Air Flow Apparatus Including Cleaning Device for Cleaning an Array of Air Channels of the Air Flow Apparatus
20220205745 ยท 2022-06-30
Inventors
Cpc classification
F28B1/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28G15/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B08B3/024
PERFORMING OPERATIONS; TRANSPORTING
F28D1/024
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28G15/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B08B9/023
PERFORMING OPERATIONS; TRANSPORTING
International classification
F28G1/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28G15/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Air flow apparatus has at least one array of air channels, an air duct covering the array of air channels and being connected to the air channels, a fan arranged at the air duct for generating an air flow through the array of air channels, a cleaning device for the array of air channels arranged inside the air duct, the cleaning device including: a nozzle bar extending in front of the array of air channels and a nozzle manifold including a plurality of nozzles arranged along the nozzle bar and directed towards the array of air channels, wherein the nozzle bar is mounted to the air flow apparatus to be movable across at least a section of the array of air channels.
Claims
1. An air flow apparatus comprising: at least one array of air channels, an air duct covering the at least one array of air channels and being connected to the air channels, a fan arranged at the air duct for generating an air flow through the at least one array of air channels, and a cleaning device for the at least one array of air channels, arranged inside the air duct, the cleaning device comprising: a nozzle bar extending in front of the at least one array of air channels, and a nozzle manifold including a plurality of nozzles arranged along the nozzle bar and directed towards the at least one array of air channels, wherein the nozzle bar is mounted to the air flow apparatus to be movable across at least a section of the at least one array of air channels, wherein the cleaning device further comprises: at least one rail arranged on the at least one array of air channels; and a trolley carrying the nozzle bar and movable along the rail in a front and rear direction of the trolley, wherein the nozzle bar extends in a transverse direction of the trolley, wherein the trolley comprises a motor and at least one driving wheel for moving the trolley along the rail, and wherein the trolley has one of the following: at least one wheel, at least one slider or at least one wheel and at least one slider, that engages a bearing surface of the rail against lifting the trolley from the rail.
2-4. (canceled)
5. An air flow apparatus comprising: at least one array of air channels, an air duct covering the at least one array of air channels and being connected to the air channels, a fan arranged at the air duct for generating an air flow through the at least one array of air channels, and a cleaning device for the at least one array of air channels, arranged inside the air duct, the cleaning device comprising: a nozzle bar extending in front of the at least one array of air channels, and a nozzle manifold including a plurality of nozzles arranged along the nozzle bar and directed towards the at least one array of air channels, wherein the nozzle bar is mounted to the air flow apparatus to be movable across at least a section of the at least one array of air channels, wherein the cleaning device further comprises a fastener arranged on the nozzle bar, wherein the nozzle bar is mounted to a shaft of the air flow apparatus by the fastener to be rotatable about an axis of the shaft in a direction across at least a section of the at least one array of air channels, the shaft having a rotation axis perpendicular to a surface of the array of air channels, wherein the nozzle bar includes at least one fixed arm and at least one pivotable arm that is hinged to the at least one fixed arm, wherein at least some of the plurality of nozzles of the nozzle manifold are arranged along the fixed arm, and wherein at least some of the plurality of nozzles of the nozzle manifold are arranged along the pivotable arm.
6. (canceled)
7. (canceled)
8. The air flow apparatus according to claim 5, wherein the air flow apparatus comprises a guiding surface for the at least one pivotable arm, wherein the at least one pivotable arm is configured to pivot in a first pivoting direction when the guiding surface of the air flow apparatus makes contact with one end of the pivotable arm.
9. The air flow apparatus according to claim 8, wherein the nozzle bar comprises at least one spring configured to act against a force applied to the end of the pivotable arm and to pivot the arm in a second pivoting direction opposite of the first pivoting direction when the force of the spring is higher than the force applied to the end of the pivotable arm.
10. The air flow apparatus according to claim 8, wherein the guiding surface is a surface of the air duct.
11. The air flow apparatus according to claim 5, wherein the air flow apparatus comprises a guiding surface for the at least one pivotable arm, and wherein the pivotable arm comprises one of the following: at least one slider, at least one wheel or at least one slider and at least one wheel, arranged on at least an end of the pivotable arm that makes contact with the guiding surface.
12. The air flow apparatus according to claim 1, wherein the rail has a hollow profile including a groove that is open at the top side of the rail, wherein inside the groove, there is formed at least one of the at least one bearing surface of the rail.
13. The air flow apparatus according to claim 12, wherein the bearing surface of the rail comprises a left surface and a right surface.
14. The air flow apparatus according to claim 1, wherein the trolley has one of the following: at least one wheel, at least one slider or at least one wheel and at least one slider that engages a guiding surface of the rail for guiding the trolley along the rail.
15. The air flow apparatus according to claim 1, wherein the trolley comprises a proximity switch for changing a moving direction of the trolley when the trolley reaches an end of a cleaning track.
16. The air flow apparatus according to claim 1, wherein the trolley includes a column and a bracket that projects from the column for supporting the nozzle bar from above.
17. The air flow apparatus according to claim 1, wherein the air duct includes at least one access hatch for inserting the cleaning device into the air duct.
18. The air flow apparatus according to claim 17, wherein the air duct includes a hatch door for closing the access hatch.
19. The air flow apparatus according to claim 1, wherein the air flow apparatus is an induced draft heat exchanger, and the array of air channels is a cooling array of the induced draft heat exchanger.
20. The air flow apparatus according to claim 5, wherein the air flow apparatus is an induced draft heat exchanger, and the array of air channels is a cooling array of the induced draft heat exchanger.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0068] The present invention will become more fully understood from the detailed description of preferred embodiments given herein below and the accompanying drawings, and wherein
[0069]
[0070]
[0071]
[0072]
[0073]
[0074]
DETAILED DESCRIPTION
[0075]
[0076] The air duct 20 has an upper opening 32 which is located next to a fan 34 and allows an airflow, which is drawn by the fan 34 from the base 16 of the air flow apparatus 10, to leave the air duct 20. The fan is driven by a fan shaft 36, extending through the air duct 20 towards the fan 34. The fan shaft 36 is perpendicular to the top surface of the array of air channels 18. The fan shaft 36 may be driven by a motor or drive, known as such.
[0077]
[0078]
[0079] The trolley 40 is configured be removed from and inserted into the rail 38 and the air duct 20 through the access hatch 22 shown in
[0080] To clean the section 18.1 of the array of air channels 18, the trolley 40 is inserted into the cell 12 and onto the (in
[0081] In
[0082] The trolley 40 further includes a L-shaped column 52 having two corresponding side parts 52.1 and 52.2. The trolley 40 further includes a proximity switch 54, arranged on one end of the trolley 40. The proximity switch extends in the first direction and is configured to be switched at a defined position on the rail 38 by moving against a closed hatch 22, for example, to change the moving direction of the trolley 40 or stop the moving of the trolley 40.
[0083]
[0084] The trolley 40 further includes a bearing part 64 extending from the in
[0085]
[0086]
[0087] The arm is 154 is also connected to the arm 152 via a spring 158. The spring 158 is configured to urge the arm 154 from the hinged position in
[0088] The fastener 144 comprises two brackets 164, 166. The brackets 164, 166 face each other and form a tube or collar for receiving a tubular shape in between. The bracket 164 can be screwed to the bracket 166 by screws 168. The brackets 164, 166 are configured to fasten the cleaning device 140 to a rotatable element of the air flow apparatus, preferably the fan shaft 36 shown in
[0089] The nozzle bar 142 further comprises two arm connectors 170 and 172, located towards the ends of the arms 154, 152 that are facing each other, respectively. The arm connectors are connected by a flexible tube (not shown), connecting the respective nozzle manifolds 146 of the arms 152, 154.
[0090]
[0091] The shown working positions of the cleaning device 140 correspond to the postures of the nozzle bar 142 shown in
[0092] In the extended posture, the force exerted by the walls 124.1 and 124.2 onto the arm 154 via the bearing wheels 160, 162 is lower than the opposite force exerted by the spring 158 onto the arm 154. Therefore, the arm 154 is pivoted into its extended position and the nozzle bar 142 extends into the corner of the air duct 120 formed by the walls 124.1 and 124.2. Thereby, the cleaning device 140 is also able to clean the section of the array of air channels 118 located below the corner of the air duct 120.
[0093] As soon as the fan shaft 136 and thus the cleaning device 140 rotates further clockwise, the side walls 124.2 blocks the path of the extended position of the arm 154. The force exerted onto the arm 154 by the wall 124.2 is higher than the opposite force exerted by the spring 158. Subsequently, the arm 154 pivots around the pivot 156 from its extended position into a hinged position. The spring 158 pushes the end of the arm 154 carrying the bearing wheels 160, 162 towards the side wall 124.2. The bearing wheels 160, 162 thus stay in contact with the wall 124.2 and ensure a low friction and wear between the wall 124.2 and the arm 154. This process continuous, until the arm 154 is in its maximum hinged position (upper hinged position, corresponds to
[0094] This embodiment allows the cleaning device 140 to clean the whole area below the air duct 120 and thus the whole area of the array of air channels 118.
[0095] The embodiments of the air flow apparatus 10, 110 and the cleaning device may be the combined as necessary. For example, the shown nozzle bar 142 may be used for the embodiment shown in