Dry-cold container with water curtain wall type heat exchanger
By arranging water curtain wall-type heat exchangers on both sides of the container data center, the problem of large space occupation by cold source equipment is solved, and space utilization is optimized and installation stability is enhanced.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANDONG SHUYUE VEHICLE CO LTD
- Filing Date
- 2025-05-28
- Publication Date
- 2026-04-24
AI Technical Summary
In existing technologies, the first and second cold source equipment of container data centers are arranged side by side, which occupies a large space.
The dry-cooled container design employs a water curtain wall heat exchanger, which includes a dry cooler installation structure, a water curtain installation structure, and a fan installation structure. By arranging water curtain wall heat exchangers on both sides of the container, the length of the container is not increased, and the space occupied in the length direction is reduced.
This effectively reduces the space occupied by the container in the length direction and enhances the installation stability of the dry cooler and the container body.
Smart Images

Figure CN224165030U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of containers, specifically to a dry-cooled container with a water curtain wall heat exchanger. Background Technology
[0002] Containerized data centers are prefabricated, modularly manufactured data center products that offer advantages such as rapid deployment and centralized delivery. Many containerized servers are cooled using mechanical compressor refrigeration.
[0003] Chinese utility model patent CN220123318U discloses a container structure, a cold source container, and a data center. The container structure includes a cold source container comprising multiple beam structures that define an open cavity for housing cold source equipment used to cool the data center. The gaps between the beam structures connect the interior and exterior of the cold source container. The cold source equipment includes a first cold source cooling tower and a second cold source dry cooler. However, in practical use, it has been found that the first and second cold source equipment in this container structure are arranged end-to-end, occupying a significant amount of space.
[0004] Therefore, a new technical solution is needed in this field to solve the above problems. Summary of the Invention
[0005] To improve or solve the technical problem of the existing container structure where the first and second cold source devices are arranged end-to-end, occupying a large space, this utility model provides a dry-cooled container with a water curtain wall heat exchanger. The dry-cooled container includes: a container body, comprising a top beam frame, a bottom beam frame arranged opposite to the top beam frame, and columns connecting the top beam frame and the bottom beam frame; a dry-cooler mounting structure, including an upper support mounted on the top beam frame, a lower support mounted on the bottom beam frame, and side supports arranged between the top beam frame and the bottom beam frame; a fan mounting structure is also installed on the top beam frame; and a water curtain mounting structure, including upper supports installed on both sides of the top beam frame and lower supports installed on both sides of the bottom beam frame.
[0006] With the above-described configuration, this utility model discloses a refrigerated container with a water curtain wall heat exchanger, comprising a container body, a refrigeration unit mounting structure, a water curtain mounting structure, and a fan mounting structure. The container body includes a top beam, a bottom beam, and columns, enabling the installation of the aforementioned structures and providing installation space for the water curtain and refrigeration unit. The refrigeration unit mounting structure includes an upper support, a lower support, and side supports, capable of fixing the main body of the refrigeration unit. The fan mounting structure is mounted on the top beam, fixing the fan of the refrigeration unit and enhancing the installation stability between the refrigeration unit and the container body. The water curtain mounting structure includes an upper support and a lower support, with the upper support arranged on both sides of the top beam and the lower support arranged on both sides of the bottom beam, enabling the water curtain wall heat exchanger to be installed on both sides of the container body, thereby avoiding increasing the length of the container and reducing the space occupied by the container in the length direction. With the above-described configuration, this utility model discloses a refrigerated container with a water curtain wall heat exchanger, arranging the water curtain mounting structure on both sides of the container, thus avoiding increasing the length of the container and reducing the space occupied by the container in the length direction.
[0007] Furthermore, the dry cooler mounting structure also includes a left end support and a right end support arranged opposite to each other, and the side support is connected to a triangular support plate.
[0008] Furthermore, the dry cooler mounting structure also includes a pipe support, which is mounted on the fan mounting structure.
[0009] Furthermore, the fan mounting structure includes a frame support beam, and support beams and support longitudinal beams arranged within the frame support beam; multiple support beams are arranged at intervals along the length of the housing, and the pipe support is installed on the support beams.
[0010] Furthermore, multiple upper supports are arranged at intervals along the length of the top beam, and multiple lower supports are arranged at intervals along the length of the bottom beam; the upper supports and the lower supports are arranged alternately.
[0011] Furthermore, the housing also includes a left beam frame and a right beam frame arranged opposite to the left beam frame; an inspection door is provided on the right beam frame.
[0012] Furthermore, the inspection door includes a first inspection door and a second inspection door.
[0013] Furthermore, an electrical box module is arranged on the left beam; the electrical box module includes an electrical box body installed on the left beam and an electrical box outer door installed on the left beam.
[0014] Furthermore, a sealing strip mounting plate matching the outer door of the electrical box is provided on the left beam.
[0015] Furthermore, pipe clamp supports and ladders are installed on the left beam frame.
[0016] In summary, compared with the prior art, this utility model has the following beneficial effects:
[0017] The dry cooler installation structure includes an upper bracket, a lower bracket, and side supports, which can fix the main body of the dry cooler; the fan installation structure is installed on the top beam frame, which can fix the fan of the dry cooler and enhance the installation stability of the dry cooler and the container; the water curtain installation structure includes an upper support and a lower support. The upper support is arranged on both sides of the top beam frame, and the lower support is arranged on both sides of the bottom beam frame, which can install the water curtain wall heat exchanger on both sides of the container, thereby avoiding increasing the length of the container and reducing the space occupied by the container in the length direction. Attached Figure Description
[0018] The preferred embodiments of this utility model are described below with reference to the accompanying drawings, in which:
[0019] Figure 1 This is a schematic diagram of an embodiment of a dry-cooled container with a water curtain wall heat exchanger according to the present invention;
[0020] Figure 2 This is another schematic diagram of an embodiment of a dry-cooled container with a water curtain wall heat exchanger according to the present invention.
[0021] List of reference numerals in the attached diagram: 1. Box frame; 11. Top beam frame; 111. Front middle longitudinal beam; 112. Front upper longitudinal beam; 113. Rear middle longitudinal beam; 114. Rear upper longitudinal beam; 115. Left middle crossbeam; 116. Left upper crossbeam; 117. Right middle crossbeam; 118. Right upper crossbeam; 119. Support column; 12. Bottom beam frame; 121. Front lower longitudinal beam; 123. Left lower crossbeam; 124. Right lower crossbeam; 125. Bottom cross brace; 126. Base plate; 127. Left lower end beam; 13. Left beam frame; 131. Left side diagonal support; 132. Left side end plate; 133. Pipe clamp bracket; 134. Ladder; 14. Right beam frame; 14 1. Right-side diagonal support; 142. Right-side end plate; 143. First inspection door; 144. Second inspection door; 15. Column; 2. Dry cooler installation structure; 21. Upper bracket; 22. Lower bracket; 23. Side support; 24. Triangular support plate; 25. Left end support; 26. Right end support; 3. Water curtain installation structure; 31. Upper support; 32. Lower support; 4. Electrical box module; 41. Electrical box body; 42. Electrical box outer door; 43. Electrical box support column; 44. Electrical box door lock; 45. Sealing strip mounting plate; 5. Fan installation structure; 51. Frame support beam; 52. Support crossbeam; 53. Support longitudinal beam; 54. Pipe support. Detailed Implementation
[0022] Preferred embodiments of the present invention will now be described with reference to the accompanying drawings. Those skilled in the art should understand that these embodiments are merely illustrative of the technical principles of the present invention and are not intended to limit the scope of protection of the present invention.
[0023] It should be noted that in the description of this utility model, the terms "upper," "lower," "left," "right," "inner," and "outer," which indicate directional or positional relationships, are based on the directional or positional relationships shown in the accompanying drawings. These are merely for ease of description and do not indicate or imply that the device or element must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0024] Furthermore, it should be noted that, in the description of this utility model, unless otherwise explicitly specified and limited, the terms "installation," "setting," and "connection" 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 direct connection, an indirect connection through an intermediate medium, or a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0025] To improve or solve the technical problem of the first and second cold source devices being arranged end-to-end in the existing container structure, which occupies a large space, this utility model provides a dry-cooled container with a water curtain wall heat exchanger. The dry-cooled container includes: a container body 1, comprising a top beam frame 11, a bottom beam frame 12 arranged opposite to the top beam frame 11, and a column 15 connecting the top beam frame 11 and the bottom beam frame 12; a dry-cooler mounting structure 2, comprising an upper support 21 mounted on the top beam frame 11, a lower support 22 mounted on the bottom beam frame 12, and a side support 23 arranged between the top beam frame 11 and the bottom beam frame 12; a fan mounting structure 5 is also mounted on the top beam frame 11; and a water curtain mounting structure 3, comprising upper supports 31 mounted on both sides of the top beam frame 11, and lower supports 32 mounted on both sides of the bottom beam frame 12.
[0026] Figure 1 This is a schematic diagram of an embodiment of a dry-cooled container with a water curtain wall heat exchanger according to this utility model. Figure 1 As shown, the present invention discloses a dry-cooled container with a water curtain wall heat exchanger, comprising a container body 1, a dry-cooler installation structure 2, and a water curtain installation structure 3.
[0027] Figure 2 This is another schematic diagram of an embodiment of the present invention: a dry-cooled container with a water curtain wall heat exchanger. (See diagram below.) Figure 1 and Figure 2 As shown, in one or more embodiments, the box body 1 is generally rectangular. The box body 1 includes a top beam frame 11, a bottom beam frame 12, a left beam frame 13, a right beam frame 14, and columns 15. Four columns 15 are provided, and the four columns 15 are arranged in a rectangular shape. The bottom beam frame 12 is connected to the bottom end of the columns 15, and the top beam frame 11 is connected to the top end of the columns 15. Further, the bottom beam frame 12 includes a front lower longitudinal beam 121, a rear lower longitudinal beam (obscured and therefore not shown in the figure) arranged opposite to the front lower longitudinal beam 121, a left lower crossbeam 123, a right lower crossbeam 124 arranged opposite to the left lower crossbeam 123, a bottom cross brace 125, and a bottom plate 126. The front lower longitudinal beam 121, the rear lower longitudinal beam, the left lower crossbeam 123, and the right lower crossbeam 124 form a frame that is generally rectangular, and the bottom cross brace 125 is spaced apart along the length of the longitudinal beams. Multiple base plates 126 are installed at the notch formed between the frame and the bottom cross brace 125. Furthermore, the bottom beam frame 12 also includes a lower left end beam 127, and the lower left end beam 127, the lower right cross beam 124, the lower front longitudinal beam 121, and the lower rear longitudinal beam are fixedly connected to the column 15 through corner connectors.
[0028] See also Figure 1 and Figure 2 In one or more embodiments, the top beam frame 11 includes a front middle longitudinal beam 111, a front upper longitudinal beam 112, a rear middle longitudinal beam 113, a rear upper longitudinal beam 114, a left middle crossbeam 115, a left upper crossbeam 116, a right middle crossbeam 117, and a right upper crossbeam 118. The front middle longitudinal beam 111, rear middle longitudinal beam 113, left middle crossbeam 115, and right middle crossbeam 117 form a rectangular frame, and the front upper longitudinal beam 112, rear upper longitudinal beam 114, left upper crossbeam 116, and right upper crossbeam 118 form a rectangular frame, with the two rectangular frames arranged in parallel. Connecting columns and a surrounding panel are provided between the two rectangular frames. Specifically, the front upper longitudinal beam 112, rear upper longitudinal beam 114, left upper crossbeam 116, and right upper crossbeam 118 are all connected to the columns 15 via corner connectors. Support columns 119 are provided between the top beam frame 11 and the bottom beam frame 12. The support columns 119 are arranged on the front and rear sides, and each support column 119 corresponds to a connecting column in the vertical direction to enhance the structural strength of the box body 1. Furthermore, a top support is also provided between the front upper longitudinal beam 112 and the rear upper longitudinal beam 114. Multiple top supports are provided along the length of the longitudinal beams.
[0029] See also Figure 1 and Figure 2In one or more embodiments, the right beam frame 14 includes a right-side diagonal support 141 and a right-side end plate 142 mounted on the right-side diagonal support 141. The right-side diagonal support 141 is fixedly connected to the lower right crossbeam 124 and the middle right crossbeam 117. Furthermore, an inspection door is provided on the right beam frame 14 for maintenance. Specifically, the inspection door includes a first inspection door 143 and a second inspection door 144. The first inspection door 143 is located near the bottom beam frame 12 and is relatively large. The second inspection door 144 is located near the top beam frame 11 and is relatively small. The first inspection door 143 facilitates handling and maintenance by personnel and equipment. The second inspection door 144 is used for frequent partial inspections, reducing external interference with the internal environment of the container.
[0030] See also Figure 1 and Figure 2 In one or more embodiments, the left beam frame 13 includes a left diagonal support 131 and a left end plate 132 mounted on the left diagonal support 131. The left diagonal support 131 is fixedly connected to the lower left crossbeam 123 and the middle left crossbeam 115. Further, a pipe clamp bracket is provided on the left side of the left diagonal support 131 for installing pipe clamps and thus constricting the pipes. Further, a ladder 134 is provided between the column 15 and the support column 119, and the ladder 134 is located at the left front corner of the housing 1. Further, an electrical box module 4 is provided on the left side of the left beam frame 13. The electrical box module 4 includes an electrical box body 41 mounted on the left beam frame 13 and an electrical box outer door 42 mounted on the left side of the electrical box body 41. Specifically, an electrical box support column 43 is provided between the lower left end beam 127 and the middle left crossbeam 115. One side of the electrical box outer door 42 is hinged to the electrical box support 43 via a hinge and a door lock 44 is provided on the other side of the electrical box outer door 42. Furthermore, sealing strip mounting plates 45 are provided on the lower left end beam 127, the middle left cross beam 115, the column 15, and the electrical box support 43, and sealing rings that abut against the electrical box outer door 42 are provided on the sealing strip mounting plates 45.
[0031] See also Figure 1 and Figure 2In one or more embodiments, the dry cooler mounting structure 2 includes an upper support 21 mounted on the top beam 11, a lower support 22 mounted on the bottom beam 12, and side supports 23 arranged between the top beam 11 and the bottom beam 12. Specifically, the lower support 22 is located at the middle position of the bottom beam 12 in the front-rear direction and extends along the length of the bottom beam 12. Two upper supports 21 are provided, and the two upper supports 21 are fixedly connected to the front middle longitudinal beam 111 and the rear middle longitudinal beam 113, respectively. The side supports 23 are arranged obliquely, with one end fixedly connected to the lower support 22 and the other end fixedly connected to the upper support 21. Further, the side supports 23 are connected to a triangular support plate 24, which is approximately a right trapezoid. The triangular support plate 24 is mounted on the bottom cross brace 125 of the bottom beam 12. Further, the dry cooler mounting structure 2 also includes a left end support 25 and a right end support 26 arranged opposite to each other. The left end support 25 includes two inclined beams arranged in a roughly inverted V-shape. Specifically, the left end support 25 is fixedly connected to the left inclined support 131 of the left beam frame 13. The right end support 26 is symmetrically arranged with the left end support 25. Furthermore, a fan mounting structure 5 is installed on the top beam frame 11 for mounting the fan of the dry cooler. Specifically, the fan mounting structure 5 includes a frame support beam 51, and support crossbeams 52 and support longitudinal beams 53 arranged within the frame support beam 51. The frame support beam 51 is roughly rectangular, and its two longitudinal beams abut against the upper support 21. One support longitudinal beam 53 is provided, and multiple support crossbeams 52 are arranged at intervals along the length of the support longitudinal beam 53. Furthermore, the dry cooler mounting structure 2 also includes pipe supports 54 for arranging pipes. Multiple pipe supports 54 are arranged along the length of the container. One pipe support 54 is installed on a corresponding support crossbeam 52.
[0032] See also Figure 1 and Figure 2 In one or more embodiments, the water curtain installation structure 3 includes upper supports 31 installed on both sides of the top beam 11 and lower supports 32 installed on both sides of the bottom beam 12. Specifically, the upper supports 31 are installed on the front middle longitudinal beam 111 and the rear middle longitudinal beam 113, and multiple upper supports 31 are arranged at intervals along the length direction of the front middle longitudinal beam 111 and the rear middle longitudinal beam 113. For example, there are eight upper supports 31, four on each side. The lower supports 32 are installed on the front lower longitudinal beam 121 and the rear lower longitudinal beam, and multiple lower supports 32 are arranged along the length direction of the front lower longitudinal beam 121 and the rear lower longitudinal beam. For example, there are twelve lower supports 32, six on each side. Furthermore, the upper supports 31 and the lower supports 32 are staggered. That is, the upper supports 31 and the lower supports 32 are staggered, which can effectively suppress the torsional deformation of the water curtain and enhance the structural stability of the water curtain.
[0033] The technical solution of this utility model has been described in conjunction with the preferred embodiments shown in the accompanying drawings. However, it will be readily understood by those skilled in the art that the protection scope of this utility model is obviously not limited to these specific embodiments. Without departing from the principle of this utility model, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after such changes or substitutions will all fall within the protection scope of this utility model.
Claims
1. A dry cooled container having a water curtain wall type heat exchanger, characterized by, include: The box body (1) includes a top beam frame (11), a bottom beam frame (12) arranged opposite to the top beam frame (11), and a column (15) connecting the top beam frame (11) and the bottom beam frame (12); The dry cooler mounting structure (2) includes an upper bracket (21) mounted on the top beam (11), a lower bracket (22) mounted on the bottom beam (12), and a side support (23) arranged between the top beam (11) and the bottom beam (12). A fan mounting structure (5) is also mounted on the top beam (11). The water curtain installation structure (3) includes upper supports (31) installed on both sides of the top beam (11) and lower supports (32) installed on both sides of the bottom beam (12).
2. A dry cooled container having a water curtain wall type heat exchanger according to claim 1, wherein The dry cooler mounting structure (2) also includes a left end support (25) and a right end support (26) arranged opposite to each other, and the side support (23) is connected to a triangular support plate (24).
3. A dry cooled container with water curtain wall heat exchanger according to claim 1, characterized in that, The dry cooler mounting structure (2) also includes a pipe support (54), which is mounted on the fan mounting structure (5).
4. A dry cooled container with water curtain wall heat exchanger according to claim 3, characterized in that, The fan mounting structure (5) includes a frame support beam (51), and a support crossbeam (52) and a support longitudinal beam (53) arranged in the frame support beam (51); multiple support crossbeams (52) are arranged at intervals along the length direction of the box body (1), and the pipe support (54) is installed on the support crossbeam (52).
5. A dry cooled container having a water curtain wall type heat exchanger according to claim 1, wherein Multiple upper supports (31) are arranged at intervals along the length of the top beam (11), and multiple lower supports (32) are arranged at intervals along the length of the bottom beam (12); the upper supports (31) and the lower supports (32) are arranged alternately.
6. A dry cooled container having a water curtain wall type heat exchanger according to claim 1, wherein The box body (1) also includes a left beam frame (13) and a right beam frame (14) arranged opposite to the left beam frame (13); an inspection door is provided on the right beam frame (14).
7. A dry cooled container with water curtain wall heat exchanger according to claim 6, characterized in that, The inspection doors include a first inspection door (143) and a second inspection door (144).
8. A dry cooled container having a water curtain wall heat exchanger according to claim 6, wherein, An electrical box module (4) is arranged on the left beam (13); the electrical box module (4) includes an electrical box body (41) installed on the left beam (13) and an electrical box outer door (42) installed on the left beam (13).
9. A dry-cooled container with a water curtain wall heat exchanger according to claim 8, characterized in that, A sealing strip mounting plate (45) matching the outer door (42) of the electrical box is provided on the left beam frame (13).
10. A dry cooled container having a water curtain wall heat exchanger according to claim 6, wherein, Pipe clamp bracket (133) and ladder (134) are provided on the left beam frame (13).
Citation Information
Patent Citations
Box structure, cold source container and data center
CN220123318U