Robotic service device and handling method
US-2024367899-A1 · Nov 7, 2024 · US
US2025035371A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2025035371-A1 |
| Application number | US-202218715538-A |
| Country | US |
| Kind code | A1 |
| Filing date | Dec 6, 2022 |
| Priority date | Dec 15, 2021 |
| Publication date | Jan 30, 2025 |
| Grant date | — |
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An automated grid based storage and retrieval system includes a framework structure. The framework structure includes upright members and a grid of horizontal rails provided at upper ends of the upright members. The framework structure defines at least one storage volume below the horizontal rails. The at least one storage volume includes a plurality of storage, a plurality of walls, a first plenum, a first plurality of transversally directing air ducts, a first and second plurality of horizontally directing air ducts, and a cooling system. The plurality of storage columns are arranged adjacent one another. The plurality of walls surround an outer extent of the plurality of storage columns. The first plenum extend horizontally beneath the storage columns. The first plurality of transversally directing air ducts are connected to at least one fan adapted to draw air from outside the at least one storage volume. The first plurality of horizontally directing air ducts are positioned to distribute the air horizontally below the horizontal rails to provide a first horizontal air curtain. The cooling system is adapted to draw air from the first plenum, cool the air, and blow cooled air from an output of the cooling system as a cooled airflow. The second plurality of horizontally directing air ducts are adapted to receive the cooled airflow from the cooling system through a first air damper, the second plurality of horizontally directing air ducts being positioned at a level below the first plurality of horizontally directing air ducts to distribute at least a first portion of the cooled airflow horizontally above an uppermost layer of the storage columns.
Opening claim text (preview).
1 . An automated grid based storage and retrieval system, comprising: a framework structure comprising upright members and a grid of horizontal rails provided at upper ends of the upright members, the framework structure defining at least one storage volume below the horizontal rails, the at least one storage volume comprising: a plurality of storage columns arranged adjacent one another, a plurality of walls surrounding an outer extent of the plurality of storage columns; a first plenum extending horizontally beneath the storage columns; a first plurality of transversally directing air ducts connected to at least one fan adapted to draw air from outside the at least one storage volume, the first plurality of horizontally directing air ducts being positioned to distribute the air horizontally below the horizontal rails to provide a first horizontal air curtain; a cooling system adapted to draw air from the first plenum, cool the air, and blow cooled air from an output of the cooling system as a cooled airflow; and a second plurality of horizontally directing air ducts adapted to receive the cooled airflow from the cooling system through a first air damper, the second plurality of horizontally directing air ducts being positioned at a level below the first plurality of horizontally directing air ducts to distribute at least a first portion of the cooled airflow horizontally above an uppermost layer of the storage columns. 2 . The storage and retrieval system according to claim 1 , wherein the system comprises a heating element to heat up the air drawn from outside the storage volume before distributing the air horizontally below the horizontal rails. 3 . The storage and retrieval system according to claim 1 , wherein the first plenum is configured to allow cooled air from the second plurality of horizontally directing air ducts to be drawn into the first plenum via the plurality of storage columns. 4 . The storage and retrieval system according to claim 1 , wherein the first plenum is configured to allow cooled air from the second plurality of horizontally directing air ducts to be drawn into the first plenum via a plurality of ventilation apertures. 5 . The storage and retrieval system according to claim 1 , comprising a raised floor having a plurality of ventilation holes provided between the first plenum and the plurality of storage columns. 6 . The storage and retrieval system according to claim 1 , comprising a second plenum extending vertically between the outer extent of the plurality of storage columns and at least one of the plurality of walls. 7 . The storage and retrieval system according to claim 6 , comprising: a plurality of downwardly directing air ducts connected to the output of the cooling system through a second air damper, the plurality of downwardly directing air ducts being positioned to distribute a second portion of the cooled airflow downwards into the second plenum. 8 . The storage and retrieval system according to claim 7 , comprising a controller adapted to adjust the first air damper and the second air damper to control a relative distribution of the first portion of the cooled airflow and the second portion of the cooled airflow. 9 . The system according to claim 7 , wherein the plurality of downwardly directing air ducts are arranged below the second plurality of horizontally directing air ducts. 10 . The system according to any of claim 7 , wherein the plurality of vertically directing air ducts are arranged alongside the second plurality of transversally directing air ducts. 11 . The storage and retrieval system according to claim 1 , comprising a controller and a third air damper, the third air damper arranged between the at least one fan and the first plurality of transversally directing air ducts, the third air damper comprising a pressure sensor, and the controller is adapted to control the speed of the at least one fan based on a predetermined pressure level. 12 . The storage and retrieval system according to claim 1 , comprising a controller, the controller being adapted to control the air drawn from the first plenum through the cooling system such that air in the first plenum is at a lower pressure than air above the storage columns. 13 . The storage and retrieval system according to claim 1 , wherein the storage volume comprises at least one temperature sensor and a controller, the controller being adapted to adjust airflow based on a temperature measured by the at least one temperature sensor. 14 . The storage and retrieval system according to claim 12 , wherein the controller is configured to increase a pressure differential between the air in the first plenum and the air above the storage columns, or lower the temperature of the cooled air from the output of the cooling system, when the temperature sensor registers a temperature above a predetermined value. 15 . The storage and retrieval system according to claim 1 , wherein at least portions of the cooled airflow from the cooling system through the second plurality of horizontally directing air ducts provides a second horizontal air curtain below the first horizontal air curtain. 16 . The storage and retrieval system according to claim 1 , wherein the cooling system comprises a chiller to cool the air, and a fan to draw the air from the first plenum. 17 . The storage and retrieval system according to claim 1 , wherein the system is adapted to hold a freezing storage volume temperature in the storage volume. 18 . The storage and retrieval system according to claim 1 , wherein a temperature of the air being drawn from outside the storage volume is in the range of −2° C. to +10° C. 19 . A method of controlling a storage volume temperature in the storage and retrieval system comprising: a framework structure comprising upright members and a grid of horizontal rails provided at upper ends of the upright members, the framework structure defining at least one storage volume below the horizontal rails, the at least one storage volume comprising: a plurality of storage columns arranged adjacent one another, a plurality of walls surrounding an outer extent of the plurality of storage columns; a first plenum extending horizontally beneath the storage columns; a first plurality of transversally directing air ducts connected to at least one fan adapted to draw air from outside the at least one storage volume, the first plurality of horizontally directing air ducts being positioned to distribute the air horizontally below the horizontal rails to provide a first horizontal air curtain; a cooling system adapted to draw air from the first plenum, cool the air, and blow cooled air from an output of the cooling system as a cooled airflow; and a second plurality of horizontally directing air ducts adapted to receive the cooled airflow from the cooling system through a first air damper, the second plurality of horizontally directing air ducts being positioned at a level below the first plurality of horizontally directing air ducts to distribute at least a first portion of the cooled airflow horizontally above an uppermost layer of the storage columns, the method comprising: adjusting the cooling system to blow cooled air from the output of the cooling system as the cooled airflow at a first temperature; adjusting the first air damper to control the first portion of the cooled airflow, thereby controlling a speed of the cooled airflow through the plurality of storage columns, and controlling the storage volume temperature in the plu
characterised by air ducts · CPC title
using ducts · CPC title
Air flow control arrangements · CPC title
Stationary devices, e.g. cold-rooms · CPC title
with access from above · CPC title
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