| (19) |
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(11) |
EP 0 156 619 A1 |
| (12) |
EUROPEAN PATENT APPLICATION |
| (43) |
Date of publication: |
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02.10.1985 Bulletin 1985/40 |
| (22) |
Date of filing: 19.03.1985 |
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| (84) |
Designated Contracting States: |
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CH DE FR GB IT LI |
| (30) |
Priority: |
23.03.1984 US 592983
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| (71) |
Applicant: WESTINGHOUSE ELECTRIC CORPORATION |
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Pittsburgh
Pennsylvania 15235 (US) |
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| (72) |
Inventor: |
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- Miller, Lewis J.
Winter Springs
Florida (US)
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| (74) |
Representative: van Berlyn, Ronald Gilbert |
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23, Centre Heights London NW3 6JG London NW3 6JG (GB) |
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| (54) |
Blade ring for a steam turbine |
(57) A blade ring for a stem turbine having an outer cylindrical casing (5), an inner
cylindrical casing (9) disposed within the outer casing (5) and supported by the outer
casing and a blade ring (15) to which are affixed a plurality of circular arrays of
stationary blades forming stationary blade rows (23), the blade ring (15) being disposed
partially within the inner casing (9) and partially within the outer casing (5) and
having a support arm (19) which extends outwardly to and is supported by the outer
casing.
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[0001] This invention relates to steam turbines and in particular to steam turbines with
inner casings and blade rings.
[0002] Steam turbines are built with an outer casing, an inner casing disposed within the
outer casing and supported from the outer casing, and blade rings supported within
the inner casing. By moving the support for the blade ring from the inner casing to
the outer casing, a reduction in size of both the outer and inner casings can be obtained.
[0003] According to the present invention a steam turbine comprises an outer horizontally
split cylindrical casing, an inner horizontally split cylindrical casing disposed
within the outer casing and supported from the outer casing, a blade ring disposed
partially within the inner casing and partially within the outer casing and having
support arms which extend outwardly to and are supported by the outer casing, so that
both the inner and outer casings can be made smaller in diameter and thinner.
[0004] Conveniently, an inner cylindrical casing is disposed within the outer casing and
supported from the outer casing, a blade ring is disposed partially within the inner
casing and partially within the outer casing and having support arms, which extend
outwardly to and are supported by the outer casing, whereby the inner and outer cylindrical
casings can be made smaller in diameter and the walls of the outer casing can be thinner.
[0005] The invention will now be described, by way of example, with reference to the accompanying
drawings, in which:
Figure 1 is a plan view of a prior art steam turbine with upper casings, and various
upper rings removed;
Figure 2 is a partial sectional view taken on line II-II of Figure 1;
Figure 3 is a partial plan view of a steam turbine, with upper casings and various
upper rings partially removed, made in accordance with this invention; and
Figure 4 is a partial sectional view taken on line IV-IV of Figure 3.
Figures 1 and 2 are indicated as prior art and show a steam turbine 103 which is designed
for the same operating temperature, pressure and steam throughput as the turbine 3
shown in Figures 3 and 4 and made in accordance with this invention. Reference numerals
with a 100 prefix in the prior art, Figs. 1 and 2 indicate parts similar to those
indicated by the reference numeral without the prefix in Figs. 3 and 4.
[0006] The turbine 3 comprises a horizontally split cylindrical outer housing or casing
5 held together by bolts 7, a horizontally split cylindrical inner housing or casing
9 held together by bolting 11 and disposed within the outer casing 5 and supported
from the outer casing 5 by supports 13. Disposed partially within the inner casing
9 and partially within the outer casing 5 is a longitudinally split blade ring 15
which is also held together by bolting 17. The blade ring 15 is supported on an arm
19 which extends outwardly to and is supported by the outer casing 5. The blade ring
15 has a plurality of circumferential grooves 21 which receive annular arrays of stationary
blades forming rows of stationary blades 23.
[0007] A rotor 25 having a plurality of annular arrays of rotating blades forming rows of
rotating blades 27 is disposed within the blade ring 15 and the rows of rotating blades
27 interdigitate with the rows of stationary blades 23.
[0008] A nozzle block 29 and nozzle chamber 31 are disposed on one end of the blade ring
15 and within the .inner casing 5 for admitting steam to the blade path. Also disposed
within the inner casing 5 is a dummy ring 30 which cooperates with an integral balance
disc 35 on the rotor to balance the thrust produced by the steam acting on the rotating
blades and rotor.
[0009] Supporting the blade ring 15 from the outer casing 5 rather than from the inner casing,
advantageously increases the resisting momentum acting on the blade ring thus reducing
the stresses; support is moved to a lower temperature region lowering the material
requirements and raising the allowable stresses; reduces inner and outer casing overall
diameter, wall thickness and bolting requirements; and reduces inner casing support
size as loading from the blade ring is transmitted directly to the outer casing, thus
producing savings in material, manufacturing and handling.
. 1. A steam turbine comprising an outer horizontally split cylindrical casing, an
inner horizontally split cylindrical casing disposed within the outer casing and supported
from the outer casing, a blade ring disposed partially within the inner casing and
partially within the outer casing and having support arms which extend outwardly to
and are supported by the outer casing, so that both the inner and outer casings can
be made smaller in diameter and thinner.
2. A steam turbine as claimed in claim 1 wherein the blade ring has a plurality of
circumferential grooves for receiving annular arrays of stationary blades which form
rows of stationary blades.
3. A steam turbine as claimed in claim 1 or 2 including a nozzle chamber and a nozzle
block disposed within the inner casing.
4. A steam turbine as claimed in any one of claims 1 to 3 including a rotor having
a plurality of rows of blades disposed in circular arrays forming rows of rotating
blades, the rotor being disposed within the blade ring in such a manner that the rows
of rotating blades interdigitate with the rows of stationary blades.
5. A steam turbine as claimed in any one of claims 1 to 4 and wherein a dummy ring
is disposed within the inner casing and a balance disc disposed on the rotor, .the
dummy ring and balance disc cooperate to balance the thrust load created by the rotating
blades and rotor.
6. A steam turbine including a cylindrical split casing, constructed and adapted for
use, substantially as hereinbefore described and illustrated with reference to the
accompanying drawings.