A rainproof tent with a breathable window for outdoor use and a rainproof control method thereof
By automatically switching between rain-blocking and closing components of the tent's ventilation windows through rainfall and wind speed monitoring, the contradiction between the tent's breathability and rainproof effect under different rainfall conditions is resolved. It achieves rain protection and ventilation in light rain, and complete rainproofing and ventilation in heavy rain, thus improving the tent's comfort and rainproof effect.
Patent Information
- Application Number
- CN202311275544.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-28
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2043-09-28
AI Technical Summary
The existing tents cannot automatically adjust the ventilation window control according to the amount of rainfall and wind speed during rainfall. This results in poor ventilation in light rain, affecting the comfort of use. In heavy rain, the interior becomes airtight after the ventilation window is closed, affecting the rainproof effect.
The system combines a rainfall detection unit and a wind speed monitoring unit with a control unit to automatically switch between the rain-blocking component and the closing component of the rainproof and ventilated window based on rainfall and wind speed. In light rain, the window blocks rainwater and maintains ventilation, while in heavy rain, the window is completely closed. The closed ventilation unit maintains internal ventilation in heavy rain.
It automatically adjusts the ventilation window status under different rainfall conditions, maintaining the tent's rainproof effect while ensuring good ventilation, thus improving user comfort and rainproof performance.
Smart Images

Figure CN117266670B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of tents, and more particularly to an outdoor rainproof tent with a ventilation window and a rainproof control method thereof. Background Technology
[0002] A tent is a shelter erected on the ground to protect against wind, rain, and sunlight, and to provide temporary accommodation. It is usually made of canvas and, along with its supporting structure, can be easily disassembled and moved.
[0003] Existing technologies disclose some invention patents related to tents. Chinese invention patent application number 202211113990.0 discloses a rainproof and breathable tent. This device can use the water absorption and expansion properties of expansive soil, along with the setting of components such as pins, ropes, and top poles, to separate the breathable window from the connecting block when it rains, so that it can fall off under its own weight.
[0004] To ensure breathability, most outdoor tents are equipped with ventilation windows to facilitate air circulation. Additionally, to improve rain protection, the ventilation openings are designed to close automatically. However, rainfall amounts vary. If the ventilation windows are always closed regardless of the rainfall level, there are instances where, in light rain, rainwater cannot easily enter the tent through the open windows, thus reducing the tent's breathability and consequently decreasing the user's comfort inside. Summary of the Invention
[0005] The purpose of this invention is to address the shortcomings of existing technologies by proposing an outdoor rainproof tent with a ventilation window and a rainproof control method thereof.
[0006] In a first aspect, the present invention provides an outdoor rainproof tent with a ventilation window, comprising a tent body and further comprising:
[0007] Rainfall detection unit, used to monitor rainfall;
[0008] The wind speed monitoring unit is used to monitor wind speed and wind direction;
[0009] The rainproof and breathable window is used to ventilate the main body of the tent when it is open, and automatically switches to rainproof mode according to the amount of rain when it rains.
[0010] The rainproof and ventilated window includes a rain-blocking component that blocks rainwater in light rain and a closing component that closes the rainproof and ventilated window in heavy rain.
[0011] The control unit is used to analyze and control the state switching of the rainproof and ventilated window based on the rainfall detected by the rainfall detection unit and the wind speed and wind direction detected by the wind speed monitoring unit. When a light rain is detected, the control unit activates the rain-blocking component to block the rainwater, and when a heavy rain is detected, the control unit activates the closing component to close the rainproof and ventilated window for complete rain protection.
[0012] Based on the detection results of the wind speed monitoring unit, the control unit analyzes the data and divides the rainfall status into light rain and heavy rain. In light rain, the rain-blocking component is activated, allowing the rainproof and ventilated window to maintain ventilation while blocking rainwater. In heavy rain, the closing component is activated, closing the rainproof and ventilated window to block rain. This allows for switching between different states of the rainproof and ventilated window according to the rainfall status, ensuring good ventilation while maintaining rain protection.
[0013] Preferred options also include:
[0014] A closed ventilation unit is used to provide rain protection and ventilation to the main body of the tent when the rainproof and ventilated window is closed in heavy rain.
[0015] The control unit is also used to control the closure ventilation unit to start after the closure component is activated and drives the rainproof and ventilated window to close, so as to ventilate the interior of the tent body in the closed rainproof state.
[0016] When the rainproof ventilation window is closed in heavy rain, the control unit activates the closed ventilation unit. Once activated, the closed ventilation unit actively ventilates the interior of the tent body, ensuring that the interior of the tent body remains ventilated even after the rainproof ventilation window is closed. This helps prevent the tent body from becoming stuffy and affecting the comfort of use when the rainproof ventilation window is closed for rain protection.
[0017] Preferably, the rainproof and breathable window includes a window frame fixed to the main body of the tent, and a window door rotatably connected to the window frame;
[0018] The rainproof component includes:
[0019] Two rainproof tarpaulins are provided and fixed between the two sides of the window and the window frame, and are used to block rainwater from the two sides of the rainproof and ventilated window when unfolded.
[0020] Pull the rope, which is correspondingly set to the rainproof tarpaulin, to pull the rainproof tarpaulin out after being stretched;
[0021] Support ropes are provided corresponding to the rainproof tarpaulin to provide support force to maintain the folding of the rainproof tarpaulin;
[0022] An expansion and pulling component is provided corresponding to the pulling rope, and is used to gradually pull the pulling rope according to the increase of rainfall in light rain, so as to drive the rainproof tarpaulin to gradually unfold.
[0023] A counterweight pulling component is provided corresponding to the support rope to provide pulling support force to the support rope so that the support rope can be released simultaneously when it is pulled by the unfolding of the rainproof tarpaulin, and the support rope can be kept taut during the release process.
[0024] When the rainproof tarpaulin is unfolded, it blocks rainwater flowing down the top of the tent body, thus preventing rainwater from accumulating at the top of the tent body due to prolonged rainfall and flowing down, then running into the tent body along the edges of windows and window frames.
[0025] Secondly, a rainproof control method is provided for an outdoor rainproof tent with a ventilation window, the method comprising the following steps:
[0026] The rain-blocking components are activated based on the light rain status information. The light rain status information includes three levels: A, B, and C, which are divided according to the amount of light rain. The activation level of the rain-blocking components is divided into three levels according to the level of the light rain status information.
[0027] The control closing component is activated based on the heavy rain status information to drive the windows and doors to close; the heavy rain status information includes three levels: D, E, and F, which are divided according to the amount of heavy rain; the activation degree of the rainproof component is divided into three levels according to the heavy rain status information.
[0028] During rainfall, the rain sensor detects rainfall information. When the rainfall reaches a specified value for heavy rain, it generates heavy rainfall information; when the rainfall reaches a specified value for light rain, it generates light rainfall information. The generated heavy rainfall information or light rainfall information is then sent to the controller. The wind speed sensor acquires wind direction and wind speed information. Based on the wind direction and wind speed, it analyzes and judges whether the wind is directly facing or tilted towards the rainproof and ventilated window. When the wind is facing away from or tilted away from the rainproof and ventilated window, it generates headwind information. The generated headwind information or headwind information is then sent to the controller.
[0029] When the controller simultaneously acquires information on light rainfall and headwind, it generates light rainfall status information. Subsequently, it generates rain protection control information based on the light rainfall status information and sends the rain protection control information to the rain protection component to control the rain protection component to start rain protection. In the light rainfall status information, the controller divides the light rainfall into three levels, A, B, and C, and then controls the rain protection component to be divided into three levels corresponding to the three levels. When the light rainfall increases, the opening degree of the rain protection component is increased.
[0030] When the controller simultaneously acquires information on light rainfall and windward conditions, and when the controller acquires information on heavy rainfall, the controller generates heavy rain status information. Subsequently, based on the heavy rain status information, the controller generates closure control information and sends the closure control information to the closure component to activate the closure component and drive the windows and doors to close. In the heavy rain status information, the controller classifies the heavy rainfall into three levels: D, E, and F. Then, it controls the closure component to divide the heavy rainfall into three levels: D, E, and F. As the heavy rainfall increases, the controller controls the closure component to push the windows and doors to close more fully.
[0031] Preferred options also include:
[0032] Based on the information indicating that the rainproof and ventilated window is closed, the expansion push component is activated to initiate water intake, thereby pushing the sealing and blocking component to remove the obstruction of the vent.
[0033] After the closing component pushes the rainproof and ventilated window to close, the closing component obtains the rainproof and ventilated window closing information and generates ventilation request information based on the rainproof and ventilated window closing information. Then, it sends the ventilation request information to the controller. After receiving the information, the controller generates ventilation control information based on the ventilation request information and sends the ventilation control information to the expansion push component, so that the expansion push component opens the water inlet. Thus, after the expansion push component is filled with water, it drives the sealing and blocking component to remove the blocking of the vent.
[0034] Preferred options also include:
[0035] The system controls the activation of the squeezing drainage components based on information indicating excessive water vapor content, in order to discharge rainwater absorbed by the sponge body.
[0036] The humidity sensor monitors the water vapor content in the airflow in real time. When the water vapor content in the airflow exceeds the standard, the humidity sensor obtains the water vapor content exceeding the standard information, and then generates drainage request information based on the water vapor content exceeding the standard information. The drainage request information is then sent to the controller. After receiving the information, the controller generates drainage control information based on the drainage request information and sends the drainage control information to the squeezing drainage component to control the squeezing drainage component to discharge the rainwater absorbed by the sponge after it is activated.
[0037] Compared with the prior art, the present invention has the following beneficial effects:
[0038] 1. Through the settings of the control unit, based on the detection results of the wind speed monitoring unit, the control unit analyzes the data and divides the rainfall status into light rain and heavy rain. In light rain, the rain-blocking component is activated, so that the rainproof and ventilated window can block rainwater while maintaining ventilation. In heavy rain, the closing component is activated, so that the rainproof and ventilated window is closed to prevent rain. This allows for switching between different states of the rainproof and ventilated window according to the rainfall status, which helps to maintain good ventilation while maintaining rainproof effect.
[0039] 2. By setting up a closed ventilation unit, the control unit activates the closed ventilation unit after the rainproof ventilation window is closed in heavy rain. Once activated, the closed ventilation unit actively ventilates the interior of the tent body, ensuring that the interior of the tent body remains ventilated even after the rainproof ventilation window is closed. This helps to prevent the tent body from becoming stuffy and affecting the comfort of use when the rainproof ventilation window is closed for rain protection.
[0040] 3. By setting up the rainproof components, when the rainproof tarpaulin is unfolded, the rainwater flowing down along the top of the tent body is blocked by the rainproof tarpaulin. This helps to prevent rainwater from accumulating on the top of the tent body due to prolonged rainfall and then flowing down along the edges of the windows and window frames into the tent body. Attached Figure Description
[0041] Figure 1 This is a schematic diagram of the control method of the present invention.
[0042] Figure 2 This is a schematic diagram of the overall structure of the tent of the present invention.
[0043] Figure 3 This is a schematic diagram of the rainproof and breathable window structure of the present invention.
[0044] Figure 4 For the present invention Figure 3 A magnified structural diagram of point A in the middle.
[0045] Figure 5 This is a cross-sectional structural diagram of the window / door of the present invention.
[0046] Figure 6 For the present invention Figure 5 A magnified structural diagram at point B in the middle.
[0047] Figure 7 For the present invention Figure 5 A magnified structural diagram at point C.
[0048] Figure 8This is a schematic diagram of one embodiment of the counterweight pulling component of the present invention.
[0049] Figure 9 This is a schematic diagram of the overall cross-section of the rainproof and breathable window of the present invention.
[0050] Figure 10 For the present invention Figure 9 A magnified structural diagram at point D.
[0051] Figure 11 This is a schematic diagram of the extrusion drainage component of the present invention.
[0052] Figure 12 For the present invention Figure 11 A magnified structural diagram at point E in the middle.
[0053] Figure 13 This is a structural schematic diagram of the rainproof and breathable window of the present invention from another angle.
[0054] Figure 14 For the present invention Figure 14 A magnified structural diagram at point F in the middle.
[0055] In the diagram: 1. Tent body; 2. Window frame; 3. Window / door; 4. Rainproof tarpaulin; 5. Pull rope; 6. Sliding box; 7. Expanded soil block; 8. Inclined drainage plate; 9. Electromagnetic switch; 10. Drainage opening; 11. Support rope; 12. Placement box; 13. Counterweight; 1201. Fixing box; 1301. Tension spring; 14. Rain sensor; 15. Wind speed sensor; 16. Controller; 17. Vent; 8. Sealing plate; 19. Box body; 20. Expansive soil plate; 21. Push plate; 22. Baffle plate; 23. Fan; 24. Support rod; 25. Electric push rod; 26. Sponge body; 27. Humidity sensor; 28. Motor; 29. Lead screw; 30. Moving frame; 31. Rotating roller; 32. Airbag; 33. Pressure spring; 34. Air blowing pipe; 35. Box cover; 36. Solenoid valve; 37. Tilting platform; 38. Cover plate. Detailed Implementation
[0056] The following description is intended to disclose the invention and enable those skilled in the art to implement it. The preferred embodiments described below are merely examples, and other obvious variations will occur to those skilled in the art.
[0057] like Figures 2 to 14 The outdoor rainproof tent shown includes a tent body 1, and also includes:
[0058] Rainfall detection unit, used to monitor rainfall;
[0059] The wind speed monitoring unit is used to monitor wind speed and wind direction;
[0060] The rainproof and breathable window is used to ventilate the main body of the tent 1 when it is open, and automatically switches to rainproof mode according to the amount of rain when it rains.
[0061] Rainproof and breathable windows include rainproof components that shield rainwater during light rain and closure components that close the rainproof and breathable windows during heavy rain.
[0062] The control unit is used to analyze and control the state switching of the rainproof and ventilated window based on the rainfall detected by the rainfall detection unit and the wind speed and wind direction detected by the wind speed monitoring unit. When a light rain is detected, the control unit activates the rain-blocking component to block the rainwater, and when a heavy rain is detected, the control unit activates the closing component to close the rainproof and ventilated window for complete rain protection.
[0063] To ensure breathability, most outdoor tents are equipped with ventilation windows to aid in air circulation. Additionally, to improve rain protection, the ventilation openings are designed to close automatically. However, rainfall amounts vary. If the ventilation windows are always closed regardless of the rainfall level, there are situations where, in light rain, rainwater cannot easily enter the tent through the open windows, thus reducing breathability and consequently decreasing user comfort inside the tent. This embodiment of the present invention solves these problems, and the specific implementation is as follows:
[0064] The rainfall detection unit monitors the rainfall in the environment where the tent body 1 is used, and classifies the state into no rain and rain based on the monitoring results. In the rain state, the wind speed monitoring unit monitors the wind speed in the environment where the tent body 1 is used, and combines the rainfall with the wind speed and wind direction. The state where the rainfall is less than the specified rainfall value and the wind direction is against the rainproof and ventilated window is defined as light rain. The state where the rainfall is less than the specified rainfall value but the wind direction is towards the rainproof and ventilated window, as well as the state where the rainfall is greater than the specified rainfall value, are all defined as heavy rain.
[0065] In the absence of rain, the rainproof and breathable windows are open to allow ventilation inside the tent body 1.
[0066] In light rain, rainwater falls on the top of the tent body 1 and flows downwards as the tent body 1 tilts. The flowing rainwater will enter the interior of the tent body 1 along the edge of the rainproof ventilation window. At this time, the control unit controls the rainproof component to activate. After the rainproof component is activated, it blocks the edge of the rainproof ventilation window, thereby blocking the rainwater flowing along the top of the tent body 1. This helps to prevent rainwater from flowing along the tent body 1 and entering the interior of the tent body 1. Furthermore, when the rainproof component is activated, the rainproof ventilation window is still open, and airflow can still pass through the rainproof ventilation window, so that the rainproof ventilation window can still maintain ventilation while blocking the flowing rainwater.
[0067] In heavy rain, the control unit activates the closing mechanism, which in turn closes the rainproof and ventilated window, thus completely blocking the rain and preventing rainwater from entering the interior of the tent body 1.
[0068] Therefore, based on the detection results of the rainfall detection unit and the wind speed monitoring unit, the control unit analyzes the data and divides the rainfall status into light rain and heavy rain. In light rain, the rain-blocking component is activated, allowing the rainproof and ventilated window to maintain ventilation while blocking rainwater. In heavy rain, the closing component is activated, closing the rainproof and ventilated window to block rain. This allows for switching between different states of the rainproof and ventilated window according to the rainfall status, ensuring good ventilation while maintaining rain protection.
[0069] As an optional embodiment, the rainfall detection unit is a rainfall sensor 14;
[0070] Rain sensor 14 is installed on the top of window 3 and can detect rainfall.
[0071] As an optional embodiment, the wind speed monitoring unit is a wind speed sensor 15;
[0072] The wind speed sensor 15 is installed on the top of the window 3 and can detect the wind speed and direction of the wind passing through the rainproof and ventilated window.
[0073] As an optional embodiment, the control unit is controller 16;
[0074] The controller 16 is installed at the bottom of the window 3 and can analyze the rainfall information from the rain sensor 14 and the wind speed and wind direction information detected by the wind speed sensor 15.
[0075] Upon receiving information about light rain from the rainfall detection unit and headwind from the wind speed monitoring unit, it is determined that the area is in a light rain condition.
[0076] When heavy rain information is obtained from the rainfall detection unit, or light rain information is obtained from the rainfall detection unit and windward information is obtained from the wind speed monitoring unit, it is determined that the area is in heavy rain.
[0077] As an optional embodiment, it also includes:
[0078] The closed ventilation unit is used to provide rain protection and ventilation to the main body of the tent 1 when the rainproof ventilation window is closed in heavy rain.
[0079] The control unit is also used to control the closure ventilation unit to start after the closure component is activated and drives the rainproof ventilation window to close, so as to ventilate the interior of the tent body 1 while the rainproof window is closed.
[0080] When the rainproof ventilation window is closed in heavy rain, the control unit activates the closed ventilation unit. Once activated, the closed ventilation unit actively ventilates the interior of the tent body 1, ensuring that the interior of the tent body 1 remains ventilated even after the rainproof ventilation window is closed. This helps prevent the tent body 1 from becoming stuffy and affecting the comfort of use if the rainproof ventilation window is closed for rain protection.
[0081] As an optional embodiment, the rainproof and breathable window includes a window frame 2 fixed to the tent body 1, and a window door 3 rotatably connected to the window frame 2;
[0082] The window frame 2 is fixed to the tent body 1, so that the rainproof and ventilated window can be fixed on the tent body 1 to allow ventilation inside the tent body 1. When the window door 3 is in the open state, the window frame 2 is exposed, so the window frame 2 is in the ventilation state, allowing the inside of the tent body 1 to breathe. When the window door 3 is in the closed state, the window frame 2 is sealed and blocked, so the window frame 2 is in the closed state, and the inside of the tent body 1 achieves a rainproof effect.
[0083] As an optional embodiment, the rainproof component includes:
[0084] Two rainproof tarpaulins 4 are provided and fixed between the two sides of the window 3 and the window frame 2, and are used to cover the rainwater on both sides of the rainproof and ventilated window after being unfolded.
[0085] Pull rope 5, which is correspondingly set with rainproof tarpaulin 4, to pull the rainproof tarpaulin 4 to unfold after being stretched;
[0086] Support rope 11 is provided corresponding to the rainproof tarpaulin 4 and is used to provide support force to maintain the folding of the rainproof tarpaulin 4;
[0087] An expansion pulling component is provided in correspondence with the pulling rope 5, and is used to gradually pull the pulling rope 5 according to the increase of rainfall in light rain, so as to drive the rainproof tarpaulin 4 to gradually unfold.
[0088] The counterweight pulling component is set in correspondence with the support rope 11 and is used to provide pulling support force to the support rope 11 so that the support rope 11 can be released simultaneously when it is pulled by the rainproof tarpaulin 4, and the support rope 11 can be kept taut during the release process.
[0089] In the absence of rain, the expansion pulling component does not provide pulling force to the pulling rope 5. At this time, under the support of the support rope 11, the support rope 11 is supported by the counterweight of the counterweight pulling component. The middle part of the edge of the rainproof tarpaulin 4 is pulled and supported towards the pivot of the window 3, so that the rainproof tarpaulin 4 is in a folded state. At this time, the rainproof tarpaulin 4 will not cover the edge of the window 3, so that the rainproof ventilation window is in a fully ventilated state.
[0090] In light rain, the control unit activates the expansion pulling component, which gradually pulls the pulling rope 5. After being pulled, the pulling rope 5 pulls the rainproof tarpaulin 4 to gradually unfold. The unfolded rainproof tarpaulin 4 pulls the support rope 11, which in turn pulls the counterweight pulling component. The counterweight pulling component only provides support for the support rope 11. When the support rope 11 pulls the counterweight pulling component, the counterweight pulling component itself adapts to the movement, allowing the support rope 11 to expand under the pull of the rainproof tarpaulin 4. At the same time, because the counterweight pulling component automatically provides support for the support rope 11 with its own weight, it can keep the support rope 11 in a taut state, so that the support rope 11 can be balanced with the tension of the pulling rope 5, thereby maintaining the state of the rainproof tarpaulin 4.
[0091] When the rainproof tarpaulin 4 is unfolded, the rainwater flowing down the top of the tent body 1 is blocked by the rainproof tarpaulin 4, which helps to prevent rainwater from accumulating on the top of the tent body 1 due to prolonged rainfall and flowing down, and then flowing into the tent body 1 along the edges of the windows 3 and window frames 2 during the flow.
[0092] In light rain, the rain sensor 14 can detect the amount of rain and classify the light rain into three levels: A, B, and C. As the amount of rain in the light rain increases from A to B to C, the expansion and pulling component is set to the three levels in sequence. This results in the rainproof tarpaulin 4 being deployed in three levels, gradually covering the edges between the window 3 and the window frame 2. This helps to avoid the rainproof tarpaulin 4 being fully deployed at different amounts of rain in light rain, which would cause the rainproof tarpaulin 4 to be fully deployed when it is not necessary to cover the rain, thus obstructing airflow. This allows for adjustment of the rain-blocking state according to the amount of rain, improving the applicability of the tent body 1.
[0093] As an optional embodiment, the counterweight pulling component includes:
[0094] The placement box 12 is fixed to the top of the window 3. A counterweight 13 is slidably connected inside the placement box 12. The counterweight 13 is a high-density metal block. The side wall of the counterweight 13 is fixedly connected to the end of the support rope 11.
[0095] The counterweight 13 can provide a certain support force to the support rope 11 connected to it through its own weight. When the tension of the rainproof tarpaulin 4 when it is unfolded is less than the support force provided by the counterweight 13, the rainproof tarpaulin 4 will maintain its original state under the tension of the support rope 11. When the tension of the rainproof tarpaulin 4 when it is unfolded is greater than the support force provided by the counterweight 13, the counterweight 13 will move with the support rope 11 under the tension, thereby causing the support rope 11 to expand. This is beneficial for the rainproof tarpaulin 4 to be in the initial state when the middle of the rainproof tarpaulin 4 is pulled by the support rope 11, so that the rainproof tarpaulin 4 is in a folded state. Furthermore, when the rainproof tarpaulin 4 is unfolded to different states, after the expansion pulling component stops pulling, the support rope 11 can still provide support force to the rainproof tarpaulin 4. This is beneficial for the rainproof tarpaulin 4 to maintain different unfolded states, thereby blocking different amounts of rain in light rain and improving the applicability of the rainproof tarpaulin 4.
[0096] The counterweight 13 is designed so that it does not actively apply force to the support rope 11. Only when the support rope 11 is subjected to tension will the counterweight 13 exert force to balance the tension. When the tension on the support rope 11 is greater than the maximum balancing support force that the counterweight 13 can provide, the support rope 11 pulls the counterweight 13 to move. This ensures that the force required to pull the support rope 11 remains stable, thus avoiding the situation where the force required to pull the support rope 11 is unstable, causing the support rope 11 to be pulled an uncertain distance after being subjected to force, which would affect the unfolding state of the rainproof tarpaulin 4.
[0097] As an optional embodiment, the counterweight pulling component includes:
[0098] The fixing box 1201 is fixed to the top of the window / door 3;
[0099] A tension spring 1301 is installed inside the fixed box 1201, and its two ends are fixedly connected to the support rope 11 and the inner wall of the fixed box 1201, respectively.
[0100] The support rope 11 is pulled by the force generated after the deformation is popped out, so that the support rope 11 can provide support for the rainproof tarpaulin 4. In the initial state, the rainproof tarpaulin 4 can maintain the folded state under the tension provided by the tension spring 1301. When the rainproof tarpaulin 4 is unfolded by pulling the rope 5, the pulling force of the rope 5 is greater than the tension provided by the tension spring 1301, so that the rainproof tarpaulin 4 gradually unfolds.
[0101] When the rainfall changes to heavy rain, the rainproof tarpaulin 4 has already been fully unfolded in the light rain state. At this time, the window and door 3 gradually flips and closes. At this time, the expansion pull component no longer provides pulling force to the pull rope 5, so the pull rope 5 gradually relaxes. Thus, the rainproof tarpaulin 4 is no longer under the pulling force of the pull rope 5. At this time, the tension spring 1301, which is in a stretched state, pulls the support rope 11 through its own pulling force. The tension of the support rope 11 pulls the rainproof tarpaulin 4, so that the rainproof tarpaulin 4 can automatically fold and store during the flipping and closing of the window and door 3. This helps to avoid the rainproof tarpaulin 4 piling up at the edge of the window and door 3 during the closing process, which would affect the closing of the window and door 3.
[0102] As an optional embodiment, the expansion pulling assembly includes:
[0103] The expanding soil block 7 is installed on top of the window 3 via the sliding box 6, and is used to expand and pull the rope 5 after encountering water;
[0104] Rainwater guide is used to collect and guide rainwater during rainfall, directing the water flow towards the expansive soil block 7;
[0105] Electromagnetic switch 9 is used to control the amount of water flowing into the expansive soil block 7 in the rainwater guide;
[0106] The control unit is also used to control the opening of the electromagnetic switch 9 according to the amount of rainfall detected by the rainfall detection unit, so as to control the amount of water entering the expansive soil block 7 along the electromagnetic switch 9 according to the amount of rainfall.
[0107] In light rain, the falling rainwater will fall into the rainwater guide and be guided and collected. After the rain sensor 14 detects the rainfall information, the control unit controls the electromagnetic switch 9 to open according to the rainfall information. The cumulative opening time of the electromagnetic switch 9 is controlled according to different rainfall amounts. After the cumulative opening time of the electromagnetic switch 9 is limited, the rainwater guide collects the rainwater, so that the rainwater can maintain a state of flowing into the sliding box 6 during the time the electromagnetic switch is open, thereby limiting the amount of rainwater entering. By limiting the amount of rainwater entering, the volume of expansion of the expansive soil block 7 after absorbing water can be limited, which is beneficial to limiting the extent to which the pulling rope 5 pulls the rainproof tarpaulin 4 to unfold.
[0108] Rainwater collected inside the rainwater guide enters the sliding box 6 via the electromagnetic switch 9. The rainwater is absorbed by the expanding soil block 7, which expands after absorbing the rainwater. The expanding soil block 7 expands inside the sliding box 6. Due to the shape limitation of the sliding box 6, the expanding soil block 7 can only expand along the length of the sliding box 6. During the expansion process, the expanding soil block 7 pulls the pulling rope 5 fixed to the plate at the end of the expanding soil block 7. By pulling the pulling rope 5, the pulling rope 5 is taut and pulls the rainproof tarpaulin 4 to unfold, which is beneficial for rain protection in light rain.
[0109] As an optional embodiment, the rainwater guide includes:
[0110] Cover plate 38 is installed on the top of sliding box 6;
[0111] An inclined drainage plate 8 is fixed inside the cover plate 38, and the inclined drainage plate 8 completely seals the cover plate 38.
[0112] The electromagnetic switch 9 is fixed inside the circular hole that passes through the top of the inclined diversion plate 8;
[0113] The drainage opening 10 is provided in a linear array and is opened through the top of the partition fixed inside the cover plate 38. The partition is located below the inclined drainage plate 8.
[0114] During rainfall, rainwater falls into the interior of the cover plate 38, allowing the cover plate 38 to collect the rainwater. Collecting rainwater through the cover plate 38 helps to prevent the rainwater flow from being interrupted when the electromagnetic switch 9 is turned on, thus avoiding insufficient rainwater flow. After the electromagnetic switch 9 is turned on, the rainwater flows along the inclined diversion plate 8 towards the electromagnetic switch 9 under the inclined diversion plate 8, and then flows towards the partition through the electromagnetic switch 9. It falls into the interior of the sliding box 6 through the diversion opening 10 on the partition and is absorbed by the expanding soil block 7, which causes the expanding soil block 7 to expand and push the pulling rope 5.
[0115] The drainage openings 10 are arranged in a linear array, and the electromagnetic switch 9 is located above the expansive soil block 7. This allows rainwater to flow directly from the drainage openings 10 above the expansive soil block 7 after passing through the electromagnetic switch 9. After the section of the expansive soil block 7 located below the drainage openings 10 becomes saturated with water, the water absorption capacity of this section decreases. Therefore, when the rainwater flowing in along the electromagnetic switch 9 falls directly onto the drainage openings 10 above the expansive soil block 7, the rainwater is not immediately absorbed by the expansive soil block 7. This causes the rainwater to accumulate at the drainage openings 10 above the expansive soil block 7. The rainwater flows along the partition to the edge of the drainage openings 10. At the same time, because the expansive soil block 7 expands after absorbing water, it extends to the area below the adjacent drainage openings 10. This allows the rainwater flowing down along the drainage openings 10 to still fall into the expansive soil block 7 and be absorbed. This allows the drainage openings 10 to evenly divert rainwater to all parts of the expansive soil block 7, which is beneficial for the expansive soil block 7 to fully absorb rainwater.
[0116] As an optional embodiment, the closed ventilation unit includes:
[0117] Ventilation opening 17 is located inside window 3;
[0118] A sealing and shielding assembly is used to shield the vent 17;
[0119] An expansion push assembly is used to drive the sealing and blocking assembly to remove the blockage of the vent 17 after water ingress.
[0120] The baffle plate 22 is fixed inside the vent 17 and is used to block rainwater inside the airflow flowing along the vent 17.
[0121] An airflow guiding component is used to guide airflow along the vent 17 into the interior of the tent body 1 for ventilation;
[0122] The control unit is used to control the expansion push assembly to drive the sealing and blocking assembly to open when the window 3 is closed, so that the vent 17 can be opened for ventilation when the window 3 is closed in rainy conditions;
[0123] Just before the window 3 is completely closed, the control unit controls the expansion push assembly to open. After the expansion push assembly is opened, rainwater enters. After the rainwater enters the interior of the expansion push assembly, the expansion push assembly begins to expand and push. Under the pushing action of the expansion push assembly, the sealing and blocking assembly cancels the blocking of the vent 17, thereby exposing the vent 17.
[0124] At the same time, after the window 3 is closed, the control unit controls the airflow guiding component to start. The airflow guiding component guides the airflow through the vent 17, so that the airflow enters the interior of the tent body 1 through the vent 17 to complete ventilation.
[0125] When the airflow passes through the vent 17, the airflow is blocked by the baffle 22, which causes the rainwater in the airflow to hit the surface of the baffle 22 and be blocked. After hitting the baffle 22, the airflow turns and flows upward along the baffle 22 before still passing through the vent 17 to complete the airflow ventilation.
[0126] As an optional embodiment, the sealing and shielding assembly includes:
[0127] Two sealing plates 18 are slidably installed inside the vent 17 to completely block the opening of the vent 17.
[0128] The two sealing plates 18 are in an overlapping state on opposite sides, and a rubber gasket is provided between the two overlapping sealing plates 18 so that the two overlapping sealing plates 18 can seal the vent, thereby preventing rainwater from entering.
[0129] After the expansion push component begins to expand, it pushes the two sealing plates 18 to move in opposite directions. After the two sealing plates 18 move in opposite directions, the vent 17 is gradually exposed, so that the airflow can complete ventilation through the vent 17.
[0130] As an optional embodiment, the expansion pushing component includes:
[0131] Box 19 is fixed to the top of window 3;
[0132] An expansive soil board 20 is placed inside the box 19, and a cover plate 38 is provided at the opening of the box 19 to seal the box 19.
[0133] Solenoid valve 36 is fixedly embedded in the side wall of cover plate 38, and when opened, it allows rainwater to pass through and enter the interior of box 19;
[0134] Two push plates 21 are slidably connected inside the mounting groove opened inside the window 3. After the two push plates 21 move in opposite directions, they push the sealing and blocking assembly to remove the blocking of the vent 17.
[0135] Just before the window 3 is about to be completely closed, the control unit controls the solenoid valve 36 to open. After the solenoid valve 36 is opened, rainwater enters the interior of the box 19 through the solenoid valve 36, causing the expansive soil plate 20 inside the box 19 to absorb water and expand. After the expansive soil plate 20 expands, it passes through both sides of the box 19 and pushes the two push plates 21 to move in opposite directions. After the two push plates 21 move in opposite directions, they push the sealing and blocking assembly to remove the blockage of the vent 17.
[0136] As an optional embodiment, the airflow guiding component includes:
[0137] Fan 23 is fixed to the top of the baffle plate 22;
[0138] This ensures that rainwater that flows upwards after passing through the baffle 22 and then through the vent 17 must pass through the fan 23.
[0139] After the window 3 is completely closed, the control unit controls the fan 23 to start. After the fan 23 starts, it drives the airflow through, thereby guiding the airflow through by the active force, which helps to enhance the ventilation effect of the vent 17.
[0140] As an optional embodiment, it also includes:
[0141] The sponge body 26 is fixed inside the vent 17 to block the inside of the vent 17 so as to absorb the rainwater contained in the airflow flowing through the vent 17.
[0142] Humidity sensor 27 is used to monitor the water vapor content in the airflow passing through sponge 26; when humidity sensor 27 detects that the water vapor content exceeds the standard, the ability of sponge 26 to absorb rainwater in the airflow decreases.
[0143] The squeeze drainage component is used to squeeze out the rainwater absorbed inside the sponge body 26 so that the water absorption capacity is restored after the rainwater absorbed inside the sponge body 26 is discharged.
[0144] The control unit is also used to control the squeezing drainage assembly to start and discharge the water inside the sponge 26 after the humidity sensor 27 detects that the water vapor content in the airflow exceeds the standard.
[0145] When the airflow passes through the interior of the vent 17, it passes through the sponge 26. The sponge 26 can block and absorb rainwater, so that the rainwater in the airflow is absorbed by the sponge 26, which helps to prevent some rainwater from still entering the interior of the tent body 1 through the vent 17 with the airflow.
[0146] The humidity sensor 27 can detect the moisture inside the airflow after passing through the sponge 26. When the moisture content in the airflow exceeds the standard, it means that the sponge 26 has a weakened ability to absorb rainwater. As a result, the airflow still carries moisture through the sponge 26. Therefore, after the humidity sensor 27 detects that the moisture content exceeds the standard, the control unit controls the squeezing and drainage component to start. The squeezing and drainage component squeezes the sponge 26 to squeeze out the moisture inside the sponge 26. This helps the sponge 26 to restore its water absorption capacity and helps prevent the airflow from carrying rainwater into the interior of the tent body 1.
[0147] As an optional embodiment, the squeeze drainage assembly includes:
[0148] Two lead screws 29 are rotatably connected inside the vent 17, and the two lead screws 29 are located on both sides of the vent 17;
[0149] Motor 28, corresponding to lead screw 29, is fixed on the side wall of window 3 and is fixedly connected to the corresponding lead screw 29 through the output shaft;
[0150] The movable frame 30 is set in correspondence with the lead screw 29, and is slidably connected inside the vent 17 and threadedly connected to the corresponding lead screw 29. Rotary rollers 31 are rotatably connected inside both movable frames 30.
[0151] When the humidity sensor 27 detects that the water vapor content in the airflow exceeds the standard, the controller controls the two motors 28 to start synchronously. After the motors 28 start, they drive the lead screw 29 to rotate through the output shaft. After the lead screw 29 rotates, it drives the moving frame 30 connected to it to move. After the moving frame 30 moves, it drives the rotating roller 31 to move. The rotating roller 31 moves and squeezes the sponge 26. The two rotating rollers 31 are set opposite each other, thereby squeezing out the water inside the sponge 26. By controlling the forward and reverse rotation of the motors 28 to alternate, the rotating roller 31 moves back and forth to squeeze and drain the sponge 26.
[0152] As an optional embodiment, the squeeze drainage assembly includes:
[0153] The extrusion frame is fitted over the outside of the sponge body 26;
[0154] The cylinder is fixed on the side wall of the window 3. The cylinder pushes the squeezing frame to move through the telescopic rod, so that the squeezing frame squeezes the sponge 26 to expel water during the movement.
[0155] As an optional embodiment, it also includes:
[0156] An air-blowing assembly is used to blow the rainproof tarpaulin 4 with airflow before the window 3 is closed, so that the rainproof tarpaulin 4 moves to the outside of the window 3 and avoids obstructing the closing of the window 3;
[0157] Before the window 3 is closed, the rainproof tarpaulin 4 is blown outward by the airflow, so that the middle part of the rainproof tarpaulin 4 is away from the window 3. This helps to prevent the rainproof tarpaulin 4 from being trapped between the window 3 and the window frame 2 during the closing process, thus preventing the window 3 from being blocked from closing.
[0158] As an optional embodiment, the air blowing assembly includes:
[0159] The airbag 32 is fixed between the push plate 21 and the inner wall of the mounting groove opened inside the window 3. Multiple sets of pressure springs 33 are fixed inside the airbag 32 to support the airbag 32 to return to its original position.
[0160] The air pipe 34 is fixedly connected to the air bag 32, with the end facing away from the air bag 32 facing the rainproof tarpaulin 4.
[0161] When the push plate 21 moves, it pushes the airbag 32 to compress. After the airbag 32 is compressed, the gas inside is discharged. The gas inside the airbag 32 is discharged along the air blowing pipe 34. The gas discharged along the air blowing pipe 34 blows the rainproof tarpaulin 4 away from the window 3, which helps to prevent the rainproof tarpaulin 4 from being stuck between the window 3 and the window frame 2. The pressure spring 33 helps to maintain the airbag 32 in the initial state and pushes the airbag 32 back to the initial state after the expansion soil plate 20 is replaced.
[0162] As an optional embodiment, the air blowing assembly includes:
[0163] A miniature fan is fixed to the side wall of window 3, with the air outlet facing the rainproof tarpaulin 4;
[0164] Just before the window 3 is completely closed, the control unit starts the micro fan. After the micro fan starts, it blows airflow onto the rainproof tarpaulin 4, which causes the rainproof tarpaulin 4 to be blown away from the window 3, thus helping to avoid the rainproof tarpaulin 4 getting stuck between the window 3 and the window frame 2.
[0165] like Figure 1 The method for controlling the rain protection of an outdoor rainproof tent with a ventilation window, as shown, includes the following steps:
[0166] The rain-blocking components are activated based on the light rain status information. The light rain status information includes three levels: A, B, and C, which are divided according to the amount of light rain. The activation level of the rain-blocking components is divided into three levels according to the level of the light rain status information.
[0167] The control closing component is activated based on the heavy rain status information to drive the window and door 3 to close; the heavy rain status information includes three levels: D, E, and F, which are divided according to the amount of heavy rain; the activation degree of the rainproof component is divided into three levels according to the heavy rain status information.
[0168] During rainfall, the rain sensor 14 senses rainfall information. When the rainfall reaches a specified value for heavy rain, it generates heavy rainfall information; when the rainfall reaches a specified value for light rain, it generates light rainfall information. The generated heavy rainfall information or light rainfall information is then sent to the controller 16. The wind speed sensor 15 acquires wind direction and wind speed information. Subsequently, it analyzes and judges the wind direction and wind speed. When the wind direction is directly facing or tilted towards the rainproof and ventilated window, it generates windward information; when the wind direction is away from or tilted away from the rainproof and ventilated window, it generates headwind information. The generated windward information or headwind information is then sent to the controller 16.
[0169] When the controller simultaneously acquires information on light rainfall and headwind, the controller 16 generates light rainfall status information, and then generates rain protection control information based on the light rainfall status information. The rain protection control information is then sent to the rain protection component to control the rain protection component to start rain protection. In the light rainfall status information, the controller 16 sets three levels, A, B, and C, according to the amount of light rainfall. Then, the controller controls the rain protection component to be divided into three levels, A, B, and C. When the amount of light rainfall increases, the controller controls the opening amount of the rain protection component to increase.
[0170] When the controller 16 simultaneously acquires information on light rainfall and windward conditions, and whenever the controller 16 acquires information on heavy rainfall, the controller 16 generates heavy rainfall status information. Subsequently, based on the heavy rainfall status information, it generates closure control information and sends the closure control information to the closure component to control the closure component to start and drive the window 3 to close. In the heavy rainfall status information, the controller 16 divides the heavy rainfall into three levels: D, E, and F. Then, it controls the closure component to divide the heavy rainfall into three levels: D, E, and F. When the heavy rainfall increases, the control component pushes the window 3 to close more fully.
[0171] As an optional embodiment, it also includes:
[0172] According to the information of closing the rainproof and ventilating window, the expansion push component is controlled to start water intake so as to push the sealing and blocking component to remove the blocking of the vent 17;
[0173] After the closing component pushes the rainproof and ventilated window to close, the closing component obtains the rainproof and ventilated window closing information and generates ventilation request information based on the rainproof and ventilated window closing information. Then, it sends the ventilation request information to the controller 16. After receiving the information, the controller 16 generates ventilation control information based on the ventilation request information and sends the ventilation control information to the expansion push component, so that the expansion push component opens the water inlet. This causes the expansion push component to enter the water and drive the sealing and blocking component to remove the blocking of the vent 17.
[0174] As an optional embodiment, it also includes:
[0175] Based on the information that the water vapor content exceeds the standard, the squeezing drainage component is activated to discharge the rainwater absorbed by the sponge body 26;
[0176] The humidity sensor 27 monitors the water vapor content in the airflow in real time. When the water vapor content in the airflow exceeds the standard, the humidity sensor 27 acquires the water vapor content exceeding the standard information, and then generates drainage request information based on the water vapor content exceeding the standard information, and sends the drainage request information to the controller 16. After receiving the information, the controller 16 generates drainage control information based on the drainage request information, and sends the drainage control information to the squeezing drainage component to control the squeezing drainage component to discharge the rainwater absorbed in the sponge 26 after it is activated.
[0177] Working principle of this invention:
[0178] The rainfall detection unit monitors the rainfall in the environment where the tent body 1 is used, and classifies the state into no rain and rain based on the monitoring results. In the rain state, the wind speed monitoring unit monitors the wind speed in the environment where the tent body 1 is used, and combines the rainfall with the wind speed and wind direction. The state where the rainfall is less than the specified rainfall value and the wind direction is against the rainproof and ventilated window is defined as light rain. The state where the rainfall is less than the specified rainfall value but the wind direction is towards the rainproof and ventilated window, as well as the state where the rainfall is greater than the specified rainfall value, are all defined as heavy rain.
[0179] In the absence of rain, the rainproof and breathable windows are open to allow ventilation inside the tent body 1.
[0180] In light rain, rainwater falls on the top of the tent body 1 and flows downwards as the tent body 1 tilts. The flowing rainwater will enter the interior of the tent body 1 along the edge of the rainproof ventilation window. At this time, the control unit controls the rainproof component to activate. After the rainproof component is activated, it blocks the edge of the rainproof ventilation window, thereby blocking the rainwater flowing along the top of the tent body 1. This helps to prevent rainwater from flowing along the tent body 1 and entering the interior of the tent body 1. Furthermore, when the rainproof component is activated, the rainproof ventilation window is still open, and airflow can still pass through the rainproof ventilation window, so that the rainproof ventilation window can still maintain ventilation while blocking the flowing rainwater.
[0181] In heavy rain, the control unit activates the closing mechanism, which in turn closes the rainproof and ventilated window, thus completely blocking the rain and preventing rainwater from entering the interior of the tent body 1.
[0182] Therefore, based on the detection results of the rainfall detection unit and the wind speed monitoring unit, the control unit analyzes the data and divides the rainfall status into light rain and heavy rain. In light rain, the rain-blocking component is activated, allowing the rainproof and ventilated window to maintain ventilation while blocking rainwater. In heavy rain, the closing component is activated, closing the rainproof and ventilated window to block rain. This allows for switching between different states of the rainproof and ventilated window according to the rainfall status, ensuring good ventilation while maintaining rain protection.
[0183] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed invention.
Claims
1. An outdoor rainproof tent with a ventilation window, comprising a tent body (1), characterized in that, Also includes: Rainfall detection unit, used to monitor rainfall; The wind speed monitoring unit is used to monitor wind speed and wind direction; The rainproof and breathable window is used to ventilate the main body of the tent (1) when it is open, and automatically switches the state to protect against rain according to the amount of rain when it rains. The rainproof and ventilated window includes a rain-blocking component that blocks rainwater in light rain and a closing component that closes the rainproof and ventilated window in heavy rain. The control unit is used to analyze and control the state switching of the rainproof and ventilated window based on the rainfall detected by the rainfall detection unit and the wind speed and wind direction detected by the wind speed monitoring unit. When a light rain is detected, the control unit activates the rain-blocking component to block the rainwater, and when a heavy rain is detected, the control unit activates the closing component to close the rainproof and ventilated window for complete rain protection.
2. The outdoor rainproof tent with a ventilation window according to claim 1, characterized in that, Also includes: The closed ventilation unit is used to provide rain protection and ventilation to the main body of the tent (1) when the rainproof ventilation window is closed in heavy rain. The control unit is also used to control the closure ventilation unit to start after the closure component is activated and drives the rainproof and ventilated window to close, so as to ventilate the interior of the tent body (1) in the closed rainproof state.
3. An outdoor rainproof tent with a ventilation window according to claim 2, characterized in that, The rainproof and breathable window includes a window frame (2) fixed on the main body of the tent (1) and a window door (3) rotatably connected to the window frame (2); The rainproof component includes: Two rainproof tarpaulins (4) are provided and fixed between the two sides of the window (3) and the window frame (2) to block rainwater from the two sides of the rainproof and ventilated window after it is unfolded. Pull the rope (5), which is set in correspondence with the rainproof tarpaulin (4), and use it to pull the rainproof tarpaulin (4) to unfold after being pulled; Support ropes (11) are provided corresponding to the rainproof tarpaulin (4) to provide support force for maintaining the folding of the rainproof tarpaulin (4); An expansion pulling component is provided corresponding to the pulling rope (5) and is used to gradually pull the pulling rope (5) according to the increase of rainfall in light rain, so as to drive the rainproof tarpaulin (4) to gradually unfold. The counterweight pulling component is provided corresponding to the support rope (11) and is used to provide pulling support force to the support rope (11) so that the support rope (11) is released synchronously when it is pulled by the rainproof tarpaulin (4) and the support rope (11) is kept taut during the release process.
4. An outdoor rainproof tent with a ventilation window according to claim 3, characterized in that, The expansion pulling component includes: An expanding soil block (7) is installed on top of the window (3) via a sliding box (6) to expand and pull the pulling rope (5) after encountering water. Rainwater guide is used to collect and guide rainwater during rainfall to direct the water flow toward the expansive soil block (7); An electromagnetic switch (9) is used to control the amount of water flowing from the rainwater guide to the expansive soil block (7). The control unit is also used to control the opening of the electromagnetic switch (9) according to the amount of rainfall detected by the rainfall detection unit, so as to control the amount of water entering the expansive soil block (7) along the electromagnetic switch (9) according to the amount of rainfall.
5. An outdoor rainproof tent with a ventilation window according to claim 3, characterized in that, The closed ventilation unit includes: Ventilation opening (17) is provided inside the window (3); A sealing and shielding assembly is used to shield the vent (17); An expansion push assembly is used to drive the sealing and blocking assembly to remove the blockage of the vent (17) after water enters; A baffle (22) is fixed inside the vent (17) to block rainwater inside the airflow flowing along the vent (17); An airflow guiding component is used to guide airflow along the vent (17) into the interior of the tent body (1) for ventilation; The control unit is used to control the expansion push assembly to drive the sealing and blocking assembly to open when the window (3) is closed, so that the vent (17) is opened for ventilation when the window (3) is closed in the rain.
6. An outdoor rainproof tent with a ventilation window according to claim 5, characterized in that, Also includes: A sponge (26) is fixed inside the vent (17) to block the inside of the vent (17) so as to absorb the rainwater contained in the airflow flowing through the vent (17). A humidity sensor (27) is used to monitor the water vapor content in the airflow passing through the sponge (26); when the humidity sensor (27) detects that the water vapor content exceeds the standard, the sponge (26) reduces its ability to absorb rainwater in the airflow. The squeezing drainage assembly is used to squeeze out the rainwater absorbed inside the sponge (26) so that the water absorption capacity is restored after the rainwater absorbed inside the sponge (26) is discharged. The control unit is also used to control the squeezing drainage assembly to start discharging the moisture inside the sponge (26) after the humidity sensor (27) detects that the water vapor content in the airflow exceeds the standard.
7. An outdoor rainproof tent with a ventilation window according to claim 6, characterized in that, Also includes: An air blowing assembly is used to blow the rainproof tarpaulin (4) with airflow before the window (3) is closed, so that the rainproof tarpaulin (4) moves to the outside of the window (3) and avoids obstructing the closing of the window (3).
8. A rainproof control method for an outdoor rainproof tent with a ventilation window according to any one of claims 6-7, characterized in that, The control method includes the following steps: The rain-blocking components are activated based on the light rain status information. The light rain status information includes three levels: A, B, and C, which are divided according to the amount of light rain. The activation level of the rain-blocking components is divided into three levels according to the level of the light rain status information. The control closing component is activated according to the heavy rain status information to drive the window (3) to close; the heavy rain status information includes three levels: D, E, and F, which are set according to the amount of heavy rain, and the activation degree of the rainproof component is set into three levels according to the heavy rain status information.
9. A method for controlling the rainproofing of an outdoor rainproof tent with a ventilation window according to claim 8, characterized in that, Also includes: According to the information of closing the rainproof and ventilating window, the expansion push component is controlled to start water intake so as to push the sealing and blocking component to remove the blocking of the vent (17).
10. A method for controlling the rainproofing of an outdoor rainproof tent with a ventilation window according to claim 9, characterized in that, Also includes: Based on the information that the water vapor content exceeds the standard, the squeezing drainage component is activated to discharge the rainwater absorbed in the sponge (26).
Citation Information
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