CN217113558U - Immersive natural disaster simulation experience device - Google Patents

Immersive natural disaster simulation experience device Download PDF

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Publication number
CN217113558U
CN217113558U CN202220611324.9U CN202220611324U CN217113558U CN 217113558 U CN217113558 U CN 217113558U CN 202220611324 U CN202220611324 U CN 202220611324U CN 217113558 U CN217113558 U CN 217113558U
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China
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flood
simulation
experience
water
room
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CN202220611324.9U
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Chinese (zh)
Inventor
程勋锋
冯振营
马戈
王海东
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Guangdong Nikolai Energy Technology Co ltd
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Shenzhen Nigula Energy Technology Co ltd
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Abstract

The utility model discloses an immersive natural disaster simulation experience device, which comprises an experience room, a flood disaster simulation room, an ice disaster simulation room, a flood experience pool, a debris flow experience pool, flood disaster weather simulation equipment and ice disaster weather simulation equipment; the flood weather simulation equipment comprises a first fan, a first water sprayer, a second fan, a second water sprayer, a strobe light and a first sound box; the ice disaster weather simulation equipment comprises a third fan, a refrigerator, a third water sprayer and a second sound box; the weather of blowing, raining, lightning and thunder when can simulate flood through first fan, first sprinkler, strobe light and first stereo set and take place can simulate the weather of blowing, raining, lightning and thunder when the mud-rock flow takes place through second fan, second sprinkler, strobe light and first stereo set, through third fan, refrigerator, third sprinkler and second stereo set, can simulate the weather of blowing, low temperature, rain and thunder when the ice disaster takes place.

Description

Immersive natural disaster simulation experience device
Technical Field
The utility model relates to a safety simulation equipment technical field, concretely relates to device is experienced in simulation of immersive natural disasters.
Background
VR immersive natural disasters simulation experience system is based on the development of high and new technologies such as 3D panorama and VR (virtual reality) technique to the scene of virtual reality natural disasters lets people experience the sight when natural disasters take place.
Chinese patent application No. 201721330968.6 discloses a VR immersion type natural disaster simulation experience system, which comprises an experience table, steps, an infrared transmitting device, an infrared receiving device, an infrared control device and a lighting device; although the step can be illuminated through the illuminating device, the safety of the experiencer is improved; however, this patent only lets the experience person watch the image when the natural disaster happens through the VR glasses, and does not simulate the weather when the natural disaster happens, can not give the experience person the feeling of facing his mirror.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model aims at providing a weather when can take place to natural disasters simulates, can give the immersive sensation of experiencing person personally on the scene immersive natural disasters simulation experience device.
In order to solve the technical problem, the technical scheme of the utility model is that: an immersive natural disaster simulation experience device comprises an experience room, a flood disaster simulation room arranged inside the experience room, and an ice disaster simulation room arranged inside the experience room; the flood simulation system is characterized by further comprising a flood experience pool arranged inside the flood simulation room, a debris flow experience pool arranged inside the flood simulation room, flood weather simulation equipment arranged inside the flood simulation room, and ice weather simulation equipment arranged inside the ice simulation room; the flood weather simulation equipment comprises a first fan, a first water sprayer, a second fan, a second water sprayer, a strobe light and a first sound box, wherein the first fan is positioned on one side of a flood experience pool and used for simulating wind blowing weather during flood occurrence, the first water sprayer is positioned above the flood experience pool and used for simulating rain blowing weather during flood occurrence, the second water sprayer is positioned on one side of a debris flow experience pool and used for simulating wind blowing weather during debris flow occurrence, the second water sprayer is positioned above the debris flow experience pool and used for simulating rain blowing weather during debris flow occurrence, the strobe light is positioned above the flood experience pool and the debris flow experience pool and used for simulating lightning weather, and the first sound box is positioned inside the flood simulation room and used for playing thunder; the ice disaster weather simulation device comprises a third fan, a refrigerator, a third water sprayer and a second sound box, wherein the third fan is used for simulating wind blowing weather in ice disaster, the refrigerator is positioned on one side of the third fan and used for simulating low-temperature weather in ice disaster, the third water sprayer is positioned above the third fan and used for simulating rainy weather in ice disaster, and the second sound box is positioned on one side of the third fan and used for playing thunder; a plurality of suspension plastic balls have been placed to the inside in pond is experienced in mud-rock flow, through water and suspension plastic ball simulation muddy water mixed liquid, the stroboscopic lamp comprises the LED lamp pearl of many hi-lite, through the scintillation simulation lightning weather of LED lamp pearl.
Preferably, a first display screen which is located on one side of the flood experience pool and used for playing flood science popularization knowledge is placed in the flood simulation room, and first VR glasses which are located on one side of the first display screen and used for playing flood images are placed in the flood simulation room.
Preferably, a second display screen which is located on one side of the debris flow experiencing pool and used for playing debris flow popular science knowledge is placed in the flood simulation room, and second VR glasses which are located on one side of the second display screen and used for playing debris flow images are placed in the flood simulation room.
Preferably, a third display screen used for playing the science popularization knowledge of the ice disaster is placed in the ice disaster simulation room, and third VR glasses used for playing the debris flow image and located on one side of the third display screen are placed in the ice disaster simulation room.
Preferably, the flood experience pool is provided with a first water inlet and a first water outlet, the inside fixed mounting of the first water inlet has a first filter screen, and the inside fixed mounting of the second water outlet has a second filter screen.
Further, the flood experience pool is communicated with and fixed with a first water inlet pipe through a first water inlet, the first water inlet pipe is communicated with and fixed with a first water pump, the first water pump is communicated with and fixed with a first water delivery pipe, the first water delivery pipe is communicated with and fixed with a first water tank, a first water inlet valve is fixedly mounted inside the first water inlet pipe, water enters the flood experience pool from the first water inlet, the first water pump controls the size and the strength of water flow, and finally water flows out from a first water outlet.
Further, the flood experience pond is through first delivery port intercommunication and be fixed with first blow-off pipe, the inside fixed mounting of first blow-off pipe has first drain valve.
Preferably, the debris flow experiencing pool is provided with a second water inlet and a second water outlet, a third filter screen is fixedly mounted inside the second water inlet, and a second filter screen is fixedly mounted inside the second water outlet.
Further, the debris flow experience pool is communicated with and fixed with a second water inlet pipe through a second water inlet, the second water inlet pipe is communicated with and fixed with a second water pump, the second water pump is communicated with and fixed with a second water delivery pipe, the second water delivery pipe is communicated with and fixed with a second water tank, a second water inlet valve is fixedly mounted inside the second water inlet pipe, water enters the debris flow experience pool from the second water inlet, the second water pump controls the size and the strength of water flow, and finally water flows out from a second water outlet.
Furthermore, the debris flow experience pool is communicated with and fixed with a second drain pipe through a second water outlet, and a second drain valve is fixedly arranged inside the second drain pipe.
The utility model discloses technical effect mainly embodies: the water flow and the strength of flood can be experienced by the experiencer through the flood experience pool, and the water flow and the strength of debris flow can be experienced by the experiencer through the debris flow experience pool; through the weather of blowing, rain, lightning and thunder when first fan, first sprinkler, stroboscopic lamp and first stereo set can simulate flood emergence, can simulate the weather of blowing, rain, lightning and thunder when the mud-rock flow takes place through second fan, second sprinkler, stroboscopic lamp and first stereo set, through third fan, refrigerator, third sprinkler and second stereo set, can simulate the weather of blowing, low temperature, rain and thunder when the ice disaster takes place, consequently, the utility model discloses weather when can simulating the natural disaster takes place to can give the sensation that is on the spot with experience person.
Drawings
Fig. 1 is an internal top view of the immersive natural disaster simulation experience device of the present invention;
FIG. 2 is a cross-sectional view A-A of FIG. 1;
FIG. 3 is a cross-sectional view B-B of FIG. 1;
fig. 4 is a schematic structural diagram of the flood experience pool of fig. 1;
fig. 5 is a schematic structural view of the debris flow experience basin of fig. 1.
Reference numerals: the experiment room 1, the flood simulation room 2, the ice disaster simulation room 3, the flood experiment pool 4, the debris flow experiment pool 5, the first display screen 21, the first VR glasses 22, the second display screen 23, the second VR glasses 24, the third display screen 31, the third VR glasses 32, the first water inlet 41, the first water outlet 42, the second water inlet 51, the second water outlet 52, the first fan 61, the first water sprayer 62, the second fan 63, the second water sprayer 64, the strobe light 65, the first stereo 66, the third fan 71, the refrigerator 72, the third water sprayer 73, the second stereo 74, the first water inlet pipe 101, the first water pump 102, the first water pipe 103, the first water tank 104, the first 105, the first water discharge pipe 201, the first water discharge valve 202, the second water inlet pipe 301, the second water pump 302, the second water pipe 303, the second water tank 304, the second water discharge pipe 305, the second water discharge valve 401, and the second water discharge valve 402.
Detailed Description
The following detailed description of the embodiments of the present invention is made with reference to the accompanying drawings, so that the technical solution of the present invention can be more easily understood and grasped.
In the present embodiment, it should be understood that the terms "middle", "upper", "lower", "top", "right", "left", "above", "back", "middle", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of describing the present invention, and do not indicate or imply that the referred devices or elements must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention.
In the present embodiment, if the connection or fixing manner between the components is not specifically described, the connection or fixing manner may be a bolt fixing manner, a pin connecting manner, or the like, which is commonly used in the prior art, and therefore, details thereof are not described in the present embodiment.
An immersive natural disaster simulation experience device, as shown in fig. 1, includes an experience room 1, a flood simulation room 2 disposed inside the experience room 1, and an ice simulation room 3 disposed inside the experience room 1; the flood simulation system comprises a flood experience pool 4 arranged inside the flood simulation room 2, a debris flow experience pool 5 arranged inside the flood simulation room 2, flood weather simulation equipment arranged inside the flood simulation room 2 and ice weather simulation equipment arranged inside the ice simulation room 3.
Flood simulation room 2's inside has been placed and has been located flood experience pond 4 one side, be used for playing flood science popularization knowledge's first display screen 21, flood simulation room 2's inside has been placed and has been located one side of first display screen 21, be used for playing the first VR glasses 22 of flood image. A second display screen 23 which is located on one side of the debris flow experiencing pool 5 and used for playing debris flow popular science knowledge is placed in the flood simulation room 2, and second VR glasses 24 which are located on one side of the second display screen 23 and used for playing debris flow images are placed in the flood simulation room 2. A third display screen 31 used for playing the science popularization knowledge of the ice disaster is placed in the ice disaster simulation room 3, and third VR glasses 32 used for playing the debris flow image and located on one side of the third display screen 31 are placed in the ice disaster simulation room 3.
As shown in fig. 2, the flood weather simulation device includes a first fan 61 located on one side of the flood experience pool 4 and used for simulating windy weather when flood occurs, a first sprinkler 62 located above the flood experience pool 4 and used for simulating rainy weather when flood occurs, a second fan 63 located on one side of the debris flow experience pool 4 and used for simulating windy weather when debris flow occurs, a second sprinkler 64 located above the debris flow experience pool 4 and used for simulating rainy weather when debris flow occurs, and a strobe light 65 located above the flood experience pool and the debris flow experience pool 5 and used for simulating lightning. A first sound box 66 located inside the flood simulation room 1 and used for playing thunder;
as shown in fig. 3, the ice disaster weather simulation device includes a third fan 71 for simulating windy weather in the case of ice disaster, a refrigerator 72 located on one side of the third fan 71 for simulating low-temperature weather in the case of ice disaster, a third water sprayer 73 located above the third fan 71 for simulating rainy weather in the case of ice disaster, and a second sound 74 located on one side of the third fan 71 for playing thunder.
As shown in fig. 4, the flood experience tank 4 is provided with a first water inlet 41 and a first water outlet 42. The inside fixed mounting of first water inlet 41 has first filter screen 411, the inside fixed mounting of second delivery port 42 has second filter screen 421. The water depth of the flood experience pool 4 is kept between 0.2m and 0.5 m. The flood experience pool 4 is fixedly connected with a first water inlet pipe 101 through a first water inlet 41, the first water inlet pipe 101 is fixedly connected with a first water pump 102, the first water pump 102 is fixedly connected with a first water delivery pipe 103, the first water delivery pipe 103 is fixedly connected with a first water tank 104, and a first water inlet valve 105 is fixedly mounted inside the first water inlet pipe 101. The water enters the flood experience tank 4 through the first water inlet 41, the first water pump 102 controls the size and intensity of the water flow, and finally the water flows out through the first water outlet 42. The flood experience pool 4 is communicated with and fixed with a first drainage pipe 201 through a first water outlet 42, and a first drainage valve 202 is fixedly arranged inside the first drainage pipe 201.
As shown in fig. 5, the debris flow experiencing pond 5 is provided with a second water inlet 51 and a second water outlet 52. A third filter screen 511 is fixedly installed inside the second water inlet 51, and a second filter screen 521 is fixedly installed inside the second water outlet 52. The water depth of the debris flow experience pool 4 is kept between 0.2m and 0.5 m. The debris flow experiencing pool 5 is fixedly communicated with a second water inlet pipe 301 through a second water inlet 51, the second water inlet pipe 301 is fixedly communicated with a second water pump 302, the second water pump 302 is fixedly communicated with a second water delivery pipe 303, the second water delivery pipe 303 is fixedly communicated with a second water tank 304, and a second water inlet valve 305 is fixedly installed inside the second water inlet pipe 301. Water enters the debris flow experiencing pool 5 from the second water inlet 51, the second water pump 302 controls the size and intensity of the water flow, and finally the water flows out from the second water outlet 52. The debris flow experiencing pool 5 is communicated with and fixed with a second water outlet pipe 401 through a second water outlet 52, and a second water discharge valve 402 is fixedly installed inside the second water outlet pipe 401.
In this embodiment, a plurality of suspension plastic balls are placed in the interior of the debris flow experience pool 5, and the muddy water mixed liquid is simulated through water and the suspension plastic balls.
In this embodiment, the strobe 65 is composed of a plurality of high-brightness LED beads, and the flashing of the LED beads simulates the lightning weather.
The utility model discloses technical effect mainly embodies: the water flow and the strength of flood can be experienced by the experiencer through the flood experience pool, and the water flow and the strength of debris flow can be experienced by the experiencer through the debris flow experience pool; through the weather of blowing, rain, lightning and thunder when first fan, first sprinkler, stroboscopic lamp and first stereo set can simulate flood emergence, can simulate the weather of blowing, rain, lightning and thunder when the mud-rock flow takes place through second fan, second sprinkler, stroboscopic lamp and first stereo set, through third fan, refrigerator, third sprinkler and second stereo set, can simulate the weather of blowing, low temperature, rain and thunder when the ice disaster takes place, consequently, the utility model discloses weather when can simulating the natural disaster takes place to can give the sensation that is on the spot with experience person.
Of course, the above is only a typical example of the present invention, and besides, the present invention can also have other various specific embodiments, and all technical solutions adopting equivalent replacement or equivalent transformation are all within the scope of the present invention as claimed.

Claims (10)

1. An immersive natural disaster simulation experience device comprises an experience room, a flood disaster simulation room arranged inside the experience room, and an ice disaster simulation room arranged inside the experience room; the method is characterized in that: the flood simulation system is characterized by further comprising a flood experience pool arranged inside the flood simulation room, a debris flow experience pool arranged inside the flood simulation room, flood weather simulation equipment arranged inside the flood simulation room, and ice weather simulation equipment arranged inside the ice simulation room; the flood weather simulation equipment comprises a first fan positioned on one side of a flood experience pool, a first water sprayer positioned above the flood experience pool, a second fan positioned on one side of a debris flow experience pool, a second water sprayer positioned above the debris flow experience pool, strobe lights positioned above the flood experience pool and the debris flow experience pool, and a first sound box positioned inside the flood simulation room; the ice disaster weather simulation device comprises a third fan, a refrigerator positioned on one side of the third fan, a third water sprayer positioned above the third fan, and a second sound box positioned on one side of the third fan.
2. An immersive natural disaster simulation experience device as claimed in claim 1, wherein: a first display screen located on one side of a flood experience pool is placed in the flood simulation room, and first VR glasses located on one side of the first display screen are placed in the flood simulation room.
3. An immersive natural disaster simulation experience device as claimed in claim 1, wherein: a second display screen located on one side of the debris flow experience pool is placed in the flood simulation room, and second VR glasses located on one side of the second display screen are placed in the flood simulation room.
4. An immersive natural disaster simulation experience device as claimed in claim 1, wherein: a third display screen is placed in the ice disaster simulation room, and third VR glasses located on one side of the third display screen are placed in the ice disaster simulation room.
5. An immersive natural disaster simulation experience device as claimed in claim 1, wherein: the flood experience pool is provided with a first water inlet and a first water outlet.
6. An immersive natural disaster simulation experience device as claimed in claim 5, wherein: the flood experience pool is communicated with and fixed with a first water inlet pipe through a first water inlet, the first water inlet pipe is communicated with and fixed with a first water pump, the first water pump is communicated with and fixed with a first water delivery pipe, the first water delivery pipe is communicated with and fixed with a first water tank, and a first water inlet valve is fixedly installed inside the first water inlet pipe.
7. An immersive natural disaster simulation experience device as claimed in claim 5, wherein: the pond is experienced to flood is through first delivery port intercommunication and be fixed with first calandria, the inside fixed mounting of first calandria has first drain valve.
8. An immersive natural disaster simulation experience device as claimed in claim 1, wherein: the debris flow experiencing pool is provided with a second water inlet and a second water outlet.
9. An immersive natural disaster simulation experience device as claimed in claim 8, wherein: the debris flow experiencing pool is communicated with and fixed with a second water inlet pipe through a second water inlet, the second water inlet pipe is communicated with and fixed with a second water pump, the second water pump is communicated with and fixed with a second water delivery pipe, the second water delivery pipe is communicated with and fixed with a second water tank, and a second water inlet valve is fixedly installed inside the second water inlet pipe.
10. An immersive natural disaster simulation experience device as claimed in claim 8, wherein: the debris flow experience pool is communicated with and fixed with a second drain pipe through a second water outlet, and a second drain valve is fixedly arranged inside the second drain pipe.
CN202220611324.9U 2022-03-20 2022-03-20 Immersive natural disaster simulation experience device Active CN217113558U (en)

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CN202220611324.9U CN217113558U (en) 2022-03-20 2022-03-20 Immersive natural disaster simulation experience device

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Application Number Priority Date Filing Date Title
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115909840A (en) * 2022-11-01 2023-04-04 贵州电网有限责任公司 Emergent device of experiencing of grid accident simulation processing

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115909840A (en) * 2022-11-01 2023-04-04 贵州电网有限责任公司 Emergent device of experiencing of grid accident simulation processing

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Address after: Room 119, Huichuang Space, No. 69, Gongfan West Road, Huangpu District, Guangzhou, Guangdong 510663

Patentee after: Guangdong Nikolai Energy Technology Co.,Ltd.

Address before: 518110 No. 105, No. 20-1, Liguang new industrial zone, Liguang community, Guanlan street, Longhua District, Shenzhen, Guangdong Province

Patentee before: SHENZHEN NIGULA ENERGY TECHNOLOGY Co.,Ltd.