AIR HANDLING UNIT COMPRISING FLOW GUIDING STATOR DISC
20230120245 · 2023-04-20
Inventors
Cpc classification
Y02B30/56
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F24F13/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F12/006
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D17/165
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F13/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2250/52
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/441
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D25/166
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F7/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02B30/70
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
F24F13/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An AHU includes air channels. The air channel includes an air inlet and outlet guiding supply air into a building from outside or extract air from a building to the outside. The AHU is connected to an air ventilation ducting system. The AHU further includes a fan inducing a flow in the system when connected thereto. The fan provides a radial flow or mixed flow. The flow from the fan is redirected from radial flow to axial flow on its way from the inlet to the outlet. To provide a more efficient flow when the air flow from the fan changes direction, the fan includes a stator ring. The stator ring has an inner circumference encircling the fan's back plate and a surface essentially levelled with the surface at the edge of the back plate. The AHU may also include a flow guiding body guiding the air further downstream.
Claims
1. An Air Handling Unit, AHU, having an extract air channel comprising at least one extract air inlet for guiding extract air from a building to the outside through at least one extract air outlet and/or a supply air channel comprising at least one supply air inlet for guiding supply air from the outdoor into a building through at least one supply air outlet adapted to be connected to an air ventilation ducting system, said AHU further comprising at least one fan in order to induce a flow in the air ventilation ducting system when connected, said fan having a front disc, a back plate and a plurality of fan blades located between the front disc and the back plate, said front disc having a hole where through air enters and said fan blades being arranged to provide a radial flow or mixed flow from the fan, wherein said fan further comprising a stator ring having an inner circumference adapted to encircle said back plate and having a surface essentially levelled with the surface at the edge of the back plate.
2. The Air Handling Unit, AHU according to claim 1, wherein said surface of the stator ring being bent backwards so as to provide a flow guide for the radial flow from the fan when the air flow deflects and change direction from being a mainly radial flow to a mainly axial flow.
3. The Air Handling Unit, AHU according to claim 2, wherein said surface of the stator ring is bent at least 20 degrees between the stator ring's inner circumference and an outer circumference.
4. The Air Handling Unit, AHU according to claim 2, wherein said stator ring forms part of a flow guiding body extending backwards in the axial direction.
5. The Air Handling Unit, AHU according to claim 2, wherein said stator ring is designed to interact with a flow guiding body extending backwards in the axial direction and adapted to fit in with the outer edge of the stator ring to form a common flow guiding body.
6. The Air Handling Unit, AHU according to claim 4, wherein said stator ring and flow guiding body are designed to extend backwards in the radial direction at least a distance L corresponding to the radius of the back plate, said distance L measured from the back plate.
7. The Air Handling Unit, AHU according to claim 4, wherein said flow guiding body has a width of a cross sectional plane in a plane perpendicular to the rotational axis. at a length from the back plate corresponding to at least half the length of the extension of the flow guiding body along the rotational axis of the fan being larger than the diameter of the back plate.
8. The Air Handling Unit, AHU according to claim 4, wherein said stator ring and flow guiding body defines an essentially continuous surface enclosing a space stretching from the edge of the back plate and backwards in the axial direction.
9. The Air Handling Unit, AHU according to claim 7, wherein said flow guiding body has an outer surface shape that is a semi-spherical shape or truncated cone.
10. The Air Handling Unit, AHU according to claim 3, wherein said stator ring forms part of a flow guiding body extending backwards in the axial direction.
11. The Air Handling Unit, AHU according to claim 3, wherein said stator ring is designed to interact with a flow guiding body extending backwards in the axial direction and adapted to fit in with the outer edge of the stator ring to form a common flow guiding body.
12. The Air Handling Unit, AHU according to claim 4, wherein said stator ring is designed to interact with a flow guiding body extending backwards in the axial direction and adapted to fit in with the outer edge of the stator ring to form a common flow guiding body.
13. The Air Handling Unit, AHU according to claim 5, wherein said stator ring and flow guiding body are designed to extend backwards in the radial direction at least a distance L corresponding to the radius of the back plate, said distance L measured from the back plate.
14. The Air Handling Unit, AHU according to claim 5, wherein said flow guiding body has a width) of a cross sectional plane in a plane perpendicular to the rotational axis, at a length from the back plate corresponding to at least half the length of the extension of the flow guiding body along the rotational axis of the fan being larger than the diameter of the back plate.
15. The Air Handling Unit, AHU according to claim 6, wherein said flow guiding body has a width) of a cross sectional plane in a plane perpendicular to the rotational axis, at a length from the back plate corresponding to at least half the length of the extension of the flow guiding body along the rotational axis of the fan being larger than the diameter of the back plate.
16. The Air Handling Unit, AHU according to claim 5, wherein said stator ring and flow guiding body defines an essentially continuous surface enclosing a space stretching from the edge of the back plate and backwards in the axial direction.
17. The Air Handling Unit, AHU according to claim 6, wherein said stator ring and flow guiding body defines an essentially continuous surface enclosing a space stretching from the edge of the back plate and backwards in the axial direction.
18. The Air Handling Unit, AHU according to claim 10, wherein said stator ring is designed to interact with a flow guiding body extending backwards in the axial direction and adapted to fit in with the outer edge of the stator ring to form a common flow guiding body.
19. The Air Handling Unit, AHU according to claim 10, wherein said stator ring and flow guiding body are designed to extend backwards in the radial direction at least a distance L corresponding to the radius of the back plate, said distance L measured from the back plate.
20. The Air Handling Unit, AHU according to claim 11, wherein said stator ring and flow guiding body are designed to extend backwards in the radial direction at least a distance L corresponding to the radius of the back plate, said distance L measured from the back plate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The present invention will now be described more in detail with reference to the appended drawings, where:
[0018]
[0019]
[0020]
[0021]
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0022] In
[0023] The design of the AHU 100 in
[0024] In
[0025] In
[0026] Hence, the above figures only serves as a few examples from a multitude of different kinds of AHUs which may suitably be used for a fan 1, 1a, 1b as will be described below.
[0027] In
[0028] The flow of air through the fan 1 is disclosed in
[0029] In
[0030] In
[0031] In
[0032] The design of the stator ring 5 in
[0033] In
[0034] In
[0035] The flow guiding body 54 disclosed in
[0036] In
[0037] In
[0038]
[0039] In
[0040] In
[0041]
[0042] In a specific embodiment of the invention, the flow guiding body 54 has a width or diameter D(x) at a distance X along the rotational axis of the fan 1 corresponding to at least half the length L of the body 54 which is larger than the diameter FD of the back plate. The width or diameter of the body 54 at a specific distance x from the back plate 3 should be measured in the body 54 in a cross sectional plane being a plane perpendicular to the rotational axis of the fan 1.
[0043] In summary, the disclosure relates to an air handling unit, AHU, 100 with an extract air channel 102 comprising at least one extract air inlet 102a for guiding extract air from a building to the outside through at least one extract air outlet 102b and/or a supply air channel 103 comprising at least one supply air inlet 103a for guiding supply air from the outdoor into a building through at least one supply air outlet 103b adapted to be connected to an air ventilation ducting system 101. Furthermore, the AHU 100 comprises at least one fan 1, 1a, 1b in order to induce a flow in the air ventilation ducting system 101 when connected. The fan 1, 1a, 1b has a front disc 2, a back plate 3 and a plurality of fan blades 4 located between the front disc 2 and the back plate 3. The front disc 2 has a hole 21 where through air enters and said fan blades 4 are arranged to provide a radial flow or mixed flow from the fan 1, 1a, 1b,
[0044] Furthermore, according to the disclosure, the fan 1, 1a, 1b comprises a stator ring 5 having an inner circumference 51 adapted to encircle the plate 3 and having a surface 52 which is essentially levelled with the surface at the edge 31 of the back plate 3.
[0045] According to a possible embodiment, the surface 52 of the stator ring 5 is bent backwards so as to provide a flow guide for the radial flow from the fan 1, 1a, 1b when the air flow deflects and changes direction from being a mainly radial flow to a mainly axial flow. This is shown in
[0046] As indicated in the drawings,
[0047] The above disclosed embodiments in