Method and device for cooling steam turbine generating facility
US-2015260055-A1 · Sep 17, 2015 · US
US10227873B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10227873-B2 |
| Application number | US-201414915229-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 12, 2014 |
| Priority date | Sep 30, 2013 |
| Publication date | Mar 12, 2019 |
| Grant date | Mar 12, 2019 |
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A steam turbine has a single-shell turbine casing and specific inner casings arranged inside the turbine casing. The steam turbine has a turbine casing with an outer wall, a turbine shaft mounted rotatably about a turbine axis in the turbine casing, a first turbine part, and at least one second turbine part which is arranged downstream of the first turbine part in the axial direction of the turbine shaft, wherein the expansion direction for steam conducted through the steam turbine runs from the first turbine part to the second turbine part, wherein between the first turbine part and the second turbine part, a sealing shell is arranged on the turbine casing, in particular on the inner side of the outer wall for rotation therewith, the sealing shell being formed in a sealing manner with respect to the turbine shaft via sealing elements.
Opening claim text (preview).
The invention claimed is: 1. A steam turbine, comprising a turbine casing with an outer wall, a turbine shaft mounted rotatably about a turbine axis in the turbine casing, a first turbine part, and a second turbine part which is arranged downstream of the first turbine part in an axial direction of the turbine shaft, wherein an expansion direction for steam conducted through the steam turbine runs from the first turbine part to the second turbine part, between the first turbine part and the second turbine part, a sealing shell arranged on the turbine casing said sealing shell being formed in a sealing manner with respect to the turbine shaft via a sealing element, in the first turbine part, a first inner casing arranged rotationally symmetrically about the first turbine part and sealed with respect to the turbine shaft on an inner side of the outer wall, wherein the first inner casing has a first sealing region which is perpendicular or approximately perpendicular to the turbine axis and divides the first turbine part with respect to the expansion direction into a front part and a rear part, and has a first blade region which is parallel or approximately parallel to the turbine axis, a first guide vane blading arranged on an inner wall of the first blade region which faces the turbine shaft, and a first rotor blading corresponding to the first guide vane blading arranged on the turbine shaft, in the second turbine part, a second inner casing arranged rotationally symmetrically about the second turbine part and sealed with respect to the turbine shaft on the inner side of the outer wall, wherein the second inner casing has a second sealing region which is perpendicular or approximately perpendicular to the turbine axis and divides the second turbine part with respect to the expansion direction into a front part and a rear part, and has a second blade region which is parallel or approximately parallel to the turbine axis, a second guide vane blading arranged on an inner wall of the second blade region which faces the turbine shaft, and a second rotor blading corresponding to the second guide vane blading arranged on the turbine shaft, wherein the first and second blade regions of the first and second inner casings each extend from their respective sealing regions counter to the expansion direction, wherein fresh steam can be guided via at least one fresh steam line through the outer wall of the turbine casing and through the first blade region of the first inner casing into a region between the first blade region and the first sealing region, wherein the first and second sealing regions each have, in a respective region facing the outer wall, respective openings through which steam can pass from the front part into the rear part of each respective turbines part, wherein cold steam can be guided out of the rear part of the first turbine part via at least one first intermediate steam line, wherein superheated steam can be guided via at least one second intermediate steam line through the outer wall of the turbine casing and through the second blade region of the second inner casing into a region between the second blade region and the second sealing region, and wherein exhaust steam from the rear part of the second turbine part can be guided out of the turbine casing via at least one steam outlet line through the outer wall. 2. The steam turbine as claimed in claim 1 , further comprising: at least one third blading with a guide vane blading on the inner side of the outer wall and with a corresponding rotor blading on the turbine shaft arranged in the rear part of the first turbine part. 3. The steam turbine as claimed in claim 2 , further comprising: a fourth blading with a guide vane blading on the inner side of the outer wall and a corresponding rotor blading on the turbine shaft arranged in the rear part of the second turbine part. 4. The steam turbine as claimed in claim 1 , further comprising: a third turbine part arranged in the rear part of the second turbine part or downstream of the rear part of the second turbine part in the expansion direction. 5. The steam turbine as claimed in claim 1 , wherein the first turbine part is a high-pressure turbine part and the second turbine part is a medium-pressure turbine part or a low-pressure turbine part. 6. The steam turbine as claimed in claim 1 , wherein the sealing regions are sealed with respect to the turbine shaft via sealing elements. 7. The steam turbine as claimed in claim 1 , wherein the sealing shell is arranged on the turbine casing on the inner side of the outer wall. 8. The steam turbine as claimed in claim 4 , wherein the third turbine part comprises a low-pressure turbine part. 9. A steam turbine comprising: an outer casing containing a steam flow path having a main expansion direction; a shaft rotatably supported within the outer casing; an inner casing disposed between the outer casing and the shaft; the inner casing comprising a sealing region in a sealed relationship with the shaft, the sealing region defining a front part and a rear part of the steam flow path relative to the main expansion direction; the inner casing further comprising a blade region extending from the sealing region in a direction counter to the main expansion direction such that steam passing through blading of the blade region moves in the direction counter to the main expansion direction; and the sealing region defining an opening through which the steam, after having passed through the blading, can pass from the front part to the rear part in the main expansion direction. 10. The steam turbine of claim 9 , further comprising a fresh steam line passing through the outer casing and the inner casing and configured to deliver the steam as fresh steam to a region inside the inner casing without exposing an inner surface of the outer casing to the fresh steam. 11. The steam turbine of claim 10 , further comprising a first intermediate steam line passing through the outer casing and configured to exhaust the steam from the rear part of the steam flow path after the steam has passed through the blading, such that the inner surface of the outer casing is exposed only to the steam having passed through the blading and having a reduced pressure and temperature compared to the fresh steam. 12. The steam turbine of claim 11 , further comprising: a heater disposed outside the outer casing and having an inlet in flow communication with the first intermediate steam line and operable to reheat the reduced pressure and temperature steam; and a second intermediate steam line in flow communication with an outlet of the heater for delivering the reheated steam to a second turbine part of the steam turbine. 13. The steam turbine of claim 9 , further comprising a drum blading arrangement comprising a guide vane blading and a rotor blading arranged in the rear part of the steam flow path.
Auxiliaries or details not otherwise provided for · CPC title
Construction, i.e. structural features, e.g. of weight-saving hollow blades (F01D5/148, F01D5/16 and F01D5/20 take precedence; blade shape F01D5/141; blades with cooling or heating channels or cavities F01D5/18; heating, heat-insulating or cooling means on blades F01D5/18) · CPC title
traversed by the working-fluid substantially axially · CPC title
Casings (modified for heating or cooling F01D25/14); Casing parts, e.g. diaphragms, casing fastenings (casings for rotary machines or engines in general F16M {; special arrangements in stators dealing with breaking-off of part of rotor F01D21/045}) · CPC title
in steam turbines · CPC title
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