Outdoor partition wall system

By designing detachable and connectable outdoor partition system modules, the problem of limited space for temporary outdoor shops is solved, enabling convenient installation and low-cost maintenance.

CN121407680APending Publication Date: 2026-01-27FSILON BUILDING MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202511675337.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-15
Publication Date
2026-01-27

AI Technical Summary

Technical Problem

Existing outdoor temporary shops, converted from vehicles or trailers, have limited space, making it difficult to meet diverse usage needs. Furthermore, the conversion costs are high and maintenance is inconvenient.

Method used

Design an outdoor partition system including detachable and connectable partition modules, column modules, keel modules, door frame modules, and floor modules. The modules are prefabricated in the factory, easy to install, small in size after disassembly, convenient to transport, and damaged parts can be replaced individually.

Benefits of technology

It significantly increases the usable space of outdoor stores, is easy to install and dismantle, and reduces transportation and maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides an outdoor partition wall system, and relates to the technical field of building components, the outdoor partition wall system comprises a partition wall module, a stand column module, a keel module, a door frame module and a floor module, and the partition wall module, the stand column module, the keel module, the door frame module and the floor module in the outdoor partition wall system are prefabricated in a factory; a user only needs to transport the house to a site for installation, and compared with traditional modification of a vehicle or a pull type house, the interior area of the house is obviously larger, and more use scenes can be met; meanwhile, due to the fact that the partition wall module, the stand column module, the keel module, the door frame module and the floor module are detachably connected, installation and detachment are very convenient, the overall size can be obviously reduced after detachment, transportation is very convenient, even if part of the modules are damaged, only the damaged modules need to be replaced, and the maintenance cost is low.
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Description

Technical Field

[0001] This invention relates to the field of building component technology, specifically an outdoor partition wall system. Background Technology

[0002] Existing temporary outdoor shops are usually converted from vehicles, or in some cases, from trailers. They are relatively easy to move and widely used. However, since these are all modifications of existing vehicles or trailers, and because they are small in size, their use is subject to many limitations. For scenarios that require access to the shop, these converted shops are unlikely to meet the needs. Summary of the Invention

[0003] The purpose of this invention is to provide an outdoor partition wall system that aims to solve the problems mentioned in the background art.

[0004] To achieve the above objectives, the present invention adopts the following technical solution: the outdoor partition wall system includes a partition wall module, a column module, a keel module, a door frame module, and a floor module: The keel module includes a ground keel unit and a top keel unit; The column module and the keel module are assembled to form a frame, and the partition wall module and the door frame module are installed in the frame and are detachably connected to the keel module. The partition wall module and the door frame module are located between the ground keel unit and the top keel unit; The floor module is installed inside the floor joist unit.

[0005] Preferably, the connection between the door frame module and the partition wall module is a detachable connection.

[0006] Preferably, the partition module includes a regular partition A and a glass partition B, and the connection between the same / different types of partitions is a detachable connection.

[0007] Preferably, the door frame module includes an independent partition wall C and a door frame D. The independent partition wall C is located above the door frame D. The structure of the independent partition wall C is the same as that of the ordinary partition wall A / glass partition wall B. The height of the independent partition wall C is lower than that of the ordinary partition wall A / glass partition wall B. The independent partition wall C is detachably connected to the top keel unit, the partition wall module and the door frame D. The door frame D is detachably connected to the partition wall module.

[0008] Preferably, the connectors used for the connection between partitions of the same type and different types, as well as the connection between the independent partition C and the door frame D in the door frame module and the partition module, are all the same.

[0009] Preferably, the ordinary partition wall A, the glass partition wall B and the door frame module have the same thickness and height, the ordinary partition wall A and the glass partition wall B have the same width, and the width of the door frame module is an integer multiple of the width of the ordinary partition wall A.

[0010] Preferably, the exposed upper surface of the floor joist unit without partition wall modules is fitted with a leveling component P, and the upper surface of the leveling component P is on the same plane as the upper surface of the floor module.

[0011] Preferably, the leveling component P is detachably connected to the ground keel unit.

[0012] Preferably, the floor module is composed of multiple independent floor units G, which are detachably connected to each other and to the floor joist unit.

[0013] Preferably, the upper surface of the floor unit G is rectangular, the width of the upper surface of the floor unit G is the same as the width of the largest side of the ordinary partition wall A when it is upright, and the length of the upper surface of the floor unit G is an integer multiple of the width of the upper surface of the floor unit G.

[0014] The beneficial effects of this invention are: The partition modules, column modules, keel modules, door frame modules and floor modules in this type of outdoor partition system are all prefabricated in the factory. Users only need to transport them to the site for installation. Compared with the traditional modification of vehicles or trailer houses, its internal area is significantly larger and can meet more usage scenarios. Meanwhile, since the partition wall module, column module, keel module, door frame module and floor module are all detachable, installation and disassembly are very convenient. After disassembly, the overall volume will be significantly reduced, making transportation very convenient. Moreover, even if some modules are damaged, only the damaged modules need to be replaced, resulting in low maintenance costs. Attached Figure Description

[0015] Figure 1 This is an assembly diagram of the partition wall system.

[0016] Figure 2 This is a structural diagram of a typical partition wall A.

[0017] Figure 3 This is a structural diagram of glass partition wall B.

[0018] Figure 4 This is a structural schematic diagram of floor unit G.

[0019] Figure 5 This is a cross-sectional view of the ground keel E and the top keel F.

[0020] Figure 6This is a schematic diagram of plug-in J and column H.

[0021] Figure 7 This is a cross-sectional view of profile g and connector N.

[0022] Figure 8 This is a cross-sectional view of connector M.

[0023] Figure 9 This is a cross-sectional view of profile d and connector K.

[0024] Figure 10 This is an assembly diagram of the ground keel E and the leveling component P.

[0025] Figure 11 This is a schematic diagram of the assembly of a standard partition A, a glass partition B, and the partitions between them.

[0026] Figure 12 This is a schematic diagram showing the connection between ordinary partition wall A, glass partition wall B, and profile d.

[0027] Figure 13 This is a schematic diagram showing the connection between ordinary partition wall A, glass partition wall B, and the top keel F.

[0028] Figure 14 This is a schematic diagram showing the connection between ordinary partition wall A, glass partition wall B, and column H.

[0029] Figure 15 This is a schematic diagram showing the connection between ordinary partition wall A, glass partition wall B, and floor joists E. Detailed Implementation

[0030] The specific embodiments of the present invention will be further described below with reference to the accompanying drawings.

[0031] like Figure 1-15 As shown: An outdoor partition wall system, comprising: Ordinary partition wall A1: (e.g.) Figure 2 , 11 (As shown) includes a frame assembled from four profiles a101. Wall panels a102 are provided on both sides of the frame. The interior of the frame is filled with filling material a103, which can be mineral wool, rock wool, glass wool, high-density fiberboard, gypsum board, foam material, etc. The inner side of the profile a101 has a receiving groove for accommodating the filling material a103. The two sides of the profile have extension edges a104. The extension edges a104 of the four profiles a101 are assembled to form a placement groove for installing the wall panels a102. The outer side of the profile has a slot a105, which can be opened at appropriate positions on the profile a101 to facilitate the passage of wires, network cables, etc.

[0032] Glass partition wall B2: (e.g.) Figure 3 , 11(As shown) includes a frame assembled from four profiles b201. Glass panels b202 are provided on both sides of the frame. The space between two glass panels b202 can be hollow or vacuumed to provide excellent sound insulation and heat insulation performance. When the space between two glass panels b202 is vacuumed, a support needs to be installed between the two glass panels b202 to resist the huge pressure difference between the inside and outside. The two sides of the profiles b201 have extension edges b203. The extension edges b203 of the four profiles b201 are assembled to form a placement groove for installing the glass panels b202. The outer side of the profiles b201 has a slot b204.

[0033] Independent partition C3: The structure of independent partition C3 is the same as that of ordinary partition A1 / glass partition B2, with the only difference being the height and width.

[0034] Door frame D4: (e.g.) Figure 9 (As shown on the left) Door frame D4 is assembled from three profiles d401. Profile d401 has a retaining edge d402. The retaining edges d402 of the three profiles d401 form a U-shaped retaining ring. When the door is closed, the door will abut against the retaining ring, thereby preventing the door from continuing to rotate in the same direction. Profile d401 also has a slot d403.

[0035] Earth dragon bone E5: (such as) Figure 5 (As shown on the left) The ground joist E5 is used for the installation of ordinary partition wall A1 and glass partition wall B2. The ground joist E5 includes a pipe body e501; the pipe body e501 has four pipe sides, namely pipe side one e502, pipe side two e503, pipe side three e504 and pipe side four e505, which are connected end to end and closed; pipe side one e502 and pipe side three e504 are arranged parallel to each other; the upper surface of pipe side one e502 is provided with two joints e506, which are symmetrically arranged; the joint e506 includes an outer extension e5061, and the upper end of the outer extension e5061 is provided with a horizontal edge. e5062, there is an angle between the horizontal edge e5062 and the outer extension edge e5061, the lower surface of the tube edge three e504 is provided with a base, the base includes tube edge five e507, tube edge six e508 and tube edge seven e509, tube edge three e504 is connected end to end with tube edge five e507, tube edge six e508 and tube edge seven e509 and closed, the parts of tube edge five e507, tube edge six e508 and tube edge seven e509 are all recessed, the upper surface of tube edge one e502 is provided with two limiting edges e5010, and the two joints e506 are located between the two limiting edges e5010.

[0036] Top keel F6: (e.g.) Figure 6 (As shown on the right) The outer surface of the top keel F6 has a protrusion f601 that connects to the slot a105 on the profile a101.

[0037] Floor unit G7: (e.g.) Figure 4 , 7 (As shown in the upper left) includes a frame assembled from four profiles g701. The inner sides of both ends of the profiles g701 are respectively provided with top edge g702 and bottom edge g703. The top edge g702 and bottom edge g703 of the four profiles g701 are each assembled into two placement slots. The upper placement slot can be used to install flooring g704, and the lower placement slot can be used to install functional panels g705, such as shock-absorbing, sound-insulating, and moisture-proof panels. The outer side of the profiles g701 has a slot g706, and the slot g706 is provided with an extension edge g707.

[0038] Column H8: (e.g.) Figure 6 (As shown on the right) The column H8 has four sides, and each side can be equipped with a protrusion h801. The protrusion h801 can be connected to the slot a105 on the profile a101 and the slot b204 on the profile b201. The number of protrusions h801 is the same as the total number of ordinary partition wall A1 and glass partition wall C to be connected.

[0039] Plugin J9: (e.g.) Figure 6 (As shown on the left) Plug-in J9 includes a base block j901 and a protrusion j902 set on the base block j901. The protrusion j902 can be inserted into the column H8. At the same time, the side of the base block j901 is provided with a fitting part j903, which can be inserted into the ground joist E5 and the top joist F6.

[0040] Connector K10: (e.g.) Figure 9 (As shown on the right) It is used for the connection between ordinary partition walls A1, the connection between glass partition walls B2, and the connection between ordinary partition wall A1 and glass partition wall B2. The connector K10 includes a support edge k1001, and a horizontal edge k1002 is provided at both ends of the support edge k1001. A protrusion k1003 is provided at both ends of the horizontal edge k1002 on the side away from the support edge k1001. The protrusion k1003 has a facing surface k1004 and a fastening surface k1005. The angle between the facing surface k1004 and the horizontal edge k1002 is an acute angle, and the angle between the fastening surface k1005 and the horizontal edge k1002 is an obtuse angle. The facing surface k1004 and the fastening surface k1005 are connected by a rounded transition.

[0041] Connector M11: (e.g.) Figure 8(As shown) For the connection between the floor joist E5 and the floor unit G7, the connector M11 includes a bottom edge m1101: a protrusion m1102 is provided on the lower surface of the bottom edge m1101, the protrusion m1102 is located between the two ends of the bottom edge m1101; a side edge m1103 is provided at one end of the upper surface of the bottom edge m1101, the side edge m1103 is perpendicular to the bottom edge m1101; a top edge m1104 is provided at the upper end of the side edge m1103, the top edge m1104 and the bottom edge m1101 are located on the same side of the side edge m1103, and the included angle between the top edge m1104 and the side edge m1103 is not less than 90°; the side edge m1103 and the bottom edge m1101 The lengths are equal; the ends of the top edge m1104 and the bottom edge m1101 that are away from the side edge m1103 are both bent, and the lengths and bending angles of the bent ends of the top edge m1104 and the bottom edge m1101 are the same, and they are both located between the top edge m1104 and the bottom edge m1101; a weakening groove m1105 is provided at the connection between the bottom edge m1101 and the top edge m1104 and the side edge m1103; the connection between the bottom edge m1101 and the side edge m1103 is located between the two ends of the side edge m1103, and the lower end of the side edge m1103 is bent toward the protrusion m1102, and there is a gap between the bent end of the side edge m1103 and the protrusion m1102.

[0042] When connecting the ground joist E5 to the profile g701, the side edge m1103 needs to enter the pipe edge five e507 or pipe edge seven e509 of the ground joist E5, the bottom edge m1101 and the top edge m1104 need to enter the slot g706, and the protrusion m1102 needs to abut against the extension edge g707, so that the ground joist E5 and the profile g701 can be connected together.

[0043] The weakening groove m1105 allows the bottom edge m1101 and the top edge m1104 to bend inward. When the bottom edge m1101 and the top edge m1104 enter the slot g706, they can abut against the upper and lower sides of the slot g706 to improve the stability of the connection.

[0044] Both the top edge m1104 and the bottom edge m1101 have a bent end away from the side edge m1103. The length and bending angle of the bent ends of the top edge m1104 and the bottom edge m1101 are the same. When the connector M11 is installed into the slot g706, the bent end of the top edge m1104 and the bottom edge m1101 away from the side edge m1103 will be squeezed, which can make the protrusion m1102 maintain a tight abutment relationship with the extension edge g707.

[0045] When the connection between the bottom edge m1101 and the side edge m1103 is located between the two ends of the side edge m1103, the protrusion m1102 will keep the connector M11 and the slot g706 in a tight abutment relationship to improve the stability of the connection.

[0046] Connector N12: (e.g.) Figure 7 (As shown in the lower left and lower right) Connector N12 is used for the connection between floor units G7. Connector N12 includes a tube body n1201. Tube body n1201 includes three tube sides, namely tube side one n1202, tube side two n1203 and tube side three n1204. Tube side one n1202 and tube side three n1204 are located at both ends of tube side two n1203. The included angle between tube side one n1202 and tube side three n1204 and tube side two n1203 is not less than 90°. Tube side one n1202 and tube side three n1204 can be clamped in groove g706 to form a compression state. When all floor units G7 are assembled, this compression can improve the stability of the connection and avoid loosening and shaking.

[0047] Pipe edge one n1202 and pipe edge three n1204 are both located on the same side of pipe edge two n1203; pipe edge two n1203 is provided with a slot n1205 and two protrusions n1206, forming a slot n1205 between the two protrusions n1206. The slot n1205, pipe edge one n1202, and pipe edge three n1204 are located on the same side of pipe edge two n1203. When the two profiles g701 are connected together through the slot n1205, the two profiles... The two extended edges g707 on the material g701 are located inside the slot n1205. The two protrusions n1206 allow the slot n1205 to protrude from the connector N12, thereby reducing the obstruction of the connector N12 on the profile g701 and facilitating the matching of the connector N12 with the extended edge g707. The slot n1205 can also be recessed on the second pipe edge n1203. The slot n1205, the first pipe edge n1202, and the third pipe edge n1204 are located on the same side of the second pipe edge n1203.

[0048] Both pipe edge one (n1202) and pipe edge three (n1204) have a protrusion (n1207) in the middle, which is located between pipe edge one (n1202) and pipe edge three (n1204). Pipe edge four (n) has a mirror groove (n1208), which is the same as the slot (n1205) on pipe edge two (n1203). Pipe edge four (n) is mirror symmetrical to pipe edge two (n1203). The connector N12 can be used in both directions, improving ease of use. At the same time, the included angle between pipe edge one (n1202) and pipe edge three (n1204) and pipe edge two (n1203) is 90°. The end of pipe edge one (n1202) and pipe edge three (n1204) that is away from pipe edge two (n1203) is bent. The bent section of pipe edge one (n1202) and pipe edge three (n1204) is located between pipe edge one (n1202) and pipe edge three (n1204).

[0049] Leveling component P13: (e.g.) Figure 10 (As shown) The overall shape is an inverted U-shape. The upper surface of the leveling component P13 is a flat surface, and its lower inner side has a protrusion p1301. The protrusion p1301 can connect with the connecting part e506. The leveling component P13 has two inner grooves p1302 on each side. The inner grooves p1302 are inclined and face the protrusion p1301. When the protrusion p1301 is connected to the connecting part e506, it can be compressed by the inner grooves p1302 on the side of the leveling component P13, causing the protrusion p1301 to move below the connecting part e506. After the compression of the inner grooves p1302 is released, the protrusion p1301 remains engaged with the connecting part e506. At the same time, the two sides of the leveling component P13 can also connect with the ground joist E5. The upper surface of the leveling component P13 remains in contact to improve its stability on the floor joists E5, making it less prone to shaking. Furthermore, the interior of the recessed groove P1302 can accommodate LED strips / tubes. The light emitted from these strips / tubes is angled downwards onto the ground, enhancing the ambiance. People approaching from a distance will not directly see the LED strips / tubes, thus preventing direct eye contact. Additionally, the recessed groove P1302 allows for finger insertion. When removing the leveling component P13 from the floor joists E5, it can be easily lifted using the recessed grooves on both sides. The angled grooves also increase friction between the fingers and the leveling component P13, reducing the likelihood of fingers slipping out of the recess.

[0050] An outdoor partition wall system includes partition wall modules, column modules, keel modules, door frame modules, and floor modules: The keel module includes a ground keel unit and a top keel unit; The column module and the keel module are assembled to form a frame, and the partition wall module and the door frame module are installed in the frame and are detachably connected to the keel module. The partition wall module and the door frame module are located between the ground keel unit and the top keel unit; The floor module is installed inside the floor joist unit.

[0051] The partition modules include a standard partition A1 and a glass partition B2.

[0052] The column module includes column H8 and plug-in J9.

[0053] The keel module includes a ground keel unit and a top keel unit. The ground keel unit consists of multiple ground keels E5, and the top keel unit consists of multiple top keels F6.

[0054] The door frame module includes an independent partition wall C3 and a door frame D4. The structure of the independent partition wall C3 is the same as that of the ordinary partition wall A1 / glass partition wall B2. The only difference between the independent partition wall C3 and the ordinary partition wall A1 / glass partition wall B2 is that the independent partition wall C3 is lower in height.

[0055] The floor module consists of multiple floor units G7, and the floor units G7 are connected in a detachable manner through connectors N12.

[0056] Furthermore, the connection between the door frame module and the partition wall module is a detachable connection.

[0057] Furthermore, the partition module includes a regular partition A1 and a glass partition B2, and the connection between partitions of the same or different types is a detachable connection.

[0058] Furthermore, the door frame module includes an independent partition wall C3 and a door frame D4. The independent partition wall C3 is located above the door frame D4. The structure of the independent partition wall is the same as that of the ordinary partition wall A1 / glass partition wall B2. The height of the independent partition wall is lower than that of the ordinary partition wall A1 / glass partition wall B2. The independent partition wall is detachably connected to the top keel unit, the partition wall module, and the door frame. The door frame D4 is detachably connected to the partition wall module.

[0059] The connection between the door frame module and the partition wall module can be divided into the connection between the independent partition wall C3 and the door frame D4 and the ordinary partition wall A1 / glass partition wall B2. Whether the door frame module is connected to the ordinary partition wall A1 or the glass partition wall B2, it is connected through the connector K10.

[0060] Furthermore, the connectors used for the connection between partitions of the same type and different types, as well as the connection between the independent partition D and the door frame D4 in the door frame module and the partition module, are all the same.

[0061] The connections between ordinary partition walls A1, between glass partition walls B2, and between ordinary partition wall A1 and glass partition wall B2 are all made through connector K10 to improve the versatility of connector K10.

[0062] Furthermore, the ordinary partition wall A1, the glass partition wall B2, and the door frame module have the same thickness and height, the ordinary partition wall A1 and the glass partition wall B2 have the same width, and the width of the door frame module is an integer multiple of the width of the ordinary partition wall.

[0063] Furthermore, the exposed upper surface of the floor joist unit, where no partition wall module is installed, is fitted with a leveling component P13, and the upper surface of the leveling component P13 is on the same plane as the upper surface of the floor module.

[0064] Furthermore, the leveling component P13 is detachably connected to the ground keel unit.

[0065] The leveling component P13 is directly connected to the ground joist E5 through the protrusion p1301.

[0066] Furthermore, the floor module is composed of multiple independent floor units G7, which are detachably connected to each other and detachably connected to the floor joist unit.

[0067] The connection between floor units G7 is achieved through connector N12. The connection between two floor units G7 is also the connection between the two profiles g701 in the two floor units G7. The connection between the two profiles g701 is achieved through connector N12.

[0068] Furthermore, the upper surface of the floor unit is rectangular, the width of the upper surface of the floor unit is the same as the width of the largest side of a normal partition wall when it is erected, and the length of the upper surface of the floor unit is an integer multiple of the width of the upper surface of the floor unit.

[0069] Connection between ordinary partition walls A1: Ordinary partition walls A1 are connected by connector K10. The protrusion K1003 on connector K10 can be engaged with the slot a105 on profile a101.

[0070] Connection between ordinary partition wall A1 and glass partition wall B2: Ordinary partition wall A1 and glass partition wall B2 are connected by connector K10. The protrusion K1003 on connector K10 can be engaged with the slot a105 on profile a101 and the slot b204 on profile b201.

[0071] Connection between glass partitions B2: Glass partitions B2 are connected by connector K10. The protrusion K1003 on connector K10 can be engaged with the slot b204 on profile b201.

[0072] Connection between floor joist E5 and ordinary partition wall A1: The outer edge e5601 and the horizontal edge e5062 of floor joist E5 can be directly engaged with the slot a105 on profile a101.

[0073] Connection between the ground joist E5 and the glass partition B2: The outer edge e5601 and the horizontal edge e5062 of the ground joist E5 can be directly engaged with the slot b204 on the profile b201.

[0074] In the description of this invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

Claims

1. An outdoor partition wall system, comprising partition wall modules, column modules, keel modules, door frame modules, and floor modules; characterized in that: The keel module includes a ground keel unit and a top keel unit; The column module and the keel module are assembled to form a frame, and the partition wall module and the door frame module are installed in the frame and are detachably connected to the keel module. The partition wall module and the door frame module are located between the ground keel unit and the top keel unit; The floor module is installed inside the floor joist unit.

2. The outdoor partition wall system according to claim 1, characterized in that, The connection between the door frame module and the partition wall module is detachable.

3. The outdoor partition wall system according to claim 2, characterized in that, The partition module includes a regular partition A and a glass partition B, and the connection between partitions of the same or different types is a detachable connection.

4. The outdoor partition wall system according to claim 3, characterized in that, The door frame module includes an independent partition wall C and a door frame D. The independent partition wall C is located above the door frame D. The structure of the independent partition wall C is the same as that of the ordinary partition wall A / glass partition wall B. The height of the independent partition wall C is lower than that of the ordinary partition wall A / glass partition wall B. The independent partition wall C is detachably connected to the top keel unit, the partition wall module and the door frame D. The door frame D is detachably connected to the partition wall module.

5. The outdoor partition wall system according to claim 4, characterized in that, The same connectors are used for the connection between partitions of the same type and different types, as well as for the connection between the independent partition C and the door frame D in the door frame module and the partition module.

6. The outdoor partition wall system according to claim 5, characterized in that, The ordinary partition wall A, the glass partition wall B, and the door frame module have the same thickness and height. The ordinary partition wall A and the glass partition wall B have the same width. The width of the door frame module is an integer multiple of the width of the ordinary partition wall A.

7. The outdoor partition wall system according to claim 1, characterized in that, The floor joist unit has no partition wall module installed, and the exposed upper surface is fitted with a leveling component P. The upper surface of the leveling component P is on the same plane as the upper surface of the floor module.

8. The outdoor partition wall system according to claim 7, characterized in that, The leveling component P is detachably connected to the ground keel unit.

9. The outdoor partition wall system according to claim 7, characterized in that, The floor module is composed of multiple independent floor units G, which are detachably connected to each other and to the floor joist unit.

10. The outdoor partition wall system according to claim 9, characterized in that, The upper surface of the floor unit G is rectangular. The width of the upper surface of the floor unit G is the same as the width of the largest side of the ordinary partition wall A when it is upright. The length of the upper surface of the floor unit G is an integer multiple of the width of the upper surface of the floor unit G.