Condensate water treatment device

Through the underground cavity structure and discharge component design, the problems of increased ambient temperature and heat energy waste caused by the condensate treatment device are solved, efficient gas-liquid separation and steam transportation of condensate are achieved, and the secondary utilization efficiency of condensate is improved.

CN223484495UActive Publication Date: 2025-10-28MIANYANG GANLION PRINTING & DYEING +1
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Patent Information

Application Number
CN202422909596.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-27
Publication Date
2025-10-28
Estimated Expiration
2034-11-27

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Abstract

The utility model discloses a condensate water treatment device, relates to the technical field of condensate water treatment, and solves the technical problem that the condensate water treatment device in the prior art can cause the temperature rise of the ambient environment. The condensate water treatment device comprises a first cavity and a second cavity which are arranged underground, the first cavity and the second cavity are arranged in the first direction, and the first cavity communicates with the second cavity; the box body is arranged in the first cavity, and the box body is used for containing condensate water discharged from the factory building; the first discharging part is mounted in the second cavity and communicates with the box body, and the first discharging part is used for discharging condensate water; and the second discharging part communicates with the box body and is used for conveying steam in the box body. Therefore, through the arrangement of the box body arranged underground and the second discharge part, the condensate water treatment device provided by the utility model reduces the probability that the steam overflows into the surrounding environment, so that the rising degree of the surrounding environment is reduced.
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Description

Technical Field

[0001] This utility model belongs to the field of condensate treatment technology, and specifically relates to a condensate treatment device. Background Technology

[0002] Condensate is liquid water formed by the condensation of water vapor. Condensate can be recycled and reused. In existing condensate collection and discharge structures, condensate is directly discharged into the tank through the drainage pipe on the top of the tank and then discharged through the drainage structure. However, the temperature of the condensate is relatively high when it is discharged from the factory, and a large amount of steam will diffuse outward. This not only wastes heat energy but also raises the temperature of the surrounding environment, especially in summer, which can lead to some safety hazards. Utility Model Content

[0003] This invention provides a condensate treatment device to solve the technical problem that existing condensate treatment devices cause the ambient temperature to rise.

[0004] This utility model is achieved through the following technical solution:

[0005] A condensate treatment device, comprising:

[0006] A first cavity and a second cavity are located underground. The first cavity and the second cavity are arranged along a first direction and are connected to each other.

[0007] A housing, placed within the first cavity, is used to contain condensate discharged from the factory building;

[0008] A first discharge component is installed in the second cavity and is connected to the housing. The first discharge component is used to discharge the condensate.

[0009] A second discharge component is configured to communicate with the housing and is used to discharge steam from the housing.

[0010] Furthermore, the first discharge component is a water pump, one end of which is installed in the second cavity, and the other end extends out of the second cavity, and the water pump is connected to the housing.

[0011] Furthermore, it also includes a top cover, which is detachably installed on the top of the second cavity, and the top cover has a clearance hole, through which the other end of the water pump extends out of the second cavity.

[0012] Furthermore, the top cover has multiple heat dissipation holes, which are evenly distributed on the top cover.

[0013] Furthermore, it also includes a base installed in the second cavity, and one end of the water pump is detachably installed on the base.

[0014] Furthermore, the water pump is bolted to the base.

[0015] Furthermore, the second discharge component includes a pipe, one end of which is installed at the top of the housing and communicates with the housing, and the other end extends out of the first cavity.

[0016] Furthermore, it also includes a sealing cover, and the top of the first cavity is provided with an inspection port, and the sealing cover is placed on the inspection port.

[0017] Furthermore, it also includes a pad, which is installed on the inner bottom wall of the first cavity, and the box is placed on the pad.

[0018] Furthermore, the pad is circular, and the diameter of the pad is not greater than the width of the box body.

[0019] Compared with the prior art, this utility model has the following advantages and beneficial effects:

[0020] The condensate treatment device provided by this utility model includes a first cavity and a second cavity, a box, a first discharge component and a second discharge component, both located underground. The first cavity and the second cavity are arranged along a first direction and are connected to each other. The box is placed inside the first cavity and is used to contain condensate discharged from the factory. The first discharge component is installed inside the second cavity and is connected to the box. The first discharge component is used to discharge condensate. The second discharge component is connected to the box and is used to transport steam inside the box.

[0021] With the above structure, when using the condensate treatment device provided by this utility model, the condensate discharged from the factory is transported into the tank. The high-temperature condensate undergoes gas-liquid separation in the tank, and then the condensate is discharged from the tank through the first discharge component for secondary use. The steam is transported out of the tank through the second discharge component for secondary use. In this way, by placing the tank underground, the steam inside the tank is less likely to overflow into the surrounding environment, reducing the degree of temperature rise in the surrounding environment. The setting of the second discharge component not only reduces the probability of heat energy waste, but also further reduces the probability of steam overflow. Therefore, by placing the tank underground and setting the second discharge component, the condensate treatment device provided by this utility model reduces the probability of steam overflowing into the surrounding environment. Attached Figure Description

[0022] The accompanying drawings, which are included to provide a further understanding of the embodiments of the present invention and form part of this application, do not constitute a limitation thereof. In the drawings:

[0023] Figure 1 This is a schematic diagram of the condensate treatment device provided in an embodiment of the present invention.

[0024] The attached diagram shows the markings and corresponding component names:

[0025] 1-First cavity, 2-Second cavity, 3-Box body, 4-Water pump, 5-Pipe, 6-Top cover, 61-Leaving hole, 62-Heat dissipation hole, 7-Base, 8-Sealing cover, 9-Padded block. Detailed Implementation

[0026] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the embodiments and accompanying drawings. The illustrative embodiments and descriptions of this utility model are only used to explain this utility model and are not intended to limit this utility model.

[0027] It should be noted that when a component is referred to as being "fixed to" or "set on" another component, it can be directly or indirectly attached to that other component. When a component is referred to as being "connected to" another component, it can be directly or indirectly connected to that other component.

[0028] It should be understood that the terms "length", "width", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", and "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0029] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.

[0030] Example:

[0031] This embodiment provides a condensate treatment device to solve the technical problem that condensate treatment devices in the prior art cause an increase in ambient temperature. The condensate treatment device includes a first cavity 1 and a second cavity 2 located underground, a housing 3, a first discharge component, and a second discharge component, wherein:

[0032] The first cavity 1 and the second cavity 2 are arranged along a first direction, that is, the first cavity 1 is located to the side of the second cavity 2, and the first cavity 1 and the second cavity 2 are connected.

[0033] The housing 3 is placed inside the first cavity 1. The housing 3 is used to contain the condensate discharged from the factory. In this way, by placing the housing 3 underground, the probability of steam in the housing 3 overflowing into the surrounding environment is reduced. Moreover, the housing 3 allows the condensate discharged from the factory to undergo gas-liquid separation inside the housing 3.

[0034] The first discharge component is installed inside the second cavity 2 and is connected to the housing 3. The first discharge component is used to discharge condensate. In this way, the condensate in the housing 3 can be discharged from the housing 3.

[0035] The second discharge component is connected to the housing 3. The second discharge component is used to transport the steam inside the housing 3. By setting the second discharge component, it is easy to transport the steam inside the housing 3 out of the housing 3, thereby reducing the chance of steam overflow.

[0036] With the above structure, when using the condensate treatment device provided by this utility model, the condensate discharged from the factory is transported into the tank 3. The high-temperature condensate undergoes gas-liquid separation in the tank 3, and then the condensate is discharged from the tank 3 through the first discharge component for secondary use. The steam is transported out of the tank 3 through the second discharge component for secondary use. In this way, by placing the tank 3 underground, the steam inside the tank 3 is less likely to overflow into the surrounding environment, reducing the degree of temperature rise in the surrounding environment. The setting of the second discharge component not only reduces the probability of heat energy waste, but also further reduces the probability of steam overflow. Therefore, by placing the tank 3 underground and setting the second discharge component, the condensate treatment device provided by this utility model reduces the probability of steam overflowing into the surrounding environment.

[0037] An optional implementation of this embodiment is as follows: The first discharge component is a water pump 4. One end of the water pump 4 is installed in the second cavity 2, and the other end extends out of the second cavity 2. The water pump 4 is connected to the housing 3. By setting the water pump 4, the condensate located underground can be transported out of the housing 3 more conveniently and quickly. The water pump 4 can work stably for a long time, reducing the failure rate and reducing maintenance costs. The other end of the water pump 4 extends out of the second cavity 2, which facilitates the maintenance of the water pump 4.

[0038] An optional implementation of this embodiment is as follows: It also includes a top cover 6, which is detachably installed on the top of the second cavity 2. Optionally, the top cover 6 is installed on the top of the second cavity 2 by screws, and the top cover 6 is provided with a clearance hole 61. The other end of the water pump 4 extends out of the second cavity 2 through the clearance hole 61. In this way, the top cover 6 is provided to prevent pedestrians from stepping into the second cavity 2.

[0039] Optionally, the top cover 6 is provided with multiple heat dissipation holes 62, which are evenly distributed on the top cover 6. When the water pump 4 is running, it will also generate heat. Since the first cavity 1 and the second cavity 2 are connected, a small amount of heat emitted from the housing 3 will also be dissipated from the first cavity 1 into the second cavity 2. In this way, the heat dissipation holes 62 facilitate the discharge of this heat into the second cavity 2, reducing the probability that the water pump 4 will fail to operate due to overheating.

[0040] It also includes a base 7, which is installed inside the second cavity 2. One end of the water pump 4 is detachably installed on the base 7. In this way, the base 7 makes it easier to install the water pump 4 and allows the other end of the water pump 4 to extend out of the second cavity 2.

[0041] Optionally, the water pump 4 is connected to the base 7 by bolts. The water pump 4 connected by bolts is easier to disassemble and assemble, and the bolts are more replaceable.

[0042] An optional implementation of this embodiment is as follows: The second discharge component includes a pipe 5, one end of which is installed at the top of the housing 3 and connected to the housing 3, and the other end extends out of the first cavity 1. In this way, the pipe 5 connected to the top of the housing 3 makes it easier to transport steam out of the housing 3.

[0043] An optional implementation of this embodiment is as follows: it also includes a sealing cover 8. The top of the first cavity 1 is provided with an inspection port, and the sealing cover 8 is placed on the inspection port. In this way, the installation of the inspection port facilitates the maintenance of the box 3 inside the first cavity 1, while the installation of the sealing cover 8 further reduces the probability of steam overflowing into the surrounding environment, and at the same time prevents pedestrians from stepping into the first cavity 1.

[0044] An optional implementation of this embodiment is as follows: It also includes a pad 9, which is installed on the inner bottom wall of the first cavity 1. The box 3 is placed on the pad 9. By setting the pad 9, there is a gap between the box 3 and the inner bottom wall of the first cavity 1, so that maintenance personnel can easily move the box 3 out of the first cavity 1.

[0045] Optionally, the pad 9 is circular, and the diameter of the pad 9 is not greater than the width of the box 3. This further facilitates maintenance personnel in moving the box 3 out of the first cavity 1.

[0046] The specific embodiments described above further illustrate the purpose, technical solution, and beneficial effects of this utility model. It should be understood that the above description is only a specific embodiment of this utility model and is not intended to limit the scope of protection of this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the scope of protection of this utility model.

Claims

1. A condensate treatment device, characterized in that, include: A first cavity (1) and a second cavity (2) are located underground. The first cavity (1) and the second cavity (2) are arranged along a first direction and are connected to each other. A housing (3) is placed inside the first cavity (1), and the housing (3) is used to contain condensate discharged from the factory. The first discharge component is installed inside the second cavity (2) and is connected to the box body (3). The first discharge component is used to discharge the condensate. The second discharge component is connected to the housing (3) and is used to discharge steam inside the housing (3).

2. The condensate treatment device according to claim 1, characterized in that, The first discharge component is a water pump (4), one end of which is installed in the second cavity (2) and the other end extends out of the second cavity (2), and the water pump (4) is connected to the housing (3).

3. The condensate treatment device according to claim 2, characterized in that, It also includes a top cover (6), which is detachably installed on the top of the second cavity (2), and the top cover (6) has a clearance hole (61), through which the other end of the water pump (4) extends out of the second cavity (2).

4. A condensate treatment device according to claim 3, characterized in that, The top cover (6) has a plurality of heat dissipation holes (62), which are evenly distributed on the top cover (6).

5. A condensate treatment device according to claim 4, characterized in that, It also includes a base (7) installed inside the second cavity (2), and one end of the water pump (4) is detachably installed on the base (7).

6. A condensate treatment device according to claim 5, characterized in that, The water pump (4) is bolted to the base (7).

7. A condensate treatment device according to claim 1, characterized in that, The second discharge component includes a pipe (5), one end of which is installed at the top of the box (3) and communicates with the box (3), and the other end extends out of the first cavity (1).

8. A condensate treatment device according to claim 1, characterized in that, It also includes a sealing cover (8), and the top of the first cavity (1) is provided with an inspection port, and the sealing cover (8) is placed on the inspection port.

9. A condensate treatment device according to claim 1, characterized in that, It also includes a pad (9) installed on the inner bottom wall of the first cavity (1), and the box (3) is placed on the pad (9).

10. A condensate treatment device according to claim 9, characterized in that, The pad (9) is circular, and the diameter of the pad (9) is not greater than the width of the box (3).