Defogging device for sightseeing elevator
By installing air supply channels and blowers in the elevator shaft, combined with the elevator control system, the problem of fogging on the sightseeing elevator glass was solved, achieving a clear view of the glass and optimized energy consumption.
Patent Information
- Application Number
- CN202520109952.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-17
AI Technical Summary
The humid and rainy climate in southern regions makes the glass of sightseeing elevators prone to fogging, affecting their aesthetics and transparency.
Vertical and horizontal air supply channels are installed in the elevator shaft and equipped with blowers. The air supply system removes water vapor and mist from the glass. The elevator control system is used to flexibly control the opening and closing of the air supply channels. The structure of the air supply channels is optimized to simplify installation and reduce energy consumption.
It effectively removes water vapor and mist from elevator glass, improving the elevator's aesthetics and transparency, reducing energy consumption, and enhancing the comfort of airflow.
Smart Images

Figure CN223737460U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to elevator field, concretely relates to defogging device. BACKGROUND
[0002] Southern region is humid and rainy, and the elevator with sightseeing glass is easy to have glass fog, which influences the appearance and the permeability of the sightseeing elevator. CONTENT
[0003] The utility model discloses a defogging device for sightseeing elevator to solve the above technical problem.
[0004] The technical problem solved by the utility model can be solved by the following technical scheme:
[0005] A defogging device for sightseeing elevator, characterized by comprising air supply channel, the air supply channel includes the vertical air supply channel in the vertical direction, the top air supply channel in the horizontal direction, the bottom air supply channel in the horizontal direction, the top of the vertical air supply channel is connected with the top air supply channel, the bottom of the vertical air supply channel is connected with the bottom air supply channel, the top air supply channel and the bottom air supply channel are provided with air outlet, and the vertical air supply channel is provided with air inlet.
[0006] Further comprising air blower, and the air outlet of the air blower is connected with the air inlet of the vertical air supply channel.
[0007] Preferably, the number of air supply channels and the number of air blowers are equal to the number of elevator layers of the elevator, each air supply channel is arranged in parallel in the elevator shaft, and the bottom air supply channel of the air supply channel located at the upper side abuts against the top air supply channel of the air supply channel located at the lower side.
[0008] Preferably, the elevator shaft comprises a support frame, the outer side of the support frame is fixed with glass, the support frame comprises a vertical support in the vertical direction and a horizontal support in the horizontal direction, the vertical air supply channel is fixed to the inner side of the vertical support, and the top air supply channel and the bottom air supply channel are fixed to the inner side of the horizontal support.
[0009] Preferably, the cross section of the air supply channel is rectangular, the air supply channel is provided with a clamping jaw on the side wall close to the support frame, and the air supply channel is clamped to the air supply channel through the clamping jaw.
[0010] Preferably, the air outlet of the top air supply channel is arranged on the side wall below the top air supply channel.
[0011] Preferably, the air outlet of the bottom air supply channel is arranged on the side wall above the bottom air supply channel.
[0012] Beneficial effects: 1. The utility model discloses a vertical air supply channel and top air supply channel and bottom air supply channel are set up in the elevator shaft, and the water vapor and water mist on the glass can be blown away through the air supply system. 2. The utility model discloses a separate air supply channel is set up on each floor, and part of the air supply channels can be opened or closed according to the running state of the elevator. Compared with the mode that the whole air supply channel is set up in the shaft, the control is more flexible, the air blowing and mist removing effect can be effectively improved, and the use energy consumption can be effectively reduced. 3. The utility model optimizes the control mode of the air supply channel, makes the air supply more humanized, and improves the uncomfortable condition caused by the air blowing on the glass when the elevator is opened. 4. The utility model optimizes the structure of the air supply channel, and makes the installation of the air supply channel more simple. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is a structural schematic view of the air supply channel. DETAILED DESCRIPTION
[0014] In order to make the technical means, creative features, purposes and effects of the utility model easy to understand, the utility model is further described below in combination with the drawings.
[0015] Referring to Figure 1 , the de-misting device of the indoor sightseeing household elevator includes an air supply channel, and the air supply channel includes a vertical air supply channel 1, a top air supply channel 3 and a bottom air supply channel 4. The vertical air supply channel 1 is located in the vertical direction, the top air supply channel 3 and the bottom air supply channel 4 are located in the horizontal direction, the top of the vertical air supply channel 1 is connected with the top air supply channel 3, the bottom of the vertical air supply channel 1 is connected with the bottom air supply channel 4, air outlets 6 are formed in the top air supply channel 3 and the bottom air supply channel 4, and air inlets 2 are formed in the vertical air supply channel 1. The number of the air supply channels is the same as the number of the floors of the elevator. The air supply channels are arranged in an up-down manner, the bottom air supply channel 4 of the air supply channel located at the upper position is located above the top air supply channel 3 of the air supply channel located at the adjacent lower position, and the bottom air supply channel 4 of the air supply channel located at the upper position can abut against the top air supply channel 3 of the air supply channel located at the adjacent lower position. The utility model discloses a separate air supply channel is set up on each floor, and part of the air supply channels can be opened or closed according to the running state of the elevator. Compared with the mode that the whole air supply channel is set up in the shaft, the control is more flexible, the air blowing and mist removing effect can be effectively improved, and the use energy consumption can be effectively reduced.
[0016] The defogging device of the indoor sightseeing home elevator further comprises a blower, and an air outlet 6 of the blower is connected to an air inlet 2 of the vertical air supply channel 1. The elevator is provided with an elevator control system, and the elevator control system is connected to the blower. Thus, the working state of the blower is controlled by the elevator control system. Preferably, a hall call panel is arranged outside the elevator shaft (at the elevator hall door), and the blower is fixed to the wall at the position of the hall call panel. The hall call panel is provided with a control circuit board, and the control circuit board is connected to the blower. Preferably, when a user presses the hall call panel to call the elevator, the control circuit board controls the blower of the corresponding floor to be closed, so as to prevent the wind blown by the blower from being blown out through the door gap when the elevator door is opened or closed, thereby bringing discomfort to the user. Alternatively, the blower is preferably connected to a timing module and is periodically opened and closed by the timing module. Of course, the timing module and the control circuit board can be simultaneously connected, and the priority of the control circuit board is higher than that of the timing module when they are simultaneously connected. That is, when there is no one calling the elevator and the timing module is timing the operation of the blower, the blower is operated, and when there is someone calling the elevator or the timing module is timing the non-operation of the blower, the blower of the corresponding floor is closed. For the case that there is someone calling the elevator on each floor, all the blowers can be non-operated. Even if the blower is non-operated, the running of the elevator itself will generate wind, and this part of wind can replace the blower to improve the fog condition on the glass.
[0017] The elevator shaft comprises a support frame and a glass fixed to the support frame. The support frame comprises vertical supports in the vertical direction and horizontal supports in the horizontal direction. The vertical air supply channel 1 is fixed to the vertical supports, and the top air supply channel 3 and the bottom air supply channel 4 are fixed to the horizontal supports. Preferably, the air supply channels are fixed to the support frame by bundling steel bars, so as to facilitate maintenance and replacement. Preferably, a shock-absorbing pad is arranged between the air supply channels and the support frame, or the air supply channels are wrapped with shock-absorbing materials, so as to reduce the vibration of the air supply channels and avoid the vibration of the support frame driven by the air supply channels, thereby forming a large noise in the shaft. Alternatively, the glass is fixed to the outer side of the support frame, and the air supply channels are fixed to the inner side of the support frame. The cross section of the air supply channel is preferably rectangular, so as to utilize the regular surface of the rectangle to increase the contact area with the support frame, thereby reducing the displacement of the air supply channel. Preferably, a clamping jaw 5 is arranged on the side wall of the air supply channel close to the support frame, and the air supply channel is clamped by the clamping jaw 5. The air outlet 6 of the top air supply channel 3 is arranged on the side wall below the top air supply channel 3. The air outlet 6 of the bottom air supply channel 4 is arranged on the side wall above the bottom air supply channel 4. Thus, the position of the air outlet 6 is utilized to guide the wind direction, so that the wind can be blown to the glass more. Preferably, the side wall above the bottom air supply channel 4 and the side wall below the top air supply channel 3 are stamped with a “U”-shaped notch, the part in the notch is reversely folded to form the clamping jaw 5, and the remaining part forms the air outlet 6. Thus, the structure is simplified, and the amount of material is saved.
[0018] The basic principle and main features of the present application and the advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A defogging device for a sightseeing elevator, characterized in that, The air supply channel comprises a vertical air supply channel in the vertical direction, a top air supply channel in the horizontal direction, and a bottom air supply channel in the horizontal direction, the top of the vertical air supply channel is communicated with the top air supply channel, the bottom of the vertical air supply channel is communicated with the bottom air supply channel, the top air supply channel and the bottom air supply channel are provided with air outlets, and the vertical air supply channel is provided with an air inlet. The air supply channel further comprises an air blower, and the air outlet of the air blower is communicated with the air inlet of the vertical air supply channel.
2. The defogging device for an observation elevator according to claim 1, characterized by The number of air supply channels and the number of air blowers are equal to the number of elevator floors of the elevator, the air supply channels are arranged in parallel in the elevator shaft, and the bottom air supply channel of the air supply channel located at the upper side abuts against the top air supply channel of the air supply channel located at the lower side.
3. The defogging device for an observation elevator according to claim 1 or 2, characterized by The elevator shaft comprises a support frame, the outer side of the support frame is fixed with glass, the support frame comprises a vertical support in the vertical direction and a horizontal support in the horizontal direction, the vertical air supply channel is fixed to the inner side of the vertical support, and the top air supply channel and the bottom air supply channel are fixed to the inner side of the horizontal support.
4. The defogging device for an observation elevator according to claim 3, characterized by The cross section of the air supply channel is in the shape of a rectangle, the air supply channel is provided with a clamping jaw on the side wall close to the support frame, and the air supply channel is clamped to the air supply channel through the clamping jaw.
5. The defogging device for an observation elevator according to claim 4, characterized by The air outlet of the top air supply channel is arranged on the side wall located at the lower side of the top air supply channel.
6. The defogging device for an observation elevator according to claim 4, characterized by The air outlet of the bottom air supply channel is arranged on the side wall located at the upper side of the bottom air supply channel.