Dictyophora rubrovolvata cultivation device based on tobacco curing house facility
By opening ventilation ports on the side walls of the tobacco cured room and installing a circulating air system, the problems of high energy consumption and limited space when transforming the tobacco cured room into a red tobacco bamboo fungus planting room are solved, and low energy consumption and high-efficiency planting are achieved.
Patent Information
- Application Number
- CN202422296988.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-20
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-09-20
AI Technical Summary
When the existing tobacco cured tobacco planting house is converted into a red tobacco bamboo fungus planting house, the energy consumption is high and the space is limited, resulting in cumbersome handling and placement of the planting box.
A red torch bamboo fungus cultivation device based on the tobacco-cured tobacco facilities was designed, including opening and closing ventilation windows on the side wall of the mushroom room, adopting a circulating air system and a watering system, and equipped with a multi-layer structure cultivation frame for easy placement and movement of the planting box.
Through natural ventilation, the energy consumption is reduced, the handling and placement of planting boxes is simplified, and the planting efficiency and cost-effectiveness are improved.
Smart Images

Figure CN222928945U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of mushroom cultivation devices, and particularly to a Dictyophora rubrovolvata cultivation device based on flue-cured tobacco barn facilities. Background Art
[0002] Currently, there are a large number of flue-cured tobacco barns across the country. Since flue-cured tobacco barns are only used during the flue-cured tobacco season, their working hours are usually less than 3 months, and the rest of the time is idle. In addition, the construction cost of flue-cured tobacco barns is relatively high, which easily leads to an imbalance in the ratio of facility investment to recovery.
[0003] Since heat preservation and moisture preservation are required during flue-curing to ensure the quality of flue-cured tobacco, existing flue-cured tobacco barns are usually independent heat-insulated barns that can isolate the influence of the external environment. This characteristic is relatively suitable for mushroom cultivation. Therefore, some tobacco farmers will convert them into mushroom houses during the idle period of flue-cured tobacco barns for mushroom cultivation, achieving dual use of one barn.
[0004] Cultivating Dictyophora rubrovolvata is one of the options. Dictyophora rubrovolvata can be sown at temperatures between 10 - 30°C, and the most suitable temperature is 15 - 28°C, which is close to the ambient temperature. The growth environment it requires is relatively humid, and the relative air humidity needs to be maintained between 80% - 90%.
[0005] However, there are mainly two major problems in converting a flue-cured tobacco barn into a mushroom house for cultivating Dictyophora rubrovolvata. One is the high energy consumption. Since the indoor temperature needs to be kept high during the operation of the flue-cured tobacco barn and the space is relatively enclosed, whether it is air supply or exhaust, it needs to be completed by a fan, which makes the fan equipment need to be turned on for a long time, resulting in high energy consumption. The other is that the space inside the flue-cured tobacco barn is limited, and it becomes more crowded after placing the cultivation racks. Dictyophora rubrovolvata is mainly cultivated in batches using planting boxes. When in use, the planting boxes need to be carried and placed on the cultivation racks. Due to the narrow space and the large volume and heavy weight of the planting boxes, the process of carrying and placing them is very troublesome. Utility Model Content
[0006] To solve or partially solve the problems existing in the related technologies, this application provides a Dictyophora rubrovolvata cultivation device based on flue-cured tobacco barn facilities. This device can utilize the idle flue-cured tobacco barn to cultivate Dictyophora rubrovolvata, achieving dual use of one barn and saving the cost of building a separate mushroom house.
[0007] The present application provides a Dictyophora rubrovolvata cultivation device based on flue-cured tobacco barn facilities, including a mushroom house. Corresponding ventilation openings are provided on the side walls of the mushroom house, enabling convective ventilation inside the mushroom house. A switchable ventilation window is installed at the ventilation opening, and a circulating air system for realizing indoor air circulation or exhausting indoor air is installed inside the mushroom house; a cultivation rack, which is detachably installed inside the mushroom house, and the cultivation rack is of a multi-layer structure. Support rods for placing planting boxes are evenly welded at the bottom of each layer of the cultivation rack, and guide rods corresponding to the planting boxes are symmetrically welded on both sides of each layer of the cultivation rack, thus forming a concave-shaped placement groove. A number of slidable planting boxes are placed in the placement groove; a watering system, which is installed inside the mushroom house for supplying water to the planting boxes; a detection component, which is arranged inside the mushroom house for detecting the indoor environment.
[0008] Optionally, in some embodiments, both the support rods and the guide rods are smooth cylindrical structures on the surface. The distance between the two guide rods corresponds to the width of the planting box, and the welding height of the guide rods is less than the height of the side wall of the planting box.
[0009] Furthermore, a connecting ear is provided on the side of the planting box facing the door.
[0010] Optionally, in some embodiments, a light strip corresponding to the planting box is provided at the top of each layer of the cultivation rack.
[0011] Optionally, in some embodiments, the circulating air system includes an intake pipe, a circulating fan, an exhaust pipe, a first damper, and a second damper. The circulating fan is installed inside the mushroom house, its suction end is connected to the intake pipe, and its air outlet end is connected to the exhaust pipe. The exhaust pipe is of a T-shaped structure and is provided with two air outlets, namely an internal circulation port and an external circulation port. Among them, the internal circulation port is located inside the mushroom house, and the external circulation port passes through the side wall of the mushroom house and communicates with the external environment. A first damper corresponding to the internal circulation port and a second damper corresponding to the external circulation port are respectively installed on the exhaust pipe.
[0012] Furthermore, the intake pipe is located at the bottom position inside the mushroom house, and the internal circulation port is located at the top position inside the mushroom house.
[0013] Optionally, in some embodiments, the watering system includes a watering pipe, a spray head, a water supply branch pipe, and a water supply main pipe. The watering pipe is fixedly connected at the top position of each layer of the cultivation rack, and a number of spray heads are evenly installed on the watering pipe. The watering pipe is communicated with the water supply branch pipe, and the water supply branch pipe is connected to the external water supply network through the water supply main pipe.
[0014] Furthermore, one end of the water supply branch pipe is connected to the external water supply network, and the other end is connected to the middle position of the watering pipe. An electromagnetic valve is installed on the water supply branch pipe.
[0015] Optionally, in some embodiments, the detection component includes a humidity detector, a temperature detector, and a concentration detector for detecting the carbon dioxide concentration. The humidity detector, the temperature detector, and the concentration detector are all fixedly installed on the inner wall of the mushroom house.
[0016] Optionally, in some embodiments, an air conditioner for assisting in air supplementation is installed in the mushroom house.
[0017] The technical solution provided by this application may include the following beneficial effects:
[0018] In this application, by opening a ventilation opening on the side wall of the flue-cured tobacco barn and installing a ventilation window at the ventilation opening, the ventilation window is closed during flue-curing to ensure the stability of the temperature inside the flue-cured tobacco barn; when cultivating Dictyophora rubrovolvata, if ventilation is required, the ventilation window can be directly opened to form convection indoors, facilitating ventilation without the use of a fan, reducing energy consumption; and by setting a placement groove on the cultivation rack, the planting box can be slidably placed in the placement groove, and the planting box can be taken and placed by pushing and pulling, which is convenient and fast.
[0019] It should be understood that the above general description and the following detailed description are only exemplary and explanatory, and cannot limit this application. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] By describing the exemplary embodiments of this application in more detail in conjunction with the drawings, the above and other objects, features, and advantages of this application will become more obvious. Among them, in the exemplary embodiments of this application, the same reference numerals generally represent the same components.
[0021] Figure 1 is the external structure schematic diagram of this application;
[0022] Figure 2 is the internal structure schematic diagram of this application;
[0023] Figure 3 is the structure schematic diagram of the circulating air system of this application;
[0024] Figure 4 is the structure schematic diagram of the cultivation rack of this application;
[0025] Figure 5 is the side view of the cultivation rack of this application;
[0026] Figure 6 is the other side view of the cultivation rack of this application;
[0027] Figure 7 is the structure schematic diagram of the watering system of this application;
[0028] Figure 8 is the structure schematic diagram of the planting box of this application.
[0029] Reference numerals:
[0030] 1 - Mushroom house, 11 - Legs, 12 - Roof, 13 - Ventilation opening, 14 - Partition; 2 - Door; 3 - Ventilation window; 4 - Cultivation rack, 41 - Support rod, 42 - Guide rod, 43 - Light strip; 44 - Watering system, 45 - Watering pipe, 46 - Sprinkler, 47 - Solenoid valve, 48 - Water supply branch pipe, 49 - Water supply main pipe; 5 - Planting box, 51 - Connecting ear; 6 - Humidifier; 7 - Air conditioner, 71 - Outdoor unit of air conditioner; 8 - Circulating air system, 81 - Intake pipe, 82 - Circulating fan, 83 - Exhaust pipe, 84 - Inner circulation port, 85 - First damper, 86 - Outer circulation port, 87 - Second damper; 9 - Detection component, 91 - Humidity detector, 92 - Temperature detector, 93 - Concentration detector. Detailed implementation manners
[0031] The embodiments of the present application will be described in more detail below with reference to the accompanying drawings. Although the embodiments of the present application are shown in the drawings, it should be understood that the present application can be implemented in various forms and should not be limited by the embodiments set forth herein. On the contrary, these embodiments are provided to make the present application more thorough and complete, and to fully convey the scope of the present application to those skilled in the art.
[0032] It should be understood that although the terms "first", "second", "third", etc. may be used in the present application to describe various information, these information should not be limited to these terms. These terms are only used to distinguish the same type of information from each other. For example, without departing from the scope of the present application, the first information may also be referred to as the second information, and similarly, the second information may also be referred to as the first information. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present application, "a plurality" means two or more unless otherwise specifically defined.
[0033] In the description of the present application, it should be understood that the orientation or positional relationship indicated by the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present application.
[0034] Unless otherwise clearly defined and limited, terms such as "installation", "connection", "linkage", "fixation" shall be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral one; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, and it can be the internal communication of two components or the interaction relationship between two components. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to specific circumstances.
[0035] See Figure 1-8 , a Dictyophora rubrovolvata cultivation device based on flue-cured tobacco barn facilities, comprising:
[0036] The mushroom house 1 is transformed from a flue-cured tobacco barn simply and does not need to be built separately, realizing dual use of one house and saving costs. The specific transformation method is as follows: Ventilation openings 13 are opened on the side walls on the left and right sides of the flue-cured tobacco barn. The number and positions of the ventilation openings 13 can be adjusted according to actual needs. In this embodiment, a total of four ventilation openings 13 are provided, two on each of the left and right sides, and the positions of the ventilation openings 13 on the left and right sides correspond to each other, facilitating the formation of convection. Further, the ventilation openings 13 on the same side are arranged at different height positions vertically, so as to improve the uniformity of convective ventilation. A switchable ventilation window 3 is fixedly installed at the ventilation opening 13. The ventilation window 3 is an electric louver with a good sealing effect. When curing tobacco, the ventilation window 3 is closed to block the ventilation opening 13 to ensure the stability of the indoor temperature; when cultivating Dictyophora rubrovolvata, the ventilation window 3 is opened to allow external fresh air to enter the room from the ventilation opening 13 for natural ventilation, without the need to use a fan for assistance, thereby reducing energy consumption and saving costs.
[0037] The cultivation rack 4 is a multi-layer structure and is assembled by welding steel pipes to ensure the overall stability. The bottom of the cultivation rack 4 is fixed in the mushroom house 1 by screws. When it is necessary to switch to curing tobacco, the screws can be taken out to move the cultivation rack 4 out of the mushroom house 1, which is convenient and fast. Further, see Figure 4, in this embodiment, a door 2 is installed on the front side of the mushroom house 1. The cultivation racks 4 are installed along the front-back direction of the mushroom house 1, and there are three layers of cultivation racks 4. Support rods 41 for placing planting boxes 5 are evenly welded at the bottom of each layer of cultivation rack 4, and guide rods 42 are symmetrically welded on the left and right sides of each layer of cultivation rack 4, while spaces are left on the front and back sides to facilitate the placement of the planting boxes 5; the distance between the two guide rods 42 corresponds to the width of the planting box 5, and the welding height of the guide rods 42 is less than the height of the side wall of the planting box 5, thus forming a concave-shaped placement groove to prevent the planting box 5 from slipping off the cultivation rack 4 when the planting box 5 is pushed. Two slidable planting boxes 5 are placed in the placement groove. When in use, the processed planting box 5 is carried outside the door 2, the door 2 is opened, the planting box 5 is lifted and one end of it is placed on the front end of the cultivation rack 4, and by pushing the planting box 5, it can be slid into the mushroom house 1 along the guide rods 42. Further, to facilitate the pushing of the planting box 5, both the support rods 41 and the guide rods 42 are smooth cylindrical structures on the surface to reduce the friction with the planting box 5; furthermore, a connecting ear 51 is provided on the side of the planting box 5 facing the door 2. When it is necessary to take out the planting box 5, since the space in the mushroom house 1 is narrow and it is not convenient to apply force to push, at this time, after passing a rope through the connecting ear 51, the staff can directly pull the rope in the mushroom house 1 to pull out the planting box 5, which is convenient and fast.
[0038] On the top of each layer of cultivation rack 4, a lamp strip 43 corresponding to the planting box 5 is provided to supplement light for Dictyophora rubrovolvata and ensure its normal growth.
[0039] Watering system 44, a watering system 44 for supplying water to the planting box 5 is installed in the mushroom house 1; see Figures 5-7 , the watering system 44 includes a watering pipe 45, a spray head 46, a water supply branch pipe 48, and a water supply main pipe 49. The watering pipe 45 is fixedly connected at the top position of each layer of cultivation rack 4. A number of spray heads 46 are evenly installed on the watering pipe 45, and the number of spray heads 46 is such that it can completely cover the planting box 5 to avoid watering dead corners. The watering pipe 45 is communicated with the water supply branch pipe 48, and the water supply branch pipe 48 is connected to the external water supply network through the water supply main pipe 49. Further, since the watering pipe 45 is relatively slender, if the water supply branch pipe 48 is directly connected to the end of the watering pipe 45, it is easy to have the problem of uneven water pressure at both ends of the pipe during watering, resulting in a difference in the water output at both ends, which is likely to affect the growth of Dictyophora rubrovolvata. Therefore, in this embodiment, one end of the water supply branch pipe 48 is connected to the external water supply network, and the other end is connected to the middle position of the watering pipe 45, thereby improving the uniformity of the water pressure in the watering pipe 45; furthermore, to facilitate the control of watering, an electromagnetic valve 47 is installed on the water supply branch pipe 48. By controlling the opening and closing of the electromagnetic valve 47, the opening and closing of a single watering pipe 45 can be controlled.
[0040] When the external environmental conditions are not suitable for the growth of Dictyophora rubrovolvata, natural ventilation can no longer be carried out. At this time, the mushroom house 1 needs to be closed to isolate it from the outside. After the mushroom house 1 is closed, the indoor air flow is difficult to flow naturally, which is likely to affect the uniformity of mushroom fruiting. The circulating air system 8 can make the air flow in the mushroom house 1 circulate, thereby improving the uniformity of mushroom fruiting.
[0041] Referring to FIGS. 2 and 3, the circulating air system 8 includes an air inlet pipe 81, a circulating air blower 82, an exhaust pipe 83, a first air damper 85, and a second air damper 87. To facilitate the management of the mushroom house 1, the area inside the mushroom house 1 is divided into a planting area and an equipment area by a partition 14. The two areas are connected to facilitate air flow. The circulating air blower 82 is installed in the equipment area. Its suction end is connected to the air inlet pipe 81, and its air outlet end is connected to the exhaust pipe 83. The exhaust pipe 83 has a T-shaped structure and is provided with two air outlets, an internal circulation port 84 and an external circulation port 86. Among them, the internal circulation port is located inside the mushroom house 1, and the external circulation port 86 passes through the side wall of the mushroom house 1 and communicates with the external environment. A first air damper 85 corresponding to the internal circulation port 84 and a second air damper 87 corresponding to the external circulation port 86 are respectively installed on the exhaust pipe 83. The opening and closing of the internal circulation port 84 can be controlled by the first air damper 85, and the opening and closing of the external circulation port 86 can be controlled by the second air damper 87. Among them, the air inlet pipe 81 is located at the bottom inside the mushroom house 1, and the internal circulation port 84 is located near the roof 12 inside the mushroom house 1, so as to facilitate the formation of a circulating air flow inside the mushroom house 1. When in use, if internal circulation of air flow is required, the first air damper 85 is opened, the second air damper 87 is closed, and the circulating air blower 82 is started. The air flow enters from the air inlet pipe 81 and is discharged from the internal circulation port 84, so as to form a circulating air flow inside the mushroom house 1. If the air inside the mushroom house 1 needs to be pumped and discharged, the second air damper 87 is opened, the first air damper 85 is closed, and the circulating air blower 82 is started. The air flow enters from the air inlet pipe 81 and is discharged to the external environment from the external circulation port 86.
[0042] Furthermore, since the mushroom house 1 is closed, when making up air, corresponding equipment is needed for assistance to introduce fresh air into the room. In this embodiment, the air conditioner 7 is selected as the air-introducing equipment. The air conditioner 7 is installed at the top of the equipment area to facilitate the air flow to directly blow into the planting area. The outdoor unit 71 of the air conditioner is fixedly installed on the outer wall of the mushroom house 1. While introducing air, the air conditioner 7 can also have functions such as heating, cooling, and dehumidifying, so as to ensure that the introduced air flow has a suitable temperature and is relatively dry. It is used in cooperation with the humidifier 6 to facilitate the regulation of the air humidity inside the mushroom house 1. Among them, the humidifier 6 is a ultrasonic atomization humidifier. Further, the bottom of the mushroom house 1 is usually raised by feet 11 to prevent ground water flow from seeping into the room through the door 2 and ensure the stability of the humidity inside the mushroom house 1.
[0043] To facilitate the detection of the environmental conditions in the mushroom house 1, a detection component 9 is also installed in the mushroom house 1, including a humidity detector 91, a temperature detector 92, and a concentration detector 93. The concentration detector 93 is used to detect the carbon dioxide concentration in the mushroom house 1. Further, the humidity detector 91, the temperature detector 92, and the concentration detector 93 can be connected to the control system, so as to facilitate the real-time understanding of the environmental conditions in the mushroom house 1.
[0044] Specific working process:
[0045] During the idle period of the flue-cured tobacco barn, the indoor flue-cured tobacco equipment is disassembled and removed, and the relevant equipment for cultivating Dictyophora rubrovolvata is installed therein, so as to transform it into the mushroom house 1;
[0046] Compare the detection data of the concentration detector 93 (and / or the temperature detector 92, the humidity detector 91) with the preset data. When the detection data is greater than the preset data, it means that the carbon dioxide concentration (and / or the temperature, the humidity) is too high and ventilation is required. When the external environmental conditions meet the growth requirements of Dictyophora rubrovolvata, directly open the ventilation window 3 to form convection in the mushroom house 1, and natural ventilation can be carried out. After the ventilation is completed, close the ventilation window 3. When the external environmental conditions do not meet the growth requirements of Dictyophora rubrovolvata, the indoor gas needs to be pumped and discharged through the circulation fan 82, make up the air through the air conditioner 7, and cooperate with the humidifier 6 to improve the indoor environmental conditions to meet the growth requirements of Dictyophora rubrovolvata.
[0047] Finally, it should also be noted that in this article, relationships such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms including, containing or any other variant are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not explicitly listed, or also includes elements inherent to this process, method, article or device.
[0048] The embodiments of the present application have been described above. The above description is exemplary, not exhaustive, and is not limited to the disclosed embodiments. Many modifications and changes are obvious to those of ordinary skill in the art in the technical field without departing from the scope and spirit of the described embodiments. The choice of terms used in this article is intended to best explain the principles of the embodiments, the practical application or the improvement of the technology in the market, or to enable other ordinary technical personnel in the technical field to understand the embodiments disclosed in this article.
Claims
1. A red stem bamboo fungus cultivation device based on flue-cured tobacco room facilities, characterized in that: include A mushroom house (1), wherein the mushroom house (1) has corresponding ventilation openings (13) on its side walls, so that convection ventilation can be performed in the mushroom house (1), an openable and closable ventilation window (3) is installed at the ventilation opening (13), and a circulating air system (8) is installed in the mushroom house (1) for realizing indoor air circulation; A cultivation rack (4), the cultivation rack (4) being detachably installed in the mushroom house (1), and the cultivation rack (4) being a multi-layer structure, support rods (41) for placing a planting box (5) are uniformly welded at the bottom of each layer of the cultivation rack (4), and guide rods (42) corresponding to the planting box (5) are symmetrically welded on both sides of each layer of the cultivation rack (4), thereby forming a concave placement groove, and a plurality of slidable planting boxes (5) are placed in the placement groove; A watering system (44), wherein the mushroom house (1) is provided with a watering system (44) for supplying water to the planting box (5); A detection component (9), wherein the mushroom house (1) is also provided with a detection component (9) for detecting the indoor environment.
2. The red-stemmed bamboo fungus cultivation device based on the flue-cured tobacco room facility according to claim 1 is characterized in that: The support rod (41) and the guide rod (42) are both cylindrical structures with smooth surfaces, the distance between the two guide rods (42) corresponds to the width of the planting box (5), and the welding height of the guide rod (42) is less than the height of the side wall of the planting box (5).
3. The red-stemmed bamboo fungus cultivation device based on the flue-cured tobacco room facility according to claim 2 is characterized in that: The planting box (5) is provided with a connecting ear (51) on the side facing the door (2).
4. The red-stemmed bamboo fungus cultivation device based on the flue-cured tobacco room facility according to claim 1 is characterized in that: The top of each layer of the cultivation rack (4) is provided with a light belt (43) corresponding to the planting box (5).
5. The red stem bamboo fungus cultivation device based on the flue-cured tobacco room facility according to claim 1 is characterized in that: The circulating air system (8) comprises an air inlet pipe (81), a circulating fan (82), an exhaust pipe (83), a first air damper (85), and a second air damper (87). The circulating fan (82) is installed in the mushroom house (1), and its air intake end is connected to the air inlet pipe (81), and its air outlet end is connected to the exhaust pipe (83). The exhaust pipe (83) is in a T-shaped structure and is provided with two air outlets, an inner circulation port (84) and an outer circulation port (86). The inner circulation port (84) is located in the mushroom house (1), and the outer circulation port (86) passes through the side wall of the mushroom house (1) and is connected to the external environment. The exhaust pipe (83) is respectively provided with a first air damper (85) corresponding to the inner circulation port (84), and a second air damper (87) corresponding to the outer circulation port (86).
6. The red stem bamboo fungus cultivation device based on the flue-cured tobacco room facility according to claim 5 is characterized in that: The air inlet pipe (81) is located at the bottom of the mushroom house (1), and the internal circulation port (84) is located at the top of the mushroom house (1).
7. The red-stemmed bamboo fungus cultivation device based on the flue-cured tobacco room facility according to claim 1 is characterized in that: The watering system (44) comprises a watering pipe (45), a nozzle (46), a water supply branch pipe (48), and a water supply main pipe (49). A watering pipe (45) is fixedly connected to the top of each layer of the cultivation rack (4). A plurality of nozzles (46) are evenly installed on the watering pipe (45). The watering pipe (45) is communicated with the water supply branch pipe (48). The water supply branch pipe (48) is connected to an external water supply network through the water supply main pipe (49).
8. The red stem bamboo fungus cultivation device based on the flue-cured tobacco room facility according to claim 7 is characterized in that: One end of the water supply branch pipe (48) is connected to the external water supply network, and the other end is connected to the middle position of the watering pipe (45), and a solenoid valve (47) is installed on the water supply branch pipe (48).
9. The red stem bamboo fungus cultivation device based on the flue-cured tobacco room facility according to claim 1, characterized in that: The detection component (9) comprises a humidity detector (91), a temperature detector (92), and a concentration detector (93) for detecting the concentration of carbon dioxide. The humidity detector (91), the temperature detector (92), and the concentration detector (93) are all fixedly mounted on the inner wall of the mushroom house (1).
10. The red stem bamboo fungus cultivation device based on the flue-cured tobacco room facility according to claim 1, characterized in that: An air conditioner (7) for assisting air replenishment is installed in the mushroom house (1).