IP Library Granted Patent US 9,052,108
Granted Patent B2
US 9,052,108 · App. 13/189,930 · Granted Jun 9, 2015

Premixing combustion device

Inventors: Gerhard Werle (Frastanz, AT); Markus Telian (Hörbranz, AT); Günther Köb (Hard, AT)
Assignee: Hovalwerk AG
F23D14/60F23N2027/00F23C2900/99006F23D14/34F23L3/00F23N1/025F23N2027/02F23N2035/06
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,052,108
App. No.
13/189,930
Granted
Jun 9, 2015
Kind
B2
Abstract

In a premixing combustion device ( 1 ) for a heating boiler, comprising a blower ( 2 ) which delivers a combustion mixture composed of fuel and air from an outlet opening ( 8 ) of the blower ( 2 ) via a burner cylinder ( 9 ) to a combustion zone, wherein a mixing device ( 3 ) arranged upstream of the blower ( 2 ) prepares the combustion mixture, it is sought to provide a solution which, in a structurally simple manner, ensures reliable starting of the heating boiler and prevents failures. This is achieved by means of a throughflow reduction device ( 10 ) which is arranged between the outlet opening ( 8 ) of the blower ( 2 ) and the burner cylinder ( 9 ) and which has a throughflow reduction element ( 13 ) which can be adjusted between a position in which it opens the outlet opening ( 8 ) of the blower ( 2 ) and a position in which it reduces the size of the outlet opening ( 8 ) of the blower ( 2 ).

Claims (27)

1. Premixing combustion device for a heating boiler, comprising a burner cylinder, a mixing device and a blower, wherein the blower delivers a combustion mixture composed of fuel and air from an outlet opening of the blower via the burner cylinder to a combustion zone, wherein the mixing device arranged upstream of the blower prepares the combustion mixture, and wherein a throughflow reduction device is arranged between the outlet opening of the blower and the burner cylinder and has a throughflow reduction element which can be adjusted between a position in which it opens the outlet opening of the blower and a position in which it reduces the size of the outlet opening of the blower,

wherein, upon starting of the combustion device, the throughflow reduction element is arranged in the position in which it reduces the size of the outlet opening of the blower, and after the ignition of the combustion mixture, said throughflow reduction element is arranged in the position in which it opens the outlet opening of the blower, and

wherein the throughflow reduction device is coupled to the premixing combustion device such that the throughflow reduction element is automatically moved from the position in which it opens the outlet opening of the blower into the position in which it reduces the size of the outlet opening of the blower during the ignition phase.

2. Premixing combustion device according to claim 1 wherein, when the throughflow reduction element is in the position in which it reduces the size of the outlet opening of the blower, the cross section of the outlet opening which remains free amounts to 15% to 45% of the cross section of the outlet opening when the throughflow reduction element is in the open position.

3. Premixing combustion device according to claim 2 , wherein the throughflow reduction device has a restoring element which imparts a force which forces the throughflow reduction element into the position in which its opens the outlet opening of the blower.

4. Premixing combustion device according to claim 3 , wherein the throughflow reduction device has an electromagnet which is coupled to the combustion device such that, upon starting of the combustion device, the electromagnet moves the throughflow reduction element counter to the force of the restoring element, from the position in which its opens the outlet opening of the blower into the position in which it reduces the size of the outlet opening of the blower.

5. Premixing combustion device according to claim 1 , wherein the throughflow reduction element is a rotatably mounted flap element.

6. Premixing combustion device according to claim 5 , wherein, when the throughflow reduction element is in the position in which it reduces the size of the outlet opening of the blower, the cross section of the outlet opening which remains free amounts to 15% to 45% of the cross section of the outlet opening when the throughflow reduction element is in the open position.

7. Premixing combustion device according to claim 5 , wherein the throughflow reduction device has a restoring element which imparts a force which forces the throughflow reduction element into the position in which its opens the outlet opening of the blower.

8. Premixing combustion device according to claim 1 , wherein the throughflow reduction device has a restoring element which imparts a force which forces the throughflow reduction element into the position in which its opens the outlet opening of the blower.

9. Premixing combustion device according to claim 8 , wherein the throughflow reduction device has an electromagnet which is coupled to the combustion device such that, upon starting of the combustion device, the electromagnet moves the throughflow reduction element counter to the force of the restoring element, from the position in which its opens the outlet opening of the blower into the position in which it reduces the size of the outlet opening of the blower.

10. Premixing combustion device according to claim 8 , wherein the throughflow reduction element is a rotatably mounted flap element.

11. Premixing combustion device according to claim 1 , further including an electromagnet which is coupled to the combustion device such that, upon starting of the combustion device, the electromagnet automatically moves the throughflow reduction element, counter to the force of the restoring element, from the position in which its opens the outlet opening of the blower into the position in which it reduces the size of the outlet opening of the blower.

12. Premixing combustion device according to claim 1 , wherein automatic movement of the throughflow reduction element is initiated or occurs substantially simultaneous with starting of the combustion device for increasing blower pressure and/or reducing the flow speed of the combustion mixture during the ignition phase.

13. Premixing combustion device according to claim 12 , wherein the throughflow reduction element is automatically moved back from the position in which it reduces the size of the outlet opening of the blower to the position in which it opens the outlet opening of the blower immediately after or substantially simultaneous with successful ignition of the combustion mixture.

14. Method for starting a premixing combustion device for a heating boiler, comprising:

preparing a combustion mixture formed from fuel and air with a mixing device arranged upstream of a blower,

delivering the combustion mixture from an outlet opening of the blower, via a burner cylinder to a combustion zone,

starting the combustion device,

at the same time as the starting of the combustion device, moving a throughflow reduction element, which is arranged between the outlet opening of the blower and the burner cylinder, of a throughflow reduction device from a position in which it opens the outlet opening of the blower into a position in which it reduces the size of the outlet opening of the blower.

15. Method according to claim 14 , wherein, when the throughflow reduction element is in the position in which it reduces the size of the outlet opening of the blower, the cross section of the outlet opening which remains free is reduced in size to 15% to 45% of the cross section of the outlet opening when the throughflow reduction element is in the open position.

16. Method according to claim 15 , wherein, after the starting of the combustion device, the throughflow reduction element is moved from the position in which it reduces the size of the outlet opening of the blower into the position in which it opens the outlet opening of the blower.

17. Method according to claim 14 wherein, after the starting of the combustion device, the throughflow reduction element is moved from the position in which it reduces the size of the outlet opening of the blower into the position in which it opens the outlet opening of the blower.

18. Method according to claim 14 , wherein the throughflow reduction element is a rotatably mounted flap element.

19. Premixing combustion device for a heating boiler, comprising a burner cylinder, a mixing device and a blower, wherein the blower delivers a combustion mixture composed of fuel and air from an outlet opening of the blower via the burner cylinder to a combustion zone, wherein the mixing device arranged upstream of the blower prepares the combustion mixture, and wherein a throughflow reduction device is arranged between the outlet opening of the blower and the burner cylinder and has a throughflow reduction element which can be adjusted between a position in which it opens the outlet opening of the blower and a position in which it reduces the size of the outlet opening of the blower,

wherein, upon starting of the combustion device, the throughflow reduction element is arranged in the position in which it reduces the size of the outlet opening of the blower, and after the ignition of the combustion mixture, said throughflow reduction element is arranged in the position in which it opens the outlet opening of the blower, and

wherein the throughflow reduction device comprises an actuating means coupled to the premixing combustion device such that the actuating means automatically moves the throughflow reduction element from the position in which it opens the outlet opening of the blower into the position in which it reduces the size of the outlet opening of the blower during the ignition phase.

Assignments (2)
CHANGE OF NAME Recorded Jun 28, 2017
From: HOVALWERK AG
To: HOVAL AKTIENGESELLSCHAFT
Reel/Frame 043029/0015 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 20, 2011
From: WERLE, GERHARD; TELIAN, MARKUS; KOB, GUNTHER
To: HOVALWERK AG
Reel/Frame 026936/0148 →
Priority Claims (1)
EP 10170814 · Jul 26, 2010 · regional
Continuity (1)
Related Publication 20120021365A1 · Jan 26, 2012