Steam port structure of condensate water evaporator
By designing the vapor port structure of the condensed water evaporator and using a side mesh cover structure combining a steam mask cover and a water barrier net, the problem of condensate droplets splashing and dripping when the condensed water evaporator discharges water vapor, achieving safety and production environment guarantees.
Patent Information
- Application Number
- CN202422163223.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-04
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-09-04
AI Technical Summary
Existing condensed water evaporators are prone to splashing and dripping when emitting water vapor, which poses safety hazards and may affect production.
A steam port structure of a condenser evaporator is designed, and a side mesh cover structure is adopted that combines a steam mask cover and a water barrier network. The water barrier network is located on the open side of the steam mask cover, and the water guide tank is located below the water barrier network, and the water guide tank extends to the steam port to guide the condensate backflow into the condensate tank.
It effectively prevents the condensation water droplets after water vapor condensed, avoids harm to surrounding people, and meets the requirement that water droplets are not allowed in some places, ensuring the smooth progress of production operations.
Smart Images

Figure CN222964127U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a technology for treating air - conditioner condensate water, in particular to a steam port structure of a condensate water evaporator. Background Art
[0002] At present, a traveling crane air - conditioner is installed in the traveling crane machine room, and a condensate water evaporator is configured for the traveling crane air - conditioner. The condensate water evaporator is used to convert the condensate water generated during the operation of the air - conditioner into water vapor and dissipate it into the atmosphere, thereby avoiding the accumulation and discharge of air - conditioner condensate water. There is a condensate water tank in the condensate water evaporator for storing the air - conditioner condensate water, and a heating device is also provided for the condensate water tank. The heating device is used to heat the air - conditioner condensate water in the condensate water tank, and by heating, the air - conditioner condensate water in the condensate water tank is caused to evaporate and become water vapor and dissipate into the atmosphere.
[0003] In the existing condensate water tank, a steam port is provided at its top, and a steam pipe is provided for the steam port, and the steam pipe leads to the external atmosphere. After the air - conditioner condensate water in the condensate water tank is heated and evaporated into water vapor, the water vapor leaves the condensate water tank and dissipates into the atmosphere through the steam port and the steam pipe.
[0004] The current problem is as follows:
[0005] Due to the relatively high temperature of the water vapor, under the effect of the cold - hot temperature difference, condensate water is likely to be generated at the pipe orifice of the steam pipe and discharged outward together with the water vapor. The temperature of the condensate water is relatively high and scatters and splashes, which is likely to cause harm to the surrounding personnel and has a relatively large potential safety hazard; moreover, in the factory area, most places need to be kept dry, and the dripping of the condensate water may cause situations such as short - circuit of the circuit, damage to the surface - running machinery, etc., and also affect production. Summary of the Invention
[0006] The purpose of the utility model is to provide a steam port structure of a condensate water evaporator, which can prevent the situation of condensate water droplets splashing and dripping when the condensate water evaporator discharges water vapor.
[0007] In order to achieve the above - mentioned technical purpose, the utility model adopts the following technical solutions:
[0008] A steam port structure of a condensate water evaporator, the condensate water evaporator has a condensate water tank, and the condensate water tank has a steam port; the steam port structure includes a steam port cover, the steam port cover has an open side, a water - blocking net is installed on the open side of the steam port cover, and the steam port cover and the water - blocking net are combined to form a side net cover; the side net cover is covered at the steam port.
[0009] Further, the steam port structure further includes a water guide groove, which is located below the water baffle net and extends to the steam port.
[0010] Further, the water guide groove is arranged on the steam mask cover or the condensate water tank.
[0011] Further, a water baffle net is installed on the open side of the steam mask cover. The specific installation structure is as follows: a clamping groove is arranged at the edge part of the open side of the steam mask cover, an assembly edge strip is arranged at the upper edge of the water baffle net, one side edge of the water baffle net is embedded into the clamping groove, and the assembly edge strip of the water baffle net is fixedly connected with the top edge of the steam mask cover by using a bolt fastener.
[0012] Further, heat insulation cotton is arranged on the steam mask cover, and heat insulation cotton is arranged on the condensate water tank.
[0013] The beneficial effects of the steam port structure of the present utility model compared with the prior art are as follows:
[0014] When the steam generated by the condensate water evaporator heating the air-conditioning condensate water passes through the water baffle net, the heat exchange of the steam will occur on the surface of the water baffle net instead of condensing in the atmosphere after leaving the water baffle net. The condensed water will flow back into the condensate water tank under the blocking action of the water baffle net, so as to prevent the condensed water droplets from splashing and dripping, thereby avoiding harm to the surrounding personnel and meeting the requirements that water droplets are not allowed to drip in certain places, and ensuring the smooth progress of production operations. Description of the Drawings
[0015] Figure 1 It is a schematic structural diagram of the steam port structure of the condensate water evaporator of the present utility model. Detailed Embodiment
[0016] The following uses specific embodiments to further illustrate the present utility model:
[0017] This embodiment provides a steam port structure of a condensate water evaporator.
[0018] It should be noted that in this embodiment, the air conditioner is a traveling crane air conditioner, which is installed in the machine room of the traveling crane to provide a suitable temperature environment for the machine room of the traveling crane.
[0019] For the traveling crane air conditioner, a condensate water evaporator is configured. Those skilled in the art can understand that the condensate water evaporator is used to convert the condensate water generated by the operation of the air conditioner into steam and emit it into the atmosphere, so as to avoid the accumulation and discharge of the air-conditioning condensate water.
[0020] Those skilled in the art can also understand that there is a condensate water tank in the condensate water evaporator for storing air-conditioning condensate water, and a heating device is provided for the condensate water tank. The heating device is used to heat the air-conditioning condensate water in the condensate water tank, and the air-conditioning condensate water in the condensate water tank is boiled and discharged by heating, and then becomes water vapor and is dissipated into the atmosphere.
[0021] In the existing condensate water tank, there is a vapor port at its top. After the air-conditioning condensate water in the condensate water tank is heated and evaporated into water vapor, the water vapor leaves the condensate water tank through the vapor port and is dissipated into the atmosphere.
[0022] The vapor port structure of this embodiment is improved on the basis of the vapor port of the existing condensate water tank.
[0023] Specifically,
[0024] See Figure 1 , the vapor port structure of this embodiment includes a vapor mask cover 1. One side of the vapor mask cover 1 is set to be open. For the convenience of description, the open side of the vapor mask cover 1 is called the open side.
[0025] A water retaining net 2 is installed at the open side of the vapor mask cover 1. The vapor mask cover 1 and the water retaining net 2 are combined to form a "side net cover", and the side net cover formed by combining the water retaining net 2 and the vapor mask cover 1 is integrally covered at the vapor port of the condensate water tank, thus forming the described vapor port structure.
[0026] The specific working principle of the vapor port structure of this embodiment is as follows:
[0027] The heating device in the condensate water evaporator heats the air-conditioning condensate water in the condensate water tank. The air-conditioning condensate water in the condensate water tank is heated and boils and evaporates. The water vapor reaches the vapor mask cover 1 through the vapor port of the condensate water tank, and then is discharged to the atmosphere after passing through the water retaining net 2. During this process, the heat exchange of the water vapor will occur on the surface of the water retaining net 2, rather than condensing in the atmosphere after leaving the water retaining net 2. The condensed water will flow back into the condensate water tank under the blocking action of the water retaining net 2. In this way, the situation of "condensate water dripping and splashing" can be prevented, thereby avoiding harm to the surrounding personnel and meeting the requirements of "no water dripping is allowed" in some places, and ensuring the smooth progress of production operations.
[0028] It should be noted that a water guide groove 4 is provided at a position on the vapor mask cover 1 below the water retaining net 2, and the water guide groove 4 extends all the way to the vapor port of the condensation water tank. In this way, the condensed water intercepted by the water retaining net 2 will flow downward along the water retaining net 2 until it flows into the water guide groove 4. Then, the condensed water flows along the water guide groove 4 to the vapor port of the condensation water tank and returns to the condensation water tank through the vapor port, so that no water droplets will drip down.
[0029] It should be noted that in other embodiments, the water guide groove 4 can also be provided at the top of the condensation water tank, as long as the function of "guiding the condensed water to return to the condensation water tank from the vapor port" can be achieved.
[0030] It should be noted that on the vapor mask cover 1, except for the water retaining net 2, it is covered with 6-mm-thick heat insulation cotton, and moreover, the condensation water tank itself is also covered with 6-mm-thick heat insulation cotton. In this way, the heat exchange of water vapor will occur at the water retaining net 2, that is to say, the condensation of water vapor will only occur at the water retaining net 2. The water retaining net also has the functions of drainage and making the condensed water adhere.
[0031] It should be noted that in order to facilitate the installation of the water retaining net 2, a card slot 5 is provided at the edge part of the open side of the vapor mask cover 1, and an assembly edge strip 21 is fixedly provided at the upper edge of the water retaining net 2. When installing the water retaining net 2 on the open side of the vapor mask cover 1, first embed one side edge of the water retaining net 2 into the card slot 5, and then use two groups of bolt fasteners to fixedly connect the assembly edge strip 21 of the water retaining net 2 with the top edge of the vapor mask cover 1, so as to realize the installation and assembly of the water retaining net 2 and the vapor mask cover 1.
[0032] The above are only the preferred embodiments of the present invention and are not used to limit the protection scope of the present invention. Therefore, any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A steam port structure of a condensate evaporator, wherein the condensate evaporator has a condensate tank, and the condensate tank has a steam port; Features: The steam port structure comprises a steam mask cover (1), wherein the steam mask cover (1) has an open side, a water retaining net (2) is installed on the open side of the steam mask cover (1), and the steam mask cover (1) and the water retaining net (2) are combined to form a side net cover; The side mesh cover is closed at the steam port.
2. The condensate evaporator steam port structure according to claim 1, characterized in that: The steam outlet structure further comprises a water guide groove (4), wherein the water guide groove (4) is located below the water retaining net (2), and the water guide groove (4) extends to the steam outlet.
3. The condensate evaporator steam port structure according to claim 2, characterized in that: The water guide groove (4) is arranged on the steam mask cover (1) or on the condensation water tank.
4. The condensate evaporator steam port structure according to claim 1, characterized in that: A water retaining net (2) is installed on the open side of the steam mask cover (1), and its specific installation structure is as follows: a clamping groove (5) is provided at the edge of the open side of the steam mask cover (1), an assembly side strip (21) is provided at the upper edge of the water retaining net (2), one side edge of the water retaining net (2) is embedded in the clamping groove (5), and a bolt fastener is used to fix the assembly side strip (21) of the water retaining net (2) and the top edge of the steam mask cover (1) together.
5. The condensate evaporator steam port structure according to claim 1, characterized in that: The steam mask cover (1) is provided with heat-insulating cotton, and the condensation water tank is provided with heat-insulating cotton.