Device for simulating high-temperature training

By designing a simulated high-temperature training device including rescue cabins and training cabins, the problem of inability to effectively simulate high-temperature environments and ensure the safety of trainees in the prior art is solved, and efficient high-temperature training and safety guarantees for trainees are achieved.

CN222879327UActive Publication Date: 2025-05-16AIR FORCE COMM SERGEANT SCHOOL OF PLA
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Patent Information

Application Number
CN202421914729.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-07
Publication Date
2025-05-16
Estimated Expiration
2034-08-07

AI Technical Summary

Technical Problem

The existing high-temperature training devices cannot effectively simulate the high-temperature environment and cannot provide trainees with a safe rest and treatment environment, resulting in the safety of trainees being unable to be guaranteed.

Method used

A device that simulates high-temperature training is designed, including multiple rescue compartments and training compartments, and a rescue compartment is arranged between adjacent training compartments to provide a rest and treatment environment. The rescue cabin is equipped with a pool, a rescue bed and a rescue instrument, and the training cabin is equipped with heating and humidification devices to adjust the ambient temperature and humidity.

Benefits of technology

By setting up a rescue cabin, the trainees can be quickly provided with a rest and treatment environment to ensure their safety; at the same time, by adjusting the temperature and humidity in the training cabin, the high-temperature environment can be effectively simulated and the psychological quality of trainees can be improved.

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Abstract

The utility model relates to the technical field of psychological training equipment, in particular to a device for simulating high-temperature training. A device for simulating high-temperature training comprises rescue cabins and training cabins, and one rescue cabin is installed between every two adjacent training cabins. A channel is arranged on the side wall, connected with the training cabin, of the rescue cabin. Water pools are installed in the rescue cabin and contain cold water. A rescue bed and a rescue instrument are further installed in the rescue cabin. A hygrothermograph, a heating device and a humidifying device are arranged in the training cabin, and the hygrothermograph is used for monitoring the temperature and humidity in the training cabin; the heating device is used for adjusting the temperature in the training cabin; the humidifying device is used for adjusting the humidity in the training cabin. By arranging the rescue cabin and the channel, the trainee can conveniently and quickly enter the rescue cabin from the training cabin through the channel, so that the trainee can timely enter the rescue cabin for treatment when the body of the trainee is uncomfortable in the training process, and a guarantee is provided for the body safety of the trainee.
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Description

Technical Field

[0001] The utility model relates to the technical field of psychological training equipment, in particular to a device for simulating high temperature training. Background Art

[0002] Psychological behavioral training is a training method that hones people's will. By challenging some extreme training subjects, trainees can stimulate their potential after a period of training, so as to surpass things that they could not surpass in the past. Psychological behavioral training is a training method that improves the psychological quality of trainees through behavioral training. Therefore, psychological behavioral training is not only the honing of skills, but also the training of courage and bravery.

[0003] In some special scenarios or conditions, relevant personnel are required to have strong high temperature tolerance to meet their normal work in high temperature environment. Therefore, it is necessary to conduct high temperature simulation training for such personnel. At present, high temperature training is mainly carried out in outdoor scenarios. There are too many uncertain factors in this outdoor high temperature training, which leads to some difficult-to-control situations during the training process, which is not conducive to the psychological training of trainees in high temperature environment. Although some existing training bases also design some high temperature drying rooms to simulate outdoor high temperature environment, the internal structure of this high temperature drying room is relatively simple, and the temperature and humidity in the drying room cannot be well controlled, resulting in it not being able to simulate the high temperature environment well. In addition, regardless of outdoor high temperature training or indoor high temperature drying room training, due to the high temperature of the training environment, trainees are prone to discomfort during the training process, and the existing training model cannot provide trainees with a good rescue environment during the training process, so that trainees cannot receive rapid and effective treatment during the training process, so that the safety of trainees during the training process cannot be guaranteed. Utility Model Content

[0004] In order to solve the problem that the high temperature drying room in the prior art cannot simulate the high temperature environment well and cannot provide safety guarantee for trainees during the training process, the utility model provides a device for simulating high temperature training.

[0005] In order to achieve the above purpose, the technical solution adopted by the utility model is: a device for simulating high temperature training, which includes multiple rescue cabins and multiple training cabins, a rescue cabin is installed between two adjacent training cabins, one end of the rescue cabin is connected to one of the training cabins, and the other end of the rescue cabin is connected to the other training cabin, and the number of the rescue cabins is one less than the number of the training cabins; a passage is provided on the side wall connecting the rescue cabin and the training cabin, and the passage connects the training cabin and the rescue cabin respectively; an openable and closable door is provided on the side wall connecting the rescue cabin and the training cabin, and the door is used to open and close the passage; the rescue cabin is used for trainees to rest when they have physical problems during training. a place for rest or treatment; a plurality of water pools are installed in the rescue cabin, each of which is filled with cold water for cooling down the body temperature of the trainees; a rescue bed for the trainees to rest and rescue instruments for treating the trainees are also installed in the rescue cabin; a thermometer and hygrometer, a heating device and a humidifying device are provided in the training cabin, the thermometer and hygrometer are installed in the training cabin, and are used to monitor the temperature and humidity in the training cabin; the heating device is installed on the upper end surface of the training cabin, and the heating device is used to adjust the temperature in the training cabin; the humidifying device is detachably installed on two adjacent side panels of the side wall of the training cabin connected to the rescue cabin, and the humidifying device is used to adjust the humidity in the training cabin.

[0006] As a further improvement of the above scheme, the humidifier device includes a humidifier body and a spray device, the humidifier body is connected to the spray device, the humidifier body is used to generate mist and spray it into the training cabin through the spray device; two adjacent side panels of the side wall connecting the training cabin and the rescue cabin are provided with installation grooves, and the installation grooves are used to be installed on the spray device.

[0007] As a further improvement of the above scheme, a pair of limit plates are provided on the side panel, and the pair of limit plates are symmetrically installed on the side panel. The limit plates are integrally extended from the side panel toward the installation groove, and the side wall of the limit plate facing the training cabin is flush with the inner wall of the side panel; the pair of limit plates can surround the installation groove into a convex structure.

[0008] As a further improvement of the above scheme, at least one pair of baffles are rotatably installed on the side plate, and the baffles are rotated until their outer surfaces are flush with the outer side walls of the side plates. The pair of baffles are retracted into the mounting groove, and the baffles and the limit plates are able to limit the spray device within the mounting groove.

[0009] As a further improvement of the above solution, a gap is provided between the pair of baffles, and the connecting pipe can pass through the gap to communicate with the injection chamber. The width of the gap is greater than the outer diameter of the connecting pipe.

[0010] As a further improvement of the above solution, a locking device is provided between the pair of baffles, and the locking device is used to lock the pair of baffles so that the baffles are retracted into the installation grooves.

[0011] As a further improvement of the above scheme, a water inlet pipe and a water outlet pipe are provided in the water pool, and the water inlet pipe and the water outlet pipe are arranged on the same side wall of the water pool, and the distance between the water inlet pipe and the bottom of the water pool is greater than the distance between the water outlet pipe and the bottom of the water pool.

[0012] As a further improvement of the above solution, the rescue bed includes a bed body and a plurality of lifting components, wherein the plurality of lifting components are installed at the lower end of the bed body, and the lifting components are used to raise or lower the bed body.

[0013] As a further improvement of the above solution, the lifting member is a cylinder.

[0014] Furthermore, the heating device is a hot air blower, the hot air blower is connected to the training cabin through a pipeline, and the hot air blower is used to provide hot air to the training cabin;

[0015] And / or, the humidifying device is a humidifier, the humidifier is connected to the rescue cabin through a pipeline, and the humidifier is used to spray water vapor on the rescue cabin to achieve the purpose of humidification.

[0016] Compared with the prior art, the beneficial effects of the utility model are:

[0017] (1) A rescue cabin is provided to provide a place for trainees to rest or receive treatment when they have physical problems during training. A passage is provided on the side wall connecting the rescue cabin and the training cabin, so that trainees can quickly enter the rescue cabin from the training cabin through the passage, so that when trainees feel unwell during training, they can enter the rescue cabin for treatment in time, thereby ensuring the physical safety of trainees.

[0018] (2) By setting up a rescue cabin between two adjacent training cabins, trainees in the two rescue cabins can quickly enter the rescue cabin for rescue when they have physical problems during training. At the same time, configuring a rescue cabin for two training cabins can effectively reduce the space occupied by the entire simulated high temperature training device, thereby ensuring the safety of trainees during training and reducing the cost of building the high temperature simulation training cabin.

[0019] (3) Since the training environment is a high temperature environment, the purpose of setting up a pool is to provide cold water for trainees. It is convenient for trainees to soak in the pool after training, which can effectively reduce the pain during training, eliminate muscle swelling, help repair the head tissue, and also increase body metabolism to help the body recover faster.

[0020] (4) By setting up a heating device and a humidifying device, the environment in the training cabin can be well adjusted so that the high-temperature training environment can be well simulated in the training cabin, which makes it easier for trainees to conduct high-temperature simulation training in the training cabin and enhance the psychological quality of the trainees. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is a three-dimensional diagram of the device for simulating high temperature training provided by the utility model.

[0022] Figure 2 This is a front view of the device for simulating high temperature training provided by the utility model.

[0023] Figure 3 For this utility model Figure 2 Cross-sectional view along AA.

[0024] Figure 4 For this utility model Figure 2 Cross-sectional view along BB.

[0025] Figure 5 This is a schematic diagram of the internal structure of the device for simulating high temperature training provided by the utility model (one spray device remains uninstalled).

[0026] Figure 6 This is an enlarged schematic diagram of the spray device provided by the utility model.

[0027] In the figure: 1. rescue cabin; 11. water tank; 111. water inlet pipe; 112. water outlet pipe; 12. rescue bed; 121. bed body; 122. lifting parts; 13. rescue instrument; 2. training cabin; 21. thermometer and hygrometer; 22. side panel; 221. mounting groove; 222. limit plate; 223. baffle; 224. gap; 231. spray device; 2311. shell; 2312. connecting pipe; 2313. injection chamber; 2314. spray hole; 3. channel. DETAILED DESCRIPTION

[0028] The present invention is further described below in conjunction with specific implementation methods. It should be noted that, under the premise of no conflict, the various embodiments or technical features described below can be arbitrarily combined to form a new embodiment.

[0029] In the description of the present utility model, it should be noted that for directional words, such as the terms "center", "lateral", "longitudinal", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise" and the like indicating directions and positional relationships are based on the directions or positional relationships shown in the drawings, which are only for the convenience of describing the present utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction, and cannot be understood as limiting the specific protection scope of the present utility model. The terms "first", "second" and the like in the specification and claims of the present utility model are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence. The terms "including" and "having" in the specification and claims of the present utility model and any of their variations are intended to cover non-exclusive inclusions, for example, a process, method, system, product or device including a series of steps or units is not necessarily limited to those steps or units clearly listed, but may include other steps or units that are not clearly listed or inherent to these processes, methods, products or devices.

[0030] Reference Figures 1 to 4 As shown, an embodiment of the utility model provides a device for simulating high temperature training, comprising a plurality of rescue cabins 1 and a plurality of training cabins 2. A rescue cabin 1 is installed between two adjacent training cabins 2, one end of the rescue cabin 1 is connected to one of the training cabins 2, and the other end of the rescue cabin 1 is connected to the other training cabin 2, and the number of rescue cabins 1 is one less than the number of training cabins 2. By arranging a rescue cabin 1 between two adjacent training cabins 2, it is convenient for trainees in the two rescue cabins 1 to quickly enter the rescue cabin 1 for rescue when they have physical problems during training. At the same time, one rescue cabin 1 is configured for the two training cabins 2, which can effectively reduce the occupied space of the entire device for simulating high temperature training, and can reduce the cost of building the device for simulating high temperature training while ensuring the safety of trainees during training. In this embodiment, the number of training cabins 2 is two, and the number of rescue cabins 1 is one, one end of the rescue cabin 1 is connected to one of the training cabins 2, and the other end of the rescue cabin 1 is connected to the other training cabin 2.

[0031] Please refer to Figures 3 to 5As shown, a passage 3 is provided on the side wall connecting the rescue cabin 1 and the training cabin 2, and the passage 3 connects the training cabin 2 and the rescue cabin 1 respectively. By providing the passage 3, it is convenient for trainees to quickly enter the rescue cabin 1 from the training cabin 2 through the passage 3, so that when the trainees feel unwell during the training process, they can enter the rescue cabin 1 in time for treatment, providing protection for the physical safety of the trainees. The rescue cabin 1 is used as a place for trainees to rest or receive treatment when they have physical problems during the training process. A door that can be opened and closed is provided on the side wall connecting the rescue cabin 1 and the training cabin 2, and the door is used to open and close the passage 3. In the actual high temperature training process, the door is usually closed, and the training cabin 2 and the rescue cabin 1 are independent of each other. Only when the trainees feel unwell or rest, they can manually open the door and enter the rescue cabin 1 through the passage 3 for treatment or rest. A plurality of pools 11 are installed in the rescue cabin 1, and each pool 11 is filled with cold water for cooling the body temperature of the trainees. The purpose of setting up the pool 11 is to provide cold water for the trainees. The water temperature is generally between 15°C and 20°C, so that the trainees can soak in the pool 11 after training. This can effectively reduce the pain during training, eliminate muscle swelling, help repair the head tissue, and also increase body metabolism to help the body recover faster. In addition, since the training environment is a high-temperature environment, the trainees are prone to discomfort symptoms such as conscious fever, pale complexion, dizziness, confusion, palpitations, shortness of breath, nausea and vomiting during training. At this time, the trainees can be placed in the pool 11 for soaking, and soaking in the pool 11 can effectively alleviate the above symptoms. Thereby, the trainees can be rescued quickly and the life safety of the trainees can be guaranteed. The rescue cabin 1 is also equipped with a rescue bed 12 for trainees to rest and a rescue instrument 13 for treating the trainees. The rescue bed 12 can also provide a place for the trainees to rest. At the same time, the medical staff can provide timely treatment to the trainees through the rescue instrument 13 when the trainees feel unwell during the training process, thereby providing protection for the safety of the trainees.

[0032] In this embodiment, the rescue equipment 13 may include a cardiac defibrillator, a simple respirator, a cardiac compression pump, an oxygen cylinder, an electrocardiogram monitor, a negative pressure suction device, etc.

[0033] Please refer to Figure 3 The training cabin 2 is provided with a thermometer and hygrometer 21, a heating device and a humidifying device. The thermometer and hygrometer 21 is installed in the training cabin 2 and is used to monitor the temperature and humidity in the training cabin 2. The heating device is installed on the upper end surface of the training cabin 2, and the heating device is used to adjust the temperature in the training cabin 2; the humidifying device is detachably installed on two adjacent side panels 22 of the side wall connecting the training cabin 2 and the rescue cabin 1, and the humidifying device is used to adjust the humidity in the training cabin 2.

[0034] It is understandable that the thermometer and hygrometer 21 can be installed in the middle position of the training cabin 2, so that it can measure the temperature and humidity in the training cabin 2 more accurately.

[0035] In this embodiment, humidifying devices are installed on the adjacent side panels 22 of the side walls of the training cabin 2 connected to the rescue cabin 1, so that the humidifying device can quickly humidify the training cabin 2 and increase its humidification speed. Humidification from both sides at the same time can also ensure that the humidity in various places in the training cabin 2 is not much different.

[0036] It is understandable that the training cabin 2 may also include a PLC controller, which is respectively connected to the thermometer and hygrometer 21, the heating device and the humidifying device. The thermometer and hygrometer 21 is used to monitor the temperature and humidity in the training cabin 2 and transmit the monitored data to the PLC controller. Then, after receiving the data, the PLC controller controls the heating device to provide hot air to the training cabin 2 and controls the humidifying device to provide water vapor to the training cabin 2, so that the temperature and humidity in the training cabin 2 meet the requirements of high-temperature environment training. In this embodiment, the PLC controller receives the data from the thermometer and hygrometer 21 and processes and displays it, which are conventional processing methods in the prior art, and the PLC controller controls the heating device and the humidifying device, which is also a common control method in the prior art, so it is not described in detail in this embodiment.

[0037] Please refer to Figure 5 and Figure 6 The humidifier device includes a humidifier body and a spray device 231. The humidifier body is connected to the spray device 231. The humidifier body is used to generate mist and spray it into the training cabin 2 through the spray device 231. The two adjacent side panels 22 of the side wall of the training cabin 2 connected to the rescue cabin 1 are each provided with a mounting groove 221. The mounting groove 221 is used to be installed on the spray device 231. The humidifier body is arranged on the outside of the training cabin 2. In this embodiment, the number of mounting grooves 221 on the same side panel 22 is two, and the two mounting grooves 221 are each installed with a spray device 231. The two spray devices 231 on the same side panel 22 are respectively connected to a humidifier body, so that the humidifier body can spray mist into the training cabin 2 through the two spray devices 231, thereby achieving the purpose of humidifying the training cabin 2. By providing two spray devices 231, the mist generated in the humidifier body can be quickly sprayed into the training cabin 2, thereby improving the humidification effect of the entire device.

[0038] Please refer to Figure 5 and Figure 6The spray device 231 includes a shell 2311 and a connecting pipe 2312. The shell 2311 is provided with an injection chamber 2313 and a plurality of spray holes 2314. Each spray hole 2314 is respectively connected to the injection chamber 2313. In this embodiment, the number of the connecting pipes 2312 can be multiple. One end of each connecting pipe 2312 passes through the shell 2311 and is connected to the injection chamber 2313. The other end of each connecting pipe 2312 is connected to the humidifier body. By providing the connecting pipe 2312, the injection chamber 2313 and the spray holes 2314, the mist generated by the humidifier body can be transported to the injection chamber 2313 through the connecting pipe 2312, and then sprayed to the training cabin 2 through the spray holes 2314, thereby achieving the purpose of humidifying the training cabin 2.

[0039] Please refer to Figure 5 A pair of limiting plates 222 are provided on the side plate 22, and the limiting plates 222 are symmetrically installed on the side plate 22. The limiting plates 222 are integrally extended from the side plate 22 to the direction of the installation slot 221, and the side wall of the limiting plates 222 facing the training cabin 2 is flush with the inner side wall of the side plate 22; the pair of limiting plates 222 can surround the installation slot 221 into a convex structure. The housing 2311 is also a convex structure, and the convex installation slot 221 can limit the convex housing 2311, so that the housing 2311 can be stably installed in the installation slot 221, thereby improving the stability of the housing 2311 installed in the installation slot 221.

[0040] Please refer to Figure 5 At least one pair of baffles 223 are rotatably mounted on the side plate 22. The baffles 223 are rotated until their outer surfaces are flush with the outer side walls of the side plate 22. The pair of baffles 223 are retracted into the mounting groove 221. The baffles 223 and the limiting plate 222 can limit the spray device 231 in the mounting groove 221. Under the action of the baffles 223 and the limiting plate 222, the housing 2311 can be limited in the mounting groove 221, thereby improving the stability of the housing 2311 installed in the mounting groove 221. By providing a rotatable baffle 223, the baffle 223 can facilitate the installation of the spray device 231 in the mounting groove 221, and can also quickly remove the spray device 231 from the mounting groove 221, thereby realizing the cleaning or replacement of the spray device 231.

[0041] A gap 224 is provided between the pair of baffles 223, and the connecting pipe 2312 is able to pass through the gap 224 and communicate with the injection chamber 2313. The width of the gap 224 is greater than the outer diameter of the connecting pipe 2312. By providing the gap 224, when the spray device 231 is installed in the installation groove 221, the baffle 223 will not affect the connection between the connecting pipe 2312 and the humidifier body.

[0042] A locking device (not shown) is provided between the pair of baffles 223, and the locking device is used to lock the pair of baffles 223, so that the baffles 223 are retracted into the mounting groove 221, further improving the stability of the spray device 231 installed in the mounting groove 221. The locking device can lock the two baffles 223 by means of threaded locking or by means of latch locking.

[0043] The heating device can be a hot air blower, which is connected to the training cabin 2 through a pipeline. The hot air blower is used to provide hot air to the training cabin 2 to heat the training cabin 2, thereby simulating a high-temperature training environment for trainees to train in the training cabin 2.

[0044] Please refer to Figure 5 The pool 11 is provided with a water inlet pipe 111 and a water outlet pipe 112, which are arranged on the same side wall of the pool 11, and the distance between the water inlet pipe 111 and the bottom of the pool 11 is greater than the distance between the water outlet pipe 112 and the bottom of the pool 11. Water can be transported into the pool 11 through the water inlet pipe 111, and the water in the pool 11 can also be discharged through the water outlet pipe 112. A temperature sensor can also be provided in the pool 11 to monitor the temperature of the water in the pool 11.

[0045] Please refer to Figure 5 The rescue bed 12 includes a bed body 121 and a plurality of lifting members 122. The plurality of lifting members 122 are installed at the lower end of the bed body 121. The lifting members 122 are used to raise or lower the bed body 121 to change the distance between the bed body 121 and the bottom of the training cabin 2. In the actual process, the bed body 121 can be lowered to the lowest position, at which time the bed body 121 can be used as a bench for trainees to sit on and rest. In addition, when the trainees are unwell, the bed body 121 can be raised to a suitable position by the lifting members 122 for the trainees to lie on the bed body 121 for treatment and recuperation. The bed body 121 is a rectangular parallelepiped structure, and the rescue instrument 13 is installed on the side wall and very close to the bed body 121, so that medical staff can easily take the rescue instrument 13 to treat the trainees lying on the bed.

[0046] A plurality of grids may be provided in the training cabin 2, and the grids are used to separate the training cabin 2 into a plurality of training areas, each of which may be provided with different training equipment, so that trainees can perform training of different items in different training areas.

[0047] It is understandable that a plurality of swing doors are also provided on the side panel 22 on the side opposite to the side wall of the training cabin 2. The purpose of providing a plurality of swing doors is to facilitate the trainees to enter the training cabin 2 by opening the swing doors, so as to realize training operations in a high temperature environment. In actual operation, the number of swing doors may correspond to the number of training areas in the training cabin 2. In addition, the number of swing doors may not correspond to the number of training areas. In this case, only a door needs to be opened on the grid to connect the two training areas. These two setting methods can be selected according to needs in actual operation.

[0048] It can be understood that the number of passages 3 can be consistent with the number of training areas, so that personnel in each training area can enter the rescue cabin 1 through the passage 3 of their training area.

[0049] In this embodiment, the lifting member 122 may be a cylinder.

[0050] The above describes the basic principle, main features and advantages of the utility model. Those skilled in the art should understand that the utility model is not limited by the above embodiments. The above embodiments and the specification only describe the principles of the utility model. The utility model may be subject to various changes and improvements without departing from the spirit and scope of the utility model. These changes and improvements fall within the scope of the utility model to be protected. The scope of protection claimed by the utility model is defined by the attached claims and their equivalents.

Claims

1. A device for simulating high temperature training, characterized in that: It comprises a plurality of rescue cabins (1) and a plurality of training cabins (2), wherein a rescue cabin (1) is installed between two adjacent training cabins (2), one end of the rescue cabin (1) is connected to one of the training cabins (2), and the other end of the rescue cabin (1) is connected to another of the training cabins (2), and the number of the rescue cabins (1) is one less than the number of the training cabins (2); A passage (3) is provided on the side wall connecting the rescue cabin (1) and the training cabin (2), and the passage (3) is connected to the training cabin (2) and the rescue cabin (1) respectively; an openable and closable door is provided on the side wall connecting the rescue cabin (1) and the training cabin (2), and the door is used to open and close the passage (3); the rescue cabin (1) is used as a place for trainees to rest or receive treatment when they have physical problems during training; a plurality of pools (11) are installed in the rescue cabin (1), and each of the pools (11) contains cold water for cooling down the body temperature of the trainees; a rescue bed (12) for the trainees to rest and a rescue instrument (13) for treating the trainees are also installed in the rescue cabin (1); The training cabin (2) is provided with a thermometer and hygrometer (21), a heating device and a humidifying device. The thermometer and hygrometer (21) is installed in the training cabin (2) and is used to monitor the temperature and humidity in the training cabin (2); the heating device is installed on the upper end surface of the training cabin (2), and the heating device is used to adjust the temperature in the training cabin (2); the humidifying device is detachably installed on two adjacent side panels (22) of the side wall connecting the training cabin (2) and the rescue cabin (1), and the humidifying device is used to adjust the humidity in the training cabin (2).

2. The device for simulating high temperature training according to claim 1, characterized in that: The humidifier device comprises a humidifier body and a spray device (231), wherein the humidifier body is connected to the spray device (231), and the humidifier body is used to generate mist and spray the mist toward the training cabin (2) through the spray device (231); two adjacent side panels (22) of the side wall of the training cabin (2) connected to the rescue cabin (1) are provided with mounting grooves (221), and the mounting grooves (221) are used to be mounted on the spray device (231).

3. The device for simulating high temperature training as claimed in claim 2, characterized in that: The spray device (231) includes a shell (2311) and a connecting pipe (2312), the shell (2311) is provided with an injection chamber (2313) and a plurality of spray holes (2314), the plurality of spray holes (2314) are respectively connected to the injection chamber (2313), one end of the connecting pipe (2312) passes through the shell (2311) and is connected to the injection chamber (2313), and the other end of the connecting pipe (2312) is connected to the humidifier body.

4. The device for simulating high temperature training according to claim 3, characterized in that: A pair of limiting plates (222) are provided on the side plate (22), and the pair of limiting plates (222) are symmetrically installed on the side plate (22). The limiting plates (222) are integrally extended from the side plate (22) toward the installation groove (221), and the side wall of the limiting plate (222) facing the training cabin (2) is flush with the inner wall of the side plate (22); the pair of limiting plates (222) can surround the installation groove (221) into a convex structure.

5. The device for simulating high temperature training according to claim 4, characterized in that: At least one pair of baffles (223) is rotatably mounted on the side plate (22); the baffles (223) are rotated until their outer surfaces are flush with the outer side walls of the side plate (22); the pair of baffles (223) are retracted into the mounting groove (221); the baffles (223) and the limiting plates (222) are able to limit the spray device (231) within the mounting groove (221).

6. The device for simulating high temperature training according to claim 5, characterized in that: A gap (224) is provided between the pair of baffles (223), and the connecting pipe (2312) is able to pass through the gap (224) to communicate with the injection chamber (2313); the width of the gap (224) is greater than the outer diameter of the connecting pipe (2312).

7. The device for simulating high temperature training according to claim 5, characterized in that: A locking device is provided between the pair of baffles (223), and the locking device is used to lock the pair of baffles (223) so that the baffles (223) are retracted into the installation groove (221).

8. The device for simulating high temperature training according to claim 1, characterized in that: A water inlet pipe (111) and a water outlet pipe (112) are provided in the water pool (11); the water inlet pipe (111) and the water outlet pipe (112) are arranged on the same side wall of the water pool (11); and the distance between the water inlet pipe (111) and the bottom end of the water pool (11) is greater than the distance between the water outlet pipe (112) and the bottom end of the water pool (11).

9. The device for simulating high temperature training according to claim 1, characterized in that: The rescue bed (12) comprises a bed body (121) and a plurality of lifting members (122). The plurality of lifting members (122) are installed at the lower end of the bed body (121), and the lifting members (122) are used to raise or lower the bed body (121).

10. The device for simulating high temperature training according to claim 9, characterized in that: The lifting member (122) is a cylinder.