Heat preservation tent for building construction in winter
By introducing photovoltaic panels, cleaning mechanisms, and protective mechanisms into insulated tents used in winter construction, the problem of untimely detection of tent damage has been solved, and the temperature inside the tent has been stabilized, improving the quality of the concrete.
Patent Information
- Application Number
- CN202511113760.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-08
- Publication Date
- 2025-12-02
AI Technical Summary
Existing heating, curing, and insulation technologies cannot monitor the condition of tents in real time during winter construction, resulting in the inability to detect tent damage in a timely manner, which affects the quality and service life of concrete columns.
A thermal insulation tent for winter construction has been designed, equipped with photovoltaic panels, a cleaning mechanism, a protective mechanism, and a monitoring component. The photovoltaic panels generate electricity for heating, the cleaning mechanism removes snow, the protective mechanism enhances sealing and wind resistance, and the monitoring component monitors temperature and humidity in real time.
Effectively clearing snow from the top of the tent, maintaining a stable temperature inside the tent, enhancing the tent's sealing and wind resistance, ensuring that the concrete pillars do not crack in low-temperature environments, and improving construction quality.
Smart Images

Figure CN121047445A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of thermal insulation tent technology, specifically a thermal insulation tent for winter construction. Background Technology
[0002] Precast concrete components are construction components used in building engineering. Common examples include precast concrete floor slabs, concrete box girders for bridges, precast concrete roof trusses for industrial plants, culvert frames, and precast concrete piles for foundation treatment. After curing, precast concrete components can be directly assembled and used. Heating and curing insulation technology can effectively improve the frost resistance of concrete during winter construction, thereby ensuring construction quality. In low-temperature environments, the moisture in concrete is prone to freezing, forming ice crystals, which can cause internal stress in the concrete and, in severe cases, even structural cracking.
[0003] Existing heating, curing, and insulation technologies require placing concrete pillars inside tents during operation. In winter, the temperature is low and the environment is harsh, making it impossible for workers to monitor the tent's condition in real time. If damage to the tent is not detected in time, the concrete pillars will become unusable. Summary of the Invention
[0004] To address the shortcomings of existing technologies, the technical solution adopted by this invention is: a thermal insulation tent for winter construction, comprising: The tent body has photovoltaic panels evenly distributed on its outer wall. A support mechanism is installed on the inner wall of the tent body; A cleaning mechanism is installed on top of a support mechanism, and the outer wall of the cleaning mechanism is fitted into the top of the tent body. A protective mechanism is installed at the bottom of the tent body; The cleaning mechanism includes: An electric motor is mounted on top of a support mechanism, and a mounting plate is rotatably connected to the top of the motor. A canopy cleaning assembly is evenly distributed above the tent body.
[0005] The cleaning mechanism also includes: A round rod, the top of which is disposed at the bottom of the mounting plate, and the outer wall of which is sleeved with the inner wall of the ceiling cleaning assembly; A photovoltaic panel cleaning assembly is installed at the bottom of a round rod, with the bottom of the assembly in contact with the top of the photovoltaic panel.
[0006] Furthermore, the protective mechanism includes: The shell is installed at the bottom of the tent body, and the bottom of the shell is placed on the ground. The bottom of the shell is provided with an extension edge, which is made of flexible material, while the shell itself is made of rigid material. This is used to increase the weight of the bottom of the tent body, lower the center of gravity of the tent body, and make it easier to resist strong winds. The water bag has its top connected to the top of the inner wall of the shell. The top of the water bag is provided with a water inlet pipe, and the outer wall of the water bag is equipped with a water outlet pipe on the side away from the water inlet pipe. The water bag is circular and made of elastic and relatively wear-resistant rubber.
[0007] Furthermore, the protective mechanism also includes: Support columns are evenly distributed on the bottom side of the inner wall of the shell away from the water bag; The curved plates are evenly distributed on the top of the inner wall of the shell. There are six curved plates. The outer wall of the curved plates is in contact with the outer wall of the water bag. The curved plates clamp the water bag in the gap between the water bag and the shell, so that the deformation of the water bag extends downward and the bottom of the tent body fits more tightly with the ground.
[0008] Furthermore, the support mechanism includes: Upright poles, which are evenly arranged on the inner wall of the tent body, and there are six upright poles in total; A diagonal pole is installed on top of the upright pole, and the outer wall of the diagonal pole is connected to the inner wall of the tent body.
[0009] Furthermore, the support mechanism also includes: A circular plate is mounted on the top of the inclined rod, and the top of the circular plate is connected to the bottom of the motor; A monitoring component is installed on the outer wall of the upright, and the top of the monitoring component is slidably connected to the outer wall of the diagonal bar.
[0010] Furthermore, the ceiling cleaning assembly includes: A rotating block, wherein the inner wall of the rotating block is sleeved with the outer wall of the round rod, and the outer wall of the rotating block is uniformly provided with sleeves; A spring is evenly distributed on the inner wall of the rotating block, and the outer wall of the spring is in contact with the inner wall of the sleeve. A movable rod, one end of which is connected to the end of the spring away from the round rod; The cleaning brush has one end connected to the end of the movable rod away from the spring, and has multiple layers, resulting in low elasticity.
[0011] Furthermore, the photovoltaic panel cleaning assembly includes: A support plate is installed at the bottom of a round rod, and small holes are evenly distributed on the surface of the support plate; The telescopic columns are symmetrically installed on the top of the support plate, and a connecting plate is installed on the top of the telescopic columns.
[0012] Furthermore, the photovoltaic panel cleaning assembly also includes: Limiting rods are evenly distributed at the bottom of the connecting plate, and the outer wall of the limiting rods is slidably connected to the inner wall of the support plate. A cleaning plate is installed at the bottom of the limiting rod. The bottom of the cleaning plate is smooth and made of a rubber material with a certain degree of elasticity to avoid damaging or scratching the photovoltaic panel. A sponge block is installed at the bottom of the support plate, the inner wall of the sponge block is in contact with the outer wall of the cleaning plate, and the bottom of the sponge block is in contact with the top of the photovoltaic panel.
[0013] Furthermore, the monitoring component includes: A sliding rod, wherein a slider is slidably connected to the outer wall of the sliding rod; A locking block is rotatably connected to the upper and lower ends of the slide rod. The inner wall of the locking block is sleeved with the outer wall of the upright rod, and the inner wall of the locking block is sleeved with the outer wall of the inclined rod. A temperature and humidity sensor is mounted on the outer wall of the slider.
[0014] The beneficial effects of this invention are as follows: 1. This invention uses a cleaning mechanism to remove snow and debris from the roof. The photovoltaic panel cleaning component contacts the surface of the photovoltaic panel, removing snow and other debris. As the mounting plate rotates, the roof cleaning component rotates along the round rod, causing the top of the tent body to be struck by different forces, thus causing the snow to fall down the tent body, reducing the load on the tent body and preventing collapse.
[0015] 2. By setting up a protective mechanism, the deformation of the water bag caused by the gravity of the water, under the action of the shell and the arc plate, allows the bottom of the water bag to contact and adhere to the ground, while maintaining a sealing effect on the bottom of the tent. At the same time, it increases the temperature inside the tent, keeping the concrete column at a suitable temperature. The center of gravity of the tent body is lowered by the weight of the support column, shell and water bag, thereby improving the wind resistance of the tent and enhancing the sealing of the tent body.
[0016] 3. By setting up a canopy cleaning component, when the movable rod rotates to the bottom, due to the elasticity of the tent body surface, when the movable rod drives the cleaning brush to contact the surface of the tent body, the spring is stretched downward and held by the surface of the tent top body, thereby ensuring that the cleaning brush is always in contact with the surface of the tent. It is also suitable for the connection between the tent body and the diagonal rod without obstructing the movement of the rotating block, making it easy to clean all four sides of the tent top and avoiding the accumulation of snow that could cause the tent to collapse.
[0017] 4. This invention, by setting up a photovoltaic panel cleaning component, ensures that when the surface of the photovoltaic panel has few impurities and is easy to clean, the round rod rotates while only the sponge block contacts the surface of the photovoltaic panel, and the cleaning plate remains away from the photovoltaic panel. When the surface of the photovoltaic panel has impurities that are difficult to clean, the telescopic column drives the cleaning plate to move downward, maintaining dynamic contact with the photovoltaic panel and applying a certain pressure to make the cleaning plate remove the impurities from the surface of the photovoltaic panel, maintaining the heated area of the photovoltaic panel and ensuring the temperature inside the tent body is stable. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of the present invention; Figure 2 This is a cross-sectional view of the present invention; Figure 3 This is a schematic diagram of the protective mechanism of the present invention; Figure 4 This is a schematic diagram of the cleaning mechanism of the present invention; Figure 5 This is a schematic diagram of the support mechanism of the present invention; Figure 6 This is a schematic diagram of the structure of the ceiling cleaning component of the present invention; Figure 7 This is a schematic diagram of the structure of the photovoltaic panel cleaning assembly of the present invention; Figure 8 This is a schematic diagram of the monitoring component of the present invention.
[0019] In the diagram: 1. Tent body; 2. Protective mechanism; 201. Shell; 202. Water bag; 203. Water inlet pipe; 204. Water outlet pipe; 205. Support column; 206. Curved plate; 207. Extension edge; 3. Photovoltaic panel; 4. Cleaning mechanism; 401. Motor; 402. Mounting plate; 403. Round rod; 404. Canopy cleaning assembly; 4041. Rotating block; 4042. Sleeve; 4043. Spring; 4044. Movable element. 4045. Pole; 405. Cleaning brush; 405. Photovoltaic panel cleaning assembly; 4051. Support plate; 4052. Telescopic column; 4053. Connecting plate; 4054. Limiting rod; 4055. Cleaning plate; 4056. Sponge block; 5. Support mechanism; 501. Upright pole; 502. Diagonal bar; 503. Circular plate; 504. Monitoring assembly; 5041. Locking block; 5042. Sliding rod; 5043. Sliding block; 5044. Temperature and humidity sensor. Detailed Implementation
[0020] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments. The embodiments of the present invention are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the invention to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described to better illustrate the principles and practical application of the invention, and to enable those skilled in the art to understand the invention and design various embodiments with various modifications suitable for a particular purpose.
[0021] Example 1, please refer to Figures 1-5 The present invention provides a technical solution: a thermal insulation tent for winter construction, as described below.
[0022] include: The tent body 1 has photovoltaic panels 3 evenly distributed on its outer wall. Support mechanism 5 is installed on the inner wall of the tent body 1; The cleaning mechanism 4 is installed on top of the support mechanism 5, and the outer wall of the cleaning mechanism 4 is fitted with the top of the tent body 1. Protective mechanism 2 is installed at the bottom of the tent body 1; During operation, the support mechanism 5 is connected to the tent body 1, allowing the tent body 1 to open. The cleaning mechanism 4 is installed on top of the support mechanism 5, the photovoltaic panel 3 is installed on the outside of the tent body 1, and the protective mechanism 2 is installed at the bottom of the tent. Heavy objects are manually placed on the edge of the protective mechanism 2, and hot water is poured in. The concrete pillar is placed in the middle of the inside of the tent body 1. The photovoltaic panel 3 absorbs solar energy to heat the inside of the tent. The cleaning mechanism 4 cleans the snow from the top of the tent body 1 and the outer wall of the photovoltaic panel 3 to maintain the effectiveness of the photovoltaic panel 3. By adopting heating and curing insulation technology, the early strength of the concrete can be significantly improved, enabling it to maintain stable structural performance even when affected by freeze-thaw cycles. This technology can also effectively prevent cracking of the concrete surface due to low temperatures and improve the appearance quality of the concrete.
[0023] Cleaning mechanism 4 includes: Motor 401 is mounted on top of support mechanism 5, and mounting plate 402 is rotatably connected to the top of motor 401. The canopy cleaning component 404 is evenly arranged above the tent body 1.
[0024] Cleaning mechanism 4 also includes: The top of the round rod 403 is set at the bottom of the mounting plate 402, and the outer wall of the round rod 403 is sleeved with the inner wall of the ceiling cleaning assembly 404. The photovoltaic panel cleaning component 405 is installed at the bottom of the round rod 403, and the bottom of the photovoltaic panel cleaning component 405 is in contact with the top of the photovoltaic panel 3.
[0025] Winter snowfall can cover the photovoltaic panels 3, affecting the temperature inside the tent body 1. At this time, the motor 401 drives the mounting plate 402 to rotate, causing the mounting plate 402 to drive the roof cleaning component 404 to rotate along the top of the tent body 1, clearing the snow and debris from the roof. The photovoltaic panel cleaning component 405 contacts the surface of the photovoltaic panels 3, removing the snow and other debris from the surface of the photovoltaic panels 3. As the mounting plate 402 rotates, the roof cleaning component 404 rotates along the round rod 403, causing the top of the tent body 1 to be struck by different forces, thus causing the snow to fall down the tent body 1, reducing the load on the tent body 1 and preventing collapse.
[0026] Protective mechanism 2 includes: Shell 201 is installed at the bottom of tent body 1. The bottom of shell 201 is placed on the ground. The bottom of shell 201 is provided with an extension edge 207. The extension edge 207 is made of flexible material, while shell 201 is made of rigid material. This is used to increase the weight of the bottom of tent body 1, lower the center of gravity of tent body 1, and make it easier to resist strong winds. Water bag 202, the top of water bag 202 is connected to the top of the inner wall of shell 201. Water bag 202 is circular and made of elastic and relatively wear-resistant rubber. Water inlet pipe 203 is provided on the top of water bag 202, and water outlet pipe 204 is installed on the outer wall of water bag 202 away from water inlet pipe 203.
[0027] Protective mechanism 2 also includes: Support columns 205 are evenly distributed on the bottom side of the inner wall of the shell 201 away from the water bag 202, and the support columns 205 have a certain weight. Arc-shaped plates 206 are evenly distributed on the top of the inner wall of the shell 201. There are six arc-shaped plates 206. The outer wall of the arc-shaped plates 206 contacts the outer wall of the water bag 202. The arc-shaped plates 206 clamp the water bag 202 in the gap between the arc-shaped plates 206 and the shell 201, so that the deformation of the water bag 202 extends downward, making the bottom of the tent body 1 fit more tightly with the ground.
[0028] During installation, the shell 201 is placed on the ground, and workers fill the top of the extension side 207 with mud and sand to reduce air leakage at the bottom of the tent body 1. However, due to the complex construction site environment, uneven ground, and many external factors, it is impossible to guarantee that the mud and sand can always maintain the sealing of the tent. After installation, hot water is poured into the water bag 202 to make the bottom of the water bag 202 fit the uneven ground. After water is added, the water bag 202 deforms due to the gravity of the water. Under the action of the shell 201 and the arc plate 206, the bottom of the water bag 202 contacts and adheres to the ground, which can also maintain the sealing effect on the bottom of the tent. At the same time, it increases the temperature inside the tent, keeping the concrete column at a suitable temperature. The center of gravity of the tent body 1 is lowered by the gravity of the support column 205, the shell 201 and the water bag 202, thereby improving the wind resistance of the tent and enhancing the sealing of the tent body 1.
[0029] Supporting mechanism 5 includes: Upright poles 501 are evenly arranged on the inner wall of the tent body 1, and there are six upright poles 501. The diagonal pole 502 is installed on the top of the upright pole 501. The outer wall of the diagonal pole 502 is connected to the inner wall of the tent body 1. The diagonal pole 502 and the upright pole 501 are used to support the tent body 1 and at the same time support the cleaning mechanism 4.
[0030] Support mechanism 5 also includes: Circular plate 503 is installed on the top of inclined rod 502, and the top of circular plate 503 is connected to the bottom of motor 401; Monitoring component 504 is installed on the outer wall of pole 501, and the top of monitoring component 504 is slidably connected to the outer wall of diagonal bar 502.
[0031] During installation, inserting the upright 501 into the ground enhances its stability. The monitoring component 504 is then clipped onto the surfaces of the upright 501 and the diagonal brace 502, ensuring that the monitoring component 504 is evenly placed inside the tent body 1. This allows the concrete pillars to monitor the temperature and humidity at multiple points inside the tent body 1 as they solidify, facilitating timely adjustments to the temperature and humidity within the tent body 1 by workers and enhancing the monitoring of the concrete pillars.
[0032] Example 2, please refer to Figures 1-8 The present invention provides a technical solution: based on embodiment 1, the ceiling cleaning component 404 includes: Rotating block 4041, the inner wall of rotating block 4041 is sleeved with the outer wall of round rod 403, and sleeves 4042 are evenly arranged on the outer wall of rotating block 4041. Rotating block 4041 can rotate freely on round rod 403. Spring 4043 is evenly distributed on the inner wall of rotating block 4041, and the outer wall of spring 4043 is in contact with the inner wall of sleeve 4042. Movable rod 4044, one end of which is connected to the end of spring 4043 away from round rod 403, and the outer wall of movable rod 4044 is sleeved with the inner wall of sleeve 4042; Cleaning brush 4045, one end of cleaning brush 4045 is connected to the end of movable rod 4044 away from spring 4043. Cleaning brush 4045 has multiple layers and has less elasticity.
[0033] When there is a lot of snow on the top of the tent body 1, the mounting plate 402 rotates under the drive of the motor 401, causing the round rod 403 to rotate around the top of the tent body 1 as the center, so that the movable rod 4044 on the rotating block 4041 is subjected to external force and rotates relative to the surface of the tent body 1. When the rotating block 4041 rotates to the top, the movable rod 4044 presses the spring 4043 downward. When the movable rod 4044 rotates to the lower position, due to the elasticity of the surface of the tent body 1, when the movable rod 4044 drives the cleaning brush 4045 to contact the surface of the tent body 1, the spring 4043 is stretched downward and held by the surface of the tent top body, thus ensuring that the cleaning brush 4045 is always in contact with the surface of the tent. It is also suitable for the connection between the tent body 1 and the diagonal rod 502 without obstructing the movement of the rotating block 4041, making it easy to clean all around the top of the tent and preventing the accumulation of snow from causing the tent to collapse.
[0034] Photovoltaic panel cleaning module 405 includes: Support plate 4051 is installed at the bottom of round rod 403, and small holes are evenly opened on the surface of support plate 4051. Telescopic column 4052 is symmetrically installed on the top of support plate 4051, and connecting plate 4053 is installed on the top of telescopic column 4052.
[0035] The photovoltaic panel cleaning module 405 also includes: Limiting rod 4054 is evenly arranged at the bottom of connecting plate 4053, and the outer wall of limiting rod 4054 is slidably connected to the inner wall of support plate 4051. Cleaning plate 4055 is installed at the bottom of the limiting rod 4054. The bottom of the cleaning plate 4055 is smooth and made of rubber with a certain degree of elasticity to avoid damaging or scratching the photovoltaic panel 3. Sponge block 4056 is installed at the bottom of support plate 4051. The inner wall of sponge block 4056 is in contact with the outer wall of cleaning plate 4055, and the bottom of sponge block 4056 is in contact with the top of photovoltaic panel 3.
[0036] When the round rod 403 rotates to the position of the photovoltaic panel 3, because the photovoltaic panel 3 is placed at an angle and the surface of the photovoltaic panel 3 is flat, the distance between the support plate 4051 and the photovoltaic panel 3 is different as the round rod 403 rotates along the motor 401. Therefore, the sponge block 4056 in contact with the photovoltaic panel 3 is subjected to different squeezing forces, but it can maintain contact with the surface of the photovoltaic panel 3. Similarly, the telescopic column 4052 can also dynamically adjust the relative distance between the cleaning plate 4055 and the photovoltaic panel 3. When there are few impurities on the surface of the photovoltaic panel 3 and it is easy to clean, during the rotation of the round rod 403, only the sponge block 4056 contacts the surface of the photovoltaic panel 3, and the cleaning piece 4055 is kept away from the photovoltaic panel 3; When there are difficult-to-clean debris on the surface of the photovoltaic panel 3, the telescopic column 4052 drives the cleaning plate 4055 to move downward, maintain dynamic contact with the photovoltaic panel 3, and apply a certain pressure to make the cleaning plate 4055 clean the debris on the surface of the photovoltaic panel 3, maintain the heating area of the photovoltaic panel 3, and ensure the temperature inside the tent body 1 is stable.
[0037] Monitoring component 504 includes: Slide rod 5042, with slider 5043 slidably connected to the outer wall of slide rod 5042; Locking block 5041 is rotatably connected to the upper and lower ends of slide rod 5042. The inner wall of locking block 5041 is sleeved with the outer wall of upright rod 501, and the inner wall of locking block 5041 is sleeved with the outer wall of inclined rod 502. Temperature and humidity sensor 5044 is mounted on the outer wall of slider 5043.
[0038] After the tent body 1 is supported, the locking blocks 5041 on the upper and lower parts of the slide bar 5042 are fixed on the upright 501 and the diagonal bar 502 respectively and remain stationary. Then the slider 5043 moves along the slide bar 5042, driving the temperature and humidity sensor 5044 to measure the temperature and humidity at different locations inside the tent body 1. This provides real-time monitoring of various locations inside the tent body 1. By comparing the data, workers can quickly determine whether the temperature and humidity distribution inside the tent is uniform, which facilitates workers to take appropriate remedial measures and reduce the loss of building materials.
[0039] The specific workflow is as follows: During operation, the support mechanism 5 is connected to the tent body 1 to open the tent body 1. The cleaning mechanism 4 is installed on the top of the support mechanism 5, the photovoltaic panel 3 is installed on the outside of the tent body 1, the protective mechanism 2 is installed at the bottom of the tent, and heavy objects are manually placed on the edge of the protective mechanism 2. During installation, inserting the upright 501 into the ground enhances its stability. The monitoring component 504 is clipped onto the surfaces of the upright 501 and the diagonal brace 502, ensuring that the monitoring component 504 is evenly placed inside the tent body 1. This allows the concrete pillars to monitor the temperature and humidity at multiple points inside the tent body 1 as they solidify. The shell 201 is then placed on the ground, and workers fill the top of the extension side 207 with mud and sand to reduce air leakage at the bottom of the tent body 1. Due to the complex construction site environment, uneven ground, and numerous external factors, it is impossible to guarantee that the mud and sand can always maintain the sealing of the tent. After installation, hot water is poured into the water bag 202 so that the bottom of the water bag 202 is in contact with the uneven ground, and the concrete pillar is placed in the middle of the tent body 1. The photovoltaic panel 3 absorbs solar energy to raise the temperature inside the tent. Winter snowfall can cover the photovoltaic panels 3, affecting the temperature inside the tent body 1. At this time, the motor 401 drives the mounting plate 402 to rotate, which in turn drives the roof cleaning component 404 to rotate along the top of the tent body 1 to clean the snow and debris on the roof. The photovoltaic panel cleaning component 405 contacts the surface of the photovoltaic panel 3, removing the snow and other debris from the surface of the photovoltaic panel 3. As the mounting plate 402 rotates, the roof cleaning component 404 rotates along the round rod 403, causing the top of the tent body 1 to be struck by different forces, which causes the snow to fall down the tent body 1, maintaining the effectiveness of the photovoltaic panels 3. By employing heat curing and insulation technology, the early strength of concrete can be significantly improved, enabling it to maintain stable structural performance even when subjected to freeze-thaw cycles. This technology can also effectively prevent surface cracking caused by low temperatures, thereby improving the appearance quality of concrete.
[0040] Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. All other embodiments obtained by those skilled in the art and related fields based on the embodiments of the present invention without inventive effort should fall within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described and explained in the present invention, unless otherwise specified or limited, shall be implemented according to conventional means in the art.
Claims
1. A thermal insulation tent for winter construction, comprising: The tent body (1) is characterized in that: photovoltaic panels (3) are uniformly arranged on the outer wall of the tent body (1); Support mechanism (5), said support mechanism (5) is installed on the inner wall of the tent body (1); A cleaning mechanism (4) is installed on top of a support mechanism (5), and the outer wall of the cleaning mechanism (4) is fitted with the top of the tent body (1). Protective mechanism (2), which is installed at the bottom of the tent body (1); The cleaning mechanism (4) includes: Motor (401), the motor (401) is mounted on the top of the support mechanism (5), and the top of the motor (401) is rotatably connected to the mounting plate (402). A canopy cleaning assembly (404) is evenly disposed above the tent body (1).
2. The insulated tent for winter construction as described in claim 1, characterized in that: The cleaning mechanism (4) further includes: A round rod (403) is provided at the bottom of the mounting plate (402), and the outer wall of the round rod (403) is sleeved with the inner wall of the ceiling cleaning assembly (404). A photovoltaic panel cleaning assembly (405) is installed at the bottom of a round rod (403), and the bottom of the photovoltaic panel cleaning assembly (405) is in contact with the top of the photovoltaic panel (3).
3. The insulated tent for winter construction as described in claim 1, characterized in that: The protective mechanism (2) includes: The shell (201) is installed at the bottom of the tent body (1), the bottom of the shell (201) is placed on the ground, and the bottom of the shell (201) is provided with an extension side (207). Water bag (202), the top of the water bag (202) is connected to the top of the inner wall of the shell (201), the top of the water bag (202) is provided with a water inlet pipe (203), and the outer wall of the water bag (202) away from the water inlet pipe (203) is provided with a water outlet pipe (204).
4. The insulated tent for winter construction as described in claim 3, characterized in that: The protective mechanism (2) also includes: Support columns (205) are evenly arranged on the bottom side of the inner wall of the shell (201) away from the water bag (202); Arc-shaped plates (206) are evenly arranged on the top of the inner wall of the shell (201). There are six arc-shaped plates (206). The outer wall of the arc-shaped plates (206) is in contact with the outer wall of the water bag (202).
5. The insulated tent for winter construction as described in claim 1, characterized in that: The support mechanism (5) includes: Upright poles (501) are evenly arranged on the inner wall of the tent body (1), and there are six upright poles (501); A diagonal pole (502) is installed on the top of a pole (501), and the outer wall of the diagonal pole (502) is connected to the inner wall of the tent body (1).
6. The insulated tent for winter construction as described in claim 5, characterized in that: The support mechanism (5) also includes: A circular plate (503) is mounted on the top of the diagonal bar (502), and the top of the circular plate (503) is connected to the bottom of the motor (401); A monitoring component (504) is installed on the outer wall of the upright (501), and the top of the monitoring component (504) is slidably connected to the outer wall of the inclined rod (502).
7. The insulated tent for winter construction as described in claim 1, characterized in that: The ceiling cleaning assembly (404) includes: A rotating block (4041) has its inner wall connected to the outer wall of a round rod (403), and the outer wall of the rotating block (4041) is uniformly provided with sleeves (4042). Spring (4043), the spring (4043) is evenly disposed on the inner wall of the rotating block (4041), and the outer wall of the spring (4043) is in contact with the inner wall of the sleeve (4042); A movable rod (4044), one end of which is connected to the end of the spring (4043) away from the round rod (403); A cleaning brush (4045) is provided, one end of which is connected to the end of the movable rod (4044) away from the spring (4043).
8. The insulated tent for winter construction as described in claim 2, characterized in that: The photovoltaic panel cleaning assembly (405) includes: Support plate (4051), the support plate (4051) is installed at the bottom of the round rod (403), and small holes are evenly opened on the surface of the support plate (4051); Telescopic column (4052), the telescopic column (4052) is symmetrically installed on the top of the support plate (4051), and a connecting plate (4053) is installed on the top of the telescopic column (4052).
9. The insulated tent for winter construction as described in claim 8, characterized in that: The photovoltaic panel cleaning assembly (405) also includes: Limiting rod (4054), the limiting rod (4054) is evenly arranged at the bottom of the connecting plate (4053), and the outer wall of the limiting rod (4054) is slidably connected to the inner wall of the support plate (4051); A cleaning plate (4055) is installed at the bottom of a limiting rod (4054); A sponge block (4056) is installed at the bottom of a support plate (4051). The inner wall of the sponge block (4056) is in contact with the outer wall of a cleaning plate (4055), and the bottom of the sponge block (4056) is in contact with the top of a photovoltaic panel (3).
10. The insulated tent for winter construction as described in claim 6, characterized in that: The monitoring component (504) includes: A slide bar (5042) has a slider (5043) slidably connected to its outer wall; Locking block (5041), the locking block (5041) is rotatably connected to the upper and lower ends of the slide rod (5042), the inner wall of the locking block (5041) is sleeved with the outer wall of the upright rod (501), and the inner wall of the locking block (5041) is sleeved with the outer wall of the inclined rod (502); Temperature and humidity sensor (5044) is mounted on the outer wall of slider (5043).