Test system for wind turbine dump load
US-9217420-B2 · Dec 22, 2015 · US
US9689376B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9689376-B2 |
| Application number | US-201213710686-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 11, 2012 |
| Priority date | Dec 13, 2011 |
| Publication date | Jun 27, 2017 |
| Grant date | Jun 27, 2017 |
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A sealing arrangement includes an interface seal part arranged between a stationary element of a wind turbine and a rotary element of the wind turbine. The interface seal part is arranged to establish a seal between an interior of the stationary element and an exterior environment. Also a brake disc is realized to accommodate at least a portion of an interface seal part of such a sealing arrangement. Also described is a wind turbine which includes the sealing arrangement and the brake disc.
Opening claim text (preview).
The invention claimed is: 1. A sealing arrangement for a direct drive wind turbine, comprising: an interface seal part arranged between a stationary canopy of the direct drive wind turbine and a rotary brake disc of the direct drive wind turbine, the interface seal part is arranged to press against a flat surface of the rotary brake disc to establish a seal between an interior of the stationary canopy and an exterior environment; wherein the interface seal part comprises an essentially annular shape corresponding to an annular shape of the rotary brake disc of the direct drive wind turbine; and wherein the interface seal part is arranged to bridge a gap between the stationary canopy and the rotary brake disc of the direct drive wind turbine. 2. The sealing arrangement according to claim 1 , wherein the interface seal part is made of a flexible material. 3. The sealing arrangement according to claim 2 , wherein the interface seal part is made of a foam. 4. The sealing arrangement according to claim 3 , wherein the interface seal part is made of a synthetic foam. 5. The sealing arrangement according to claim 3 , wherein the interface seal part comprises two sealing strips, and wherein the two sealing strips are arranged to diverge in the direction of the rotary brake disc. 6. The sealing arrangement according to claim 5 , wherein each sealing strip comprises a plurality of pleats. 7. The sealing arrangement according to claim 3 , wherein the interface seal comprises a sealing strip having a plurality of pleats. 8. The sealing arrangement according to claim 1 , wherein the interface seal part comprises a plurality of sealing strips. 9. The sealing arrangement according claim 1 , wherein at least one region of the interface seal part comprises a low-friction material. 10. The sealing arrangement according to claim 1 , wherein the interface seal part comprises a rotary seal part arranged on a rotary brake disc of the wind turbine such that the rotary seal part rotates with the rotary brake disc. 11. The sealing arrangement according to claim 10 , further comprising: wherein the interface seal part comprises a stationary seal part arranged on a stationary canopy of the wind turbine. 12. The sealing arrangement according to claim 11 , wherein the stationary seal part and the rotary seal part are realized to provide a nested arrangement in the assembled state of the sealing arrangement. 13. A brake disc for a wind turbine which is realized to accommodate at least a portion of an interface seal part of a sealing arrangement according to claim 1 . 14. The brake disc according to claim 13 , comprising: a recess dimensioned to accommodate a portion of an interface seal part of the sealing arrangement. 15. A wind turbine comprising the brake disc according to claim 13 .
Mechanical Engineering · mapped topic
Cross-Sectional Technologies · mapped topic
with axial path · CPC title
without external means for pressing the ring against the face, e.g. slip-ring with a resilient lip · CPC title
by mechanical means acting on the power train · CPC title
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