IP Library › Granted Patent US 11,371,730
Granted Patent B2
US 11,371,730 · App. 16/473,228 · Granted Jun 28, 2022

Fan system and arrangement of one or more such fan systems in a flow duct

Inventors: Frieder Loercher (Braunsbach, DE); Matthias Goeller (Weißbach, DE); André Mueller (Forchtenberg, DE)
Assignee: ZIEHL-ABEGG SE
F24F7/065F04D29/44F24F11/0001F04D17/08F04D25/06F24F2013/242
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Quick Facts
Patent No.
US 11,371,730
App. No.
16/473,228
Granted
Jun 28, 2022
Kind
B2
Abstract

A disclosed fan system includes a housing having side walls, an inflow side, and an outflow side; a fan secured in the housing by a mounting; and a backflow blocker mounted to the side walls within the housing on the outflow side of the housing partially blocking a cross-sectional area of the outflow side. The backflow blocker is positioned approximately centrally in a flow path of the housing and is configured to block part of an airflow cross section such that, between side walls of the housing and side walls of the backflow blocker, an annular duct is formed as an air passage. Further, the backflow blocker has a thickness that is greater than 5% of a width of the housing, and is less than 20% of an axial design height of the fan system.

Claims (40)

1. A fan system, comprising:

a housing including side walls, an inflow side, and an outflow side;

at least one fan secured in the housing;

a backflow blocker adjustably mounted to the housing by a mounting on the outflow side of the housing, the backflow blocker being configured to reduce or suppress backflow of air flowing out of the fan system, wherein the backflow blocker is configured as a flat box that is centered in a flow path of the fan system to partially block a cross-section of the flow path such that an annular passage is formed between side walls of the housing and side walls of the backflow blocker such that air can flow through the annular passage;

wherein the backflow blocker has an axial height that is greater than 5% of a width of the housing, and that is less than 20% of an axial design height of the fan system; and

wherein the mounting is configured such that a position of the backflow blocker within the housing can be adjusted.

2. The fan system according to claim 1 , wherein the backflow blocker has a largest effective surface that extends transversely or orthogonally to a flow direction of the fan system.

3. The fan system according to claim 1 wherein, viewed in an axial direction, an outer contour or cross-sectional shape of the backflow blocker is substantially equal to or similar to an inner contour or cross-sectional shape of the housing or of a surrounding flow duct.

4. The fan system according to claim 1 , wherein, viewed in an axial direction, an inner contour of the housing or of a surrounding flow duct is square or rectangular in cross section, and

wherein the backflow blocker is correspondingly square or rectangular in cross section viewed in the axial direction.

5. The fan system according to claim 1 , wherein an inner contour of the housing or of a surrounding flow duct is round in cross section viewed in an axial direction, and

wherein the backflow blocker is accordingly round in cross section viewed in axial direction.

6. The fan system according to claim 1 , wherein the backflow blocker further comprises a central recess or passage and the at least one fan further comprises a motor,

wherein the backflow blocker and the at least one fan are configured such that a pressure-side area of the motor of the at least one fan protrudes into or through the recess or passage of the backflow blocker.

7. The fan system according to claim 1 , wherein the backflow blocker is configured to block the cross-section of the flow path by 40% to 70%.

8. The fan system according to claim 7 , wherein the backflow blocker is configured to reduce the cross-section of the flow path by approximately 55%.

9. The fan system according to claim 1 , wherein the backflow blocker is configured as a sound-absorbing component, and includes sound-absorbing material.

10. The fan system according to claim 9 , wherein the backflow blocker consists of sound-absorbing material.

11. The fan system according to claim 1 , further comprising a nozzle plate mounted to the side walls on the inflow side of the housing, thereby closing the inflow side of the housing, wherein the backflow blocker is configured to be a component of a mounting which fastens the at least one fan to the housing or fastens the at least one fan to the nozzle plate.

12. The fan system according to claim 1 , wherein the mounting for the backflow blocker also mounts the at least one fan to the housing.

13. The fan system according to claim 12 , wherein the backflow blocker is screwed to the mounting or clipped, snapped in, or clamped, to the mounting.

14. The fan system according to claim 1 , wherein the mounting includes round stock or flat stock.

15. The fan system according to claim 1 , further comprising a nozzle plate mounted to the side walls on the inflow side of the housing, thereby closing the inflow side of the housing, wherein the mounting allows a position of the backflow blocker to be adjusted axially relative to the nozzle plate in a direction toward or away from the nozzle plate.

16. The fan system according to claim 1 , wherein the backflow blocker includes sheet metal, plastic, or surface-structured and/or foamed plastic.

17. The fan system according to claim 1 , further comprising a nozzle plate mounted to the side walls on the inflow side of the housing, thereby closing the inflow side of the housing.

18. A system, comprising:

a fan system installed in a flow duct of a ventilation system,

wherein the fan system includes:

a housing including side walls, an inflow side, and an outflow side;

at least one fan secured in the housing;

a backflow blocker adjustably mounted to the housing by a mounting on the outflow side of the housing, the backflow blocker being configured to reduce or suppress backflow of air flowing out of the fan system, wherein the backflow blocker is configured as a flat box that is centered in a flow path of the fan system to partially block a cross-section of the flow path such that an annular passage is formed between side walls of the housing and side walls of the backflow blocker such that air can flow through the annular passage;

wherein the backflow blocker has an axial height that is greater than 5% of a width of the housing, and that is less than 20% of an axial design height of the fan system, and

wherein the mounting is configured such that a position of the backflow blocker within the housing can be adjusted.

19. The system according to claim 18 , wherein a distance of a wall of the flow duct or of a side wall of the housing to a fan axis is less than 0.8 times a largest diameter of an impeller blade of the fan.

20. The system according to claim 18 further comprising at least two fan systems that are positioned next to one another.

21. The system according to claim 18 , further comprising two adjacent fan systems having housings that are in direct contact with one another or that are fastened to one another.

22. The system according to claim 18 , further comprising two adjacent fan systems separated by an axial distance which is equal to or less than 1.6 times a largest diameter of an impeller blade of the at least one fan of each of the fan systems.

23. The system according to claim 18 , further comprising one or more fans having no housing.

24. The system according to claim 18 , further comprising a heat exchanger positioned downstream of the backflow blocker on a pressure side.

25. The fan system according to claim 18 , further comprising a nozzle plate mounted to the side walls on the inflow side of the housing, thereby closing the inflow side of the housing.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2019
From: LOERCHER, FRIEDER; GOELLER, MATTHIAS; MUELLER, ANDRE
To: ZIEHL-ABEGG SE
Reel/Frame 049691/0519 →
Priority Claims (1)
DE 102016226157.6 · Dec 23, 2016 · national
Continuity (1)
Related Publication 20190353364A1 · Nov 21, 2019
Cited By (4)
US 1,140,115 US 1,141,171 US 1,147,463 US 12,215,499