Skirting line heating structure
By integrating the heating element and humidification element into the skirting board heating structure, and utilizing multi-directional heat dissipation and atomization humidification technology, the problem of uneven heat dissipation and dryness in traditional skirting board heating structures is solved, achieving a more three-dimensional heating effect and a more comfortable heating and warming effect.
Patent Information
- Application Number
- CN202520320443.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-26
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-02-26
AI Technical Summary
Traditional skirting board heating structures result in uneven heat distribution, a small heating area, and are prone to causing localized overheating, especially in dry winters, which can make people feel uncomfortable.
A skirting board heating structure integrating a heating body and a humidifying body is designed. By setting heating holes on the top, front and rear sides of the shell, heat can be dissipated from three directions. An atomizing chamber and a vibrating plate are set in the humidifying body. Humidification is achieved by automatically releasing water and atomizing it using gravity. The atomized gas is discharged from bottom to top.
It achieves more three-dimensional and comprehensive heating, increases the heating area, improves heat dissipation, and alleviates the dryness of the air caused by heating through humidification, providing bottom-up heating and humidification, thus enhancing user comfort.
Smart Images

Figure CN223954244U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of warmer, in particular to a skirting line heating structure. BACKGROUND
[0002] The skirting line heating structure is of skirting line type, which combines the skirting line and the electric heater organically, occupies no space and achieves the purpose of heating. The principle is to use the principle of heat circulation to heat and radiate along the periphery of the room, so that the temperature is uniform and the temperature difference at each point in the room is small. The hot air circulates from bottom to top, so that the heater can be turned on and heated immediately, avoiding the disadvantage that the lower part of the traditional heater is not easy to heat up.
[0003] However, the traditional skirting line heating structure is generally of bottom-to-top convection type. This structure only radiates heat from the top, has a small heating area and poor heat dissipation effect. Moreover, the traditional skirting line heating structure is easy to cause local dry heat around it after long-time heating, especially in winter when the air is generally dry, which is easy to make people feel uncomfortable. SUMMARY
[0004] In view of the above problems, the utility model embodiment is provided to overcome the above problems or at least partially solve the above problems.
[0005] A skirting line heating structure, comprising a heating main body and a humidifying main body arranged at one end of the heating main body.
[0006] The heating main body comprises a shell and a string aluminum heating body. The bottom surface of the shell is provided with an air inlet hole. The top surface and the front and rear side surfaces of the shell are provided with heating holes. One end of the shell is closed by a side plate. The two ends of the string aluminum heating body are fixed in the shell by support plates.
[0007] The humidifying main body is arranged at the end of the shell away from the side plate. The humidifying main body comprises an outer cylinder, a water tank, a vibration plate and a control panel. One side of the outer cylinder is connected with the shell and is provided with a heat insulation plate between the shell end. The inner bottom of the outer cylinder is provided with an atomizing chamber. The top of the outer cylinder is provided with a mist outlet communicating with the atomizing chamber. The water tank is arranged in the outer cylinder and is provided with a water outlet at the bottom. The water outlet communicates with the atomizing chamber. The vibration plate is arranged in the atomizing chamber. The control panel is embedded in the side wall of the outer cylinder and is electrically connected with the string aluminum heating body and the vibration plate.
[0008] Preferably, the shell comprises an upper cover and a lower cover arranged oppositely and a front side plate and a rear side plate arranged oppositely.
[0009] A plurality of L-shaped insertion pieces are arranged at the opposite long edges of the upper cover and the lower cover.
[0010] The opposite two long edges of the front side plate and the rear side plate are vertically extended with connecting plates, and the connecting plates are spaced apart along the length direction and provided with a plurality of insertion holes corresponding to a plurality of the insertion pieces;
[0011] The front side plate and the rear side plate are provided with L-shaped connecting pieces at the end away from the humidifying body, the side plate is provided with a connecting buckle buckled with the connecting pieces up and down, and the side plate and the lower cover are further fixedly connected through a connecting piece.
[0012] Preferably, the heating holes opened in the front side plate and the rear side plate are arranged close to the upper cover.
[0013] Preferably, the side wall of the outer cylinder body is hollow, including an inner layer wall and an outer layer wall arranged inside and outside.
[0014] Preferably, the humidifying body further comprises a fan, the fan is arranged between the inner layer wall and the outer layer wall of the outer cylinder body away from the heating body, and the air outlet of the fan faces upward; the inner layer wall above the air outlet is bent and provided with a through hole communicated with the air outlet; a guide plate is arranged above the through hole.
[0015] Preferably, the outer cylinder body is internally provided with a lamp plate assembly, the lamp plate assembly comprises a transparent lampshade, a lamp plate support and a lamp plate.
[0016] The transparent lampshade is annularly arranged around the water tank, and the bottom of the transparent lampshade is provided with a mounting groove.
[0017] The top of the lamp plate support is provided with an annular groove for mounting the lamp plate, and the lamp plate support is mounted in the mounting groove and provided with a sealing ring between the mounting groove.
[0018] Preferably, the opposite two side walls of the water tank are concave; the transparent lampshade corresponds to the concave side walls of the water tank.
[0019] Preferably, the mist outlet is provided with a mist cover, and the mist cover is provided with a plurality of mist guide holes.
[0020] Preferably, the support plate is provided with a temperature circuit breaker.
[0021] Preferably, the water outlet at the bottom of the water tank is provided with a water discharge control structure.
[0022] The application specifically includes the following advantages:
[0023] In the embodiments of this application, by integrating the heating body and the humidifying body into a single structure, humidification can be performed simultaneously for heating and warmth, reducing air dryness caused by heating. Heating holes are provided on the top, front, and rear sides of the heating body shell, allowing heat to dissipate from three directions: front, back, and top, resulting in more three-dimensional and comprehensive heating, a larger heating area, better heat dissipation, and easier passing of temperature rise tests. The humidifying body is positioned at one end of the shell, achieving high integration without affecting heat dissipation. A heat insulation plate is placed between the humidifying body and the shell to prevent heat transfer from the shell to the humidifying body. The humidifying body incorporates a misting chamber, water tank, and vibration plate, with the misting chamber located at the water outlet at the bottom of the water tank. A mist outlet communicating with the misting chamber is located at the top of the outer cylinder, enabling automatic gravity-driven water release for vibration and atomization. The atomized gas is discharged from bottom to top to humidify the air, conforming to the design of a skirting board heating structure. This application integrates heating and humidification into one unit, enabling simultaneous bottom-up heating and humidification to alleviate dryness, with more three-dimensional and comprehensive heating and better heating effect. Attached Figure Description
[0024] To more clearly illustrate the technical solution of this application, the drawings used in the description of this application will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0025] Figure 1 This is a schematic diagram of the overall structure of the skirting board heating structure of this utility model;
[0026] Figure 2 This is a partial structural schematic diagram of the skirting board heating structure of this utility model;
[0027] Figure 3 This is an exploded view of the heating body of this utility model;
[0028] Figure 4 This is an enlarged schematic diagram of part of the structure of the top cover and rear side panel of this utility model;
[0029] Figure 5 This is an enlarged schematic diagram of a portion of the structure of the rear side plate and the side plate of this utility model;
[0030] Figure 6 This is a front sectional view of the humidifier body of this utility model;
[0031] Figure 7 This is a side sectional view of the humidifier body of this utility model;
[0032] Fig. 1 is a heating main body; 2 is a humidifying main body; 11 is a shell; 111 is an upper cover; 112 is a lower cover; 113 is a front side plate; 114 is a rear side plate; 115 is a side plate; 116 is a heating hole; 117 is an air inlet hole; 12 is a string aluminum heating body; 13 is a plug-in piece; 14 is a plug hole; 15 is a connecting piece; 16 is a connecting buckle; 17 is a support plate; 171 is a fixing plate; 172 is a heating body support; 18 is a temperature circuit breaker; 21 is an outer cylinder; 211 is an atomizing chamber; 212 is a mist outlet; 213 is an inner layer wall; 214 is an outer layer wall; 22 is a water tank; 221 is a water outlet; 23 is a shock plate; 24 is a control panel; 25 is a heat insulation plate; 26 is a fan; 27 is a guide plate; 28 is a lamp plate assembly; 281 is a transparent lampshade; 282 is a lamp plate support; 283 is a lamp plate; 284 is a mist cover; 2841 is a mist guide hole; 29 is a water drainage control structure; 3 is a supporting leg. DETAILED DESCRIPTION
[0033] In order to make the objectives, characteristics and advantages of the present application more obvious and easy to understand, the present application will be further described in detail below in combination with the drawings and specific embodiments. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0034] Referring to Figures 1-7 , a structure diagram of a skirting line heating structure is shown, which can specifically include a heating main body 1 and a humidifying main body 2 arranged at one end of the heating main body 1;
[0035] The heating main body 1 includes a shell 11 and a string aluminum heating body 12, the bottom surface of the shell 11 is provided with an air inlet hole 117, the top surface of the shell 11 and the front side and the rear side thereof are provided with heating holes 116; one end of the shell 11 is closed by a side plate 115; the two ends of the string aluminum heating body 12 are respectively fixed in the shell 11 by support plates 17;
[0036] The humidifying main body 2 is arranged at the end of the shell 11 away from the side plate 115, and the humidifying main body 2 includes an outer cylinder 21, a water tank 22, a shock plate 23 and a control panel 24, one side of the outer cylinder 21 is connected with the shell 11 and is provided with a heat insulation plate 25 between the end of the shell 11, the inner bottom of the outer cylinder 21 is provided with an atomizing chamber 211, and the top of the outer cylinder 21 is provided with a mist outlet 212 in communication with the atomizing chamber 211; the water tank 22 is arranged in the inner portion of the outer cylinder 21 and is provided with a water outlet 221 at the bottom, the water outlet 221 is in communication with the atomizing chamber 211; the shock plate 23 is arranged in the atomizing chamber 211; and the control panel 24 is embedded in the side wall of the outer cylinder 21 and is electrically connected with the string aluminum heating body 12 and the shock plate 23 respectively.
[0037] In the embodiment of the present application, by integrating the heating body 1 and the humidifying body 2 into an integrated structure, heating and warming can be performed while humidifying to reduce air drying caused by heating; by providing heating holes 116 on the top surface and the front and rear side surfaces of the shell 11 of the heating body 1, heat can be dissipated from the front, rear and top three directions, so that heating is more three-dimensional and more comprehensive, the heating area is larger, the heat dissipation effect is better, and the temperature rise test is easier to pass; by arranging the humidifying body 2 at one end of the shell 11, the integration degree is high and the heat dissipation effect is not affected, and by arranging a heat insulation plate 25 between the humidifying body 2 and the shell 11, the heat inside the shell 11 can be isolated from the humidifying body 2 to affect it; by arranging an atomizing chamber 211, a water tank 22, an oscillation plate 23 and the like inside the humidifying body 2, and arranging the atomizing chamber 211 at the water outlet 221 at the bottom of the water tank 22, and arranging an atomizing gas outlet 212 at the top of the outer cylinder 21 to communicate with the atomizing chamber 211, gravity automatic water discharge and oscillation atomization can be realized, atomizing gas is discharged from bottom to top to humidify air, which meets the design of the skirting line type heating structure. The present application integrates heating and humidifying into one, can realize bottom-to-top rising type heating and warming and humidification to relieve dryness at the same time, and the heating is more three-dimensional and comprehensive, and the heating effect is good.
[0038] In the following, a skirting line heating structure in the present exemplary embodiment will be further described.
[0039] In the embodiment of the present application, with reference to Figures 1-2 The heating body 1 includes a shell 11 and a string aluminum heating body 12, the bottom surface of the shell 11 is provided with an air inlet hole 117, and the top surface and the front and rear side surfaces of the shell 11 are provided with heating holes 116; one end of the shell 11 is closed by a side plate 115; and the two ends of the string aluminum heating body 12 are fixed in the shell 11 by a support plate 17. Cold air enters the inside of the shell 11 from the air inlet hole 117 at the bottom, is heated by the string aluminum heating body 12 inside, and hot air is dissipated from the heating holes 116 at the top and the front and rear sides, which is more three-dimensional and comprehensive than the traditional heating from the top, has a larger heating area, a better heat dissipation effect, and is easier to pass the temperature rise test. The air inlet hole 117 and the heating hole 116 are preferably a plurality of parallel strip-shaped holes, so that the air inlet and outlet are more rapid and uniform, and the heat is more dispersed.
[0040] As an example, with reference to Figure 3 The shell 11 includes an upper cover 111 and a lower cover 112 arranged oppositely, and a front side plate 113 and a rear side plate 114 arranged oppositely; the air inlet hole 117 is arranged on the lower cover 112, and the heating holes 116 are arranged on the upper cover 111 and the front and rear side plates 113 and 114.
[0041] With reference to Figure 4The opposite two long edges of the upper cover 111 and the lower cover 112 are respectively provided with a plurality of L-shaped insertion pieces 13; the opposite two long edges of the front side plate 113 and the rear side plate 114 are respectively vertically extended with connecting plates, and the connecting plates are spaced apart along the length direction and provided with a plurality of insertion holes 14 corresponding to the plurality of insertion pieces 13; that is, during the process that the upper cover 111 is covered on the top of the front side plate 113 and the rear side plate 114 and the lower cover 112 is covered on the bottom thereof, the insertion pieces 13 can be inserted into the insertion holes 14, and the insertion pieces 13 are L-shaped, which can be horizontally moved and inserted during the process of covering and inserting, and then are fixed and limited, so as to prevent the insertion pieces 13 from falling upward or downward.
[0042] With reference to Figure 5 The end of the front side plate 113 and the rear side plate 114 away from the humidifying main body 2 is provided with an L-shaped connecting piece 15, and the side plate 115 is provided with a connecting buckle 16 buckled and connected with the connecting piece 15 in an up-down mode; and the side plate 115 is further fixedly connected with the lower cover 112 through a connecting piece. That is, after the front side plate 113, the rear side plate 114, the upper cover 111 and the lower cover 112 are connected, the side plate 115 is buckled and connected from top to bottom or from bottom to top, and then the connecting piece is used for reinforcing the fixation.
[0043] It should be noted that the connecting plates vertically extended at the two ends of the front side plate 113 and the rear side plate 114 are provided with connecting holes for connecting the support plate 17, and the top and the bottom of the support plate 17 are also provided with connecting holes for connecting and fixing.
[0044] As an example, with reference to Figure 2 and Figure 3 The support plate 17 can include a fixed plate 171 and a heating body support 172. The top and the bottom of the fixed plate 171 are connected with the connecting plates at the top and the bottom, respectively, and the lower part of the fixed plate 171 is provided with a mounting hole. The heating body support 172 is fixedly arranged in the mounting hole, and the heating body support 172 is in direct contact with the string aluminum heating body 12 and can be made of a high-temperature-resistant material. The string aluminum heating body 12 is arranged in the heating body support 172, and is convenient for electrically connected with the control panel 24.
[0045] As an example, the heating holes 116 provided in the front side plate 113 and the rear side plate 114 are arranged close to the upper cover 111, that is, arranged at the upper part of the side plate 115, so that the heat on both sides can be quickly dissipated upward.
[0046] As an example, the support plate 17 is provided with a temperature circuit breaker 18, and the temperature circuit breaker 18 is connected with the string aluminum heating body 12 and the control panel 24, respectively, and is used for automatically cutting off the circuit when the temperature exceeds the set value, so as to prevent the equipment from overheating, damaging or causing fire and other safety hazards.
[0047] In the embodiment of the present application, with reference to Figures 2-6The humidifying main body 2 is arranged at one end of the shell 11 away from the side plate 115, and is arranged at the end of the shell 11 to avoid affecting heat dissipation in three directions of the shell 11. The humidifying main body 2 comprises an outer cylinder 21, a water tank 22, a shock plate 23 and a control panel 24. One side of the outer cylinder 21 is connected with the shell 11 and is provided with a heat insulation plate 25 between the end of the shell 11. The heat insulation plate 25 is a mica heat insulation plate 25 and has a high heat insulation effect, so that heat inside the shell 11 cannot be transmitted to the humidifying main body 2 to affect the humidifying main body 2. The inner bottom of the outer cylinder 21 is provided with an atomizing chamber 211, and the top of the outer cylinder 21 is provided with a mist outlet 212 communicating with the atomizing chamber 211. The water tank 22 is arranged inside the outer cylinder 21 and is provided with a water outlet 221 at the bottom, which communicates with the atomizing chamber 211. The shock plate 23 is arranged in the atomizing chamber 211 and atomizes water through piezoelectric effect and high-frequency vibration to achieve efficient humidification. Through the above structure design and layout, gravity water outlet and atomization can be realized. The atomized gas generated is discharged from the top mist outlet 212 from bottom to top, which meets the structure design of the skirting line heating and humidification and realizes the heating and humidification from bottom to top. The control panel 24 is embedded in the side wall of the outer cylinder 21 and is electrically connected with the aluminum wire heating body 12 and the shock plate 23 respectively, so that the user can conveniently control the heating and humidification, and the control panel 24 is arranged on the humidifying main body 2 to avoid the user being scalded.
[0048] As an example, the side wall of the outer cylinder 21 is hollow and comprises an inner layer wall 213 and an outer layer wall 214 arranged inside and outside. The hollow design can further insulate the heat inside the shell 11 from being transmitted to the outer cylinder 21 and its inside.
[0049] As an example, the humidifying main body 2 further comprises a fan 26 arranged between the inner layer wall 213 and the outer layer wall 214 of the outer cylinder 21 away from the heating main body 1, and the air outlet of the fan 26 faces upward. The inner layer wall 213 above the air outlet is bent and provided with a through hole communicating with the air outlet. A guide plate 27 is arranged above the through hole. Specifically, the inner layer wall 213 between the inner layer wall 213 and the outer layer wall 214 of the outer cylinder 21 away from the heating main body 1 has a mounting space, and the inner layer wall 213 of the mounting space is designed in a stepped and bent manner and is provided with a through hole to facilitate air exhaust to the inside of the outer cylinder 21. The fan 26 exhausts air to the inside of the outer cylinder 21, and the air direction is upward, which can accelerate the upward exhaust of the atomized gas and strengthen the humidification effect. The through hole is provided with a guide plate 27 above the through hole. The guide plate 27 is closed at the top and is open at the opposite sides, so that the air is exhausted from the two side openings and is upwardly exhausted after circulating in the circumferential direction of the outer cylinder 21, which can exhaust the humidified gas away from the fan 26 and improve the uniformity of the exhaust of the atomized gas.
[0050] As an example, the outer cylinder 21 is internally provided with a lamp plate assembly 28, which comprises a transparent lamp shade 281, a lamp plate support 282 and a lamp plate 283; the transparent lamp shade 281 is annularly arranged on the side of the water tank 22, and the bottom of the transparent lamp shade 281 is provided with a mounting groove; specifically, the transparent lamp shade 281 can be composed of a horizontal plate and two annular vertical plates integrally connected to the bottom of the horizontal plate, the horizontal plate is annularly arranged on the side of the water tank 22 and the edge thereof is connected to the inner wall of the outer cylinder 21, and the two annular vertical plates form the mounting groove for mounting the lamp plate support 282.
[0051] The top of the lamp plate support 282 is provided with an annular groove for mounting the lamp plate 283, and the lamp plate support 282 is mounted in the mounting groove and is provided with a sealing ring between the mounting groove, preventing humidified gas from leaking into the interior of the lamp plate support 282 to affect the lamp plate 283.
[0052] By arranging the lamp plate 283 in the interior of the outer cylinder 21, the lamp plate 283 has a light effect, which can increase the functionality and aesthetics of the skirting line heating structure.
[0053] As an example, the opposite two side walls of the water tank 22 are concave; the transparent lamp shade 281 corresponds to the concave side walls of the water tank 22. Through the above design, the humidified gas can be quickly discharged from the widened area between the concave side walls of the water tank 22 and the transparent lamp shade 281, avoiding the humidified gas being blocked, and improving the humidification effect.
[0054] As an example, the mist outlet 212 is provided with a mist outlet cover 284, and the mist outlet cover 284 is provided with a plurality of mist guide holes 2841 for uniformly discharging the atomized gas after guiding the atomized gas through the mist guide holes 2841.
[0055] As an example, the water outlet 221 at the bottom of the water tank 22 is provided with a water discharge control structure 29. The waterproof control structure can be a prior art structure, which is composed of a water tank cover, a piston pad, a water tank cover sealing ring, a spring top rod and the like, the water tank cover is connected to the water outlet 221 at the bottom of the water tank 22 by threads or buckles, the piston pad is arranged between the water tank cover and the water outlet 221, the water tank cover sealing ring is mounted between the water tank cover and the piston pad to play a sealing role, and the spring top rod is arranged between the water tank cover and the piston pad to lift or restore the piston pad; when the piston pad is lifted, the water tank cover is opened with the water tank 22, and water is discharged under the action of gravity; when the piston pad returns to the original position, it falls downward to seal the water tank 22 and close the water supply channel. The spring top rod can be controlled by the mechanical structure in the interior of the outer cylinder 21. The water discharge control structure can control the water discharge amount of the water tank 22, avoiding the influence of excessive water in the atomizing chamber 211 on atomization.
[0056] As an example, the upper heating body 1 and the humidifying body 2 are respectively provided with supporting feet 3 for lifting the heating body 1 and the humidifying body 2, facilitating the cold air to enter from the bottom of the heating body 1 and reducing the influence of heat on the floor.
[0057] Although the preferred embodiments of the present application have been described, those skilled in the art who know the basic inventive concept can make further changes and modifications to the embodiments. Therefore, the appended claims are intended to cover the preferred embodiments and all changes and modifications falling within the scope of the present application.
[0058] Finally, it should also be noted that in this document, relational terms such as first and second and the like can only be used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply that there is any such actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or terminal device including a series of elements includes not only those elements, but also other elements not explicitly listed or inherent to such a process, method, article or terminal device. Without more limitations, the element defined by the statement "comprising a" does not exclude the presence of additional identical elements in the process, method, article or terminal device including the element.
[0059] The above describes in detail the baseboard heating structure provided by the present application, and the principle and implementation mode of the present application are described by applying specific examples. The above description of the embodiments is only used to help understand the method of the present application and its core idea; meanwhile, for those skilled in the art, according to the idea of the present application, the specific implementation mode and application range will be changed, and the above description should not be understood as a limitation of the present application.
Claims
1. A skirting heating structure, characterized by, It includes a heating element and a humidifying element disposed at one end of the heating element; The heating element includes a housing and a series of aluminum heating elements. The bottom surface of the housing has an air inlet, and the top surface, front side, and rear side of the housing have heating holes. One end of the housing is closed by a side plate. Both ends of the series of aluminum heating elements are fixed inside the housing by support plates. The humidifying body is located at the end of the housing away from the side plate. The humidifying body includes an outer cylinder, a water tank, a vibrating plate, and a control panel. One side of the outer cylinder is connected to the housing and a heat insulation plate is provided between it and the end of the housing. An atomizing chamber is provided at the bottom of the outer cylinder, and a mist outlet communicating with the atomizing chamber is provided at the top of the outer cylinder. The water tank is located inside the outer cylinder and has a water outlet at its bottom, which communicates with the atomizing chamber. The vibrating plate is located in the atomizing chamber. The control panel is embedded in the side wall of the outer cylinder and is electrically connected to the aluminum heating element and the vibrating plate, respectively.
2. The skirting heating structure according to claim 1, characterized in that, The housing includes an upper cover and a lower cover arranged opposite to each other, and a front side plate and a rear side plate arranged opposite to each other. The upper cover and the lower cover are provided with multiple L-shaped plug-in pieces at intervals on their opposite long sides; The front side plate and the rear side plate have connecting plates extending perpendicularly from their respective long sides, and the connecting plates have multiple insertion holes spaced apart along their length direction, each corresponding to one of the multiple insertion pieces. The front side panel and the rear side panel are provided with an L-shaped connecting piece at the end away from the humidifying body, and the side panel is provided with a connecting buckle that is fastened to the connecting piece from top to bottom; and the side panel and the lower cover are also fixedly connected by a connector.
3. Skirting heating structure according to claim 2, characterized in that The heating holes on the front and rear side panels are located close to the top cover.
4. The skirting heating structure according to claim 1, wherein The sidewalls of the outer cylinder are hollow, comprising an inner wall and an outer wall.
5. Skirting heating structure according to claim 4, characterized in that The humidifying body also includes a fan, which is disposed between the inner wall and the outer wall of the outer cylinder on the side away from the heating body, and the air outlet of the fan faces upward; the inner wall above the air outlet is bent and has a through hole communicating with the air outlet; a guide plate is provided above the through hole.
6. The skirting heating structure according to claim 1, wherein The outer cylinder is equipped with a lamp panel assembly, which includes a transparent lampshade, a lamp panel bracket, and a lamp panel. The transparent lampshade is arranged around the periphery of the water tank, and the bottom of the transparent lampshade is provided with a mounting groove; The top of the lamp panel bracket is provided with an annular groove for mounting the lamp panel, and the lamp panel bracket is installed in the mounting groove and a sealing ring is provided between the mounting groove and the mounting groove.
7. Skirting heating structure according to claim 6, characterized in that The opposite side walls of the water tank are concave; the transparent lampshade corresponds to the concave side walls of the water tank.
8. The skirting heating structure according to claim 1, wherein, The mist outlet is provided with a mist hood, and the mist hood has several mist guiding holes.
9. The skirting heating structure according to claim 1, wherein, A temperature circuit breaker is installed on the support plate.
10. The skirting heating structure according to claim 9, wherein, The water outlet at the bottom of the water tank is equipped with a water discharge control structure.