Container and data center
Abstract
The present disclosure discloses a container and a data center. The container includes a body having a top surface and a first side surface and a second side surface arranged opposite to each other. A groove is formed on the top surface, and the groove extends from the first side surface to the second side surface and divides the top surface into a first part and a second part, and both the first part and the second part are slantwise arranged downwards towards the groove. A bottom surface of the groove is slantwise arranged downwards towards at least one end of the groove, such that when rainwater falls on the first part and/or the second part, the rainwater flows into the groove under a guidance of the first part and the second part, and flows out of the top surface under the guidance of the groove.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A container, comprising a body having a top surface and a first side surface and a second side surface arranged opposite to each other; wherein
a groove is formed on the top surface, the groove extends from the first side surface to the second side surface and divides the top surface into a first part and a second part, both the first part and the second part are slantwise arranged downwards towards the groove; and a bottom surface of the groove is slantwise arranged downwards towards at least one end of the groove, such that when rainwater falls on the first part and the second part, the rainwater flows into the groove under a guidance of the first part and the second part, and flows out of the top surface under the guidance of the groove.
2 . The container according to claim 1 , wherein the bottom surface of the groove is constructed to be slantwise arranged downwards from a middle part of the groove towards the first side surface and the second side surface, respectively.
3 . The container according to claim 1 , wherein the bottom surface of the groove is constructed to be slantwise arranged downwards from the first side surface to the second side surface.
4 . The container according to claim 3 further comprising a buffer structure, wherein
the buffer structure is detachably connected to the body, and the buffer structure is positioned on the second side surface, such that the rainwater flowing out of the second side surface flows to ground after being buffered by the buffer structure.
5 . The container according to claim 4 , wherein the buffer structure comprises a barrier plate;
two connecting components are respectively connected to two ends of the barrier plate, and the barrier plate is detachably connected to the body through the two connecting components; and one side of the barrier plate is adhered on the second side surface, and other side of the barrier plate extends along a direction away from the second side surface.
6 . The container according to claim 5 , wherein the second side surface is provided with a plurality of strip grooves arranged at intervals, the plurality of strip grooves extend from a top of the second side surface to a bottom of the second side surface, and the plurality of strip grooves further form a plurality of protruding parts on the second side surface; and
each of the two connecting components comprises a U-shaped plate connected to the barrier plate, and an interference connection is formed between each of the two U-shaped plates and each of the plurality of protruding parts to connect the barrier plate to the body.
7 . The container according to claim 6 , wherein the barrier plate comprises a transverse plate and a plurality of protrusions; and
the plurality of protrusions are spaced along a length direction of the transverse plate, and the plurality of protrusions are inserted into the plurality of strip grooves in one-to-one correspondence.
8 . The container according to claim 7 , wherein one of the plurality of strip grooves is communicated with the groove.
9 . The container according to claim 8 , wherein a water receiving cover is further connected to each of the two U-shaped plates; and
a hole of the water receiving cover is positioned directly below the other side of the barrier plate.
10 . A data center at least comprising a container, the container comprising a body having a top surface and a first side surface and a second side surface arranged opposite to each other; wherein
a groove is formed on the top surface, the groove extends from the first side surface to the second side surface and divides the top surface into a first part and a second part, both the first part and the second part are slantwise arranged downwards towards the groove; and a bottom surface of the groove is slantwise arranged downwards towards at least one end of the groove, such that when rainwater falls on the first part and the second part, the rainwater flows into the groove under a guidance of the first part and the second part, and flows out of the top surface under the guidance of the groove.
11 . The data center according to claim 10 , wherein the bottom surface of the groove is constructed to be slantwise arranged downwards from a middle part of the groove towards the first side surface and the second side surface, respectively.
12 . The data center according to claim 10 , wherein the bottom surface of the groove is constructed to be slantwise arranged downwards from the first side surface to the second side surface.
13 . The data center according to claim 12 , wherein the container further comprising a buffer structure, wherein
the buffer structure is detachably connected to the body, and the buffer structure is positioned on the second side surface, such that the rainwater flowing out of the second side surface flows to ground after being buffered by the buffer structure.
14 . The data center according to claim 13 , wherein the buffer structure comprises a barrier plate;
two connecting components are respectively connected to two ends of the barrier plate, and the barrier plate is detachably connected to the body through the two connecting components; and one side of the barrier plate is adhered on the second side surface, and other side of the barrier plate extends along a direction away from the second side surface.
15 . The data center according to claim 14 , wherein the second side surface is provided with a plurality of strip grooves arranged at intervals, the plurality of strip grooves extend from a top of the second side surface to a bottom of the second side surface, and the plurality of strip grooves further form a plurality of protruding parts on the second side surface; and
each of the two connecting components comprises a U-shaped plate connected to the barrier plate, and an interference connection is formed between each of the two U-shaped plates and each of the plurality of protruding parts to connect the barrier plate to the body.
16 . The data center according to claim 15 , wherein the barrier plate comprises a transverse plate and a plurality of protrusions; and
the plurality of protrusions are spaced along a length direction of the transverse plate, and the plurality of protrusions are inserted into the plurality of strip grooves in one-to-one correspondence.
17 . The data center according to claim 16 , wherein one of the plurality of strip grooves is communicated with the groove.
18 . The data center according to claim 17 , wherein a water receiving cover is further connected to each of the two U-shaped plates; and
a hole of the water receiving cover is positioned directly below the other side of the barrier plate.Join the waitlist — get patent alerts
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