A device for remote real scene weather browsing and corresponding meteorological element real scene experience
Patent Information
- Application Number
- CN202210798673.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-07-08
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2042-07-08
AI Technical Summary
一、日常生活中人们去景点旅游,花费时间和金钱,进行着让人即快乐又辛苦的旅行,然而当你赶到目的地景点的时候,可能由于天气、行程改变、临时变故等原因,你不能看到想象中的风景,稍作停留可能就匆匆离开,造成遗憾
[0018]下的雨水或者雪融化后可通过造景平台上的通孔流向下方的回水槽,再经过净化器与水泵向造雪机构与喷淋机构供给水源,实现水循环。
Smart Images

Figure CN115089956B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of real-scene simulation technology, and specifically relates to a device for viewing real-scene weather in a different location and experiencing real-life meteorological elements. Background Technology
[0002] As the Earth's weather and climate continue to change, people are paying increasing attention to weather patterns, not only enhancing their awareness of risk prevention but also providing greater protection for their lives and travel. Nowadays, weather is closely related to human activities, and the more developed the socio-economic system, the greater the need to understand weather changes. Many sectors are affected by weather, especially tourism and construction. Currently, various tourist destinations, parks, and buildings face the following problems: First, in daily life, people travel to scenic spots, spending time and money on a trip that is both enjoyable and tiring. However, when you arrive at your destination, you may not see the scenery you imagined due to weather, changes in the itinerary, or unforeseen circumstances. You may have to leave in a hurry after a short stay, which may cause regret.
[0003] II. Unable to reach tourist destinations and parks for various reasons: Due to traffic congestion, sometimes it is even impossible to reach the destination and the original plan must be abandoned; due to the scenic area management implementing visitor limits for safety reasons, and due to time constraints, it is impossible to stay and wait, so the original plan must be abandoned; due to epidemic control, the travel area is restricted, and the travel plan cannot be realized.
[0004] Third, various science museums generally suffer from slow updates to their immersive experience content, a lack of materials, and a lack of novelty, resulting in a diminished visitor experience.
[0005] Fourth, while people can browse scenic spots around the world via mobile phone videos without leaving home, the effect is poor and lacks a realistic experience. Currently, 5D experience centers address this issue, but the cost of content is high and the number of scenes is limited. Furthermore, there are certain access restrictions for people with underlying medical conditions.
[0006] Fifth, some rooms in the building have no windows for various reasons, which causes a strong sense of discomfort.
[0007] To address the regret caused by people's inability to visit real-world weather sites due to time constraints, health conditions, financial constraints, or the pandemic, we urgently need a device to solve these problems. This device would allow people to view real-world weather conditions in different locations without leaving home and experience the corresponding meteorological elements; or to provide visual, tactile, and temperature / humidity experiences through video content. It would also solve the problem of some rooms in buildings lacking windows for various reasons, causing significant discomfort for residents and other users, thus fulfilling people's needs for a better life. Therefore, we have designed a device for viewing real-world weather in different locations and experiencing corresponding meteorological elements in realistic scenes. Summary of the Invention
[0008] This invention aims to solve the problems existing in the prior art by providing a remote real-scene weather exhibition and corresponding meteorological element real-scene experience device.
[0009] The purpose of this invention is achieved as follows: a device for real-world weather viewing and corresponding meteorological element experience in a remote location includes a box, a display screen on the rear side of the box, a window on the front side of the box, ventilation mechanisms on the left and right sides and the top of the box, a water return tank in the lower part of the box, a landscaping platform above the water return tank, and a spraying mechanism and a snowmaking mechanism on the top of the box.
[0010] Furthermore, the landscaping platform has multiple through holes.
[0011] Furthermore, the return water tank is equipped with a water purifier and a water pump. The water purifier is connected to the water pump, and the water pump is connected in parallel to the snowmaking mechanism and the spraying mechanism, respectively.
[0012] Furthermore, solenoid valves are respectively installed between the water pump and the snowmaking mechanism and the spraying mechanism.
[0013] Furthermore, the spraying mechanism is equipped with multiple drip pipes, which are evenly distributed in the upper part of the box.
[0014] Furthermore, the ventilation mechanism includes a wind box, a fan, a first motor, a second motor, a driving gear, a driven gear, a rotating ring, and a rotating rod. Multiple rotating rings are distributed inside the wind box, and the rotating rings are rotatably connected to the wind box. A fan is installed inside the rotating ring that can rotate around the cross-sectional diameter.
[0015] Furthermore, the ventilation mechanism also includes a first motor, a second motor, a driving gear, a driven gear, and a rotating rod. A driven gear is fixedly installed on the outer side of the rotating ring, and the driven gear is rotatably located inside the air box. The first motor is located inside the air box, and a driving gear is fixedly installed at the output end of the first motor. The driving gear and the driven gear mesh with each other. The second motor is fixedly installed inside the rotating ring. The fan is fixedly connected to the rotating ring through the rotating rod. A rotating rod is fixedly connected to the output end of the second motor, and the inner end of the rotating rod is fixedly connected to the outer side of the fan.
[0016] This invention includes a control panel, which can be positioned anywhere within the enclosure or remotely controlled as needed. The control panel controls the ventilation mechanism, snowmaking mechanism, sprinkler system, water pump, purifier, and display. The rear end of the ventilation mechanism connects to an air duct, which blows the air supplied by the duct into the enclosure. The technology for supplying air to the ventilation mechanism is existing technology, capable of supplying air with different humidity levels, temperatures, and air volumes; achieving the aforementioned functions is sufficient, and specific technical solutions are not elaborated upon or limited. The display can play videos, which can be real-time content or recorded video. Based on the video content, decorations matching the video content can be placed on the landscaping platform. Simultaneously, relevant meteorological data, such as wind speed, humidity, temperature, rain, and snow conditions, can be matched to the video content. Specific meteorological data can be collected using meteorological sensors during video recording, obtained in real-time from near the scenic spot, or calculated by analyzing the video content; as long as meteorological data is obtainable, it is sufficient, as it is existing technology and will not be elaborated upon. A strobe device can be installed on the upper inner side of the enclosure as needed to simulate lightning during thunderstorms. When lightning flashes in the video, the strobe device can simulate lightning to create a flashing effect within the device. The control panel controls the supply of corresponding air humidity, temperature, and wind speed to the ventilation mechanism based on meteorological data. The ventilation mechanism supplies air to the enclosure from different directions based on the provided meteorological data. This is achieved by controlling the rotation of motor one and motor two through the control panel. When the rotating rod is placed vertically, the rotation of motor two can change the direction of the fan's left and right blowing. The rotation of motor one can drive the rotating ring to rotate, thereby changing the orientation of the fan and thus changing its blowing direction. The cooperation of motor two and motor one can achieve air blowing in any direction within the enclosure. For example, when the wind blows from left to right, the air supply can be controlled to the left, blowing into the enclosure, while the fan on the right draws air outward. That is, the rotation of motor two drives the fan to rotate, drawing air from the enclosure into the right-side fan box to achieve air pressure balance within the enclosure.
[0017] When the video played on the monitor shows a rainy day, the solenoid valve of the sprinkler mechanism can be opened to spray water into the chamber through the drip pipe to simulate rain. When it shows a snowy day, the solenoid valve of the snowmaking mechanism can be opened to spray snowflakes into the chamber to simulate a snowy day. People can open the window to experience various scenes inside the device, such as wind, snow, rain, and the scenery on the landscaping platform, and have an intuitive experience from both visual and tactile perspectives.
[0018] After the rainwater or snow melts, it flows through the holes on the landscaping platform to the return water tank below, and then through the purifier and water pump to supply water to the snowmaking and sprinkler systems, thus realizing water circulation.
[0019] The beneficial effects of this device are as follows: This invention can compensate for the regret caused by people's inability to visit real-world locations for a tour due to time, health conditions, funds, pandemics, etc. After installing this device, people can view real-world weather conditions in other locations or watch their favorite video weather without leaving home, and gain a realistic experience of the meteorological elements corresponding to the local scene. It also addresses the issue of some rooms in buildings lacking windows for various reasons, causing strong discomfort for residents or those engaging in other activities. After installing this device, people in the room have a wide view and can experience weather changes in other locations immersively, enhancing various scenarios such as dining, gatherings, and meetings, and effectively eliminating discomfort. Simply opening a window allows for a direct experience of the relevant weather conditions displayed on the monitor. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the invention.
[0021] Figure 2 This is a cross-sectional view of the box body of the invention.
[0022] Figure 3 This is a schematic diagram of the rear structure of the invention.
[0023] Figure 4 This is a partial structural diagram of the invention.
[0024] Figure 5 This is a partial structural cross-sectional view of the bellows of the invention.
[0025] Figure 6 This is a cross-sectional view of the bellows of the invention.
[0026] Figure 7 This is a schematic diagram of a partial structure of the wind turbine of the invention. Figure 8 This is a schematic diagram of the odor-generating mechanism of the invention. Figure 9 This is a partial structural cross-sectional view of the odor generating mechanism of the invention.
[0027] List of parts marked in the attached diagram 1. Housing, 2. Window, 3. Snowmaking mechanism, 4. Bellows, 5. Control panel, 6. Water return tank, 7. Landscaping platform, 8. Water pump, 9. Water purifier, 10. Sprinkler mechanism, 11. Monitor, 12. Connecting pipe, 13. Solenoid valve, 14. Ventilation duct, 15. Driven gear, 16. Drive gear, 17. Motor 1, 18. Air outlet, 19. Motor 2, 20. Rotating rod, 21. Fan, 22. Placement box, 23. Drive belt, 24. Evaporation plate, 25. Fan blade, 26. Roller, 27. Ear plate. Detailed Implementation
[0028] Example 1, such as Figure 1-9 As shown, a device for experiencing a real-world weather scene and corresponding meteorological elements in a remote location includes a housing 1. A display 11 is installed on the rear side of the housing 1, and a window 2 is installed on the front side of the housing 1. The window 2 can be opened and closed to allow users to experience the simulated real-world space inside. Ventilation mechanisms are installed on the left, right, and top sides of the housing 1 to supply air into the housing 1. The supplied air can be of different temperatures, humidity levels, wind speeds, and directions to correspond with the meteorological data played in the video on the display 11. A water return tank 6 is provided in the lower part of the housing 1 to collect rainwater or snowmelt for recycling. A landscaping platform 7 is installed above the water return tank 6, on which different plants or ornaments can be placed to correspond with the video being played. A sprinkler system 10 and a snowmaking system 3 are installed on the top of the housing 1. The sprinkler system 10 sprays water into the housing 1 to simulate rain, and the snowmaking system 3 blows snow into the housing 1 to simulate snowflakes.
[0029] The landscaping platform 7 has multiple through holes for collecting rainwater and snowmelt. A water purifier 9 and a water pump 8 are installed in the return water tank 6. The water purifier 9 is connected to the water pump 8, which is connected in parallel to the snowmaking mechanism 3 and the sprinkler mechanism 10. Solenoid valves 13 are installed between the water pump 8 and the snowmaking mechanism 3 and the sprinkler mechanism 10, respectively. The sprinkler mechanism 10 has multiple drip lines evenly distributed in the upper part of the housing 1. The drip lines do not interfere with the snow blowing mechanism, and there are gaps between them. During snow blowing, snowflakes can be blown off intermittently from the drip lines, or the snowmaking mechanism 3 can be located below the drip lines and blow snow from both sides. The drip lines do not interfere with the snow blowing process.
[0030] The ventilation mechanism includes a wind box 4, a fan 21, a first motor 17, a second motor 19, a driving gear 16, a driven gear 15, rotating rings, and a rotating rod 20. Multiple rotating rings are distributed inside the wind box, rotatably connected to the wind box 4. The fan 21 is mounted inside each rotating ring, rotating around its cross-sectional diameter. A ventilation duct 14 is provided inside the wind box 4, connecting the outlets of each fan 21. An inclined air outlet 18 is provided on the outside of the fan 21 at the wind box to increase the blowing angle range of the fan 21. The ventilation mechanism is connected to the air supply fan 21. The air supply mechanism is existing technology, capable of supplying the ventilation mechanism with gases of different temperatures, humidity levels, and air volumes. Specific technical solutions are not limited and will not be elaborated upon. The air blown into the box by the ventilation mechanism provides a direct tactile experience, allowing people to intuitively feel the temperature, humidity, wind speed, and wind direction. The swaying of objects on the landscaping platform at the bottom of the box also provides a visual experience of the wind. The ventilation mechanism also includes an electric... The fan 21 consists of a motor 17, a motor 29, a drive gear 16, a driven gear 15, and a rotating rod 20. The driven gear 15 is fixedly installed on the outer side of the rotating ring and is rotatably located inside the air box. The motor 17 is located inside the air box 4. The drive gear 16 is fixedly installed at the output end of the motor 17. The drive gear 16 and the driven gear 15 mesh with each other. The motor 29 is fixed inside the rotating ring. The fan 21 is fixedly connected to the rotating ring through the rotating rod 20. The rotating rod 20 is fixedly connected to the output end of the motor 29 and the inner end of the rotating rod 20 is fixedly connected to the outer side of the fan 21.
[0031] This invention includes a control panel 5, which can be positioned anywhere on the housing 1 or remotely controlled as needed. The control panel controls the ventilation mechanism, snowmaking mechanism 3, spray mechanism 10, water pump 8, purifier, and display 11, etc. The rear end of the ventilation mechanism is connected to an air duct, which blows the air supplied by the air duct into the housing 1. The technical solution for supplying air to the ventilation mechanism is existing technology, capable of supplying air with different humidity, temperature, and wind speeds to achieve the aforementioned functions; specific technical solutions are not elaborated or limited. Video can be played on the display 11; the video content can be real-time or recorded. Based on the video content, landscaping items matching the video content can be placed on the landscaping platform 7. Simultaneously, relevant meteorological data can be matched based on the video content, such as wind speed, humidity, temperature, rain, and snow conditions. Specific meteorological data can be recorded using meteorological sensors during video recording, or received in real-time from the location of the scene using meteorological sensors, or calculated by analyzing the video content. A strobe device can be installed on the upper inner side of the enclosure to simulate lightning during thunderstorms. The control panel 5 controls the supply of corresponding air humidity, temperature, and airflow to the ventilation system based on the meteorological data. The ventilation system, in turn, supplies airflow of different directions and magnitudes to the enclosure 1 based on the provided meteorological data. The control panel 5 controls the rotation of motor 17 and motor 29. When the rotating rod is placed vertically, the rotation of motor 29 can change the direction of the left and right blowing of the fan 21. The rotation of motor 17 can drive the rotating ring to rotate, thereby changing the orientation of the fan 21 and thus changing the blowing direction of the fan 21. The cooperation of motor 29 and motor 17 can realize that the air is blown into the box 1 in any direction. For example, when the air blows from the left to the right, the air supply to the left can be controlled, and the air blows into the box 1 from the left. At the same time, the fan 21 on the right draws out. That is, the rotation of motor 29 drives the fan 21 to rotate, drawing the air from the box 1 into the right air box to achieve air pressure balance in the box 1.
[0032] When the video played on the monitor 11 depicts a rainy day, the solenoid valve 13 of the sprinkler mechanism 10 can be opened to spray water into the chamber 1 through the drip pipe, simulating rain. When it depicts a snowy day, the solenoid valve 13 of the snowmaking mechanism 3 can be opened to spray snowflakes into the chamber 1, simulating a snowy day. By controlling the degree to which the solenoid valves are opened, the amount of simulated rain and the quantity of simulated snowflakes can be controlled.
[0033] After the rainwater or snow melts, it can flow through the holes on the snowmaking platform to the return water tank 6 below, and then through the purifier and water pump 8 to supply water to the snowmaking mechanism 3 and the spraying mechanism 10, thus realizing water circulation.
[0034] An odor generating mechanism can be added to the ventilation system as needed. Different fragrances can be added to the odor generating mechanism to match floral scents, earthy aromas, etc. The odor generating mechanism includes a placement box 22. An ear plate 27 is fixedly installed on the front and rear sides of the upper surface of the placement box 22. A roller 26 is rotatably installed between the two ear plates 27 and inside the placement box 22. A transmission belt 23 is installed between the two rollers 26. A velvet cloth is fixedly installed on the outer side of the transmission belt 23. The rear side of the upper roller 26 passes through the ear plate 27. A fan blade 25 is fixedly installed at the rear end of the upper roller 26. A volatile plate 24 is evenly fixedly installed on the outer side of the transmission belt 23. The outer side of the volatile plate 24 is also covered with velvet cloth. The volatile plate and the transmission belt 23 are fixedly inclined. The inclination direction of the volatile plate 24 is the same as the inclination direction of the fan blade 25 so that the force direction of the two is consistent when the wind blows. The scent-generating mechanism is placed at the vent of the ventilation system. A fragrance matching the flowers and herbs displayed on the monitor is placed inside the placement box 22. When the wind blows, the fan blades 25 and the evaporation plate 24 are forced to rotate the roller 26, which in turn drives the transmission belt 23. The cloth on the transmission belt 23 and the evaporation plate 24 is moistened with fragrance and lifted upwards. Under the wind, the fragrance on the cloth is blown away and evaporates, entering the box with the airflow, thus dispersing the fragrance into the box. The evaporation plate 24 is driven by the wind to rotate the transmission belt 23, and the tilted placement of multiple evaporation plates 24 also ensures ample contact between the fragrance on the cloth and the wind, facilitating fragrance diffusion. Simultaneously, audio equipment can be placed in a suitable location inside the box to play the sound transmitted from the monitor. The audio equipment is existing technology and only needs to achieve the above functions; further details are omitted.
[0035] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. For those skilled in the art, the present invention can have various modifications and variations. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A device for experiencing real-world weather conditions and corresponding meteorological elements in a remote location, comprising a housing, characterized in that: A monitor is installed at the rear of the box, a window is installed on the front side of the box, ventilation mechanisms are installed on the left, right and top sides of the box, a water return tank is opened in the lower part of the box, and a landscaping platform is installed above the water return tank. The top of the container is equipped with a spraying mechanism and a snowmaking mechanism; the snowmaking mechanism sprays snowflakes into the container to simulate a snowy day; the spraying mechanism sprays water into the container to simulate rain. The ventilation mechanism includes a bellows, a fan, a first motor, a second motor, a drive gear, a driven gear, a rotating ring, and a rotating rod. Multiple rotating rings are distributed inside the bellows, and these rings are rotatably connected to the bellows. A fan is mounted inside each rotating ring, rotatable around its cross-sectional diameter. A driven gear is fixedly mounted on the outer side of each rotating ring, and this driven gear is rotatable within the bellows. The first motor is located inside the bellows, and a drive gear is fixedly mounted at its output end. The drive gear and driven gear mesh with each other. The second motor is fixedly mounted inside each rotating ring. The fan is fixedly connected to the rotating ring via a rotating rod, and a rotating rod is fixedly connected to the output end of the second motor. The inner end of the rotating rod is fixedly connected to the outer side of the fan. The rotation of motors one and two is controlled. When the rotating rod is placed vertically, the rotation of motor two can change the direction of the fan blowing left and right. The rotation of motor one can drive the rotating ring to rotate, thereby changing the orientation of the fan and thus changing the direction of the fan blowing. The cooperation of motor two and motor one can make the air blown in any direction inside the box. When the air blows from the left to the right, the air supply to the left can be controlled, and the air on the left blows into the box. At the same time, the fan on the right draws out. The rotation of motor two drives the fan to rotate, drawing air from inside the box into the right fan box to achieve air pressure balance inside the box.
2. The device for remote real-scene weather viewing and corresponding meteorological element real-scene experience according to claim 1, characterized in that: The landscaping platform has multiple through holes.
3. The device for remote real-scene weather viewing and corresponding meteorological element real-scene experience according to claim 2, characterized in that: The return water tank is equipped with a water purifier and a water pump. The water purifier is connected to the water pump, and the water pump is connected in parallel to the snowmaking mechanism and the spraying mechanism.
4. The device for remote real-scene weather viewing and corresponding meteorological element real-scene experience according to claim 3, characterized in that: Solenoid valves are respectively installed between the water pump and the snowmaking mechanism and the spraying mechanism.
5. The device for remote real-scene weather viewing and corresponding meteorological element real-scene experience according to claim 4, characterized in that: The spraying mechanism is equipped with multiple drip pipes, which are evenly distributed in the upper part of the box.
Citation Information
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