Steam generating device for heating in extremely cold weather
Through the combination of the biological particle evaporation generator box and the water recovery and treatment mechanism, the low efficiency, high energy consumption and environmental pollution of heating equipment in extremely cold weather is solved, and stable and convenient steam generation and resource recycling are achieved.
Patent Information
- Application Number
- CN202422328922.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-24
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-09-24
AI Technical Summary
In extremely cold weather conditions, traditional heating equipment is low in efficiency, high energy consumption, environmental pollution and cumbersome operation problems, and existing steam-generating equipment has the risk of explosion and high cost.
The bioparticle evaporation generator box, water recovery and treatment mechanism and steam generator are used, combined with the maintenance escalator and support structure to achieve convenient maintenance and stable operation of the equipment, and use biomass particles as fuel to reduce energy consumption and reduce environmental pollution.
It improves the stability and maintenance convenience of equipment, reduces energy consumption, avoids explosion risks, and realizes environmental protection and resource recycling.
Smart Images

Figure CN223090639U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of heating auxiliary equipment, in particular to a heating steam generating device in extremely cold weather. Background Art
[0002] Under extremely cold weather conditions, traditional heating methods (such as electric heaters and gas heaters) have low efficiency, and there are problems of high energy consumption and uneven heating. Existing technologies often fail to meet the requirements of rapid heating and energy conservation.
[0003] In actual work, there are still the following two problems when using the steam generating equipment in the prior art:
[0004] There are disadvantages such as environmental pollution and high explosion risk, and at the same time, the overall use cost is increased, and the environmental protection performance is low;
[0005] There is a problem that the operation is relatively cumbersome, which affects the normal maintenance of workers and lengthens the overall operation cycle.
[0006] Therefore, the utility model provides a heating steam generating device in extremely cold weather. Content of the Utility Model
[0007] The purpose of the utility model is to solve the disadvantages existing in the prior art, and provide a heating steam generating device in extremely cold weather.
[0008] In order to achieve the above purpose, the utility model adopts the following technical scheme: a heating steam generating device in extremely cold weather, including a biomass pellet evaporation generating box,
[0009] An installation top plate is installed on the top of the biomass pellet evaporation generating box;
[0010] A first processing table is installed inside the biomass pellet evaporation generating box, a support table is installed on the top of the first processing table, and a water recovery and treatment mechanism is installed on the top of the support table;
[0011] The water recovery and treatment mechanism includes a storage water tank, a storage water tank is installed on the top of the support table, two water delivery pipes are installed on one side of the storage water tank, and silicon-phosphate crystal filters are installed at the other ends of the two water delivery pipes;
[0012] A treatment tank is installed inside the biomass pellet evaporation generating box, the treatment tank is located on one side of the first processing table, a steam pipe is installed on the top of the treatment tank, access covers are installed at equal intervals on one side of the steam pipe, a steam generator is installed on the outside of the treatment tank, a second connection pipe is installed on one side of the steam generator, and a first connection pipe is installed at one end of the second connection pipe.
[0013] As a preferred embodiment, a second processing table is installed at the top of the biological particle evaporation chamber and on one side of the treatment tank. Above the second processing table, two second installation pipes are installed. Second valves are installed on one side of each of the second installation pipes. One ends of the two second installation pipes are both installed with a steam delivery control main pipe. A first installation pipe is installed on one side of the steam delivery control main pipe, and an external pipe is installed on the other side of the steam delivery control main pipe. A first valve is fixedly connected to the outside of the first installation pipe. A discharge pipe extending outside the installation top plate is installed at the top of the first installation pipe. An installation chamber is opened at the top of the second processing table. Inside the installation chamber, a second inspection ladder extending into the biological particle evaporation chamber is installed. The installation chamber and the second inspection ladder facilitate manual entry to the top of the second processing table for normal inspection operations. The discharge pipe is used for emergency discharge treatment. The first valve is used to control the opening and closing of the first installation pipe, and the second valve is used to control the opening and closing of the second installation pipe. A first inspection ladder extending to the top of the second processing table is installed at the top of the treatment tank. A third inspection ladder is installed on one side of the second processing table. A fourth inspection ladder is installed between the second processing table and the first processing table. The fourth inspection ladder is located on one side of the third inspection ladder. It is convenient to move between the second processing table and the first processing table through the fourth inspection ladder, and it is convenient to move between the second processing table and the treatment tank through the first inspection ladder, facilitating convenient inspection and treatment of various devices inside the biological particle evaporation chamber.
[0014] The technical effect of adopting the above further solution is: It is convenient to move between the second processing table and the first processing table through the fourth inspection ladder, and it is convenient to move between the second processing table and the treatment tank through the first inspection ladder, facilitating convenient inspection and treatment of various devices inside the biological particle evaporation chamber.
[0015] As a preferred embodiment, a second sealing top cover is installed at the top of the steam generator. A filter screen is installed on one side of the steam generator. Two third support rods are installed on both sides of the steam generator. The bottoms of the four third support rods are all fixedly connected with support feet. All four support feet are connected to the inside of the biological particle evaporation chamber. The overall steam generator is assisted in being supported through the four third support rods and the support feet, improving the stability of the equipment during use. The filter screen is used for auxiliary filtering during air intake and exhaust, and the second sealing top cover is used for sealing the overall steam generator.
[0016] The technical effect of adopting the above further solution is: The overall steam generator is assisted in being supported through the four third support rods and the support feet, improving the stability of the equipment during use. The filter screen is used for auxiliary filtering during air intake and exhaust, and the second sealing top cover is used for sealing the overall steam generator.
[0017] As a preferred embodiment, a first sealed top cover extending to the outside of the installation top plate is installed on the top of the storage water tank. Two discharge valves are installed on the top of the first sealed top cover. First support rods are fixedly connected to the four sides of the storage water tank. The bottoms of the four first support rods are all connected to the first processing table. An electric control box is installed on the top of the first processing table and on one side of the storage water tank. The electric control box is used to control the operation of some power equipment. The four first support rods are used for auxiliary support treatment of the storage water tank. The two discharge valves are used for discharging the storage water tank. The first sealed top cover is used for sealing the storage water tank.
[0018] The technical effect of adopting the above further solution is that: the four first support rods are used for auxiliary support treatment of the storage water tank. The two discharge valves are used for discharging the storage water tank. The first sealed top cover is used for sealing the storage water tank.
[0019] As a preferred embodiment, a support frame is installed outside the silicon-phosphorus crystal filter. The support frame is connected to the support table. Installation valves are fixedly connected to the outer sides of the conveying water pipes. A sealing flange plate is installed on the top of the silicon-phosphorus crystal filter. Four second support rods are fixedly connected to the bottom of the first processing table. The bottoms of the four second support rods are all connected to the inside of the biological particle evaporation generator box. A side rolling shutter door panel is installed on one side of the biological particle evaporation generator box. An inspection door is installed inside the side rolling shutter door panel. It is convenient to enter the inside of the biological particle evaporation generator box for normal inspection through the side rolling shutter door panel and the inspection door. The four second support rods are used for strengthening and supporting the whole first processing table. The silicon-phosphorus crystal filter and the support table are firmly installed through the support frame, improving the stability of the equipment during use. The installation valves are used to control the opening and closing of the corresponding conveying water pipes. A protective cover is installed outside the top of the steam generator. The protective cover is located on the top of the installation top plate. A wireless signal transceiver is fixedly connected to the top of the protective cover. A main control board is fixedly connected to the inside of the wireless signal transceiver. A control chip is fixedly connected to the outside of the main control board. The wireless signal transceiver, the silicon-phosphorus crystal filter, the installation valves, the discharge valves, the steam generator, the first valve and the second valve are all electrically connected to the control chip. The control chip is used to control the operation of the wireless signal transceiver, the silicon-phosphorus crystal filter, the installation valves, the discharge valves, the steam generator, the first valve and the second valve, realizing the unified management of power equipment.
[0020] The technical effect of adopting the above further solution is that: the control chip is used to control the operation of the wireless signal transceiver, the silicon-phosphorus crystal filter, the installation valves, the discharge valves, the steam generator, the first valve and the second valve, realizing the unified management of power equipment.
[0021] Compared with the prior art, the advantages and positive effects of the present utility model are as follows:
[0022] By setting up a biological particle evaporation generating box, a water recovery treatment mechanism, a treatment tank and a steam generator, during use, the installation bin and the second maintenance ladder facilitate manual entry to the top of the second processing table for normal maintenance operations. The discharge pipe is used for emergency discharge treatment. The four first support rods are used to assist in supporting the storage water tank. The two discharge valves are used to discharge the storage water tank. The first sealing top cover is used to seal the storage water tank. The side rolling shutter door panel and the maintenance door facilitate entry into the biological particle evaporation generating box for normal maintenance. The four second support rods are used to reinforce and support the entire first processing table. The support frame is used to firmly install the silicon-phosphorus crystal filter and the support table, improving the stability of the equipment during use. The installation valve is used to control the opening and closing of the corresponding water delivery pipe. The steam generator and the treatment tank cooperate to generate steam. The multiple maintenance ladders facilitate quick maintenance of the inside of the biological particle evaporation generating box. The steam generator has a relatively low pressure during use, having a great advantage in energy conservation. At the same time, it replaces the high-cost problem brought by the use of diesel boilers in traditional technologies. Diesel boilers have disadvantages such as environmental pollution and high explosion risks. However, through the operation of the steam generator, the steam generation operation is simple, and the discharged substance after combustion is water vapor, without explosion risk. Therefore, using biomass particles as fuel and cooperating with the steam generator is more environmentally friendly and safe. Through the cooperation of the water recovery treatment mechanism, the water vapor existing in the internal evaporation is recovered, realizing resource recycling. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a schematic diagram of the overall structure of a steam generating device for heating in extremely cold weather provided by the present utility model;
[0024] Figure 2 It is a schematic diagram of the first perspective of the internal structure of the biological particle evaporation generating box of a steam generating device for heating in extremely cold weather provided by the present utility model;
[0025] Figure 3 It is a schematic diagram of the second perspective of the internal structure of the biological particle evaporation generating box of a steam generating device for heating in extremely cold weather provided by the present utility model;
[0026] Figure 4 It is an enlarged schematic diagram of the water recovery treatment mechanism of a steam generating device for heating in extremely cold weather provided by the present utility model;
[0027] Figure 5 It is an appendix of a steam generating device for heating in extremely cold weather provided by the present utility model Figure 3 Enlarged schematic diagram of the structure at position A in the figure.
[0028] Legend Explanation:
[0029] 1. Biological particle evaporation chamber; 11. Side rolling shutter door panel; 12. Inspection door; 13. Protective cover; 14. Installation top plate; 15. Wireless signal transceiver; 16. Discharge pipe;
[0030] 2. Water recovery and treatment mechanism; 21. Storage water tank; 22. First sealing top cover; 23. Support platform; 24. First processing table; 25. Electric control box; 26. Support frame; 261. Sodium hexa metaphosphate filter; 262. Delivery water pipe; 263. Installation valve; 264. Sealing flange; 27. First support rod; 28. Discharge valve; 29. Second support rod;
[0031] 3. Treatment tank; 31. Steam pipe; 32. Access cover; 33. First inspection ladder;
[0032] 4. Steam generator; 41. Filter screen; 42. Third support rod; 43. Support foot seat; 44. First connecting pipe; 45. Second sealing top cover; 46. Second connecting pipe;
[0033] 5. Second processing table; 51. Main steam delivery control pipe; 52. First installation pipe; 53. First valve; 54. Installation bin; 55. Second inspection ladder; 56. Second installation pipe; 57. Second valve; 58. External connection pipe; 59. Third inspection ladder;
[0034] 6. Fourth inspection ladder. Detailed implementation mode
[0035] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.
[0036] Such as Figures 1-5As shown in the figure, this embodiment provides a technical solution: a heating steam generating device for extremely cold weather, including a biomass particle evaporation generating box 1, and an installation top plate 14 is installed on the top of the biomass particle evaporation generating box 1; a first processing table 24 is installed inside the biomass particle evaporation generating box 1, a support table 23 is installed on the top of the first processing table 24, and a water recovery processing mechanism 2 is installed on the top of the support table 23; the water recovery processing mechanism 2 includes a storage water tank 21, the storage water tank 21 is installed on the top of the support table 23, two water delivery pipes 262 are installed on one side of the storage water tank 21, and a silicon-phosphorus crystal filter 261 is installed at the other end of each of the two water delivery pipes 262; a processing tank 3 is installed inside the biomass particle evaporation generating box 1, the processing tank 3 is located on one side of the first processing table 24, a steam pipe 31 is installed on the top of the processing tank 3, access covers 32 are installed at equal intervals on one side of the steam pipe 31, a steam generator 4 is installed outside the processing tank 3, a second connection pipe 46 is installed on one side of the steam generator 4, a first connection pipe 44 is installed at one end of the second connection pipe 46, the steam generator 4 and the processing tank 3 cooperate to carry out steam generation processing, and multiple maintenance ladders cooperate to facilitate the rapid maintenance of the inside of the biomass particle evaporation generating box 1. When the steam generator 4 is in use, the pressure is relatively low, which has great advantages in terms of energy conservation. At the same time, it replaces the high cost problem brought by the use of diesel boilers in traditional technologies. Diesel boilers have disadvantages such as environmental pollution and high explosion risks. However, through the operation of the steam generator 4, the steam generation operation is simple, and the exhaust after combustion is water vapor, without explosion risk. Therefore, using biomass particles as fuel and cooperating with the steam generator 4 is more environmentally friendly and safe. Through the cooperation of the water recovery processing mechanism 2, the water vapor existing in the internal evaporation is recovered and processed, realizing the recycling of resources.
[0037] Further, as Figures 1-5As shown in the figure: On the top of the biological particle evaporation chamber 1 and on one side of the treatment tank 3, a second processing table 5 is installed. Above the second processing table 5, two second installation pipes 56 are installed. On one side of each of the second installation pipes 56, a second valve 57 is installed. At one end of each of the two second installation pipes 56, a steam delivery control main pipe 51 is installed. On one side of the steam delivery control main pipe 51, a first installation pipe 52 is installed. On the other side of the steam delivery control main pipe 51, an external connection pipe 58 is installed. On the outer side of the first installation pipe 52, a first valve 53 is fixedly connected. On the top of the first installation pipe 52, a discharge pipe 16 extending outside the installation top plate 14 is installed. On the top of the second processing table 5, an installation bin 54 is opened. Inside the installation bin 54, a second inspection ladder 55 extending into the biological particle evaporation chamber 1 is installed. The installation bin 54 and the second inspection ladder 55 facilitate manual entry to the top of the second processing table 5 for normal maintenance operations. The discharge pipe 16 is used for emergency discharge treatment. The first valve 53 is used to control the opening and closing of the first installation pipe 52. The second valve 57 is used to control the opening and closing of the second installation pipe 56. On the top of the treatment tank 3, a first inspection ladder 33 extending to the top of the second processing table 5 is installed. On one side of the second processing table 5, a third inspection ladder 59 is installed. Between the second processing table 5 and the first processing table 24, a fourth inspection ladder 6 is installed. The fourth inspection ladder 6 is located on one side of the third inspection ladder 59. Through the fourth inspection ladder 6, it is convenient to move between the second processing table 5 and the first processing table 24. Through the first inspection ladder 33, it is convenient to move between the second processing table 5 and the treatment tank 3, facilitating convenient maintenance and treatment of various devices inside the biological particle evaporation chamber 1.
[0038] Furthermore, as Figures 1-5 shown: In this solution, a second sealing top cover 45 is installed on the top of the steam generator 4. A filter screen 41 is installed on one side of the steam generator 4. On both sides of the steam generator 4, two third support rods 42 are installed on each side. At the bottom of the four third support rods 42, support foot seats 43 are fixedly connected. All four support foot seats 43 are connected to the inside of the biological particle evaporation chamber 1. Through the four third support rods 42 and the support foot seats 43, the overall steam generator 4 is assisted in supporting treatment, improving the stability of the device during use. The filter screen 41 is used for auxiliary filtering during air intake and exhaust. The second sealing top cover 45 is used for sealing the entire steam generator 4.
[0039] In the above solution, there is also a problem of poor equipment sealing, such as Figures 1-4As shown in the figure, in this solution, a first sealed top cover 22 extending outside the installation top plate 14 is installed on the top of the storage water tank 21. Two discharge valves 28 are installed on the top of the first sealed top cover 22. First support rods 27 are fixedly connected to the four sides of the storage water tank 21. The bottoms of the four first support rods 27 are all connected to the first processing table 24. An electric control box 25 is installed on the top of the first processing table 24 and on one side of the storage water tank 21. The electric control box 25 is used to control the operation of some power equipment. The four first support rods 27 are used to assist in supporting the storage water tank 21. The two discharge valves 28 are used to discharge the storage water tank 21. The first sealed top cover 22 is used to seal the storage water tank 21.
[0040] In the above solution, there is also a problem that it is inconvenient to uniformly manage power equipment. For example, Figures 1-5 As shown in the figure, in this solution, a support frame 26 is installed outside the silicon-phosphorus crystal filter 261. The support frame 26 is connected to the support table 23. Installation valves 263 are fixedly connected to the outside of the conveying water pipes 262. A sealed flange plate 264 is installed on the top of the silicon-phosphorus crystal filter 261. Four second support rods 29 are fixedly connected to the bottom of the first processing table 24. The bottoms of the four second support rods 29 are all connected to the inside of the biological particle evaporation generator 1. A side rolling shutter door panel 11 is installed on one side of the biological particle evaporation generator 1. An inspection door 12 is installed inside the side rolling shutter door panel 11. It is convenient to enter the inside of the biological particle evaporation generator 1 through the side rolling shutter door panel 11 and the inspection door 12 for normal maintenance. The four second support rods 29 are used to reinforce and support the whole first processing table 24. The support frame 26 is used to reinforce and install the silicon-phosphorus crystal filter 261 and the support table 23, improving the stability of the equipment during use. The installation valves 263 are used to control the opening and closing of the corresponding conveying water pipes 262. A protective cover 13 is installed outside the top of the steam generator 4. The protective cover 13 is located on the top of the installation top plate 14. A wireless signal transceiver 15 is fixedly connected to the top of the protective cover 13. A main control board is fixedly connected to the inside of the wireless signal transceiver 15. A control chip is fixedly connected to the outside of the main control board. The wireless signal transceiver 15, the silicon-phosphorus crystal filter 261, the installation valves 263, the discharge valves 28, the steam generator 4, the first valve 53 and the second valve 57 are all electrically connected to the control chip. The control chip is used to control the operation of the wireless signal transceiver 15, the silicon-phosphorus crystal filter 261, the installation valves 263, the discharge valves 28, the steam generator 4, the first valve 53 and the second valve 57, realizing the unified management of power equipment.
[0041] Working principle:
[0042] For example Figures 1-5 As shown in the figure:
[0043] During use, the installation bin 54 and the second maintenance escalator 55 facilitate manual entry into the top of the second processing table 5 for normal maintenance operations;
[0044] The discharge pipe 16 is used for emergency discharge treatment. The first valve 53 is used to control the opening of the first installation pipe 52, and the second valve 57 is used to control the opening of the second installation pipe 56;
[0045] The fourth maintenance escalator 6 is located on one side of the third maintenance escalator 59. It facilitates movement between the second processing table 5 and the first processing table 24. The first maintenance escalator 33 facilitates movement between the second processing table 5 and the treatment tank 3, facilitating convenient maintenance of various equipment inside the biological particle evaporation generator 1;
[0046] The steam generator 4 is integrally supported by four third support rods 42 and support pedestals 43, improving the stability of the equipment during use;
[0047] The filter screen 41 is used for auxiliary filtration during air intake and exhaust, and the second sealed top cover 45 is used to seal the steam generator 4 integrally;
[0048] The electric control box 25 is used to control the operation of some power equipment;
[0049] Four first support rods 27 are used to support the storage water tank 21. Two discharge valves 28 are used to discharge the storage water tank 21, and the first sealed top cover 22 is used to seal the storage water tank 21;
[0050] The side rolling shutter door panel 11 and the maintenance door 12 facilitate entry into the biological particle evaporation generator 1 for normal maintenance;
[0051] Four second support rods 29 are used to reinforce and support the first processing table 24 as a whole. The silicon-phosphorus crystal filter 261 and the support table 23 are firmly installed by the support frame 26, improving the stability of the equipment during use. The installation valve 263 is used to control the opening and closing of the corresponding water delivery pipe 262;
[0052] The control chip is used to control the operation of the wireless signal transceiver 15, the silicon-phosphorus crystal filter 261, the installation valve 263, the discharge valve 28, the steam generator 4, the first valve 53, and the second valve 57, realizing unified management of power equipment;
[0053] The steam generator 4 and the treatment tank 3 cooperate to carry out steam generation treatment. Through the cooperation of multiple maintenance ladders, it is convenient to quickly repair the inside of the biological particle evaporation generator 1. When the steam generator 4 is in use, the pressure is relatively low, which has great advantages in terms of energy conservation. At the same time, it replaces the high-cost problem brought by the use of diesel boilers in traditional technologies. Diesel boilers have disadvantages such as environmental pollution and high explosion risks. However, through the operation of the steam generator 4, the steam generation operation is simple, and the exhaust after combustion is water vapor, without explosion risk. Therefore, using biomass particles as fuel and cooperating with the steam generator 4 is more environmentally friendly and safe. Through the cooperation of the water recovery treatment mechanism 2, the water vapor existing in the internal evaporation is recovered and treated, realizing the recycling of resources.
[0054] The above are only the preferred embodiments of the present invention, and are not intended to limit the present invention in other forms. Any person skilled in the art may use the disclosed technical content to make changes or modifications into equivalent embodiments with equivalent changes and apply them to other fields. However, as long as it does not depart from the technical solution content of the present invention, any simple modification, equivalent change and modification made to the above embodiments based on the technical essence of the present invention still belong to the protection scope of the technical solution of the present invention.
Claims
1. A heating steam generating device for extremely cold weather, comprising a biomass pellet evaporation generating box (1), characterized in that an installation top plate (14) is installed on the top of the biomass pellet evaporation generating box (1); a first processing table (24) is installed inside the biomass pellet evaporation generating box (1), a support table (23) is installed on the top of the first processing table (24), and a water recovery and treatment mechanism (2) is installed on the top of the support table (23); the water recovery and treatment mechanism (2) includes a storage water tank (21), the storage water tank (21) is installed on the top of the support table (23), two water delivery pipes (262) are installed on one side of the storage water tank (21), and silicon-phosphorus crystal filters (261) are installed at the other ends of the two water delivery pipes (262); a treatment tank (3) is installed inside the biomass pellet evaporation generating box (1), a steam pipe (31) is installed on the top of the treatment tank (3), access covers (32) are installed at equal intervals on one side of the steam pipe (31), a steam generator (4) is installed outside the treatment tank (3), a second connecting pipe (46) is installed on one side of the steam generator (4), and a first connecting pipe (44) is installed at one end of the second connecting pipe (46).
2. The extremely cold weather heating steam generating device according to claim 1, wherein: a second processing table (5) is installed on the top of the biomass pellet evaporation generating box (1) and on one side of the treatment tank (3), two second installation pipes (56) are installed above the second processing table (5), second valves (57) are installed on one side of each of the second installation pipes (56), a steam delivery control main pipe (51) is installed at one end of each of the two second installation pipes (56), a first installation pipe (52) is installed on one side of the steam delivery control main pipe (51), an external pipe (58) is installed on the other side of the steam delivery control main pipe (51), a first valve (53) is fixedly connected to the outside of the first installation pipe (52), a discharge pipe (16) extending outside the installation top plate (14) is installed on the top of the first installation pipe (52), an installation bin (54) is opened on the top of the second processing table (5), and a second inspection ladder (55) extending inside the biomass pellet evaporation generating box (1) is installed inside the installation bin (54).
3. The extremely cold weather heating steam generating device according to claim 2, characterized in that: a second sealing top cover (45) is installed on the top of the steam generator (4), a filter screen (41) is installed on one side of the steam generator (4), two third support rods (42) are installed on both sides of the steam generator (4), and support feet (43) are fixedly connected to the bottoms of the four third support rods (42).
4. The extremely cold weather heating steam generating device according to claim 3, characterized in that: a first sealing top cover (22) extending outside the installation top plate (14) is installed on the top of the storage water tank (21), two discharge valves (28) are installed on the top of the first sealing top cover (22), first support rods (27) are fixedly connected to the four sides of the storage water tank (21), and an electric control box (25) is installed on the top of the first processing table (24) and on one side of the storage water tank (21).
5. The extremely cold weather heating steam generating device according to claim 4, characterized in that: A first maintenance ladder (33) extending to the top of the second processing table (5) is installed at the top of the processing tank (3). A third maintenance ladder (59) is installed on one side of the second processing table (5). A fourth maintenance ladder (6) is installed between the second processing table (5) and the first processing table (24).
6. The extremely cold weather heating steam generating device according to claim 4, characterized in that: A support frame (26) is installed outside the silicon-phosphorus crystal filter (261). The support frame (26) is connected to the support table (23). Installation valves (263) are fixedly connected to the outside of the water delivery pipes (262). A sealing flange plate (264) is installed at the top of the silicon-phosphorus crystal filter (261). Four second support rods (29) are fixedly connected to the bottom of the first processing table (24). A side rolling shutter door panel (11) is installed on one side of the biological particle evaporation and generation tank (1). A maintenance door (12) is installed inside the side rolling shutter door panel (11).
7. The extremely cold weather heating steam generating device according to claim 6, wherein: A protective cover (13) is installed outside the top of the steam generator (4). A wireless signal transceiver (15) is fixedly connected to the top of the protective cover (13). A main control board is fixedly connected inside the wireless signal transceiver (15). A control chip is fixedly connected to the outside of the main control board. The wireless signal transceiver (15), the silicon-phosphorus crystal filter (261), the installation valves (263), the discharge valve (28), the steam generator (4), the first valve (53), and the second valve (57) are all electrically connected to the control chip.