Plant module and construction equipment
By setting up airflow pipes in the factory module, the problem of increasing the height of the clean factory building is solved, and the effect of adapting to different building floor heights, reducing costs and shortening construction cycles is achieved.
Patent Information
- Application Number
- CN202421880495.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-05
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-08-05
AI Technical Summary
The technical mezzanine layout of the existing clean factory requires a height space of 2 to 6 meters, which leads to an increase in the height of the factory, which increases costs and may affect the design and use of other floors inside the building, and is difficult to construct.
Design a factory module, including the main body of the factory and technical mezzanine, with airflow pipes in the mezzanine, the height of the factory module is smaller than the building floor height, adapting to different building floor heights, reducing installation costs and improving space utilization.
By setting up airflow pipes in the factory module, we ensure that user operations are carried out reliably, adapt to different building floor heights, reduce costs and shorten construction cycles.
Smart Images

Figure CN223089003U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of factory building assembly, in particular to a factory building module and a construction device with the factory building module. Background Art
[0002] Generally, a clean factory building will build a technical mezzanine on the top to arrange various pipeline lines. And the arrangement of the technical mezzanine generally requires a height space of 2-6 meters, which will greatly increase the height of the factory building, is not conducive to the setting of the clean factory building, and will also increase the cost due to the increase of its own height. Moreover, when it is necessary to build a clean factory building inside a building, it may not be possible to construct due to its own height, or the construction of the clean factory building may affect the design and use of other floors in the building, and there is room for improvement. Summary of the Utility Model
[0003] The utility model aims to solve at least one of the technical problems existing in the prior art. For this purpose, the utility model provides a factory building module, which can be used for different purposes, and can ensure the reliable operation of user operations. Moreover, the factory building module can adapt to different building floor heights, reduce the setting cost, improve the space utilization rate, and shorten the construction period.
[0004] The factory building module according to an embodiment of the utility model includes: a factory building main body, in which a factory building space is formed; a technical mezzanine, which is installed on the top of the factory building main body. The technical mezzanine includes an air flow pipeline, the outlet end of the air flow pipeline faces the inside of the factory building space and is used for communicating with the equipment in the factory building space, and the height of the technical mezzanine and the height of the factory building main body together are less than the building floor height.
[0005] The factory building module according to an embodiment of the utility model can be used for different purposes by setting the factory building space, that is, the applicable range of the factory building module can be increased. And an air flow pipeline is arranged in the technical mezzanine to supply air to the equipment in the factory building space to ensure the reliable operation of user operations. Moreover, by making the height of the factory building module less than the building floor height, the factory building module can adapt to different building floor heights, reduce the setting cost, improve the space utilization rate, and shorten the construction period.
[0006] In the factory building module according to some embodiments of the utility model, a plurality of mounting columns are arranged on the top of the factory building main body, and the plurality of mounting columns are distributed in a ring shape. The technical mezzanine includes a side fence, the side fence is connected between two adjacent mounting columns, the plurality of mounting columns define a mezzanine space, and the air flow pipeline is located in the mezzanine space.
[0007] For the factory building module according to some embodiments of the present utility model, the vertical thickness of the side fence is less than the vertical height of the installation column, the upper surface of the side fence is flush with the upper end surface of the installation column, and the lower surface of the side fence is spaced apart from the top surface of the factory building main body to define a top gap.
[0008] For the factory building module according to some embodiments of the present utility model, the extension length of the factory building main body in the first direction is greater than the extension length in the second direction; wherein, a plurality of the installation columns are distributed in multiple groups in one-to-one correspondence along the first direction, and a plurality of the installation columns are distributed in two groups in one-to-one correspondence along the second direction.
[0009] For the factory building module according to some embodiments of the present utility model, the air flow pipeline includes an inflow pipeline and an outflow pipeline, and the inflow pipeline and the outflow pipeline are distributed at intervals.
[0010] For the factory building module according to some embodiments of the present utility model, the inflow pipeline includes an inflow main pipeline and a plurality of inflow branch pipelines, and the plurality of inflow branch pipelines are respectively communicated with the inflow main pipeline; and / or, the outflow pipeline includes an outflow main pipeline and a plurality of outflow branch pipelines, and the plurality of outflow branch pipelines are respectively communicated with the outflow main pipeline.
[0011] For the factory building module according to some embodiments of the present utility model, both the inflow main pipeline and the outflow main pipeline extend along the first direction and are distributed at intervals along the second direction, and the plurality of inflow branch pipelines and the plurality of outflow branch pipelines are distributed at intervals between the inflow main pipeline and the outflow main pipeline.
[0012] For the factory building module according to some embodiments of the present utility model, both the inflow branch pipelines and the outflow branch pipelines extend along the second direction, and the plurality of inflow branch pipelines and the plurality of outflow branch pipelines are distributed alternately along the first direction.
[0013] The present utility model also proposes a building device.
[0014] For the building device according to the embodiments of the present utility model, it includes a building main body and the factory building module described in any one of the above, the building main body forms a floor height space, the vertical height in the floor height space is the building floor height, and the factory building module is suitable for being integrally installed into the floor height space.
[0015] For the building device according to some embodiments of the present utility model, the building main body is provided with a plurality of the floor height spaces, the factory building modules are multiple, and the multiple factory building modules are suitable for being installed into the multiple floor height spaces in one-to-one correspondence.
[0016] The advantages of the building device and the above-mentioned factory building module relative to the prior art are the same, and will not be elaborated here.
[0017] Additional aspects and advantages of the present utility model will be given in part in the following description, become apparent in part from the following description, or be learned through the practice of the present utility model. Description of the Drawings
[0018] The above and / or additional aspects and advantages of the present utility model will become apparent and be readily understood from the description of the embodiments in conjunction with the following drawings, in which:
[0019] Figure 1 is a schematic structural view of a factory building module according to an embodiment of the present utility model;
[0020] Figure 2 is a schematic structural view of a building device according to an embodiment of the present utility model Figure 1 ;
[0021] Figure 3 is a schematic structural view of a building device according to an embodiment of the present utility model Figure 2 .
[0022] Reference Signs:
[0023] Factory building module 100, building device 200,
[0024] Factory building main body 1, technical mezzanine 2, installation column 21, side fence 22, mezzanine space 23, top clearance 24, air flow pipeline 25, inlet flow pipeline 251, inlet flow main pipeline 2511, inlet flow branch pipeline 2512, outlet flow pipeline 252, outlet flow main pipeline 2521, outlet flow branch pipeline 2522,
[0025] Building main body 201, floor height space 202. Detailed Description of the Embodiments
[0026] The embodiments of the present utility model will be described in detail below. Examples of the embodiments are shown in the drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are only used to explain the present utility model and should not be construed as a limitation of the present utility model.
[0027] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by terms such as "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present utility model. In addition, features defined as "first", "second" may explicitly or implicitly include one or more of such features. In the description of the present utility model, unless otherwise stated, the meaning of "a plurality of" is two or more.
[0028] In the description of the present utility model, it should be noted that, unless otherwise clearly specified and defined, the terms "installation", "connection", "coupling" shall be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.
[0029] Next, refer to Figures 1 - 3 Describe the factory building module 100 according to an embodiment of the present utility model. By setting the factory building space, the factory building module 100 can be used for different purposes, that is, the applicable range of the factory building module 100 can be increased. And an air flow pipeline 25 is provided in the technical mezzanine 2 to supply air to the equipment in the factory building space to ensure the reliable operation of the user's operation. Moreover, by making the height of the factory building module 100 less than the building storey height, the factory building module 100 can adapt to different building storey heights, and can reduce the setting cost, improve the space utilization rate, and shorten the construction period.
[0030] As Figures 1 - 3 shown, the factory building module 100 according to an embodiment of the present utility model includes: a factory building main body 1 and a technical mezzanine 2.
[0031] A factory building space is formed inside the factory building main body 1; the technical mezzanine 2 is installed on the top of the factory building main body 1. The technical mezzanine 2 includes an air flow pipeline 25. The outlet end of the air flow pipeline 25 faces the inside of the factory building space and is open, and the air flow pipeline 25 is used to communicate with the equipment in the factory building space. The sum of the height of the technical mezzanine 2 and the height of the factory building main body 1 is less than the building storey height.
[0032] Specifically, the factory building module 100 is a prefabricated module, which can realize the modularization of the factory building structure and shorten the construction period. The factory building module 100 includes a factory building main body 1 and a technical mezzanine 2, which form a factory building space for providing an operating space for users. For example, it can provide a space for technical research, product production or product testing for scientific research personnel, production personnel, inspection personnel, etc. That is, the factory building space can be used as a laboratory, a workshop, etc. The technical mezzanine 2 can be used to accommodate necessary pipelines or lines, etc. By setting the technical mezzanine 2 at the top of the factory building, the technical mezzanine 2 can be separated from the factory building space to avoid interference between the two, ensuring that the factory building space and the technical mezzanine 2 can be used to realize different functions respectively. Moreover, an air flow pipeline 25 is provided in the technical mezzanine 2, and the air flow pipeline 25 allows gas to pass through, that is, the air flow pipeline 25 can be used to transport gas.
[0033] In addition, by opening the outlet end of the air flow pipeline 25 towards the factory building space, gas can be transported into the factory building space through the air flow pipeline 25. For example, high-purity oxygen, nitrogen or carbon dioxide, etc. required by the user can be transported into the factory building space for the user to use. And by connecting the air flow pipeline 25 with the equipment in the factory building space, the required gas can be directly transported to the equipment in the factory building space through the air flow pipeline 25, facilitating the user's research or inspection work, etc.
[0034] It should be noted that the inlet end of the air flow pipeline 25 can be connected to an external gas storage tank or other gas supply equipment to continuously supply gas to the equipment in the factory building space through the air flow pipeline 25, thereby ensuring the reliable progress of research or inspection work.
[0035] Moreover, the factory building space needs to have a certain height to allow users to move inside and engage in scientific research, production and other activities. At the same time, the technical mezzanine 2 also needs to have a certain height to facilitate the accommodation of the air flow pipeline 25 and realize the installation of the air flow pipeline 25. And the sum of the height of the technical mezzanine 2 and the height of the factory building main body 1 is less than the building storey height, and the sum of the height of the technical mezzanine 2 and the height of the factory building main body 1 is the height of the factory building module 100, so that the height of the factory building module 100 is less than the building storey height, and then it is convenient to set the factory building module 100 in the building space to realize the installation of the factory building module 100 in the building space.
[0036] It should be noted that when a factory building needs to be constructed in a building space, the factory building module 100 can be designed and manufactured in advance according to the building floor height and the usage requirements of the factory building. That is, the air flow pipeline 25 in the technical mezzanine 2 can be designed in advance to minimize the height of the technical mezzanine 2, so that the factory building module 100 can adapt to different building floor heights, avoiding the waste of manpower and material resources caused by the inability to set up the factory building module 100 due to insufficient building floor height, reducing the setting cost, and avoiding the impact of the setting of the factory building module 100 on the design and use of other floors, which is conducive to improving the space utilization rate.
[0037] Thus, by setting a factory building space in the factory building main body 1, users can engage in different jobs in the factory building space. And a technical mezzanine 2 is provided at the top of the factory building main body 1, and an air flow pipeline 25 is provided in the technical mezzanine 2, through which air can be supplied to the equipment in the factory building space. Moreover, the sum of the height of the factory building space and the height of the technical mezzanine 2 is less than the building floor height, so that the factory building module 100 can adapt to different building floor heights and avoid the impact of the setting of the factory building module 100 on the design and use of other floors.
[0038] According to the factory building module 100 of the embodiment of the present utility model, by setting a factory building space, the factory building module 100 can be used for different purposes, increasing the applicable range of the factory building module 100. And an air flow pipeline 25 is provided in the technical mezzanine 2 to supply air to the equipment in the factory building space to ensure the reliable operation of user operations. Moreover, by making the height of the factory building module 100 less than the building floor height, the factory building module 100 can adapt to different building floor heights, reduce the setting cost, improve the space utilization rate, and shorten the construction period.
[0039] In some embodiments, a plurality of mounting columns 21 are provided at the top of the factory building main body 1, and the plurality of mounting columns 21 are annularly distributed. The technical mezzanine 2 includes side fences 22, and the side fences 22 are connected between adjacent two mounting columns 21. The plurality of mounting columns 21 define a mezzanine space 23, and the air flow pipeline 25 is located in the mezzanine space 23.
[0040] Specifically, the technical mezzanine 2 is arranged at the top of the factory building main body 1. Installation columns 21 are arranged at the top of the factory building main body 1. The installation columns 21 are used to limit the height of the technical mezzanine 2, and the number of the installation columns 21 is multiple, that is, two, three or more installation columns 21 can be arranged at the top of the factory building main body 1 to jointly limit the height of the technical mezzanine 2 by the multiple installation columns 21. Moreover, the multiple installation columns 21 are distributed in a ring shape, that is, the multiple installation columns 21 are spaced apart along the circumferential direction of the factory building main body 1 to limit the height of the technical mezzanine 2 at different positions on the factory building main body 1 by the multiple installation columns 21, so as to prevent the height of the technical mezzanine 2 from being too low or too high. If it is too low, it will cause the air flow pipeline 25 not to be accommodated, and if it is too high, it will cause waste of space.
[0041] Meanwhile, the multiple installation columns 21 can jointly define a mezzanine space 23. The mezzanine space 23 can be used to provide a setting space for the components in the technical mezzanine 2. And by arranging the air flow pipeline 25 in the mezzanine space 23, the installation of the air flow pipeline 25 in the technical mezzanine 2 can be realized. It should be noted that the heights of the multiple installation columns 21 can be constructed to be equal so that the heights at all parts in the mezzanine space 23 are consistent, which is convenient for accommodating the air flow pipeline 25.
[0042] In addition, the technical mezzanine 2 further includes side fences 22. The side fences 22 are used to limit the scope of the mezzanine space 23 in the circumferential direction. By connecting the side fences 22 between two adjacent installation columns 21, the two adjacent installation columns 21 can support the side fences 22 to realize the installation and fixation of the side fences 22. And the side fences 22 can also support the two installation columns 21 connected thereto to prevent the installation columns 21 from tilting, that is, to ensure that the heights of the installation columns 21 will not change. Furthermore, the side fences 22 and the installation columns 21 can jointly define the mezzanine space 23 to facilitate the accommodation of the air flow pipeline 25.
[0043] In the embodiment as Figures 1 - 3 shown, six installation columns 21 and six side fences 22 are arranged at the top of the factory building main body 1. The six side fences 22 can connect the six installation columns 21 in sequence, that is, for each side fence 22, two installation columns 21 are arranged to support it, which can improve the stability and reliability of supporting the side fences 22, and further ensure the reliability of accommodating the air flow pipeline 25.
[0044] In some embodiments, the vertical thickness of the side fence 22 is less than the vertical height of the installation column 21. The upper surface of the side fence 22 is flush with the upper end surface of the installation column 21, and the lower surface of the side fence 22 is spaced apart from the top surface of the factory building main body 1 to define a top gap 24.
[0045] Specifically, the side fence 22 is connected between two adjacent mounting columns 21. By making the vertical thickness of the side fence 22 less than the vertical height of the mounting column 21, the side fence 22 can be connected to the upper, middle, or lower part of the mounting column 21, which can achieve the support of the side fence 22. And by making the upper surface of the side fence 22 flush with the upper end surface of the mounting column 21, the side fence 22 can be connected to the upper part of the mounting column 21, and the mounting column 21 can be supported from the upper part of the mounting column 21 through the side fence 22 to prevent the mounting column 21 from tilting. Moreover, a certain distance can be provided between the side fence 22 and the top surface of the factory building main body 1, so that the lower surface of the side fence 22 is spaced apart from the top surface of the factory building main body 1 and together they define a top gap 24. The top gap 24 allows pipelines to pass through. Thus, the inlet end of the air flow pipeline 25 can extend out from the top gap 24 and be connected to an external gas storage tank or other gas supply equipment, so that gas can be transported along the air flow pipeline 25 to the equipment in the factory building space for the convenience of users.
[0046] In some embodiments, the extension length of the factory building main body 1 in the first direction is greater than the extension length in the second direction. Among them, multiple mounting columns 21 are distributed in multiple groups one by one along the first direction, and multiple mounting columns 21 are distributed in two groups one by one along the second direction.
[0047] Specifically, the factory building main body 1 forms a factory building space, and the factory building main body 1 extends along the first direction and the second direction, which can increase the setting length of the factory building main body 1 in the first direction and the second direction. Further, the size of the factory building space can be increased, and the volume of the factory building space can be increased to facilitate users to carry out different operations in the factory building space. And by making the extension length of the factory building space in the first direction greater than the extension length in the second direction, the factory building space can be in the shape of a cuboid to adapt to most existing building spaces. In addition, by distributing multiple mounting columns 21 in multiple groups along the first direction, multiple groups of mounting columns 21 can be set along the first direction, and each group of mounting columns 21 is set in one-to-one correspondence. Thus, a mezzanine space 23 can be jointly defined by multiple groups of mounting columns 21, and the situation that the length of the side fence 22 is too long, resulting in a reduction in the structural strength of the side fence 22, can be avoided. At the same time, by distributing multiple mounting columns 21 in two groups along the second direction, two groups of mounting columns 21 can be set along the second direction, and each group of mounting columns 21 is set in one-to-one correspondence. Thus, a mezzanine space 23 can be jointly defined by two groups of mounting columns 21.
[0048] Further, multiple mounting columns 21 can be spaced apart along the first direction and the second direction respectively, so as to set the mounting columns 21 at different positions in both the first direction and the second direction at the same time to jointly limit the mezzanine space 23.
[0049] In some embodiments, the air flow pipeline 25 includes an inlet pipeline 251 and an outlet pipeline 252, and the inlet pipeline 251 and the outlet pipeline 252 are spaced apart.
[0050] Specifically, the air flow pipeline 25 is used to allow gas to flow inside it to transport the gas into the plant space. The air flow pipeline 25 includes an inlet pipeline 251 and an outlet pipeline 252. The inlet pipeline 251 is used to allow external gas to enter the air flow pipeline 25 therefrom, and the outlet pipeline 252 is used to allow the gas in the air flow pipeline 25 to flow out therefrom, and then can be transported into the plant space. Moreover, the inlet pipeline 251 and the outlet pipeline 252 are spaced apart to avoid interference between the two, resulting in gas pollution or incorrect connection of the inlet pipeline 251 and the outlet pipeline 252 due to the inability to distinguish between the inlet pipeline 251 and the outlet pipeline 252.
[0051] In some embodiments, the inlet pipeline 251 includes an inlet main pipeline 2511 and a plurality of inlet branch pipelines 2512, and the plurality of inlet branch pipelines 2512 are respectively communicated with the inlet main pipeline 2511.
[0052] Specifically, the inlet pipeline 251 can be communicated with a gas storage tank or other gas supply equipment, so that the gas in the gas storage tank or other gas supply equipment can enter the air flow pipeline 25 from the inlet pipeline 251. At the same time, an inlet main pipeline 2511 and a plurality of inlet branch pipelines 2512 are arranged in the inlet pipeline 251, and both the inlet main pipeline 2511 and the plurality of inlet branch pipelines 2512 allow gas to pass through. The plurality of inlet branch pipelines 2512 can be respectively communicated with the inlet main pipeline 2511, that is, the gas in each inlet branch pipeline 2512 can enter the inlet main pipeline 2511, and then can enter the plant space to meet the user's needs.
[0053] Furthermore, the plurality of inlet branch pipelines 2512 can be respectively communicated with gas storage tanks storing different gases, that is, different gases can be transported into the plant space through the plurality of inlet branch pipelines 2512 and the inlet main pipeline 2511 to meet different needs of users and is conducive to improving user satisfaction.
[0054] In some other embodiments, the outlet pipeline 252 includes an outlet main pipeline 2521 and a plurality of outlet branch pipelines 2522, and the plurality of outlet branch pipelines 2522 are respectively communicated with the outlet main pipeline 2521.
[0055] Specifically, the outflow pipeline 252 can be connected to the equipment in the plant space, so that the air flow in the outflow pipeline 252 can flow to the equipment in the plant space. At the same time, an outflow main pipeline 2521 and a plurality of outflow branch pipelines 2522 are arranged in the outflow pipeline 252, and both the outflow main pipeline 2521 and the plurality of outflow branch pipelines 2522 allow gas to pass through. The plurality of outflow branch pipelines 2522 can be respectively connected to the outflow main pipeline 2521, so that the gas in the outflow main pipeline 2521 can flow to different outflow branch pipelines 2522, and then can flow to different equipment in the plant space through different outflow branch pipelines 2522 to meet the user's needs.
[0056] Furthermore, the plurality of outflow branch pipelines 2522 can be respectively connected to the equipment that requires different gases, that is, different gases can be transported to different equipment in the plant space through the plurality of outflow branch pipelines 2522 and the outflow main pipeline 2521 to meet different needs of users, which is beneficial to improving user satisfaction.
[0057] It should be noted that valves can be provided on each inflow branch pipeline 2512 and outflow branch pipeline 2522 to control the on-off of the inflow branch pipeline 2512 and the outflow branch pipeline 2522, and to avoid gas pollution caused by gas mixing in the air flow pipeline 25 or gas being wrongly transported to other equipment.
[0058] In some embodiments, the inflow main pipeline 2511 and the outflow main pipeline 2521 both extend along the first direction and are spaced apart along the second direction, and the plurality of inflow branch pipelines 2512 and the plurality of outflow branch pipelines 2522 are spaced apart and distributed between the inflow main pipeline 2511 and the outflow main pipeline 2521.
[0059] Specifically, the extension length of the plant main body 1 along the first direction is greater than the extension length along the second direction. By extending both the inflow main pipeline 2511 and the outflow main pipeline 2521 along the first direction, the extension lengths of the inflow main pipeline 2511 and the outflow main pipeline 2521 can be made longer, so as to facilitate connecting the inflow main pipeline 2511 and the outflow main pipeline 2521 to the plurality of inflow branch pipelines 2512 and the plurality of outflow branch pipelines 2522 respectively. And by spacing the inflow main pipeline 2511 and the outflow main pipeline 2521 apart along the second direction, the inflow main pipeline 2511 and the outflow main pipeline 2521 can be arranged in parallel to avoid interference between them, resulting in gas pollution, or incorrect connection of the inflow pipeline 251 and the outflow pipeline 252 due to the inability to distinguish between the inflow pipeline 251 and the outflow pipeline 252.
[0060] In some embodiments, both the inflow branch pipelines 2512 and the outflow branch pipelines 2522 extend along the second direction, and the plurality of inflow branch pipelines 2512 and the plurality of outflow branch pipelines 2522 are staggered and distributed along the first direction.
[0061] Specifically, the inflow main pipeline 2511 and the outflow main pipeline 2521 extend along the first direction, so that the set lengths of the inflow main pipeline 2511 and the outflow main pipeline 2521 can be longer. And the inflow branch pipelines 2512 and the outflow branch pipelines 2522 extend along the second direction, which is convenient for connecting multiple inflow branch pipelines 2512 to the inflow main pipeline 2511 at the same time, and is also convenient for connecting multiple outflow branch pipelines 2522 to the outflow main pipeline 2521 at the same time. Furthermore, it is convenient for the gas in multiple inflow branch pipelines 2512 to enter the inflow main pipeline 2511, and it is also convenient for the gas in the outflow main pipeline 2521 to enter the plant space from different outflow branch pipelines 2522.
[0062] In addition, by staggering the distribution of multiple inflow branch pipelines 2512 and multiple outflow branch pipelines 2522 along the first direction, the multiple inflow branch pipelines 2512 and the multiple outflow branch pipelines 2522 can be spaced apart, so that it is convenient to transport the gas in the gas storage tanks at different positions to the inflow main pipeline 2511 through the inflow branch pipelines 2512 at different positions, and it is also convenient to transport the gas in the outflow main pipeline 2521 to different positions in the plant space through the outflow branch pipelines 2522 at different positions to meet different needs of users.
[0063] The present utility model also provides a building equipment 200.
[0064] The building equipment 200 according to the embodiment of the present utility model includes a building main body 201 and the plant module 100 of any one of the above. The building main body 201 forms a floor height space 202, and the vertical height in the floor height space 202 is the building floor height. The plant module 100 is suitable for being integrally installed in the floor height space 202.
[0065] Specifically, as Figures 2 - 3 shown, the plant module 100 includes a plant space and a technical mezzanine 2. The plant space can provide an operating space for users, and the technical mezzanine 2 can be used for laying pipelines or lines, etc., to ensure the reliable operation of users. And the plant module 100 is a prefabricated module, that is, the plant module 100 can be set at different positions, and the plant module 100 can play a role. When it is necessary to construct a plant in the building main body 201, the way of setting the plant module 100 in the building main body 201 can be adopted, that is, the plant module 100 can be integrally installed in the floor height space 202 in the building main body 201, and this way can effectively shorten the construction period.
[0066] Furthermore, the building main body 201 has a floor height space 202, and the vertical height within the floor height space 202 is the building floor height. When it is necessary to install the factory building module 100 within the building main body 201, the height of the factory building module 100 can be made less than the building floor height to ensure that the floor height space 202 can accommodate the factory building module 100, thereby ensuring the reliable installation of the factory building module 100.
[0067] In some embodiments, the building main body 201 is provided with a plurality of floor height spaces 202, and there are a plurality of factory building modules 100, and the plurality of factory building modules 100 are adapted to be installed into the plurality of floor height spaces 202 in one-to-one correspondence.
[0068] Specifically, a plurality of floor height spaces 202 are provided within the building main body 201, that is, the plurality of floor height spaces 202 can be respectively used for different purposes. At the same time, the number of factory building modules 100 can be made plural, and the plurality of factory building modules 100 can also be respectively used for different purposes. The plurality of factory building modules 100 are installed into the plurality of floor height spaces 202 in one-to-one correspondence, that is, for each factory building module 100, there is a floor height space 202 that can accommodate it, which can avoid interference between the plurality of factory building modules 100, resulting in the inability to install the factory building modules 100. Moreover, this can also enable the plurality of floor height spaces 202 within the same building main body 201 to be respectively used for different purposes, which is conducive to improving user satisfaction.
[0069] In the description of this specification, the descriptions with reference to terms such as "one embodiment", "some embodiments", "illustrative embodiments", "examples", "specific examples", or "some examples" etc. mean that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples.
[0070] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the claims and their equivalents.
Claims
1. A factory building module, characterized in that, Comprising: The main body of the factory building, within which a factory building space is formed; A technical mezzanine, which is installed on the top of the main body of the factory building. The technical mezzanine includes an air flow pipeline, the outlet end of the air flow pipeline opens towards the factory building space, and the air flow pipeline is used to communicate with the equipment within the factory building space. The sum of the height of the technical mezzanine and the height of the main body of the factory building is less than the building storey height.
2. The factory building module according to claim 1, characterized in that A plurality of mounting columns are provided on the top of the main body of the factory building, and the plurality of mounting columns are distributed in a ring shape. The technical mezzanine includes a side fence, the side fence is connected between two adjacent mounting columns, and the plurality of mounting columns define a mezzanine space, and the air flow pipeline is located within the mezzanine space.
3. The factory building module according to claim 2, characterized in that, The vertical thickness of the side fence is less than the vertical height of the mounting column, the upper surface of the side fence is flush with the upper end surface of the mounting column, and the lower surface of the side fence is spaced apart from the top surface of the main body of the factory building to define a top gap.
4. The factory building module according to claim 3, characterized in that The extension length of the main body of the factory building in the first direction is greater than the extension length in the second direction; Wherein, the plurality of mounting columns are distributed in multiple groups in a one-to-one correspondence along the first direction, and the plurality of mounting columns are distributed in two groups in a one-to-one correspondence along the second direction.
5. The factory building module according to claim 1, characterized in that, The air flow pipeline includes an inlet flow pipeline and an outlet flow pipeline, and the inlet flow pipeline and the outlet flow pipeline are distributed at intervals.
6. The factory building module according to claim 5, characterized in that The inlet flow pipeline includes an inlet flow main pipeline and a plurality of inlet flow branch pipelines, and the plurality of inlet flow branch pipelines are respectively communicated with the inlet flow main pipeline; And / or, the outlet flow pipeline includes an outlet flow main pipeline and a plurality of outlet flow branch pipelines, and the plurality of outlet flow branch pipelines are respectively communicated with the outlet flow main pipeline.
7. The factory building module according to claim 6, wherein, Both the inlet flow main pipeline and the outlet flow main pipeline extend along the first direction and are distributed at intervals along the second direction, and the plurality of inlet flow branch pipelines and the plurality of outlet flow branch pipelines are distributed at intervals between the inlet flow main pipeline and the outlet flow main pipeline.
8. The factory building module according to claim 7, wherein Both the inlet flow branch pipelines and the outlet flow branch pipelines extend along the second direction, and the plurality of inlet flow branch pipelines and the plurality of outlet flow branch pipelines are distributed alternately along the first direction.
9. A construction equipment, characterized in that, Comprising a building main body and the factory building module according to any one of claims 1-8. The building main body forms a storey height space, the vertical height within the storey height space is the building storey height, and the factory building module is suitable for being integrally installed into the storey height space.
10. The construction equipment according to claim 9, characterized in that, The building main body is provided with a plurality of the storey height spaces, the factory building modules are multiple, and the plurality of factory building modules are suitable for being installed into the plurality of storey height spaces in a one-to-one correspondence.