Simulation flame fireplace
By using partition plates and fan systems in simulated flame fireplaces to control the direction of water mist, combined with lighting components and water level probes, the problem of water mist not being able to stand up and leak, achieving realistic flame effects and environmental protection.
Patent Information
- Application Number
- CN202421945979.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-12
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-08-12
AI Technical Summary
The water mist of existing simulated flame devices cannot be fully upright, and water leakage in the internal water source may cause environmental damage.
The partition plate is used to separate the lower space of the water tank and the airflow channel into two parts, and the left and right fans are set respectively. By controlling the wind force, the water mist is blown vertically up, right or left, and combined with the illumination of the lighting components, a realistic flame effect is formed. At the same time, a water level probe and an alarm are set to detect water leakage.
It realizes flexible control of water mist, forms a realistic flame effect, and promptly detects and alarms for water leakage to avoid environmental damage.
Smart Images

Figure CN223191668U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of simulated flame fireplaces, and in particular relates to a simulated flame fireplace. Background Art
[0002] A simulated fireplace is a fireplace that uses light reflection to create a two-dimensional flame, and is paired with simulated charcoal. The effect is realistic, but it is not a real flame. Decorative simulated fireplaces have a more prominent decorative function and are the most popular. They simulate the effect of "burning wood" in a fireplace to achieve the purpose of decorating the house, and do not have a heating function. They are often seen in neoclassical and other styles. Simulated fireplaces do not need to consider the problem of flues and the pollution caused by burning firewood to the environment. Generally, there are very few buildings in China that leave space for flues. If a simulated fireplace is used, there is no need to renovate spaces such as single-family villas. Direct installation can achieve an aesthetic effect. Existing simulated flame devices such as Figure 6 As shown, there are the following problems:
[0003] 1. The air flow of the existing simulated flame device is blown vertically upward, while the water mist is blown from one side of the air flow to the air flow. No matter how the thrust of the fan is adjusted, the water mist cannot achieve a completely upright effect, nor can it be tilted to the left side of the fan. The water mist can only be tilted to the right.
[0004] 2. The existing simulated flame device needs to form water mist inside, so water for atomization is stored inside. If water leakage occurs inside and is not cleaned up in time, it may cause damage to the surrounding environment. Utility Model Content
[0005] The purpose of the utility model is to provide a simulated flame fireplace to solve at least one of the above problems existing in the prior art.
[0006] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0007] A simulated flame fireplace comprises a fireplace body, a flame outlet extending along the length direction of the fireplace body is opened in the middle of the upper end of the fireplace body, a vertical air flow channel is installed in the fireplace body on one side of the flame outlet, and a tilted light assembly is installed in the fireplace body on the other side of the flame outlet, and the light source emitted by the light assembly is directed towards the upper part of the outlet of the air flow channel; a water tank for storing a water source is installed in the fireplace body below the air flow channel, and the lower end of the air flow channel is connected to the inner cavity of the water tank in the middle of the water tank; a partition plate is installed in the water tank with its lower end extending into the water source, and the lower end of the partition plate is spaced apart from the inner bottom surface of the water tank; the lower part of the partition plate cooperates with the water source to divide the inner cavity of the water tank into left and right Side water chamber and right water chamber, an atomizer is installed on the inner bottom surface of the left water chamber, the upper part of the partition plate extends into the air flow channel and symmetrically divides the air flow channel into a left air flow channel and a right air flow channel, the left air flow channel is connected with the left water chamber, and the right air flow channel is connected with the right water chamber; an air flow convergence port is provided at the outlet of the air flow channel above the partition plate, and the opening of the air flow convergence port gradually becomes smaller from bottom to top; a left fan is installed on the water tank corresponding to the left water chamber, for blowing the water mist and air in the left water chamber to the left air flow channel through the left fan; a right fan is installed on the water tank corresponding to the right water chamber, for blowing the air in the right water chamber to the right air flow channel through the right fan.
[0008] As a preferred technical solution in the present invention, the lighting assembly includes waterproof LED lamps arranged along the length direction of the flame outlet, an inclined mounting plate is provided in the fireplace body on the other side of the flame outlet, the waterproof LED lamps are installed on the inclined mounting plate, and the light source emitted by the waterproof LED lamps is directed toward the upper part of the outlet of the air flow channel.
[0009] As a preferred technical solution in the present invention, a water level probe for detecting whether there is water in the fireplace body is installed in the fireplace body outside the water tank, and the head of the water level probe extends to the inner bottom of the fireplace body; the water level probe is electrically connected to a processor, and the processor is electrically connected to an alarm.
[0010] As a preferred technical solution in the present invention, an air guide channel is installed at the upper end of the water tank corresponding to the left water chamber, and an atomizer bracket is provided on the inner bottom surface of the left water chamber. The air guide channel and the atomizer bracket are connected by a connecting rod and formed as one piece; the left fan is installed at the upper end of the air guide channel, and the atomizer is installed on the atomizer bracket.
[0011] As a preferred technical solution in the present invention, an annular positioning plate is integrally formed on the edge of the upper end of the air guide channel, the annular positioning plate is installed on the upper end of the water tank, and the left fan is detachably connected to the annular positioning plate by bolts.
[0012] As a preferred technical solution in the present invention, a sponge mounting bracket is installed at the air inlet end of the left fan, and a sponge is installed in the sponge mounting bracket.
[0013] As a preferred technical solution in the present invention, ventilation holes are provided on the top surface and / or side surfaces of the fireplace body on both sides of the flame outlet.
[0014] As a preferred technical solution in the present invention, a liquid level sensor is installed in the water tank.
[0015] Beneficial effects: The utility model divides the interior of the water tank and the lower space of the air flow channel into two parts through a partition plate. Both spaces are provided with fans for blowing, and the wind force can be controlled by the fans to achieve water mist blowing vertically upward, blowing to the right or blowing to the left. For example, the wind force of the two air flow channels is controlled to be the same, which can keep the water mist blowing vertically upward, and the wind force of the left air flow channel is greater than that of the right air flow channel, which can achieve water mist blowing to the right. The wind force of the right air flow channel is greater than that of the left air flow channel, which can achieve water mist blowing to the left. Combined with the illumination of the lighting component, the flame formed by this simulated flame fireplace can be made more realistic. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a three-dimensional schematic diagram of the utility model;
[0017] Figure 2 It is a top view of the utility model;
[0018] Figure 3 for Figure 2 Middle AA section view;
[0019] Figure 4 for Figure 2 Middle BB section view;
[0020] Figure 5 for Figure 2 Middle CC section view;
[0021] Figure 6 It is a structural diagram of an existing simulated flame device.
[0022] In the figure: 1-fireplace body; 2-air flow channel; 3-lighting assembly; 4-water tank; 5-atomizer; 6-partition plate; 7-left fan; 8-right fan; 9-water level probe; 10-air guide channel; 11-atomizer bracket; 12-annular positioning plate; 13-sponge; 14-liquid level sensor. DETAILED DESCRIPTION
[0023] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the present invention will be briefly introduced below in conjunction with the drawings and the description of the embodiments or the prior art. Obviously, the following description of the structures of the drawings is only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative work. It should be noted that the description of these embodiments is used to help understand the present invention, but does not constitute a limitation of the present invention.
[0024] Example:
[0025] like Figure 1-Figure 5 As shown, this embodiment provides a simulated flame fireplace, including a fireplace body 1, a flame outlet extending along the length direction of the fireplace body 1 is opened in the middle of the upper end of the fireplace body 1, so as to form a simulated flame at the flame outlet, a vertically arranged air flow channel 2 is installed in the fireplace body 1 on one side of the flame outlet, so that water mist can escape from the air flow channel 2, and an inclined lighting assembly 3 is installed in the fireplace body 1 on the other side of the flame outlet, and the light source emitted by the lighting assembly 3 is directed toward the upper part of the outlet of the air flow channel 2, so that the light source shines on the water mist, thereby forming a simulated flame.
[0026] A water tank 4 for storing water is installed in the fireplace body 1 below the air flow channel, and the water tank 4 is provided with a water filling port. The lower end of the air flow channel 2 is connected to the inner cavity of the water tank 4 in the middle of the water tank 4, and a partition plate 6 is installed in the water tank 4 with its lower end extending into the water source, and the lower end of the partition plate 6 is spaced apart from the inner bottom surface of the water tank 4, so that the water mist formed by the atomizer 5 can flow into the water tank 4 on both sides of the partition plate 6; the lower part of the partition plate 6 cooperates with the water source to divide the inner cavity of the water tank 4 into a left water cavity and a right water cavity, and an atomizer 5 is installed on the inner bottom surface of the left water cavity, and the upper part of the partition plate 6 extends into the air flow channel 2 and symmetrically divides the air flow channel 2 into a left air flow channel and a right air flow channel, the left air flow channel is connected to the left water cavity, and the right air flow channel is connected to the right water cavity; an air flow convergence port is provided at the outlet of the air flow channel 2 above the partition plate 6, and the opening of the air flow convergence port The air in the left and right water chambers is blown away by the fan 7 and the air in the right water chamber is blown away by the fan 7. Figure 6 The existing technology shown can make the effect of simulated flame more realistic.
[0027] The utility model divides the interior of the water tank 4 and the lower space of the air flow channel 2 into two parts by a partition plate 6. Both spaces are provided with fans for blowing, and the wind force can be controlled by the fans to achieve water mist blowing vertically upward, blowing to the right or blowing to the left. For example, if the wind force of the two air flow channels is controlled to be the same, the water mist can be kept blowing vertically upward, and the wind force of the left air flow channel is greater than that of the right air flow channel, so that the water mist can be blown to the right. The wind force of the right air flow channel is greater than that of the left air flow channel, so that the water mist can be blown to the left. Combined with the illumination of the lighting component 3, the flame formed by the simulated flame fireplace can be made more realistic.
[0028] As a preferred implementation scheme in this embodiment, it needs to be further explained that the lighting assembly 3 includes waterproof LED lamps arranged along the length direction of the flame outlet, and an inclined mounting plate is provided in the fireplace body 1 on the other side of the flame outlet. The waterproof LED lamp is installed on the inclined mounting plate, and the light source emitted by the waterproof LED lamp is directed toward the top of the outlet of the airflow channel 2.
[0029] As a preferred implementation scheme in this embodiment, it needs to be further explained that a water level probe 9 is installed in the fireplace body 1 outside the water tank 4 to detect whether there is water in the fireplace body 1, so that when the water tank 4 leaks, the water level probe 9 can quickly detect it. The head of the water level probe 9 extends to the inner bottom of the fireplace body 1, ensuring that as long as there is a water source at the inner bottom of the fireplace body 1, it can be detected in time; the water level probe 9 is electrically connected to a processor, and the processor is electrically connected to an alarm, which is convenient for alarming through the alarm, thereby facilitating timely maintenance.
[0030] As a preferred implementation scheme in this embodiment, it needs to be further explained that an air guide channel 10 is installed at the upper end of the water tank 4 corresponding to the left water chamber, and an atomizer bracket 11 is provided on the inner bottom surface of the left water chamber. The air guide channel 10 and the atomizer bracket 11 are connected by a connecting rod and formed as one piece, integrating the atomizer bracket and the air guide port, making the structure simpler and more convenient to assemble; the left fan 7 is installed at the upper end of the air guide channel 10, and the atomizer 5 is installed on the atomizer bracket 11 to ensure the atomization effect, and at the same time, the blowing direction is preset in advance to facilitate the installation of the equipment.
[0031] As a preferred implementation scheme in this embodiment, it needs to be further explained that the edge of the upper end of the air guide channel 10 is integrally formed with an annular positioning plate 12, the annular positioning plate 12 is installed on the upper end of the water tank 4, and the left fan 7 is detachably connected to the annular positioning plate 12 by bolts, thereby making the installation of the equipment easier.
[0032] As a preferred implementation scheme in this embodiment, it needs to be further explained that a sponge mounting bracket is installed at the air inlet end of the left fan 7, and a sponge 13 is installed in the sponge mounting bracket. The sponge can filter and control the air volume to prevent foreign matter from entering the left fan 7 and affecting the normal operation of the left fan 7.
[0033] As a preferred implementation scheme in this embodiment, it needs to be further explained that ventilation holes are provided on the top surface and / or side surfaces of the fireplace body 1 on both sides of the flame outlet to ensure the purge effect. At the same time, the ventilation holes can also be used as heat dissipation holes to achieve heat dissipation of the equipment and avoid excessive internal temperature affecting the normal operation of the equipment.
[0034] As a preferred implementation scheme in this embodiment, it needs to be further explained that a liquid level sensor 14 is installed in the water tank 4, which can detect the water level in the water tank 4 in real time to ensure the atomization effect.
[0035] Finally, it should be noted that the above description is only a preferred embodiment of the present invention and is not intended to limit the scope of protection of the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included in the scope of protection of the present invention.
Claims
1. A simulated flame fireplace, characterized in that: The fireplace body (1) comprises a fireplace body (1), wherein a flame outlet extending along the length direction of the fireplace body (1) is provided in the middle of the upper end of the fireplace body (1), a vertical air flow channel (2) is installed in the fireplace body (1) on one side of the flame outlet, and a tilted light assembly (3) is installed in the fireplace body (1) on the other side of the flame outlet, wherein the light source emitted by the light assembly (3) is directed toward the upper side of the outlet of the air flow channel (2); A water tank (4) for storing a water source is installed in the fireplace body (1) below the air flow channel, and the lower end of the air flow channel (2) is connected to the inner cavity of the water tank (4) at the middle of the water tank (4). A partition plate (6) is installed in the water tank (4), the lower end of which extends into the water source, and the lower end of the partition plate (6) is spaced apart from the inner bottom surface of the water tank (4); the lower part of the partition plate (6) cooperates with the water source to separate the inner cavity of the water tank (4) into a left water cavity and a right water cavity, and an atomizer (5) is installed on the inner bottom surface of the left water cavity. The upper part of the partition plate (6) extends into the air flow channel (2) and symmetrically divides the air flow channel (2) into a left air flow channel and a right air flow channel, the left air flow channel is connected to the left water cavity, and the right air flow channel is connected to the right water cavity; an air flow convergence port is provided at the outlet of the air flow channel (2) above the partition plate (6), and the opening of the air flow convergence port gradually becomes smaller from bottom to top; A left fan (7) is installed on the water tank (4) corresponding to the left water cavity, and is used to blow the water mist and air in the left water cavity to the left air flow channel through the left fan (7); a right fan (8) is installed on the water tank (4) corresponding to the right water cavity, and is used to blow the air in the right water cavity to the right air flow channel through the right fan (8).
2. The artificial flame fireplace according to claim 1, characterized in that: The lighting assembly (3) includes waterproof LED lamps arranged along the length direction of the flame outlet, an inclined mounting plate is provided in the fireplace body (1) on the other side of the flame outlet, the waterproof LED lamps are mounted on the inclined mounting plate, and the light source emitted by the waterproof LED lamps is directed toward the upper part of the outlet of the air flow channel (2).
3. The artificial flame fireplace according to claim 1, characterized in that: A water level probe (9) for detecting whether there is water in the fireplace body (1) is installed in the fireplace body (1) outside the water tank (4), and the head of the water level probe (9) extends to the inner bottom of the fireplace body (1); the water level probe (9) is electrically connected to a processor, and the processor is electrically connected to an alarm.
4. The artificial flame fireplace according to claim 1, characterized in that: An air guide channel (10) is installed at the upper end of the water tank (4) corresponding to the left water cavity, and an atomizer bracket (11) is provided on the inner bottom surface of the left water cavity. The air guide channel (10) and the atomizer bracket (11) are connected by a connecting rod and are integrally formed; the left fan (7) is installed at the upper end of the air guide channel (10), and the atomizer (5) is installed on the atomizer bracket (11).
5. The artificial flame fireplace according to claim 4, characterized in that: An annular positioning plate (12) is integrally formed on the edge of the upper end of the air guide channel (10), and the annular positioning plate (12) is installed on the upper end of the water tank (4). The left fan (7) is detachably connected to the annular positioning plate (12) by bolts.
6. A simulated flame fireplace according to any one of claims 1 to 5, characterized in that: The air inlet end of the left fan (7) is provided with a sponge mounting frame, and a sponge (13) is installed in the sponge mounting frame.
7. The simulated flame fireplace according to claim 1, characterized in that: Ventilation holes are provided on the top surface and / or side surfaces of the fireplace body (1) on both sides of the flame outlet.
8. The simulated flame fireplace according to claim 1, characterized in that: A liquid level sensor (14) is installed in the water tank (4).