Immersive sound transmission inner dome cinema
Through the combined structure of the base, warp frame and weft frame, the seamless installation of the screen and the rational layout of the audio equipment in the inner dome theater are achieved, which solves the problems of low space utilization and poor audio-visual effects and improves the viewing experience.
Patent Information
- Application Number
- CN202510945554.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-09
- Publication Date
- 2025-09-16
AI Technical Summary
Existing dome theaters have low space utilization, difficult wiring installation, and independent settings of the screen and audio equipment, resulting in poor audio-visual effects, high costs, and deviations in sound position.
A combined structure of base, warp frame and weft frame is used to form a spherical screen cavity. The screen is seamlessly installed in the cavity, and the audio equipment is placed on the back of the screen. The cable layout is planned through the connecting cavity to improve space utilization and audio-visual effects.
Seamless screen splicing is achieved, and the audio equipment is aligned with the screen position, which improves space utilization and audio-visual experience, reduces the risk of line wear and tear, and improves viewing quality.
Smart Images

Figure CN120652728A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of special cinema construction, and in particular to an immersive sound-transparent inner dome cinema. Background Art
[0002] The inner dome theater is an immersive special theater. Its core feature is that it wraps the audience inside the sphere. Through surround projection and acoustic systems, it can create a full-range, high-quality audio-visual experience for the audience.
[0003] Existing dome theaters generally have the problem of low space utilization. Most of them use a circular frame facing the audience, with a screen seamlessly installed on the frame. The connection ports of each screen are connected to cables and extend along the frame to the host for control. Because the distance between each screen and the host is different, it will increase the difficulty of laying the lines. At the same time, the unlimited long cables are prone to wear and tear, causing the corresponding screen to malfunction.
[0004] In addition, in order to ensure the audio-visual effect, the screens of the inner dome are seamlessly connected. In order to improve the audio-visual effect, the audio equipment will avoid the screen and be arranged in other positions in the theater to improve the viewing effect. However, the cost of independently set audio equipment is high, and the sound position and the screen have deviations, which cannot achieve the best viewing effect and cannot bring a better user experience. Summary of the Invention
[0005] The main purpose of the present invention is to provide an immersive sound-transparent inner dome theater, aiming to improve the space utilization rate of the inner dome theater and enhance the audio-visual effect.
[0006] To achieve the above objectives, the present invention provides an immersive, sound-transparent inner dome theater, comprising a base, a warp frame connected to the base and arranged along the warp direction of the base, and a weft frame connected to the warp frame and arranged coaxially with the base. The warp frames are provided in plurality, each of which is connected to the base and bisects the circumference of the base. The warp frames are provided with a plurality of slots along the latitudinal direction for connecting to the weft frames. An end of the warp frame away from the base is connected to a base coaxially arranged with the base. The base, the base, and the weft frames enclose a dome cavity, and an end of the weft frame facing the dome cavity is provided with a connecting cavity.
[0007] A plurality of mounting frames are provided between the base and the pedestal, which are evenly arranged in the connecting cavity along the longitudinal direction. Any two adjacent mounting frames and two adjacent latitudinal frames enclose a mounting cavity for connecting to the screen, and each mounting cavity is connected to at least one connecting cavity.
[0008] In one embodiment of the present application, the base includes a substrate and a base portion, and the substrate and the base portion are clamped together to form a connecting cavity for connecting the warp frame. The end of the base portion facing away from the substrate is evenly recessed with multiple mounting grooves for connecting the mounting frame.
[0009] In one embodiment of the present application, the mounting bracket is connected to the mounting slot, and one end of the mounting bracket facing the dome cavity is flush with the base.
[0010] In one embodiment of the present application, the base is provided with a limiting groove extending through the longitudinal frame, the longitudinal frame is passed through the limiting groove and connected to the base, and the limiting groove and the mounting groove evenly divide the circumference of the base;
[0011] One end of the longitudinal frame facing the spherical curtain cavity is flush with one end of the mounting frame facing the spherical curtain cavity.
[0012] In one embodiment of the present application, a plurality of clearance grooves are symmetrically provided on both sides of the longitudinal frame relative to the installation cavity, and a connecting groove is provided between two adjacent clearance grooves;
[0013] Each of the recesses is connected to a first mounting member, and one end of any of the first mounting members facing the adjacent first mounting member is provided with a first connecting member along the connecting groove, and the first connecting member is provided with a first mounting hole facing the mounting cavity.
[0014] In one embodiment of the present application, the mounting frame is passed through the latitudinal frame and is clamped with the inner wall of the connecting cavity to form a clearance cavity.
[0015] In one embodiment of the present application, a connecting structure is provided between the warp frame and the weft frame, one end of the connecting structure is connected to the warp frame and is arranged adjacent to the slot, and the other end is connected to the weft frame and connected to the connecting cavity.
[0016] In one embodiment of the present application, a plurality of communicating grooves are provided on the mounting frame at intervals along the latitudinal direction, and the mounting frame is provided with second mounting members on both sides of any communicating groove facing each other, and the second mounting members are provided with second connecting members relative to the communicating grooves.
[0017] In one embodiment of the present application, at least one mounting cavity is connected to both sides of the connecting cavity, and a control module for connecting to the screen is provided in the connecting cavity;
[0018] A plurality of audio components are evenly spaced in the connecting cavity.
[0019] In one embodiment of the present application, one end of the base is connected to a viewing platform and is tilted relative to the viewing platform. A reinforcement seat is provided between the base and the viewing platform, and the base and the reinforcement seat are integrally formed.
[0020] The spherical screen cavity surrounds the viewing platform.
[0021] By adopting the above technical solution, the present invention has the following advantages:
[0022] The design structure of the inner dome theater of the present application includes a base, a pedestal, and a warp frame, a weft frame, and a mounting frame arranged between the base and the pedestal. Among them, there are multiple warp frames, weft frames, and mounting frames, which are used to make the entire dome structure. A dome cavity will be formed inside the dome structure. After installation, the dome cavity will face the user. After multiple screens are seamlessly installed in the dome cavity, the display effect of the inner dome theater can be effectively improved.
[0023] At the same time, multiple slots are opened on the warp frame along the latitude direction, each slot can be connected to a weft frame, and multiple warp frames are evenly arranged relative to the base. Multiple warp frames are connected to the weft frame along the warp direction. The warp frame and the weft frame can be tightly connected through a simple structure to ensure the basic stability of the overall structure.
[0024] A connecting cavity is provided in the latitudinal frame. After the mounting frame between the base and the pedestal is installed, the mounting frame itself will be passed through the latitudinal frame, and the end of the mounting frame away from the bottom of the connecting cavity will be flush with the opening of the connecting cavity. The two adjacent mounting frames and the two adjacent latitudinal frames can enclose to form an installation cavity for installing the screen. The installation cavity itself is connected to at least one connecting cavity, so that the edge of the installed screen will be on the connecting cavity, and the screen can fit on the latitudinal frame and the mounting frame to prevent the inside of the connecting cavity from being contaminated. At the same time, the connecting cavity itself can be used to facilitate cable laying, which can effectively plan and limit cables to achieve the effect of improving space utilization.
[0025] Any three adjacent latitudinal frames can be enclosed to form two connected installation cavities under the action of two adjacent mounting frames, so that there is almost no gap between the screens of the inner dome, which can achieve the purpose of improving the viewing effect, and the connecting lines connecting the two screens are all in one connecting cavity, so that one connecting cavity can connect at least two screens. At the same time, the audio structure can be installed more conveniently in the connecting cavity, so that the audio equipment is between the two screens and on the back of the screen display. The screen can shield the audio equipment, effectively improving the viewing effect. At the same time, the audio equipment is installed in the latitudinal frame, which can improve space utilization. The audio equipment faces the gap between the two screens and uses this tiny gap to transmit sound, which can improve the sound transmission effect. Multiple audio equipment can be installed in each latitudinal space, which can improve the sound effect of the entire inner dome. Sound transmission in this way can make the sound source and the sound position in the screen consistent, thereby effectively improving the audio-visual effect of the entire inner dome theater. The above structure is relatively simple and has high structural strength. The entire screen is easy to design, which can ensure a good overall viewing effect, thereby improving the user experience of the entire inner dome theater. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.
[0027] Figure 1 This is a schematic structural diagram of the immersive sound-transparent inner dome theater of the present invention;
[0028] Figure 2 for Figure 1 A partial enlarged view of point A in the middle;
[0029] Figure 3 for Figure 1 A partial enlarged view of point B in the middle;
[0030] Figure 4 A cross-sectional view of the immersive sound-transparent inner dome theater of the present invention;
[0031] Figure 5 for Figure 4 A partial enlarged view of point C in the middle.
[0032] Description of Figure Numbers:
[0033] 1. Base; 11. Substrate; 12. Base; 13. Mounting slot; 14. Limiting slot; 2. Warp frame; 21. Slot; 22. Yield slot; 3. First mounting member; 31. First connecting member; 4. Connecting structure; 5. Weft frame; 51. Connecting cavity; 6. Mounting frame; 61. Second mounting member; 62. Mounting cavity; 7. Dome cavity; 8. Base; 81. Reinforced seat; 9. Viewing platform.
[0034] The purpose, features and advantages of the present invention will be further described with reference to the accompanying drawings and in conjunction with the embodiments. DETAILED DESCRIPTION
[0035] In order to make the purpose, technical solutions and advantages of this application more clearly understood, the present application is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this application and are not intended to limit this application.
[0036] The following is combined with Figure 1-5 The present invention is further described.
[0037] In order to achieve the purpose of improving the space utilization of an inner dome theater and enhancing the audio-visual effect, the present invention proposes an immersive sound-transparent inner dome theater, comprising a base 1, a warp frame 2 connected to the base 1 and arranged along the warp direction of the base 1, and a weft frame 5 connected to the warp frame 2 and arranged coaxially with the base 1. There are multiple warp frames 2, and the multiple warp frames 2 are connected to the base 1 and bisect the circumference of the base 1. The warp frame 2 is provided with multiple slots 21 for connecting to the weft frames 5 along the latitudinal direction. The end of the warp frame 2 away from the base 1 is connected to a base 8 coaxially arranged with the base 1. The base 1, the base 8 and the weft frames 5 enclose a dome cavity 7, and the end of the weft frame 5 facing the dome cavity 7 is provided with a connecting cavity 51;
[0038] A plurality of mounting frames 6 are provided between the base 1 and the pedestal 8 and are evenly arranged in the connecting cavity 51 along the longitudinal direction. Any two adjacent mounting frames 6 and two adjacent latitudinal frames 5 enclose a mounting cavity 62 for connecting to the screen, and each mounting cavity 62 is connected to at least one connecting cavity 51.
[0039] The design structure of the inner dome theater of the present application includes a base 1, a pedestal 8, and a warp frame 2, a weft frame 5, and a mounting frame 6 arranged between the base 1 and the pedestal 8. Among them, there are multiple warp frames 2, weft frames 5, and mounting frames 6, which are used to make the entire dome structure. A dome cavity 7 will be formed inside the dome structure. After installation, the dome cavity 7 faces the user. After multiple screens are seamlessly installed at the dome cavity 7, the display effect of the inner dome theater can be effectively improved.
[0040] At the same time, a plurality of slots 21 are provided on the warp frame 2 along the latitude direction, each slot 21 can be connected to a weft frame 5, and a plurality of warp frames 2 are evenly provided relative to the base 1. The plurality of warp frames 2 are connected to the weft frame 5 along the warp direction, and the warp frame 2 and the weft frame 5 can be tightly connected through a simple structure to ensure the basic stability of the overall structure.
[0041] A connecting cavity 51 is provided in the latitudinal frame 5. After the mounting frame 6 between the base 1 and the base 8 is installed, the mounting frame 6 itself will be passed through the latitudinal frame 5, and the end of the mounting frame 6 away from the bottom of the connecting cavity 51 will be flush with the opening of the connecting cavity 51. The two adjacent mounting frames 6 and the two adjacent latitudinal frames 5 can enclose to form an installation cavity 62 for installing the screen. The installation cavity 62 itself is connected to at least one connecting cavity 51, so that the edge of the installed screen will be on the connecting cavity 51, and the screen can fit on the latitudinal frame 5 and the mounting frame 6 to prevent the inside of the connecting cavity 51 from being contaminated. At the same time, the connecting cavity 51 itself can be used to facilitate cable laying, which can effectively plan and limit cables to achieve the effect of improving space utilization.
[0042] Any three adjacent latitudinal frames 5 can be enclosed to form two connected mounting cavities 62 under the action of two adjacent mounting frames 6, so that there is almost no gap between the screens of the inner dome screen, which can achieve the purpose of improving the viewing effect, and the connecting lines connecting the two screens are all in one connecting cavity 51, so that one connecting cavity 51 can connect at least two screens. At the same time, the connecting cavity 51 can be more conveniently installed with an audio structure, so that the audio equipment is between the two screens and on the back of the screen display. The screen can shield the audio equipment, effectively improving the viewing effect. At the same time, the audio equipment is installed in the latitudinal frame 5 , which can improve space utilization, and the audio equipment is facing the gap between the two screens, and this tiny gap is used to transmit sound, which can improve the sound transmission effect. Multiple audio equipment can be set in each latitudinal space, which can improve the sound effect of the entire inner dome. Sound transmission in this way can make the sound source and the sound position in the screen consistent, thereby effectively improving the audio-visual effect of the entire inner dome theater. The above structure is relatively simple and has high structural strength, and the entire screen is easy to design, which can ensure a good overall viewing effect, thereby improving the user experience of the entire inner dome theater.
[0043] Example 1:
[0044] The base 1 includes a substrate 11 and a base portion 12 , which are clamped together to form a connection cavity 51 for connecting to the warp frame 2 , and a plurality of mounting grooves 13 for connecting to the mounting frame 6 are evenly recessed at one end of the base portion 12 away from the substrate 11 .
[0045] The base 1 includes a substrate 11 and a base portion 12. The connecting cavity 51 between the substrate 11 and the base portion 12 can be used to install the warp frame 2. The warp frame 2 is located between the substrate 11 and the base portion 12 and is fixed by riveting and / or welding with multiple bolts, which can ensure the stability of the frame of the inner dome. A plurality of mounting grooves 13 are provided on the base portion 12. The plurality of mounting grooves 13 evenly divide the circumference of the entire base portion 12, so that the specifications of adjacent mounting cavities 62 are similar, which can ensure that the screen is easy to arrange and the entire structure is easy to design.
[0046] The screen can be installed more conveniently, so that the screen can be basically seamlessly spliced, ensuring the display effect of the entire inner dome.
[0047] At the same time, under the above structure, the warp frame 2 and the end of the mounting frame 6 facing the dome cavity 7 are not on the same horizontal line. The warp frame 2 and the mounting frame 6 can be installed one above the other at the same longitude of the base 1. The warp frame 2 is only used to improve the stability of the base 12 of the entire frame and ensure the structural strength of the inner dome.
[0048] The mounting bracket 6 is connected to the mounting groove 13 , and one end of the mounting bracket 6 facing the dome cavity 7 is flush with the base 12 , which can be conveniently installed between the screens at the bottom of the inner dome to achieve seamlessness. The base 12 is used to support the relatively fragile screen, thereby protecting the screen.
[0049] Example 2:
[0050] The base 12 is provided with a limiting groove 14 relative to the warp frame 2. The warp frame 2 is passed through the limiting groove 14 and connected to the base 11. The limiting groove 14 and the mounting groove 13 evenly divide the circumference of the base 12.
[0051] One end of the longitudinal frame 2 facing the spherical curtain cavity 7 is flush with one end of the mounting frame 6 facing the spherical curtain cavity 7 .
[0052] A limiting groove 14 connected to the connecting cavity 51 is provided on the base 12, and the warp frame 2 is passed through the limiting groove 14. Under this structure, the warp frame 2 can have the same function as the mounting frame 6, and can be enclosed together with the mounting frame 6 to form the mounting cavity 62, thereby saving space.
[0053] A plurality of clearance grooves 22 are symmetrically provided on both sides of the longitudinal frame 2 relative to the installation cavity 62, and a connecting groove is provided between two adjacent clearance grooves 22;
[0054] Each of the recesses 22 is connected to a first mounting member 3 . A first connecting member 31 is provided along the connecting groove at one end of any first mounting member 3 facing the adjacent first mounting member 3 . The first connecting member 31 is provided with a first mounting hole facing the mounting cavity 62 .
[0055] In order to enable the warp frame 2 to have the function of the mounting frame 6 and to achieve the purpose of improving space utilization, a clearance groove 22 is opened on the warp frame 2, and two clearance grooves 22 are symmetrically opened on both sides of the same horizontal height of the warp frame 2, and a connecting groove is opened between the two clearance grooves 22. The first mounting member 3 can be arranged in the clearance groove 22, and the first mounting member 3 is arranged toward the connecting groove. The first connecting member 31 is provided with a first mounting hole. Through this structure, the distance gap between adjacent mounting cavities 62 can be made to ensure that the first mounting hole is installed on the side of the screen, so that the inner ball screen can achieve seamless splicing of the base 12.
[0056] The present invention also has other structures and beneficial effects:
[0057] The mounting frame 6 is passed through the latitudinal frame 5 and is clamped with the inner wall of the connecting cavity 51 to form a clearance cavity, so that the connecting cavity 51 will not be blocked after the mounting frame 6 is passed through the connecting cavity 51. The connecting cavity 51 can be connected to the connecting cavity 51 by the clearance cavity, so that cables can be freely laid in the connecting cavity 51, which is used to improve space utilization and realize protection of the internal precision structure. It can effectively improve the protection of the screen pins.
[0058] A connecting structure 4 is provided between the warp frame 2 and the weft frame 5. One end of the connecting structure 4 is connected to the warp frame 2 and is arranged adjacent to the slot 21, and the other end is connected to the weft frame 5 and is connected to the connecting cavity 51. In addition to being fixed through the slot 21, the warp space and the weft frame 5 can also be reinforced by using the connecting structure 4. The connecting structure 4 is used to be installed adjacent to the slot 21, rather than being directly fixed in the weft frame 5 toward the warp frame 2 by bolts. This can avoid stress concentration of the warp frame 2 at the slot 21. The above structure can structurally protect the frame itself and improve the strength of the frame structure.
[0059] The mounting frame 6 is provided with a plurality of communicating grooves spaced apart along the latitudinal direction. The mounting frame 6 is provided with second mounting members 61 facing each other on both sides of any communicating groove. The second mounting member 61 is provided with a second connecting member opposite to the communicating groove.
[0060] A connecting groove is provided on the mounting member, and the connecting groove and the adjacent connecting groove are at the same level, which can ensure that the screen is laid flat. The second mounting member 61 has a similar structure and similar function to the first mounting member 3. The purpose of the connecting groove and the second connecting member is also to reduce the spacing between the screens to ensure the viewing effect.
[0061] At least one mounting cavity 62 is connected to both sides of the connecting cavity 51 , and a control module for connecting to the screen is provided in the connecting cavity 51 ;
[0062] A plurality of audio components are evenly spaced apart in the connecting cavity 51 .
[0063] Adjacent installation cavities 62 will be connected to a connecting cavity 51, which can facilitate the connecting cavity 51 to protect the pins of the screen and achieve the purpose of improving space utilization. At the same time, the audio component in the connecting cavity 51 is behind the screen, and multiple speakers can be conveniently installed. The audio component is set corresponding to the gap between adjacent screens, which can improve sound transmittance and ensure more natural sound transmission. It also makes the sound more naturally correspond to the current sound position, which can improve the user's audio-visual experience.
[0064] In one embodiment of the present application, one end of the base 8 is connected to the viewing platform 9 and is tilted relative to the viewing platform 9. A reinforcement seat 81 is provided between the base 8 and the viewing platform 9. The base 8 and the reinforcement seat 81 are integrally formed.
[0065] The spherical screen cavity 7 surrounds the viewing platform 9 .
[0066] A plurality of seats can be installed on the viewing platform 9 to enable the inner dome theater to accommodate more users while ensuring the viewing effect.
[0067] The reinforcement seat 81 is used to support the entire frame structure to prevent the frame itself from being damaged. The integrally formed base 8 and reinforcement seat 81 can prevent the frame itself from being damaged. The spherical curtain cavity 7 faces the viewing platform 9 to improve the viewing effect and viewing quality.
[0068] The same or similar numbers in the drawings of this embodiment correspond to the same or similar parts; in the description of this application, it should be understood that if the terms "upper", "lower", "left", "right", etc. indicate an orientation or position relationship, they are based on the orientation or position relationship shown in the drawings. This is only for the convenience of describing this application and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operate in a specific orientation. Therefore, the terms describing the position relationship in the drawings are only used for illustrative purposes and cannot be understood as a limitation on this patent. For ordinary technicians in this field, the specific meanings of the above terms can be understood according to specific circumstances.
[0069] The above are only preferred embodiments of the present application and are not intended to limit the present application. Any modifications, equivalent replacements, and improvements made within the spirit and principles of the present application should be included in the scope of protection of the present application.
Claims
1. An immersive sound-transparent inner dome theater, characterized in that: The invention comprises a base, a warp frame connected to the base and arranged along the warp direction of the base, and a weft frame connected to the warp frame and arranged coaxially with the base. The warp frames are provided in plurality, and the plurality of warp frames are connected to the base and bisect the circumference of the base. The warp frames are provided with a plurality of slots for connecting to the weft frames along the latitudinal direction. The end of the warp frame away from the base is connected to a base coaxially arranged with the base. The base, the base and the weft frames enclose a spherical curtain cavity, and the end of the weft frame facing the spherical curtain cavity is provided with a connecting cavity. A plurality of mounting frames are provided between the base and the pedestal, which are evenly arranged in the connecting cavity along the longitudinal direction. Any two adjacent mounting frames and two adjacent latitudinal frames enclose a mounting cavity for connecting to the screen, and each mounting cavity is connected to at least one connecting cavity.
2. The immersive sound-transparent inner dome theater according to claim 1, characterized in that: The base includes a substrate and a base portion, wherein the substrate and the base portion are clamped together to form a connection cavity for connecting to the warp frame, and a plurality of mounting grooves for connecting to the mounting frame are evenly recessed at one end of the base portion away from the substrate.
3. The immersive sound-transparent inner dome theater according to claim 2, characterized in that: The mounting frame is connected to the mounting slot, and one end of the mounting frame facing the spherical curtain cavity is flush with the base.
4. The immersive sound-transparent inner dome theater according to claim 2, characterized in that: The base is provided with a limiting groove relative to the longitudinal frame, the longitudinal frame is passed through the limiting groove and connected to the base, and the limiting groove and the mounting groove evenly divide the circumference of the base; One end of the longitudinal frame facing the spherical curtain cavity is flush with one end of the mounting frame facing the spherical curtain cavity.
5. The immersive sound-transparent inner dome theater according to claim 4, characterized in that: A plurality of clearance grooves are symmetrically provided on both sides of the longitudinal frame relative to the installation cavity, and a connecting groove is provided between two adjacent clearance grooves; Each of the recesses is connected to a first mounting member, and one end of any of the first mounting members facing the adjacent first mounting member is provided with a first connecting member along the connecting groove, and the first connecting member is provided with a first mounting hole facing the mounting cavity.
6. The immersive sound-transparent inner dome theater according to claim 1, characterized in that: The mounting frame is passed through the latitudinal frame and is clamped with the inner wall of the connecting cavity to form a clearance cavity.
7. The immersive sound-transparent inner dome theater according to claim 1, characterized in that: A connecting structure is provided between the warp frame and the weft frame. One end of the connecting structure is connected to the warp frame and is arranged adjacent to the slot, and the other end is connected to the weft frame and is connected to the connecting cavity.
8. The immersive sound-transparent inner dome theater according to claim 1, characterized in that: The mounting frame is provided with a plurality of communicating grooves spaced apart along the latitudinal direction. The mounting frame is provided with second mounting members on both sides of any communicating groove facing each other. The second mounting member is provided with a second connecting member relative to the communicating groove.
9. The immersive sound-transparent inner dome theater according to claim 1, characterized in that: Both sides of the connecting cavity are connected to at least one mounting cavity, and a control module for connecting to the screen is provided in the connecting cavity; A plurality of audio components are evenly spaced in the connecting cavity.
10. The immersive sound-transparent inner dome theater according to claim 1, characterized in that: One end of the base is connected to a viewing platform and is tilted relative to the viewing platform. A reinforcement seat is provided between the base and the viewing platform, and the base and the reinforcement seat are integrally formed. The spherical screen cavity surrounds the viewing platform.