terminal, and also causing water resources to not be evenly transported to the capillary tubes.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a water-cooled pipe network for building exterior walls, comprising a main support network, main PVE clamps symmetrically arranged on both sides of the main support network, a main connecting water pipe arranged inside the main PVE clamps, annular water pipes sealingly connected to the top and bottom sides of the main connecting water pipe, an inlet pipe at one end of the main connecting water pipe, an outlet pipe at the other end of the main connecting water pipe, and a plurality of tree-shaped capillary tubes sealingly connected to the top and bottom of the main connecting water pipe, the inlet end of the tree-shaped capillary tubes sealingly connected to the main connecting water pipe, and the outlet end of the tree-shaped capillary tubes sealingly connected to the inner side of the annular water pipe.

[0005] In one embodiment of the water-cooled pipe network for building exterior walls according to this utility model, both the inlet and outlet ends of the tree-like capillary are funnel-shaped.

[0006] In this scheme, when the water flows from the main connecting pipe to the other end, the water flow quickly fills the branch of the tree-like capillary through the funnel-shaped inlet end. The water flow from the branch of the tree-like capillary flows into the annular flow pipe through the funnel-shaped outlet end. At this time, the water flow that splits from the main connecting pipe flows into the annular flow pipe and flows out from the main connecting pipe at the other end. When flowing out, the water flow in the annular flow pipe drives the water flow at the outlet end of the branch of the tree-like capillary, which accelerates the water flow velocity in the tree-like capillary and improves the cooling effect.

[0007] In one embodiment of the water-cooled pipe network for building exterior walls of this utility model, secondary PVE clamps are distributed at the top and bottom of the inner side of the main support network, and the annular water pipe is located inside the secondary PVE clamps.

[0008] In this scheme, the annular water pipe is shaped by the secondary PVE clamp and then fixed to the support net using the secondary PVE clamp.

[0009] In one embodiment of the water-cooled pipe network for building exterior walls according to this utility model, support rods are welded to the outer side of the main support network, and a trapezoidal support frame is provided between the support rods.

[0010] In this solution, a stable support structure is formed between the trapezoidal support frame and the support rod. When the main support net is installed on the wall, the trapezoidal support frame and the support rod form a stable structure to support the main support net, thereby improving the support strength of the main support net.

[0011] In one embodiment of the water-cooled pipe network for building exterior walls according to this utility model, one end of the inlet pipe is sealed and connected to the main water distributor pipe, and one end of the outlet pipe is sealed and connected to the branch drainage pipe.

[0012] In this scheme, when laying the main connecting pipe, the main water distributor pipe is fixed at the top of the wall and the branch drainage pipe is fixed at the base of the wall. The inlet pipe is connected to the main water distributor pipe and the outlet pipe is connected to the branch drainage pipe, which facilitates the laying of multiple main connecting water pipes over a large area.

[0013] In one embodiment of the water-cooled pipe network for building exterior walls of this utility model, a plurality of support plates are distributed on the inner side of the main support network, and connecting grooves are distributed on the surface of the support plates. Limiting clamps are provided in the connecting grooves, and the tree-shaped capillary tubes are located in the limiting clamps.

[0014] In this solution, when installing the tree-like capillary, the branches of the tree-like capillary are placed in the connecting groove, and the tree-like capillary is fixed to the support plate using a limiting clamp to maintain the shape of the tree-like capillary and provide stability for water flow transport within the tree-like capillary.

[0015] Compared with the prior art, the beneficial effects of this utility model are:

[0016] 1) When water flows from the main connecting pipe to the other end, the water flow quickly fills the branch of the tree-like capillary through the funnel-shaped inlet end. The water flow from the branch of the tree-like capillary flows into the annular flow pipe through the funnel-shaped outlet end. At this time, the water flow from the main connecting pipe flows into the annular flow pipe and flows out from the main connecting pipe at the other end. When flowing out, the water flow in the annular flow pipe drives the water flow at the outlet end of the branch of the tree-like capillary, speeds up the water flow in the tree-like capillary, and makes the water flow more evenly distributed to all places, so that the flowing water carries away more heat and improves the cooling effect.

[0017] 2) The main water distribution pipe is fixed to the top of the wall and the branch drainage pipe is fixed at the base of the wall. The inlet pipe is connected to the main water distribution pipe and the outlet pipe is connected to the branch drainage pipe, which facilitates the laying of multiple main connecting water pipes over a large area. Attached Figure Description

[0018] The accompanying drawings are provided to further illustrate the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention, but do not constitute a limitation thereof. In the drawings:

[0019] Figure 1 This is a schematic diagram of the structure of this utility model;

[0020] Figure 2 This is one of the structural schematic diagrams of this utility model;

[0021] Figure 3 This is a schematic diagram of the support plate structure of this utility model.

[0022] In the diagram: 1. Main support net; 2. Main PVE clamp; 3. Main connecting water pipe; 4. Circular water pipe; 5. Inlet pipe; 6. Outlet pipe; 7. Tree-shaped capillary tube; 8. Secondary PVE clamp; 9. Support rod; 10. Trapezoidal support frame; 11. Main distributor pipe; 12. Diversion drainage pipe; 13. Support plate; 14. Connecting groove; 15. Limiting clamp. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0024] Please see Figures 1-3The present invention provides the following technical solution: a water-cooled pipe network for building exterior walls, including a main support network 1, main PVE clamps 2 symmetrically arranged on both sides of the main support network 1, a main connecting water pipe 3 arranged inside the main PVE clamps 2, annular water pipes 4 sealed and connected on both sides of the top and bottom of the main connecting water pipe 3, an inlet pipe 5 arranged at one end of the main connecting water pipe 3, an outlet pipe 6 arranged at the other end of the main connecting water pipe 3, and a plurality of tree-shaped capillary tubes 7 distributed and sealed and connected at the top and bottom of the main connecting water pipe 3, the inlet end of the tree-shaped capillary tubes 7 being sealed and connected to the main connecting water pipe 3, and the outlet end of the tree-shaped capillary tubes 7 being sealed and connected to the inner side of the annular water pipe 4.

[0025] In a specific embodiment of a water-cooled piping network for building exterior walls, please refer to Figure 1 The inlet and outlet of the tree-like capillary tube 7 are both funnel-shaped.

[0026] Please see Figure 1 As water flows from the main connecting pipe 3 to the other end, the water flow quickly fills the branches of the tree-like capillary tube 7 through the funnel-shaped inlet end. The water flow from the branches of the tree-like capillary tube 7 flows into the annular flow pipe 4 through the funnel-shaped outlet end. At this time, the water flow that splits from the main connecting pipe 3 flows into the annular flow pipe 4 and flows out from the main connecting pipe 3 at the other end. When flowing out, the water flow in the annular flow pipe 4 drives the water flow at the outlet end of the branches of the tree-like capillary tube 7, which accelerates the water flow velocity in the tree-like capillary tube 7 and improves the cooling effect.

[0027] In a specific embodiment of a water-cooled piping network for building exterior walls, please refer to Figure 1 The main support net 1 has secondary PVE clamps 8 distributed at the top and bottom of the inner side, and the annular water pipe 4 is located inside the secondary PVE clamps 8.

[0028] Please see Figure 1 The annular water pipe 4 is shaped by the secondary PVE clamp 8 and fixed to the support net 1 by the secondary PVE clamp 8.

[0029] In a specific embodiment of a water-cooled piping network for building exterior walls, please refer to Figure 2 Support rods 9 are welded to the outer side of the main support net 1, and trapezoidal support frames 10 are provided between the support rods 9.

[0030] Please see Figure 2 The trapezoidal support frame 10 and the support rod 9 form a stable support structure. When the main support net 1 is installed on the wall, the trapezoidal support frame 10 and the support rod 9 form a stable structure to support the main support net 1, thereby improving the support strength of the main support net 1.

[0031] In a specific embodiment of a water-cooled piping network for building exterior walls, please refer to Figure 1One end of the inlet pipe 5 is sealed and connected to the main water distributor pipe 11, and one end of the outlet pipe 6 is sealed and connected to the branch drain pipe 12.

[0032] Please see Figure 1 When laying the main connecting pipe 3, the main water distributor pipe 11 is fixed at the top of the wall and the branch drainage pipe 12 is fixed at the base of the wall. The inlet pipe 5 is connected to the main water distributor pipe 11 and the outlet pipe 6 is connected to the branch drainage pipe 12, which facilitates the laying of multiple main connecting water pipes 3 over a large area.

[0033] In a specific embodiment of a water-cooled piping network for building exterior walls, please refer to Figure 3 The main support net 1 has several support plates 13 distributed on its inner side. The surface of the support plates 13 has connecting grooves 14. The connecting grooves 14 have limiting clamps 15. The tree-shaped capillary tubes 7 are located in the limiting clamps 15.

[0034] Please see Figure 3 When installing the tree-like capillary tube 7, the branches of the tree-like capillary tube 7 are placed in the connecting groove 14, and the tree-like capillary tube 7 is fixed on the support plate 13 by the limiting clamp 15 to maintain the shape of the tree-like capillary tube 7 and provide stability for water flow transportation in the tree-like capillary tube 7.

[0035] This utility model provides a water-cooled pipe network for building exterior walls. The specific usage is as follows: the main distributor pipe 11 is fixed to the top of the wall, and the branch drainage pipe 12 is fixed to the base of the wall. The inlet pipe 5 is connected to the main distributor pipe 11, and the outlet pipe 6 is connected to the branch drainage pipe 12. This facilitates the laying of multiple main connecting water pipes 3 over a large area. When water flows from the main connecting water pipe 3 to the other end, the water flow quickly fills the branches of the tree-like capillary tube 7 through the funnel-shaped inlet end. The water flow from the branches of the tree-like capillary tube 7 flows into the annular water pipe 4 through the funnel-shaped outlet end. At this time, the water flow branched from the main connecting pipe 3 flows into the annular water pipe 4 and flows out from the main connecting water pipe 3 at the other end. During the outflow, the water flow in the annular water pipe 4 drives the water flow at the outlet end of the branches of the tree-like capillary tube 7, accelerating the water flow velocity within the tree-like capillary tube 7 and making the water flow more evenly distributed to all areas, allowing the flowing water to carry away more heat and improve the cooling effect.

[0036] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A water-cooled pipe network for building exterior walls, comprising a main support network (1), characterized in that: The main support net (1) is symmetrically provided with main PVE clamps (2) on both sides. The main PVE clamps (2) are provided with main connecting water pipes (3). The top and bottom sides of the main connecting water pipes (3) are sealed and connected with annular water pipes (4). One end of the main connecting water pipes (3) is provided with an inlet pipe (5). The other end of the main connecting water pipes (3) is provided with an outlet pipe (6). The top and bottom of the main connecting water pipes (3) are provided with a number of tree-shaped capillaries (7). The inlet end of the tree-shaped capillaries (7) is sealed and connected with the main connecting water pipes (3). The outlet end of the tree-shaped capillaries (7) is sealed and connected with the inside of the annular water pipes (4).

2. A water-cooled pipe network for building exterior walls according to claim 1, characterized in that: The inlet and outlet of the tree-like capillary (7) are both funnel-shaped.

3. A water-cooled pipe network for building exterior walls according to claim 1, characterized in that: The main support net (1) has secondary PVE clamps (8) distributed at the top and bottom of its inner side, and the annular water pipe (4) is located inside the secondary PVE clamps (8).

4. A water-cooled pipe network for building exterior walls according to claim 1, characterized in that: Support rods (9) are welded to the outer side of the main support net (1), and a trapezoidal support frame (10) is provided between the support rods (9).

5. A water-cooled pipe network for building exterior walls according to claim 1, characterized in that: One end of the inlet pipe (5) is sealed and connected to the main water distributor pipe (11), and one end of the outlet pipe (6) is sealed and connected to the diversion drain pipe (12).

6. A water-cooled pipe network for building exterior walls according to claim 1, characterized in that: The main support net (1) has several support plates (13) distributed on its inner side. The support plates (13) have connecting grooves (14) distributed on their surfaces. The connecting grooves (14) have limiting clamps (15) inside them. The tree-shaped capillary tubes (7) are located inside the limiting clamps (15).

Citation Information

Patent Citations

  • Building outer wall water cooling pipe network structure

    CN218120038U