FLOW-DIRECTING ELEMENT, FLOW-DIRECTING SYSTEM AND HEATING APPARATUS
20230051497 ยท 2023-02-16
Inventors
Cpc classification
F23M9/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23D2900/21002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23D3/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23D2900/05002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23L1/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60H1/00314
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60H1/22
PERFORMING OPERATIONS; TRANSPORTING
B60H1/00
PERFORMING OPERATIONS; TRANSPORTING
F23D3/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A flow-directing element for a heating apparatus, in particular a heating apparatus with an evaporator burner, having a body which comprises a laterally arranged inflow region on an underside of the flow-directing element, having a centrally arranged outflow region, which includes a through-passage from an underside of the flow-directing element to an upper side of the flow-directing element, the upper side being located opposite the underside, and having at least one guide element, which is arranged such that it allows flow to be guided from the inflow region to the outflow region.
Claims
1. Flow-directing element for a heating apparatus having a body which comprises a laterally arranged inflow region on an underside of the flow-directing element, having a centrally arranged outflow region, which comprises a through-passage from an underside of the flow-directing element to an upper side of the flow-directing element, the upper side being located opposite the underside, and having at least one guide element which is arranged such that it allows flow to be guided from the inflow region to the outflow region.
2. Flow-directing element according to claim 1, wherein the flow-directing element is a molded plastic part.
3. Flow-directing element according to claim 1, wherein the flow-directing element has a recess for inserting a glow plug.
4. Flow-directing element according to claim 1, wherein the inflow region is designed to accommodate a blower.
5. Flow-directing element according to claim 1, wherein the guide element or elements are designed to expand the air flow from the inflow region to the outflow region in a fan-like manner, and/or to divide the air flow from the inflow region and to guide a first part to the outflow region and to guide a further part around the outflow region in the peripheral direction and then to guide it radially inwards to the outflow region at one or more openings.
6. Flow-directing element according to claim 1, the flow-directing element having, on a side facing away from the guide element or elements, recesses for the insertion of a fastening element for fixing in a blower vestibule or combustion air vestibule of an evaporator burner.
7. Flow-directing system for a heating apparatus comprising a flow-directing element according to claim 1 and a fixing element.
8. Flow-directing system according to claim 7, wherein the fastening element is a spring element.
9. Heating apparatus with an evaporator burner with a blower vestibule or combustion air vestibule and an eccentric blower, comprising a flow-directing system according to claim 7.
10. Heating apparatus according to claim 9, wherein the flow-directing element is received in the blower space or combustion air vestibule in a self-centering manner.
11. Flow-directing element of claim 1, further comprising an evaporator burner.
12. Flow-directing element according to claim 2, wherein the flow-directing element is an injection molded plastic part.
13. Flow-directing element according to claim 3, wherein the recess is arranged on a side opposite the inflow region.
14. Flow-directing element according to claim 4, wherein the inflow region is designed as a bulge.
15. Flow-directing system for a heating apparatus according to claim 7, further comprising an evaporator burner.
16. Flow-directing system according to claim 8, wherein the spring element is formed from a spring steel.
Description
[0023] The disclosure is also explained in more detail below with respect to further features and advantages by means of the description of embodiments and with reference to the accompanying drawings. It shows in each case in a principle sketch:
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032] Further, the flow-directing element 100 has a central outflow region 104 which allows air to pass from an underside of the flow-directing element 100 to an upper side of the flow-directing element. Guide elements 106 are disposed on the underside of the flow-directing element 100. The flow-directing element 100 may be, for example, a molded plastic part.
[0033] The flow-directing element 100 has a recess 108 for receiving a glow pin. Furthermore, a first recess 112 and a second recess 114 are shown in the upper side shown in
[0034]
[0035]
[0036]
[0037]
REFERENCE NUMERALS
[0038] 2 heating apparatus [0039] 4 evaporator burner [0040] 8 combustion chamber [0041] 10 evaporator receptacle [0042] 12 evaporator element [0043] 16 combustion air guide element [0044] 14 combustion chamber wall [0045] 18 gap [0046] 20 combustion air vestibule [0047] 22 combustion air passage openings [0048] 26 Bottom wall [0049] 24 combustion air inlet [0050] 36 feed tube [0051] 42 first flow path [0052] 44 exhaust gas discharge [0053] 46 second flow path [0054] 100 flow-directing element [0055] 102 inflow region [0056] 104 outflow region [0057] 106 guide element [0058] 108 recess [0059] 110 opening [0060] 112 first recess [0061] 114 second recess [0062] 120 fastening element [0063] 122 tongue [0064] T thickness